Department of Commerce, Community, and Economic Development
Alaska Oil and Gas Conservation Commission
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HomeMy WebLinkAboutCO 808CONSERVATION ORDER 808
Milne Point Unit
1. ------------------ Background info
2. March 8, 2023 First Public Hearing Notice, Affidavit of Publication, Email
list, bulk mail list.
3. March 9, 2023 Revised Public Hearing Notice, Affidavit of Publication,
Email list, bulk mail list.
4. May 9, 2023 Hearing transcript, AOGCC presentation, Hilcorp
presentation and expert resume
5. May 19, 2023 AOGCC questions for Hilcorp
6. June 2, 2023 Hilcorp email
7. May 6, 2023 Hilcorp’s response to AOGCC questions
8. June 21, 2023 Hilcorp email follow up
9. June 26, 2023 RFI to CPAI
10. July 11, 2023 CPAI request for extension of time
11. July 18, 2023 CPAI’s response to RFI
12. ------------------ Annual reports
STATE OF ALASKA
ALASKA OIL AND GAS CONSERVATION COMMISSION
333 West 7th Avenue
Anchorage, Alaska 99501
Re: On its own motion the AOGCC requested
review of the completion and operation of
wells with jet pumps in the Milne Point
Unit
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Docket Number: CO-23-004
Conservation Order 808
Milne Point Unit and Adjacent Areas
Kuparuk River Oil Pool
Schrader Bluff Oil Pool
Sag River Oil Pool
Ugnu Undefined Oil Pool
August 23, 2023
IT APPEARING THAT:
1. The Alaska Oil and Gas Conservation Commission (AOGCC) on its own motion called a
public hearing to evaluate the completion and operation of wells with jet pumps in the
Milne Point Unit (MPU) on the North Slope. Hilcorp Alaska, LLC (Hilcorp) plans to
increase the use of jet pumps in the MPU, and AOGCC anticipates that the creation of a
new Conservation Order will be necessary to outline the rules for design and operation of
jet pump completions.
2. Pursuant to 20 AAC 25.540, the Alaska Oil and Gas Conservation Commission (AOGCC)
scheduled a public hearing for May 9, 2023. On March 9, 2023, the AOGCC published
notice of that hearing on the State of Alaska’s Online Public Notice website and on the
AOGCC’s website, electronically transmitted the notice to all persons on the AOGCC’s
email distribution list and mailed printed copies of the notice to all persons on the
AOGCC’s mailing distribution list. On March 12, 2023, the notice was also published in
the Anchorage Daily News.
3. No public comments on the application were received.
4. The hearing commenced at 10:00 a.m. on May 9, 2023. Testimony was received from Mel
Rixse, AOGCC Senior Petroleum Engineer, representatives of Hilcorp, and Hilcorp expert
witness Martin Walters.
5. During the hearing, the AOGCC asked several questions of Hilcorp that required follow-
up and it was decided to keep the record open until May 23, 2023. Upon further review of
the matter, the AOGCC submitted additional questions to Hilcorp, and extended the time
that the record would remain open by two weeks until June 6, 2023.
6. On June 26, 2023, pursuant to 20 AAC 25.300, the AOGCC requested information related
to the use of jet pump completions in wells operated by ConocoPhillips Alaska, Inc.
(CPAI). The requested information was received by the AOGCC on July 18, 2023.
CO 808
August 23, 2023
Page 2 of 6
FINDINGS:
1. Hilcorp is the operator of the leases in the portion of MPU covered by the Affected Area
of this order. Hilcorp assumed operatorship of MPU from BP Exploration (Alaska) Inc. in
November 2014. Hilcorp is the working interest owner, and the Alaska Department of
Natural Resources is the landowner of the Affected Area.
2. 20 AAC 25.200(d) requires all wells capable of unassisted flow to surface be completed
with downhole tubing 1 and packer that will isolate the tubing by casing2 annulus from
produced fluid, unless otherwise specifically approved by the AOGCC.
3. There are currently 68 active producing jet pump production wells in MPU: 10 in the
Kuparuk River Oil Pool (KROP), 54 in the Schrader Bluff Oil Pool (SBOP), 3 in the Sag
River Oil Pool and 1 in the Ugnu Undefined Oil Pool. Hilcorp estimates that the number
of wells completed with jet pumps will increase by 50-200 wells.
4. A forward-circulating jet pump is defined as a jet pump where power fluid is pumped into
the tubing and reservoir fluids are produced along with the power fluid up the tubing by
production casing3 annulus (inner annulus4 or IA).
5. A reverse-circulating jet pump is defined as a jet pump where power fluid is pumped into
the IA and reservoir fluids are produced along with power fluid up the inside of the tubing.
6. The jet orifice or jet pump diffuser with an open sliding sleeve compromises the
mechanical barrier created by tubing and packer and allows a flow path from the reservoir
to the IA in reverse- and forward-circulating jet pumps.
7. In the event of a catastrophic loss of containment at surface where the bottom hole pressure
(BHP) equivalent is greater than 8.55 ppg, the rate of flow of reservoir fluids through a jet
pump orifice then through a sliding sleeve could be significant. When asked to calculate
the potential flow rate through a ¼” orifice by a typical Kuparuk producer, Hilcorp stated
that the rate of reservoir deliverability would not be choked back by a ¼” orifice and would
not count it as a measure of protection or barrier.
8. Hilcorp states that wells with jet pump completions have much greater uptime than other
artificial lift mechanisms such as an electric submersible pump (ESP) or gas lift.
9. An ESP has limited ability to handle gas, so for much of the MPU history, gas injection for
enhanced oil recovery has been restricted. Hilcorp states that completing wells with jet
pumps will allow more gas injection in the field and increase ultimate recovery of the
resource.
1 Tubing is the inner most pipe in a wellbore and is typically the conduit through which produced fluids are brought
from the formation to the surface for processing.
2 Casing is the major structural component of a well. Casing is needed to maintain borehole stability, prevent
contamination of water sands, isolate water from producing formations, and control well pressures during drilling,
production, and workover operations.
3 Production casing is generally set in place after the surface casing and before the tubing. Production casing is used
to isolate production zones and contain formation pressures in the event of a tubing leak.
4 The inner annulus is the void between the tubing and the production casing which immediately surrounds it. The
presence of an annulus provides the ability to circulate fluids, and monitoring pressure in the inner annulus is
important to ensure integrity of the tubing and production casing strings and packer.
CO 808
August 23, 2023
Page 3 of 6
10. MPU wells with jet pump completions have high- and low-pressure detection devices on
both the tubing and the tubing by production casing annulus as part of the safety valve
system.
11. In a well completed with a reverse-circulating jet pump, high-pressure power fluid is in
contact with the production casing. If the production casing develops a leak and is the outer
most barrier to the formation, the high-pressure power fluid could induce fractures to the
formation. A production casing leak in jet pump producing well MPU I-27 was detected
on March 18, 2023 when the power fluid pressure of about ~3,400 psi was detected in the
fluid-filled outer annulus5 (OA).
12. Hilcorp was asked to present the diagnostic history for jet pump well MPU C-40 which
developed a production casing leak during production. Hilcorp’s preliminary assessment
as the likely cause for an increase in the power fluid rate was damaged jet pump packing.
However, during diagnostic work, the sliding sleeve was closed and the well failed a
mechanical integrity test (MIT) of the production casing. A leak in the production casing
was ultimately identified utilizing a leak detection log.
13. In a well completed with a forward-circulating jet pump, produced fluids mixed with power
fluid are in contact with the production casing.
14. When present, a tieback string6 extending from surface to the lower tieback seals enables
the detection of leaks in the production casing. It also provides a second barrier between
the tubing and the formation.
15. Surface casing 7 with an open shoe8 provides the ability to monitor the OA pressure and
may provide information about a production casing leak to the formation at or near the
surface casing shoe.
16. Hilcorp did not provide data or a method to demonstrate the long-term integrity of
production casing in wells completed with jet pumps.
17. Since Hilcorp has taken over operatorship of MPU, the AOGCC has required sundry
approval for workover operations. Part of the Applications for Sundry Approval (Form 10-
403) for workovers includes reporting the last production casing pressure test.
18. Hilcorp voluntarily agreed by letter dated September 24, 2015 to manage reservoir
pressures to a seawater gradient 0.442 psi/ft (8.55 ppg equivalent) in both the SBOP and
KROP. Pattern Injection/Withdrawal ratios are to be used to lower average reservoir
pressure at specific wells. Typically, this involves reducing the injection rate in the offset
service wells to reduce reservoir pressure.
5 The outer annulus is the void between the production casing and the surface casing which immediately surrounds
it. Monitoring pressure in the outer annulus is important to ensure integrity of the surface and production casing
strings.
6 A tieback string is a casing string that provides additional pressure integrity from the liner top or lower tieback
seals to the wellhead.
7 Surface casing is set to provide blowout protection, isolate water sands, and prevent lost circulation. It also often
provides adequate shoe strength to drill into high-pressure transition zones.
8 Surface casing (SC) with an open shoe implies that the outside of the SC is cemented above the base of the SC but
the inside of the SC is fluid-filled which allows for pressure monitoring of the formation at the SC shoe by gauges at
surface.
CO 808
August 23, 2023
Page 4 of 6
19. Applications for Sundry Approval (Form 10-403) for some wells submitted by Hilcorp for
MPU well interventions report the reservoir pressure to be as high as 11.0 ppg equivalent.
In its June 6, 2023 response to additional AOGCC questions, Hilcorp states that it has
implemented the use of a trending tool to monitor the instantaneous voidage replacement
ratios (VRR) in the fault blocks of the KROP. Hilcorp says that the overall VRRs and
associated injection targets will be reviewed no less than annually.
20. Expert witness Martin Walters testified in favor of a single mechanical barrier between the
artificial lift mechanism and atmosphere in the case where the reservoir pressure is less
than 8.55 ppg. He did not support a single mechanical barrier as adequate if the formation
pressure is higher than 8.55 ppg.
21. Hilcorp provided testimony that it treats power fluid and produced fluids with corrosion
inhibitors, and monitors the effectiveness of inhibition treatment with coupons, probes and
inspections.
22. Hilcorp states that there is a low scaling tendency and low risk of hydrogen sulfide (H2S)
at MPU due to a history of no seawater injection.
23. On July 18, 2023, in response to the AOGCC’s request, ConocoPhillips Alaska, Inc (CPAI)
provided information about jet pump completions in wells operated by CPAI. CPAI stated
that 49 wells have produced via surface-powered jet pump completions in the Tarn,
Meltwater, West Sak and Kuparuk pools. Based on learnings, CPAI’s practice is to avoid
operating jet pumps on drill sites that use sea water for injection as it appears to be
significantly more corrosive. Currently, CPAI has limited the use of jet pumps to wells that
have specific problems such as paraffin wax where the added flow rate and heat of a jet
pump mitigates wax deposition.
CONCLUSIONS:
1. Two mechanical barriers to the surface casing shoe are required in a well when the
equivalent BHP gradient is greater than 8.55 ppg.
2. Monitoring and reviewing the VRRs and associated injection targets in the MPU at least
annually to ensure reservoir pressures are managed to the target equivalent BHP gradient
of 8.55 ppg is appropriate.
3. In a well with a reverse-circulating jet pump, high-pressure power fluid applied to the
production casing could cause leaks and thereby compromise its integrity.
4. In a well with a reverse-circulating jet pump and a single barrier to the formation, a leak of
high-pressure power fluid could induce fractures in the formation.
5. In a forward-circulating jet pump, mixed production and power fluids that are in contact
with the production casing could compromise the integrity of the production casing if not
properly neutralized for corrosion and scale.
6. In the case of a well completed with a forward-circulating jet pump and with equivalent
BHP gradient of less than 8.55 ppg, a leak in the production casing will not induce fractures
to the formation.
7. In a well where surface casing has an open shoe, pressure monitoring of the OA greatly
increases the ability to detect a production casing leak to the formation at or near the shoe.
CO 808
August 23, 2023
Page 5 of 6
8. Hilcorp has not demonstrated an ability to effectively detect leaks caused by corrosion or
erosion in the casing of wells with a single barrier to the formation without performing
MITs of the production casing.
9. A mechanical integrity test (MIT) of the production casing to the maximum power fluid
injection pressure demonstrates the competence of the casing for the intended use.
10. The lack of seawater injection and an active corrosion inhibition and monitoring program
addresses concerns about scale and corrosion at MPU.
NOW THEREFORE IT IS ORDERED for the Kuparuk River Oil Pool, Schrader Bluff Oil Pool,
Sag River Oil Pool and Ugnu Undefined Oil Pool in the Milne Point Unit:
Rule 1 Casing Integrity
All wells with jet pump completions will have the production casing pressure tested to the
maximum power fluid injection pressure at intervals not to exceed 2 years or as otherwise directed
by the AOGCC.
All wells with jet pump completions will have caliper logs run opportunistically any time tubing
is pulled from the wellbore.
Rule 2 Completions
Wells completed with jet pumps may be produced with an open sliding sleeve that compromises
the production packer if the well has either:
1. Two barriers to the formation with a tieback string from surface to the depth of the lower
tieback seals; or
2. One barrier to the formation and a monitorable OA with open SC shoe that is in
communication with the formation below the surface casing shoe; or
3. A forward-circulating jet pump, at least one barrier to the formation, a SC shoe that may
be unmonitorable, and an equivalent BHP gradient less than 8.55 ppg.
Rule 3 Safety Valve Systems
Wells with jet pump completions must have high- and low-pressure detection devices on both the
tubing and the tubing by production casing annulus as part of the safety valve system.
Rule 4 Reporting
Hilcorp must provide an annual report to the AOGCC by December 31 of each year to include
information about the reservoir pressure in wells that are completed with packerless ESPs or
forward-circulating jet pumps with one barrier to formation and unmonitorable SC shoe. Reports
must include a description of any casing integrity failures detected since the previous report and a
list of wells completed with jet pumps where tubing was pulled and a report of the casing caliper
logs that were run in the wells.
Rule 5 Administrative Action
Upon proper application, or its own motion, and unless notice and public hearing are otherwise
required, the AOGCC may administratively waive the requirements of any rule stated herein or
administratively amend this order as long as the change does not promote waste or jeopardize
CO 808
August 23, 2023
Page 6 of 6
correlative rights, is based on sound engineering and geoscience principles, and will not result in
an increased risk of fluid movement into freshwater.
DONE at Anchorage, Alaska and dated August 23, 2023.
Brett W. Huber, Sr. Jessie L. Chmielowski Gregory C. Wilson
Chair, Commissioner Commissioner Commissioner
RECONSIDERATION AND APPEAL NOTICE
As provided in AS 31.05.080(a), within 20 days after written notice of the entry of this order or decision, or such further time
as the AOGCC grants for good cause shown, a person affected by it may file with the AOGCC an application for reconsideration
of the matter determined by it. If the notice was mailed, then the period of time shall be 23 days. An application for
reconsideration must set out the respect in which the order or decision is believed to be erroneous.
The AOGCC shall grant or refuse the application for reconsideration in whole or in part within 10 days after it is filed. Failure
to act on it within 10-days is a denial of reconsideration. If the AOGCC denies reconsideration, upon denial, this order or
decision and the denial of reconsideration are FINAL and may be appealed to superior court. The appeal MUST be filed within
33 days after the date on which the AOGCC mails, OR 30 days if the AOGCC otherwise distributes, the order or decision
denying reconsideration, UNLESS the denial is by inaction, in which case the appeal MUST be filed within 40 days after the
date on which the application for reconsideration was filed.
If the AOGCC grants an application for reconsideration, this order or decision does not become final. Rather, the order or
decision on reconsideration will be the FINAL order or decision of the AOGCC, and it may be appealed to superior court. That
appeal MUST be filed within 33 days after the date on which the AOGCC mails, OR 30 days if the AOGCC otherwise
distributes, the order or decision on reconsideration.
In computing a period of time above, the date of the event or default after which the designated period begins to run is not
included in the period; the last day of the period is included, unless it falls on a weekend or state holiday, in which event the
period runs until 5:00 p.m. on the next day that does not fall on a weekend or state holiday.
Jessie L.
Chmielowski
Digitally signed by
Jessie L. Chmielowski
Date: 2023.08.23
11:49:18 -08'00'
Gregory
Wilson
Digitally signed by
Gregory Wilson
Date: 2023.08.23
12:58:00 -08'00'
Brett W.
Huber, Sr.
Digitally signed by
Brett W. Huber, Sr.
Date: 2023.08.23
13:51:47 -08'00'
12
Milne Point Unit
CO 808 Annual Report
January through December, 2025
Issued: December 18, 2025
Outline
1. Introduction
2. Reservoir pressure in wells completed with packerless ESPs or forward-
circulating jet pumps with unmonitorable surface casing shoe
3. Casing integrity failures on JP wells
4. Casing caliper logs run on JP wells
CO 808 Annual Report
JANUARY - DECEMBER 2025
Introduction
As required by Conservation Order 808 for the Milne Point Unit, an annual report is due to the
AOGCC by Dec. 31 of each calendar year. The report includes information regarding the reservoir
pressure in wells that are completed with packerless ESPs or forward-circulating jet pumps with
one barrier to formation and unmonitorable SC shoe, a description of any casing integrity failures
detected since the previous report and a list of wells completed with jet pumps where tubing was
pulled including a report of the casing caliper logs that were run in the wells. The time period
covered is January through December 2025.
Reservoir Pressure
Below is information to comply with the CO 808 annual reporting requirement for, “Reservoir
pressure in wells that are completed with packerless ESPs or forward-circulating jet pumps with
one barrier to formation and unmonitorable SC Shoe”. Note below data was pulled for operable
wells.
WELL COMPLETION CATEGORY Formation BHP
EMW
(ppg)
MPC-01 ESP Packerless Completion Kuparuk 2184 6.27
MPC-43 ESP Packerless Completion Kuparuk 2150 5.91
MPE-04 ESP Packerless Completion Kuparuk 2140 5.88
MPE-06 ESP Packerless Completion Kuparuk 2225 6.11
MPE-08 ESP Packerless Completion Kuparuk 2459 6.76
MPE-09 ESP Packerless Completion Kuparuk 4500 12.36
MPE-14 ESP Packerless Completion Kuparuk 3141 8.63
MPE-18 ESP Packerless Completion Kuparuk 3710 10.19
MPE-22 ESP Packerless Completion Kuparuk 1624 4.46
MPE-32 ESP Packerless Completion Schrader 1135 5.45
MPF-01 ESP Packerless Completion Kuparuk 2326 6.39
MPF-05 ESP Packerless Completion Kuparuk 2022 5.55
MPF-06 ESP Packerless Completion Kuparuk 3652 10.03
MPF-09 ESP Packerless Completion Kuparuk 2634 7.24
MPF-109 ESP Packerless Completion Schrader 772 3.71
MPF-116 ESP Packerless Completion Kuparuk 2737 7.52
MPF-14 ESP Packerless Completion Kuparuk 3094 8.50
MPF-25 ESP Packerless Completion Kuparuk 2165 5.95
MPF-34 ESP Packerless Completion Kuparuk 2245 6.17
MPF-37 ESP Packerless Completion Kuparuk 3808 10.46
MPF-38 ESP Packerless Completion Kuparuk 2600 7.14
MPF-45 ESP Packerless Completion Kuparuk 1777 4.88
MPF-50 ESP Packerless Completion Kuparuk 1256 3.45
MPF-53 ESP Packerless Completion Kuparuk 3468 9.53
MPF-54 ESP Packerless Completion Kuparuk 1500 4.12
MPF-61 ESP Packerless Completion Kuparuk 2828 7.77
MPF-65 ESP Packerless Completion Kuparuk 2903 7.97
MPF-66 ESP Packerless Completion Kuparuk 1803 4.95
MPF-78 ESP Packerless Completion Kuparuk 2889 7.94
MPF-86 ESP Packerless Completion Kuparuk 1809 4.97
MPF-87 ESP Packerless Completion Kuparuk 2800 7.69
MPF-93 ESP Packerless Completion Kuparuk 2600 7.14
MPF-94 ESP Packerless Completion Kuparuk 3000 8.24
MPF-96 ESP Packerless Completion Kuparuk 1279 3.51
MPG-02 ESP Packerless Completion Schrader 1308 6.28
MPG-04 ESP Packerless Completion Schrader 1708 8.21
MPG-08 ESP Packerless Completion Schrader 1873 9.00
MPG-12 ESP Packerless Completion Schrader 2004 9.6
MPG-14 ESP Packerless Completion Schrader 1632 7.85
MPG-15 ESP Packerless Completion Schrader 1870 8.99
MPH-02 ESP Packerless Completion Schrader 1612 7.8
MPH-05 ESP Packerless Completion Kuparuk 3102 8.52
MPH-07 ESP Packerless Completion Schrader 1407 6.76
MPI-06 ESP Packerless Completion Schrader 1214 5.84
MPI-20 ESP Packerless Completion Schrader 1688 8.1
MPI-38 ESP Packerless Completion Schrader 958 4.6
MPI-40 ESP Packerless Completion Schrader 1432 6.9
MPJ-04 ESP Packerless Completion Schrader 2001 9.62
MPJ-06 ESP Packerless Completion Kuparuk 3109 8.54
MPJ-10 ESP Packerless Completion Kuparuk 3214 8.83
MPJ-21 ESP Packerless Completion Schrader 1463 7.03
MPJ-28 ESP Packerless Completion Schrader 1071 5.1
MPJ-29 ESP Packerless Completion Schrader 1710 8.2
MPJ-40 ESP Packerless Completion Schrader 1704 8.19
MPJ-42 ESP Packerless Completion Schrader 1443 6.94
MPJ-44 ESP Packerless Completion Schrader 1379 6.63
MPJ-46 ESP Packerless Completion Schrader 1741 8.37
MPK-02 ESP Packerless Completion Kuparuk 1900 5.22
MPK-05 ESP Packerless Completion Kuparuk 2629 7.22
MPK-09 ESP Packerless Completion Kuparuk 2810 7.72
MPK-13 ESP Packerless Completion Kuparuk 2494 6.85
MPK-17 ESP Packerless Completion Kuparuk 3036 8.34
MPK-30 ESP Packerless Completion Kuparuk 2162 5.94
MPK-33 ESP Packerless Completion Kuparuk 1979 5.44
MPK-37 ESP Packerless Completion Kuparuk 2812 7.72
MPK-38 ESP Packerless Completion Kuparuk 1378 3.79
MPK-44 ESP Packerless Completion Kuparuk 3000 8.24
MPL-02 ESP Packerless Completion Kuparuk 1700 4.67
MPL-03 ESP Packerless Completion Kuparuk 2663 7.32
MPL-04 ESP Packerless Completion Kuparuk 3035 8.33
MPL-07 ESP Packerless Completion Kuparuk 2646 7.27
MPL-13 ESP Packerless Completion Kuparuk 2440 6.98
MPL-14 ESP Packerless Completion Kuparuk 1679 4.61
MPL-28 ESP Packerless Completion Kuparuk 2960 8.13
MPL-29 ESP Packerless Completion Kuparuk 2341 6.43
MPL-37 ESP Packerless Completion Schrader 1500 7.65
MPL-39 ESP Packerless Completion Kuparuk 3137 8.62
MPL-41 ESP Packerless Completion Kuparuk 1800 4.95
MPL-46 ESP Packerless Completion Schrader 1591 7.65
MPL-47 ESP Packerless Completion Schrader 1203 5.78
MPL-54 ESP Packerless Completion Schrader 1375 6.61
MPL-56 ESP Packerless Completion Schrader 995 4.78
MPL-57 ESP Packerless Completion Schrader 1500 7.21
MPL-60 ESP Packerless Completion Schrader 1400 6.73
MPL-62 ESP Packerless Completion Schrader 1385 6.66
MPR-102 ESP Packerless Completion Schrader 1728 8.40
MPR-104 ESP Packerless Completion Schrader 1742 8.45
MPR-106 ESP Packerless Completion Schrader 1746 8.39
MPR-108 ESP Packerless Completion Schrader 1753 8.43
MPR-110 ESP Packerless Completion Schrader 1759 8.46
MPR-142 ESP Packerless Completion Schrader 1809 8.32
MPR-144 ESP Packerless Completion Schrader 1722 8.06
MPC-14A FC JP Unmonitorable SC shoe Kuparuk 3078 8.46
MPS-17 FC JP Unmonitorable SC shoe Schrader 1342 6.45
MPS-25 FC JP Unmonitorable SC shoe Schrader 1659 7.97
Casing Integrity Failures of JP Wells
One casing integrity failure was identified on a JP well in 2025.
1. MPM-64 was drilled in January 2020 and has produced with a jet pump completion since
that time. The well has a 7” tieback completion design. In December of 2023 the well
passed an MIT-OA to 1635. On 12/11/25 the well failed an MIT-OA at 1100 psi with
noted returns to surface. As of the writing of this report a leak depth determination has
not been performed on the OA.
Casing Caliper Logs
Opportunistic casing caliper logs were run on 2 jet pump wells during the 2025 RWO campaign.
Summaries and information are detailed below on each of the wells.
1. MPH-08B
January 2025 RWO from RCJP to FCJP. Summary of the 7” casing caliper survey is
below. Axial displacement was identified between 285’ - 330’.
Schematic prior to RWO.
2. MPK-33 (5/2/25)
May 2025 RWO from JP to packerless ESP. Summary of the 7” casing caliper survey is
below. Maximum penetration of 24.6% and no axial deformation noted.
Schematic prior to RWO.
Milne Point Unit
CO 808 Annual Report
January through December, 2023
Issued: December 21, 2023
Outline
1.Introduction
2.Reservoir pressure in wells completed with packerless ESP’s or
forward-circulating jet pumps
3.Casing integrity failures in JP wells
4.Casing caliper logs run on JP wells
CO 808 Annual Report
JANUARY - DECEMBER 2023
Introduction
As required by Conservation Order 808 for the Milne Point Unit, an annual report is due to the
AOGCC by Dec. 31 of each calendar year. The report includes information regarding the reservoir
pressure in wells that are completed with packerless ESPs or forward-circulating jet pumps with
one barrier to formation and unmonitorable SC shoe, a description of any casing integrity failures
detected since the previous report and a list of wells completed with jet pumps where tubing was
pulled and a report of the casing caliper logs that were run in the wells. The time period covered
is January through December 2023. Note CO 808 came into effect on August 23, 2023.
Reservoir Pressure
Below is information to comply with the CO 808 annual reporting requirement for, “Reservoir
pressure in wells that are completed with packerless ESPs or forward-circulating jet pumps with
one barrier to formation and unmonitorable SC Shoe”. Note below data was pulled for operable
wells.
DRILLSITE WELL COMPLETION CATEGORY Formation BHP
EMW
(ppg)
MPC MPC-01 ESP Packerless Completion Kuparuk 3000 8.24
MPC MPC-13 ESP Packerless Completion Kuparuk 4047 11.12
MPC MPC-14 ESP Packerless Completion Kuparuk 3128 8.59
MPC MPC-22 ESP Packerless Completion Kuparuk 4047 11.12
MPC MPC-43 ESP Packerless Completion Kuparuk 2150 5.91
MPE MPE-04 ESP Packerless Completion Kuparuk 2140 5.88
MPE MPE-06 ESP Packerless Completion Kuparuk 2225 6.11
MPE MPE-08 ESP Packerless Completion Kuparuk 2459 6.76
MPE MPE-09 ESP Packerless Completion Kuparuk 4500 12.36
MPE MPE-14 ESP Packerless Completion Kuparuk 3141 8.63
MPE MPE-18 ESP Packerless Completion Kuparuk 3710 10.19
MPE MPE-20 ESP Packerless Completion Schrader 1564 7.95
MPE MPE-22 ESP Packerless Completion Kuparuk 1624 4.46
MPE MPE-32 ESP Packerless Completion Schrader 1135 5.45
MPF MPF-01 ESP Packerless Completion Kuparuk 2326 6.39
MPF MPF-02 ESP Packerless Completion Prince Creek 1097 8.44
MPF MPF-05 ESP Packerless Completion Kuparuk 2929 8.05
MPF MPF-06 ESP Packerless Completion Kuparuk 3652 10.03
MPF MPF-09 ESP Packerless Completion Kuparuk 2634 7.24
MPF MPF-109 ESP Packerless Completion Schrader 772 3.71
MPF MPF-116 ESP Packerless Completion Kuparuk 2737 7.52
MPF MPF-14 ESP Packerless Completion Kuparuk 3094 8.50
MPF MPF-21 ESP Packerless Completion Prince Creek 1084 8.34
MPF MPF-25 ESP Packerless Completion Kuparuk 2165 5.95
MPF MPF-34 ESP Packerless Completion Kuparuk 2245 6.17
MPF MPF-37 ESP Packerless Completion Kuparuk 2165 5.95
MPF MPF-38 ESP Packerless Completion Kuparuk 2600 7.14
MPF MPF-45 ESP Packerless Completion Kuparuk 1100 3.02
MPF MPF-50 ESP Packerless Completion Kuparuk 1256 3.45
MPF MPF-53 ESP Packerless Completion Kuparuk 3119 8.57
MPF MPF-54 ESP Packerless Completion Kuparuk 1500 4.12
MPF MPF-58 ESP Packerless Completion Prince Creek 1097 8.44
MPF MPF-61 ESP Packerless Completion Kuparuk 2828 7.77
MPF MPF-65 ESP Packerless Completion Kuparuk 2903 7.97
MPF MPF-66 ESP Packerless Completion Kuparuk 1803 4.95
MPF MPF-78 ESP Packerless Completion Kuparuk 2889 7.94
MPF MPF-79 ESP Packerless Completion Kuparuk 2038 5.59
MPF MPF-86 ESP Packerless Completion Kuparuk 1809 4.97
MPF MPF-87 ESP Packerless Completion Kuparuk 2800 7.69
MPF MPF-93 ESP Packerless Completion Kuparuk 2600 7.14
MPF MPF-94 ESP Packerless Completion Kuparuk 3000 8.24
MPF MPF-96 ESP Packerless Completion Kuparuk 1279 3.51
MPG MPG-02 ESP Packerless Completion Schrader 1308 6.28
MPG MPG-04 ESP Packerless Completion Schrader 1708 8.21
MPG MPG-08 ESP Packerless Completion Schrader 1873 9.00
MPG MPG-12 ESP Packerless Completion Schrader 2004 9.6
MPG MPG-14 ESP Packerless Completion Schrader 1632 7.85
MPG MPG-15 ESP Packerless Completion Schrader 1870 8.99
MPH MPH-01 ESP Packerless Completion Schrader 1747 8.4
MPH MPH-02 ESP Packerless Completion Schrader 1612 7.8
MPH MPH-03 ESP Packerless Completion Schrader 1736 8.3
MPH MPH-05 ESP Packerless Completion Kuparuk 3102 8.52
MPH MPH-07 ESP Packerless Completion Schrader 1407 6.76
MPI MPI-06 ESP Packerless Completion Schrader 1214 5.84
MPI MPI-20 ESP Packerless Completion Schrader 1688 8.1
MPI MPI-38 ESP Packerless Completion Schrader 958 4.61
MPJ MPJ-04 ESP Packerless Completion Schrader 2001 9.62
MPJ MPJ-06 ESP Packerless Completion Kuparuk 3109 8.54
MPJ MPJ-08 ESP Packerless Completion Schrader 1567 7.53
MPJ MPJ-10 ESP Packerless Completion Kuparuk 3214 8.83
MPJ MPJ-21 ESP Packerless Completion Schrader 1463 7.03
MPJ MPJ-28 ESP Packerless Completion Schrader 1071 5.1
MPJ MPJ-29 ESP Packerless Completion Schrader 1710 8.2
MPK MPK-02 ESP Packerless Completion Kuparuk 1900 5.22
MPK MPK-05 ESP Packerless Completion Kuparuk 2629 7.22
MPK MPK-06 ESP Packerless Completion Kuparuk 2617 7.19
MPK MPK-09 ESP Packerless Completion Kuparuk 2810 7.72
MPK MPK-13 ESP Packerless Completion Kuparuk 2494 6.85
MPK MPK-17 ESP Packerless Completion Kuparuk 3036 8.34
MPK MPK-30 ESP Packerless Completion Kuparuk 2162 5.94
MPK MPK-37 ESP Packerless Completion Kuparuk 2812 7.72
MPK MPK-38 ESP Packerless Completion Kuparuk 1378 3.79
MPK MPK-44 ESP Packerless Completion Kuparuk 3000 8.24
MPL MPL-02 ESP Packerless Completion Kuparuk 1700 4.67
MPL MPL-03 ESP Packerless Completion Kuparuk 2785 7.65
MPL MPL-04 ESP Packerless Completion Kuparuk 3035 8.33
MPL MPL-07 ESP Packerless Completion Kuparuk 2100 5.77
MPL MPL-11 ESP Packerless Completion Kuparuk 2341 6.43
MPL MPL-14 ESP Packerless Completion Kuparuk 1679 4.61
MPL MPL-17 ESP Packerless Completion Kuparuk 3459 9.50
MPL MPL-28 ESP Packerless Completion Kuparuk 2150 5.91
MPL MPL-29 ESP Packerless Completion Kuparuk 2341 6.43
MPL MPL-37 ESP Packerless Completion Schrader 1500 7.65
MPL MPL-41 ESP Packerless Completion Kuparuk 1800 4.95
MPL MPL-46 ESP Packerless Completion Schrader 1591 7.65
MPL MPL-54 ESP Packerless Completion Schrader 1050 5.05
MPL MPL-56 ESP Packerless Completion Schrader 995 4.78
MPL MPL-57 ESP Packerless Completion Schrader 1500 7.21
MPL MPL-60 ESP Packerless Completion Schrader 1400 6.73
MPL MPL-62 ESP Packerless Completion Schrader 1264 6.08
MPS MPS-25 FC JP
Unmonitorable SC
shoe Schrader 1659 7.97
Casing Integrity Failures of JP Wells
Casing integrity failures of two JP wells were discovered in 2023.
1.MPI – 27
Jet producer MPI-27 exceeded OA MOASP to 3200 psi on 3/18/2023. While performing daily
inspections, the operator identified the OA pressure had climbed to 3200 psi (matching power
fluid pressure). Immediate actions were taken to shut in the well and alleviate the
pressure. After shutting the well in, OA and IA pressures tracked down to 0 psi. There were no
previous indications of prior pressure communication. A RWO to repair the well was completed
in April 2023. Information on the 7” caliper results are included in the next section.
MPI-27 Schematic prior to April 2023 RWO.
2.MPS-90
This well is completed with a 2 3/8” inner tubing string, 4 ½” “tie back” string, and 9 5/8”
production casing. On 10/24/23 a failing MIT-OA testing the 4 ½” x 9 5/8” annulus was
performed, the well was shut in and made Not-Operable. A PPPOT-IC passed. As of this
report date additional diagnostics have not been performed to identify the location of the
leak.
Casing Caliper Logs
Opportunistic casing caliper logs were run on three JP wells during RWO in 2023.
1.MPI-27
During RWO a caliper was run on the 7” tieback string. This well had a known leak
based on the OA equalizing with the IA to power fluid pressure during operation. A
maximum penetration of 37% was identified @ 4115’, roughly coinciding with the leak
depth based on pressure testing with a 7” test packer during RWO. It is unknown if the
this max penetration was the cause of IAxOA communication or a thread leak on this
joint. The JP ported sub was set @ 4,102’ pre RWO.
MPI-27 Schematic prior to RWO
2.MPB-28 –
During RWO a caliper was run on the 7” tieback string. MPB-28 was made not operable
after a failing MIT-IA on 9/20/23. The well passed a subsequent MIT-OA on 9/28/23
indicating a competent 7” tieback string. Maximum penetration of the 7” tieback was
36% @ 4567’. The JP sliding sleeve was set @ 4788’ prior to RWO.
MPB-28 Schematic prior to RWO
3.MPL-47
MPL-47 was RWO due to a hole in the 3 ½” tubing. During the RWO a caliper was run
on the 7” tieback string. Maximum wall penetration of the 7” tieback string is 15.2%.
MPL-47 Schematic prior to RWO
11
Michael Braun
GKA Production Engineering Supervisor
700 G Street, ATO 1326
Anchorage, AK 99510
(907) 263-4185 (office)
(907) 306-6374 (cellphone)
Michael.Braun@conocophillips.com
July 18, 2023
VIA E-MAIL
Ms. Jessie L. Chmielowski
Commissioner
Alaska Oil and Gas Conservation Commission
333 West Seventh Avenue, Suite 100
Anchorage, Alaska 99501-3572
Subject: Docket Number CO-23-004
Request for Information under 20 AAC 25.300
CPAI Surface-Powered Jet Pump Completion Inquiry Response
Dear Commissioner Chmielowski:
On behalf of ConocoPhillips Alaska, Inc. (“CPAI”), I am providing the information requested by
the AOGCC related to the use of jet pump completions in wells operated by CPAI. CPAI
appreciates that AOGCC granted our request to extend the deadline for this response to July 21,
2023.
TABLE 1 - Surface-Powered Jet Pump Completion History and Overview of Wells Operated by
ConocoPhillips Alaska as of July 2023 includes a list of all wells that CPA has operated with
surface-powered jet pump (SPJP) completions. Excluded are a few wells that had formation-
powered jet pumps installed where the inner annulus is operated like gas-lifted wells. The list
shows 49 wells that have produced via SPJP from the Tarn, Meltwater, West Sak and Kuparuk
pools. This table includes a summary of any tubing and production casing corrosion/erosion
failures that could be related to using SPJP as an artificial lift method. Except for a few sliding
sleeves (or similar SPJP receptacles) damaged by erosion, all tubing and casing failures observed
have only been related to corrosion.
Circa 2010, CPAI learned from failures on wells 2K-22, 2K-27, 3M-27 and 3M-29A that sea water
appears to be significantly more corrosive than our produced water treated with biocide and
corrosion inhibitor to protect our cross-country pipelines and facilities. This is relevant to jet
pumps because all 49 SPJPs have operated in the “reverse” configuration, meaning that power
fluid is injected down the inner annulus, in contact with the production casing. Since 2010,
CPAI’s practice has been to avoid operating SPJP on drillsites that use sea water for injection,
proactively changing the lift system to gas lift or temporarily shutting-in SPJP wells.
2
Please contact me with any questions or concerns.
Sincerely,
Michael Braun
GKA Production Engineering Supervisor
ConocoPhillips Alaska, Inc.
SPJPs have been used at Kuparuk, primarily to improve flow assurance, mitigating hydrate or
freezing problems on lower productivity wells where they have successfully improved well
uptime and operating costs. SPJPs have not been used for artificial lift in Alpine or other
Western North Slope fields. The selection of SPJP as an artificial lift system for wells has been
limited to solving specific problems, depending on the reservoir and fluid characteristics, as
summarized below:
At Tarn and Meltwater, SPJPs have been utilized for flow assurance, mitigating wax deposition
that requires wells to have paraffin scrapes up to 30 times annually when using gas lift. The
added flow rate and heat provided by the power fluid eliminated paraffin scrapes, improving
uptime, and substantially reducing the operating cost, making production from lower
productivity wells economically viable. The downsides include water handling capacity
constraints at CPF2, and increased metering complexity at higher water cuts with Accuflow test
facilities, because the water used as power fluid is metered together with the produced fluids.
At West Sak, SPJPs have been able to keep lower productivity wells online that would otherwise
suffer from freezing or excessive solids fill problems.
See Appendix A – Jet Pump Fluid Header Pressure History for a plot showing the historic header
pressure values. Note: Inner annulus pressures (in psi) were pulled from our Oracle Technical
Database, and said pressures only date back to 2014.
See Appendix B – Wellbore schematics of wells currently completed with jet pump completions,
including Tarn wells at the time they had a jet pump completion.
Michael
Braun
Digitally signed by
Michael Braun
Date: 2023.07.18
20:24:33 -08'00'
TABLE 1 - Surface-Powered Jet Pump Completion History and Overview of Wells Operated by ConocoPhillips Alaska as of July 2023Well NameFirst Allocated Jet Pump ProductionLast Allocated Jet Pump ProductionCurrent or Most Recent Artificial Lift System InstalledCurrent Production StatusYears of Allocated Jet Pump Production (excl. downtime)Months Using Sea Water Power Fluid (Instead of Treated Produced Water)Casing Integrity Problems During (And Because Of) Jet Pump ServiceProduction Casing and/or Tubing Failure Summary Related to Jet Pump ServiceLast Production Casing Test, If Currently on Jet PumpRig Workover Count During Jet Pump Service (or directly caused by it)Rig Workover Repair SummaryI II III IV V VI VII VIII IX X XI XII1B-101Nov 2003 Dec 2022Surface-Powered Jet PumpShut-In, awaiting RWO 15 1Tubing leak detected in Dec 2022, identified four leaks with LDL, including compromised Jet Pump CMU in Jan-Feb 2023. 4 1/2" L-80 12.5 lb/ft tubing was in service since original completion was deployed in Sep 2003 (19 years of service).12/31/2022 CMIT 1Well currently down awaiting RWO to repair multiple hole in tubing (failed MITxIA). Scheduled for Q4 2023.1C-102Nov 2017 currentSurface-Powered Jet PumpProducing 5.6 0No well integrity issues since conversion to JP in 2017 (5+ years of service)10/18/2021 MITIA 0No RWO repairs since Jet Pump completion was installed during 2017 RWO. New 5.5" internally coated casing and 3-1/2 L80 9.3 lb/ft tubing coated with Tuboscope TK-15XT. Multiple ESP failure RWOs in prior years (2012,2014, 2016).1C-109Nov 2017 currentSurface-Powered Jet PumpProducing 5.5 0No well integrity issues since conversion to JP in 2017 (5+ years of service)10/22/2021 MITIA 0No RWO repairs since 3-1/2 L-80 9.3 lb/ft tubing w/Jet Pump completion was installed during 2017 RWO. 5.5" L-80 Hydr. Casing internally coated with TK-15XT. Tubing also internally and externally coated. Multiple ESP failure RWOs in prior years (2008,2012, 2014).1C-123Dec 2001 Nov 2002 N/A - InjectorConverted to injector in 2003. Shut-in since 20120.9 0Concerns in early 2000's of failed casing due to injection water observed immediately in production fluids (this well has dual injection/production completion). Diagnostics later indicated no wellhead or casing problems existed. Production ceased Nov 2002 and well has then been on injection-only service for ~10 years.01C-135May 2002 currentSurface-Powered Jet PumpProducing 12 1Surface casing damage observed in 2006. Welding package and 10-403 submitted for proactive surface casing repair. Upon further inspection of damaged section of surface casing, it was interpreted that metal loss of the surface casing alone was not enough to correlate with the results of the Magnetic Thickness Tool (MTT) logs, thus damage should be expected also in the tubing string also. Subsequent inspection of the interior wall of the removed conductor shows significant corrosion and wall loss in the exact same area. New 5.5" surface casing and conductor subsequently installed and well returned to Jet Pump service Nov 2008.2011 - IAxOA leak while on jet pump service. 2013 RWO pulled and replaced 5.5" Scab Liner that was installed in 2008.10/9/2021 MITIA 22008: New 5.5" surface casing and conductor subsequently installed and well returned to Jet Pump service Nov 2008.2013: Pulled and replaced 5.5" scab liner installed in 2008.1C-170Oct 2003 May 2022Surface-Powered Jet PumpShut-In. Well has mechanical integrity, but setting jet pump in sleeve has recently been troublesome. Further attempts to properly set jet pump pending.12 02007 corrosion log of 7-5/8” production casing (single casing at the time) showed it was in good condition. Another MTT log in 2009 showed similar results.1/12/2020 MITIA 02007: RWO for proactive inspection of casing string based on corrosion concerns from two Tarn jet pump wells that showed corrosion after seven years of JP service. Casing found in good condition ftare four years of jet pump service.2010: RWO for proactive installation of 5.5" Inner Casing and 2 7/8" Tubing (well was previously single-casing design).1C-172AOct 2009 May 2020 Gas LiftConverted to gas lift in Jul 2020. Shut-in since Nov 2020 due to solids production that upset the plant. Waiting on opportunity to use flowback unit to clean up well and bring online.8.5 02016: Tubing leaks between 860' and 1400' MD after ~6 years in JP service12017: Pull and replace 4-1/2" tubing. Wellview report notes signs of INTERNAL corrosion 1/25/20171C-178May 2003 Mar 2023 Gas LiftProducing on backup gas lift for more accurate watercut monitoring since May 2023 (high watercut well; marginal net oil benefit)13 12014: IAxOA in communication. Failed production casing after ~5 years in Jet Pump service. Passed combo IA,OA12009: RWO for proactive installation of second casing string: Pull 4-1/2" tubing, run 5.5" Casing 2-7/8" tubing JP/GL completion.2015: Pull and replace 5.5" Casing and Tubing. New 5.5" Casing is Polycore Ultratube tie-back string.1C-184Oct 2003 Feb 2016 Gas LiftShut-in, was in backup gas lift service since 2016 due to low productivity and to ensure marginal well remained competitive.9.1 12014: IAxOA communication: Pin hole leak dentified in 5.5" casing during 2014 RWO after ~5 years of Jet Pump service. No extensive corrosion noted.22008: RWO for proactive installation of second casing string: Pull 4-1/2" tubing, run 5.5" casing and 2-7/8" tubing JP/GL completion.2014: Pulled and replaced 5.5" production casing.1D-102Oct 2011 Nov 2015 Gas LiftShut-in. LTSI due to mechanical problems (failed MBE conformance treatment).2.7 0 02013: TxIA communication after 3 years of Jet Pump service. Found tubing leak at 3877' MD. Caliper Logged ~4000' to surface.1Prior to Jet Pump service: RWOs in 2003,2005,2005,2008,2009 to pull and replace ESP2011: RWO to pull ESP, proactive installation of additional 5.5" casing string with 2-7/8" JP/GL completion2014: RWO to pull and replace tubing that caused TxIA communication; proactive 5.5" production casing replacement.3
TABLE 1 - Surface-Powered Jet Pump Completion History and Overview of Wells Operated by ConocoPhillips Alaska as of July 2023Well NameFirst Allocated Jet Pump ProductionLast Allocated Jet Pump ProductionCurrent or Most Recent Artificial Lift System InstalledCurrent Production StatusYears of Allocated Jet Pump Production (excl. downtime)Months Using Sea Water Power Fluid (Instead of Treated Produced Water)Casing Integrity Problems During (And Because Of) Jet Pump ServiceProduction Casing and/or Tubing Failure Summary Related to Jet Pump ServiceLast Production Casing Test, If Currently on Jet PumpRig Workover Count During Jet Pump Service (or directly caused by it)Rig Workover Repair SummaryI II III IV V VI VII VIII IX X XI XII1D-110AMay 2014 Sep 2016 Gas LiftShut-in for low productivity. Previously converted from Jet Pump to Gas Lift in Sep 2016 just prior to drillsite conversion from Produced Water to Sea Water injection.2.3 0 02016: TxIA communication. CMU failed in gas lift operation due to erosion. Well had been ~2 years in Jet Pump service. Patched CMU with pack-off mandrel (POGLM)0Prior to Jet Pump service: RWOs in 2003, 2012 to pull and replace ESP/ESPCP. During the 2012 RWO , the rig accidentally shifted TAM port collar open while retrieving a plug to (succesfully) test the 7-5/8" casing. This caused the inner annulus to fail to hold pressure post RWO operations. Caliper logs and cement bond logs were ordered but found casing with "negligible corrosion damage and in operable condition." The port collar could not be shifted close and multiple cement squeezes were unsuccessful to deliver a competent IA. Well suspended.2014: RWO to patch collar in 7-5/8" casing and install 5.5" production casing as second casing. Installed 3-1/2" tubing with Jet Pump completion.1D-127Nov 2011 Sep 2016 Gas LiftShut-in for gas handling, marginal well. Well was converted to backup gas lift before drillsite was swapped to Sea Water injection service in 2016.4.7 0 0None since RWO to convert to Jet Pump service in 201102011: RWO to pull ESP, install second 5.5"casing as production casing with 2-7/8" JP/GL completion. The caliper recordings indicated the 7-5/8" casing to be in good condition, with the exception of a 61% wall penetration recorded in an area of apparent wear in joint 5, and a 22% wall penetration recorded at an isolated pit in joint 155. Note: Any damage to the 7-5/8" casing was caused during ESP service, prior to Jet Pump service.1D-34Dec 2012 May 2013 Gas Lift LTSI. Low productivity. 0.4 0 0None0Prior to Jet Pump service: 2001 RWO to pull and replace tubing to remove a stuck dummy perforating gun used to drift.Non-rig: In 2011 a Surface-Powered Jet Pump was installed in a straddle over the lowest gas lift mandrel, successfully mitigating the freezing issues the well was suffering from while on gas lift service. However, the net oil benefit from this low productivity well proved uncompetitive even with improved uptime.Non-rig: In 2018 pulled Jet Pump & straddle and secured well due to low productivity.1J-109Sep 2006 Jul 2009N/A, JP pulled in 2009Pulled Jet Pump in 2009 and LTSI since for low productivity. Well occasionally used for reservoir pressure monitoring with DH gauges.1.6 0 0None0None1J-120Apr 2014 Sep 2016 ESP Producing 2.4 0 0None. This well was converted from Jet Pump to ESP to avoid subjecting the production casing to the historically more corrosive Sea Water power fluid when the drillsite was swapped from produced water to seawater injection in 2016.02014: RWO to install Jet Pump Completion2017: RWO to proactively install a rigless ESP system to avoid running jet pump with Sea Water as power fluid.1J-135Jul 2013 Apr 2016 Gas LiftShut-In, awaiting a conformance treatment to remediate a matrix bypass event.2.6 0 0None. Proactively converted to backup Gas Lift in 2016 before swapping drillsite to Sea Water injection.0Prior to Jet Pump service: Multiple RWOs to replace failed ESPs (2008, 2010,2013). RWO to install 4-1/2" JP/GL completion in 2013.1J-137May 2011 Sep 2016 ESPShut-In. Frequent ESP troubles due to solids production. Awaiting RWO to pull ESP and install traditional gas lift completion, which will enable the possiblity of deploying remedial sand exclusion screens.4.7 0 0None. This well was converted from Jet Pump to Gas Lift (and then to ESP) to avoid subjecting the production casing to the historically more corrosive Sea Water power fluid when the drillsite was swapped from produced water to seawater injection in 2016. A tubing patch was deployed while well was already on ESP service.0Prior to Jet Pump service: Multiple RWOs to repair ESP failures (2007, 2009, 2011). RWO in 2011 to install 4-1/2" Jet Pump completion.Non-rig: In 2016 pulled JP and installed gas lift system with a pack-off gas lift mandrel to void running jet pump with Sea Water as power fluid when the drillsite was converted to Sea Water injection.2017: RWO to convert well to Rigless ESP to achieve better drawdown and production (with backup Gas Lift).1J-162Dec 2012 Jul 2016 N/AShut-In, LTSI since Feb 2023 for chronic sanding and plan upset issues.3.3 0 0None. This well was converted from Jet Pump to Gas Lift to avoid subjecting the production casing to the historically more corrosive Sea Water power fluid when the drillsite was swapped from produced water to seawater injection in 2016.0Prior to Jet Pump service: RWOs in 2010, 2012 due to ESP troubles. 2012 RWO to install 4-1/2" Jet Pump completion.2022: RWO to install Rigless ESP system (to increase drawdown and production), accidentally left a 3.5' gap between bottom of seals and top of SBE. RWO not related to any integrity problems caused by Jet Pump service.Non-rig: In 2016 pulled JP and installed gas lift system with a pack-off gas lift mandrel to void running jet pump with Sea Water as power fluid when the drillsite was converted to Sea Water injection.1L-26ANov 2005 Jan 2008 N/A LTSI since 2008, low productivity 2.0 0 0None0None4
TABLE 1 - Surface-Powered Jet Pump Completion History and Overview of Wells Operated by ConocoPhillips Alaska as of July 2023Well NameFirst Allocated Jet Pump ProductionLast Allocated Jet Pump ProductionCurrent or Most Recent Artificial Lift System InstalledCurrent Production StatusYears of Allocated Jet Pump Production (excl. downtime)Months Using Sea Water Power Fluid (Instead of Treated Produced Water)Casing Integrity Problems During (And Because Of) Jet Pump ServiceProduction Casing and/or Tubing Failure Summary Related to Jet Pump ServiceLast Production Casing Test, If Currently on Jet PumpRig Workover Count During Jet Pump Service (or directly caused by it)Rig Workover Repair SummaryI II III IV V VI VII VIII IX X XI XII1Q-02BJan 2006 Mar 2006 N/A Injection well since 2006 0.1 0 0None. Jet Pump sleeve suffered leak and was patched in 2011, ~5 years after being converted to injection service.0None2K-22Dec 2005 Aug 2011 Gas LiftCTD sidetracked: Replaced with 2K-22A & Gas Lift Completion1.7 12 0Note: Sea Water used as power fluid July 2009 and January 2010 onward (total of ~12 months)2006: Failed MITIA, packer leak2009: Failed MITIA, 2nd packer leak2Non-rig: 2005 initial JP installation2008: RWO replaced tubing stacking a packer2009: RWO replaced tubing and stacked another packer. Ran casing caliper survey from 9200' to surface. Casing presumably deemed competent at time of CTD sidetrack.2011 C il d T bi D illi ll P ll d JP t i t ll lift2K-27Dec 2005 Dec 2010 N/A Plugged & Abandoned 3.3 6 12K-27 was briefly shut-in when DS2K was converted to Sea Water injection in Jul 2009, but was left online totalling 6 months using Sea Water as power fluid in 2010-2012.2014: After conversion to gas lift in 2014, the well produced for ~months and subsequently failed MITIA and CMIT. Found leak in production casing @ 8393' MD.0None2L-307Nov 2001 Jul 2007 Gas LiftProducing on Gas Lift since Aug 20075.6 0 0None during jet pump service. Proactively converted to Gas Lift in Aug 2007 to verify formation water cut. Resumed frequent paraffin scrapes after conversion to gas lift that Jet Pump lift system had previously successfully mitigated.Upon completing the CTD work in 2015, tubing leaks were found and had to be patched prior to rig down.0Coiled Tubing Drilling sidetracks in 2011. RWO in 2015, approximately 8 years after conversion to gas lift, aimed at pulling the CTD whipstock left in the hole (possible restriction to flow), performing a fill clean-out of lower lateral, and replacing the tubing that was patched post CTD.2L-311Jul 2004 Nov 2019 Gas LiftProducing on Gas Lift since Dec 202011 0 0None, other than sliding sleeve failed to erosion after ~10.6 years of jet pump service. Converted to gas lift for that reason.0None since original 2004 completion and almost 11 years in jet pump service.2L-313Nov 2001 Jun 2009 N/ALTSI, RWO currently not competitive6.4 0 02007: TxIA due to tubing leak @5142' MD; patched. Ran tubing caliper in 2008 and found "no significant areas of corrosion or ID restriction."2010: Additional tubing leaks found between and 5089' and 5104' MD0Pending RWO to restore TxIA, currently not competitive.2L-315Nov 2001 Aug 2008 Gas LiftProducing on Gas Lift since Aug 20086.7 0 (1)2007: Ran 24-arm caliper in full length of original 3-1/2" tubing completion. Also ran 12-arm MTT from 7533' to 2408' MD: "The caliper recordings indicate that the 3.5” tubing interval logged appears in good condition with respect to internal corrosive damage, with only shallow corrosion and pitting of less than 18% wall thickness recorded throughout the logged interval. No areas of significant cross-sectional metal loss or I.D. restrictions are recorded throughout the interval logged. The MTT log results indicate no intervals of significant overall metal loss (>5%) throughout the interval logged below the 7.625” surface casing. Short intervals of some very minor metal loss are indicated over theintervals 3,802’ – 3,925’ and 4,825’ – 5,050’"Proactively converted to Gas Lift in Aug 2008 to verify formation water cut. Resumed frequent paraffin scrapes after conversion to gas lift that Jet Pump lift system had previously successfully mitigated.Note: Eight years after cessation of jet pump service, an ACX log ran in 2017 showed casing leaks at 6405' and 7413'. Rig discovered another leak between 5821' and 5915' during 2017 RWO.02017: RWO eight years after conversion to gas lift. Casing leaks straddled off with packers, ran new 2-7/8" upper tubing completion. Original 3-1/2" tubing in place from 7488' to 7490.4' MD2L-321Nov 2001 Dec 2018 Gas LiftShut-in, Acoustic leak detect log (2023) found leak at 11356' MD in 4-1/2" scab liner (~40' below jet pump depth, in stagnant IA fluid zone)8.2 0 12006: Casing leak detected. The 3.5” tubing and liner logged from 11554'MD to surface with 24-arm caliper appears to be in good condition with respect to corrosive and mechanical damages. No significant wall penetrations, areas of cross-sectional wall loss, or I.D. restrictions..."2008: Additional casing leaks detected2017: failed IA DDT, installed tubing patch2018: found new leak in tubing/leak in patch. Extended current tubing patch2019: TxIA communication reported, pulled JP and converted to GL12007: RWO pulled 3.5" Completion, performed casing cement squeeze (later proved unsuccessful), ran new 3.5" completion2008: RWO pulled completion, ran 4.5" scab liner, ran new 2-3/8" tubing2L-325Nov 2001 Aug 2008 Gas LiftProducing on Gas Lift since Aug 20086.6 0 02007: 24-arm caliper of tubing from 8441' MD to surface and MTT log from 8434' to 2790' MD. Caliper: "There are no significant Wall Penetrations, areas of [...] wall loss or I.D. restrictions recorded throughout the interval of tubing logged". "The MTT log results indicate no intervals of significant overall metal thinning (>6%) throughout the interval logged below the 7.625” surface casing. [] No extended intervals of a significant downward shift in the overall metal thickness curve are indicated in the MTT log of this well."0None5
TABLE 1 - Surface-Powered Jet Pump Completion History and Overview of Wells Operated by ConocoPhillips Alaska as of July 2023Well NameFirst Allocated Jet Pump ProductionLast Allocated Jet Pump ProductionCurrent or Most Recent Artificial Lift System InstalledCurrent Production StatusYears of Allocated Jet Pump Production (excl. downtime)Months Using Sea Water Power Fluid (Instead of Treated Produced Water)Casing Integrity Problems During (And Because Of) Jet Pump ServiceProduction Casing and/or Tubing Failure Summary Related to Jet Pump ServiceLast Production Casing Test, If Currently on Jet PumpRig Workover Count During Jet Pump Service (or directly caused by it)Rig Workover Repair SummaryI II III IV V VI VII VIII IX X XI XII2L-330Oct 2016 currentSurface-Powered Jet PumpProducing, no ann-comm. issues. Jet pump eliminated the need for ~30 paraffin scrapes/year6.5 0 0None3/18/2020 MITIA 0None2N-303Oct 2001 Apr 2010 N/AShut-in Apr 2010, sidetracked in 20147.9 0 1Apr 2006: 24-arm caliper run in 3-1/2" tubing from 6322' to surface: "The 3.5 in tubing logged appears to be in good condition, with the exceptions of 24% and 22% wall penetrations @6,201’ and 1,445’. The damage appears in the forms of general corrosion and isolated pitting."Aug 2006: Tubing leak @~4994' MD, shallow of the jet pump patched. Apr 2008: 24-arm caliper from 6312'MD to surface: "The 3.5” tubing and liner logged appears to be in good to fair condition, with a maximum wall penetrations of 30% in joint 163 (5,152’). The damage appears in the forms of Shallow Corrosion and Isolated Pitting. This is the second time a PDS caliper has been run in this well and the 3.5” tubing and liner have been logged. A comparison between this log and the previous log (April 29, 2006) indicates no increase incorrosive damage in the 3.5” tubing and liner logged.". MTT: The qualitative log ran in multiple concentric subulars indicates up to 3% metal loss. 2010: Trouble-shot ann-comm (production casing leak). Ran Baker micro-vertilog from 6250' to surface: "72% of tubing with 0-25% penetration, 20% with 25-50%, 8% with 50-75% and 1 joint with 100% penetration @ 5030.3' MD (Isolated pit). Ran Leak detect log: "There was a gradient shift noted on the temperature curve at approximately 5,232’ MD, making this a suspect point for leak activity. Further investigation of this area would be recommended before remedial action is taken." -- All inconclusive02014 Rotary sidetrack @~3600'MD, KOP below existing 7-5/8" suface casing. Sidetrack aimed at improving Bermuda Fm. Recovery and test production of the Purple lobe accumulation. Well converted from Jet Pump to Gas Lift at that time.2N-304Mar 2002 Feb 2018 Gas LiftProducing on Gas Lift since Mar 201812 0 12007: 24-arm caliper and MTT: "The caliper recordings indicate that the 3.5” tubing interval logged is in good condition with respect to corrosive damage. No significant wall penetrations (>17%), areas of significant cross-sectional metal loss (>4%) or significant I.D. restrictions are recorded."2009: 24-arm calliper interpretation: "This is the second time a PDS caliper has been run in this well and the 3.5” tubing has been logged. Acomparison of the current and previous log (November 2, 2007) indicates no change in the internal condition of the tubing during the time between logs". 2009 MTT interpretation: "A comparison of the current 8Hz pass to the previous 10Hz pass (November 3, 2007) indicates no significant change in metal thickness during the time between logs."2011: Mutliple tubing leaks detected led to RWO in 20132013: Post RWO, IA casing leak detected; led to 2nd RWO in 20132018: JP pulled because of concerns around a broken nozzle or had become unseated. Converted to GL1 (repeat)2013: Pull 3-1/2" completion, scrape and inspect 5.5" casing, install new 3-1/2" tubing.2013 Leak point log: " ..there is a substantial temperature shift between 6,180’ MD and 6,200’ MD indicating possible leak activity in this area. Upon taking stationary readings across the suspect area it was noted that there were elevated signals on the LeakPoint™ tool at 6,195’ MD and 6,180’ MD indicating potential leak activity at these two points."2013: Pulled 3-1/2" completion, installed 4-1/2" liner, installed 2-3/8" tubing2N-305Oct 2001 Apr 2007 N/A P&A, sidetracked in 2009 5.4 0 12007: Identified tubing and casing leak 12009: RWO pulled 3-1/2" tubing, ran 5.5" liner and new 3-1/2" tubing completion. Completed sidetrack also. New well uses Gas Lift.2N-309Aug 1999 Mar 2002 N/AConverted to injection well in 20020.4 0 0Very limited time on Jet Pump during short pre-production time of a well intended to be an injector. No failures during production period.Note: casing leak detected in 2023 @~7030' MD, 17' below known tubing leak @7013' MD, ~20 years after conversion to injection service.0None. Pending RWO repair after several patched tubing leaks dusing injection service and the casing leak identified in 2023.2N-318Oct 2001 Mar 2006 N/AWell sidetracked in 2009 and converted to Gas Lift4.4 0 12006: Failed MITIA. TecWel WDL Leak Detection Log from 10594' to surface while pumping down IA observed strong, repeatable production casing leak signature at 5180' MD. In addition, PDS 24-arm caliper run from 10453' MD to surface indicated the following: "The 3.5” tubing interval logged appears to be in good to poor condition with respect to corrosive damage, with a recorded maximum wall penetration of 56% in joint 330 (10,357’). Wall penetrations ranging 20% to 56% are recorded in 67 of the 341 joints logged. The deeper penetrations are recorded in the interval between ~9,000’ and 10,453’, as illustrated in the Body Region Analysis Page of this report. The damage appears in the forms of isolated pitting, general corrosion, and lines of corrosion."12009: Rotary sidetrack and conversion from Jet Pump to Gas Lift6
TABLE 1 - Surface-Powered Jet Pump Completion History and Overview of Wells Operated by ConocoPhillips Alaska as of July 2023Well NameFirst Allocated Jet Pump ProductionLast Allocated Jet Pump ProductionCurrent or Most Recent Artificial Lift System InstalledCurrent Production StatusYears of Allocated Jet Pump Production (excl. downtime)Months Using Sea Water Power Fluid (Instead of Treated Produced Water)Casing Integrity Problems During (And Because Of) Jet Pump ServiceProduction Casing and/or Tubing Failure Summary Related to Jet Pump ServiceLast Production Casing Test, If Currently on Jet PumpRig Workover Count During Jet Pump Service (or directly caused by it)Rig Workover Repair SummaryI II III IV V VI VII VIII IX X XI XII2N-319Aug 1999 May 2009 N/AWell sidetracked in 2014 and converted to Gas Lift7.3 0 1Sep 2009: Pulled JP to troubleshoot. Found casing leak via Oxygen Activation Log: "Continuous logging downward across the interval of 3850-4040 ft at the speed of 30 ft/min shows the casing leaking at the depth of 3946 ft, as indicated by reduction in oxygen activation (OAI) and Compton ratio (CRAT) in near and far detector reading". In addition, the PDS report of a 24-arm caliper run in tubing from 6606' MD to surface indicates "No significant areas of cross-sectional wall loss (> 10%) are recorded throughout the tubing and liner logged". SI well until RWO.12014: Rig workover sidetrack to remediate casing failure. Pulled JP system and converted to Gas Lift2N-332Oct 2001 Feb 2006 N/AShut-in, low productivity. Possible CTD candidate4.3 0 0Low productivity well. TxIA communication, suspect the CMU. Passes tubing test when holefinder set above sleeve. Secured. 0None2N-335Aug 1999 Sep 2000 N/A Converted to injector in 2002 0.3 0 0NoneNote: Well produced only a few months on JP total: Aug 1999 - Sep 1999 and Jul 2000 - Sep 2000. Production test did not improve over gas lift.0None2N-337AAug 1999 Jun 2004 N/ASidetracked in 2007. Initially good production, but declined heavily 2002 onwards.1.9 0 02004: Failed IA xOA bleed and Failed TIFL. Resolved TIFL with gas lift valve swaps and determine MI could not be used to gas lift on well to mitigate IA x OA pressure increases, so converted back-and-forth between Gas Lift and Jet Pump several times throughout its short history. Total time on Jet Pump less than two years.2005 and 2006: Multiple IA bleeds and increasing MITOA failures. Resolved after rotary sidetrack. No tubing/casing corrosion logs found.0Note, unrelated to Jet Pump history: 2007 rotary sidetrack pulling 3.5" completion, running new 5.5" liner, new 3.5" tubing.2N-339Aug 1998 currentSurface-Powered Jet PumpProducing 8.0 0 12018: Tubing leak and casing leak discovered after combined 8 years on Jet Pump service (Aug 1998 - Nov 2005 and Jun 2019 - current, Gas Lifted otherwise). Microvertilog comments: "Numerous Class 4 features detected between the interval [7413ft] - 2743ft. Any joint detecting 80% or higher may have total or near total body wall penetration."5/21/2023 CMIT 12019: RWO pulled 3.5" completion, ran 4.5" scab liner and 2-7/8" JP completion2N-342Aug 2009 Jul 2021 N/AShut-in, very low productivity well7.4 0 0None2009 caliper of tubing and MTT: No significant concerns for corrosion or tubing restrictions and "A maximum overall metal volume loss of 4% is indicated in tubing joint 112 (3,536’ – 3,567’). The [MTT] recordings exhibit apparent isolated event patterns resembling a line of isolated metal loss events with varying width and some broader areas of distribution."0None2N-345Sep 1999 Sep 2000 N/A Sidetracked in 2004 0.2 0 0None. Very limited time on Jet Pump.0None. Sidetracked in 2004, achieved >3x productivity increase over parent bore.2P-406May 2005 Sep 2021 N/A Shut-in. Awaiting P&A 5.3 0 0None. Operated on Jet Pump from May 2005 - Nov 2009, then on Gas Lift. Converted back to Jet Pump in 2020 due to lack of gas lift to Meltwater field.0None2P-415AMar 2002 Oct 2009 N/A Shut-in. Awaiting P&A 7.3 0 0None. Operated on Jet Pump from Mar 2002 - Oct 2009, then from Dec 2013 - Mar 2019 on-and-off on Gas Lift. Aug 2009 Caliper & MTT: "[This was] the first time this well has been logged with a PDS Caliper and the second time this well has been logged with a 12 Arm Magnetic Thickness Tool (MTT).... No significant wall penetrations (> 15%) are recorded throughout the tubing logged ... A comparison of the current 10Hz [MTT] pass to the previous 10Hz pass (July 27, 2007) indicates no significant change in metal thickness during the time between logs."0None2P-424AMay 2005 Oct 2009 N/A Shut-in. Awaiting P&A 4.2 0 0None. Two Caliper+MTT runs (Aug 2009 from 10492' to surface and in Aug 2007 from 10427' to surface): "Acomparison of the current and previous log (August 13, 2007) indicates no change in the internal condition ofthe tubing during the time between logs. ... No significant wall penetrations (> 18%) are recorded throughout the tubing and casing logged... A comparison of the current 10Hz pass to the previous 10Hz pass (August 13, 2007) indicates no significant change in metal thickness during the time between logs ... The MTT log results indicate no intervals of significant overall metal loss ( >4%) throughout the interval logged below the 9.625” surface casing, ranging consistently 2-4% within the interval ~7,180’ – ~8,960"0None7
TABLE 1 - Surface-Powered Jet Pump Completion History and Overview of Wells Operated by ConocoPhillips Alaska as of July 2023Well NameFirst Allocated Jet Pump ProductionLast Allocated Jet Pump ProductionCurrent or Most Recent Artificial Lift System InstalledCurrent Production StatusYears of Allocated Jet Pump Production (excl. downtime)Months Using Sea Water Power Fluid (Instead of Treated Produced Water)Casing Integrity Problems During (And Because Of) Jet Pump ServiceProduction Casing and/or Tubing Failure Summary Related to Jet Pump ServiceLast Production Casing Test, If Currently on Jet PumpRig Workover Count During Jet Pump Service (or directly caused by it)Rig Workover Repair SummaryI II III IV V VI VII VIII IX X XI XII2P-443May 2005 May 2021 N/A Shut-in. Awaiting P&A 3.3 0 0Aug 2009 was "the first time this well has been logged with a PDS Multi-Finger Caliper and the second time with a 12 Arm Magnetic Thickness Tool (MTT)... A comparison of the current 10Hz pass to the previous 10Hz pass (July 29, 2007) indicates no significant change in metal thickness during the time between logs ... The caliper recordings indicate the 3.5” tubing and casing logged is in good condition, with the exception of a 24% wall penetration recorded in an area of line corrosion in joint 172 (5,537’)... The MTT log results indicate average overall metal loss ranging from 1% to 6% over the entire logged interval. Within the surface casing, apparent bands of isolated metal loss, revealed by the 12 radial sensor readings, appears to be more prominent above 700’ and below ~1,500... "Converted to Gas Lift in 2010 and then back to Jet Pump in 2020 when Meltwater lost gas lift supply. Lots of gas lift valve plugging resulting in failed TIFLs, or failed CMIT TxIA's but no patches or repairs needed. 0None3M-27Jun 2005 Feb 2006 N/A Sidetracked in 2017 0.7 8 02007: Three tubing leaks found during e-line logging after less than 1 year on Jet Pump Service while well was already converted to Gas Lift. Note that this well was using Sea Water as power fluid.1Mar 2008: Pull and replace tubing due to tubing leaks, converted to gas lift service.3M-29AJan 2005 Oct 2005 N/ALTSI (stuck jet pump), low productivity0.7 10 0None. Very limited time on Jet Pump, however its entire duration was with Sea Water as power fluid.0NoneAfter being LTSI since 2005, slickline attempted to pull the jet pump on 09/12/2012 and encountered fill above the pump. Attempted to pull jet pump again on 05/28/2014 after several days of bailing fill, but unsuccessful and pulling jet pump. Coil cleaned out to the jet pump on 08/12/2014 and made several unsuccessful attempts to pull the jet pump. Well was left SI and no wellwork has been completed since 01/23/2015. 3H-01A and 3M-28 CTD projects targeted 3M-29's A-Sand.3S-15Apr 2004 Nov 2014 N/A Plugged & Abandoned 2.6 0 02014: At least two tubing leaks below the leaking CMU. SLB LDL log Sep 2015: "Leaks detected below CMU sliding sleeve and in the tubing joint between 7723' to 7753' "From Oct 2007 to Sep 2014 the well was on jet pump, but was shut-in due to a failure of the pump and low production. The jet pump was replaced in September of 2014, but the CMU was found leaking as well as multiple tubing leaks below the CMU. The well was then left LTSI until 2020 when the well was P&A'ed in order to re-drill as 3S-615 in the Torok formation. 0None. Plugged and abandoned for slot recovery at DS3S for Torok Fm. Development (now well 3S-615)3S-24AJul 2004 Oct 2016 N/A Plugged & Abandoned 8.9 0 02016: Two tubing leaks after 9 years in Jet Pump service. Left SI for low productivity.0None. Abandoned in the Kuparuk to re-drill into Coyote Fm. as 3S-24B8
Appendix A
Jet Pump Fluid Header Pressure History
9
Power BI DesktopSPJP Inner Annulus Pressure by Year, Quarter, Month, Day and WELL1000150020002500300020162018202020222260247026351529229024992543224121472488253820962194245825411572222414562565197123852416253315352442254812421468118023911110211322602199238712922293221825251492227721472375194319622506148916531879121315692257252623242525222325431841243819492524182424521444262426772122246721812338WELL1B-1011C-1021C-1091C-1351C-1701C-172A1C-1781C-1841D-1021J-1201J-1351J-1371J-1622L-3112L-3212L-3302N-3042N-3392N-3423S-24AInner Annulus Pressure, psi
Appendix B
Wellbore schematics of wells currently completed with
jet pump completions, including Tarn wells at the time
they had a jet pump completion.
11
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NOTENOTENOTENOTENNNOTENOTENOTEOTTTTEOTETOTNOTENOTENOTENOTNOTENOTEOONONOOTEOOOTTNOTEONOOOOTETTENNOOTENNOTEOTEONONOTENONNNNNNEOTENNNNNONOOOONOOOOEEENOTENNOTOOOEEEE: TR T T TR TR R R R: TR: T TR T: TR T: T: TR R: TR R R: T: TR T T T R R R: TR R RR: : R R R TR R R R: TR R R R R: RR R: TR RREE: EE: EEEE EEEEEEE EE EE: EEE EEE: EE: EEEE: EEE: EEEEE: EE: E EE EE E EE EEEEEE: : : EEE EE : EEEEEEEEE: E : ABB ABB ABB ABB ABB B ABB B ABB ABBB ABB A A ABB A A ABB ABB ABB B BB B ABBB ABBB ABB ABB AB ABB ABB AB A B AB AB B B BB AB ABBBB ABB ABB BBB ABB ABB ABB ABB A A B B A AB A BB A A B B B BB BB ABB A A A B ABB ABB A AB BB BB A A B BBB A BB A A AB B BB BBBB VET VE VET VE VET VET E EET VET V V VET VET VET VET VETET VET ETT VET V VET V V VETT V V VE VE V V V VE V V V V V V V V V V V V V V V V V V V E V E VET V ET EECO GCO GCOCO GCO GCO GCO GCO GCCO O GO G G GCO GCO GCO GCO GCCO GCO GCO CO GCO CCO GO GCO GCO GO G G GCO G GO GCO GCO GCO GCCO GCCO GCO CO O CO G G G G GCOO G GCCO GCCO G GCO GCO GCO GCO G G GO O O CCCO GCCO G GCO GO G GCCO GO O O O G G GRAY RAY RARAY RAY RRAY RAY RAY RAY RAY RAY RRARRAY RARAY AAY Y RAY Y Y RARRAY RAY AY AY Y AY AY RAY RRARARAARAAY RAY AY RAAY AY Y RRAY RAY RAAY RRRAAY AY Y RARAY Y RAY RRARRAAAY AAAARAY AAYRARAY AA / HO/ HO/ HO/ HO/ HO H/ HO/ HO/ HO O/ HO/ HO/ HO/ HO HO O O O O O/ HOOO/ HO HO/ HO O O OO HO/ HO/ HO O/ HO HO/ HO/ HO/ H/ HO H H O HO/ / / HO/ H H OO/ / HO/ H/ / O O OOOO/ O OO/ H H H O OOORZT RZT RZT RZT RZRZT ZRZT T ZT RZT RRZT RZT RRRRZRZT RZZRZT RZT T RZT RZT RZRZRZRRZZRZRZT T T RZT RZRZRZZZZRZZZRRZRZZRRRRRZZRRZZRRRZZZRRZRZZRRZRZT RZT ZZZZ / 4 / / 4 / 4 / 4 / / 4 4 4 4 / 4 / 4 4 / / / / / 4 / 4 / 4 4 4 4 4 / 4 4 / 4 / 4 4 4 / 4 4 4 4 / 4 / 4 4 4 / / 4 4 / / 4 / / / / 4 1/1 / / 1 1/1 1/1 1/1 1/ 1 / / /1 1 1/1 1/ 1 1 / / /1 1 1 1 1 1/ / / 1 1/1 1 1 / 1 /1 / / / / / / / / / / 1 / 1 16"" 6"" 6"" """ 6"" 66"" 6666666666"" 6666666"6"" 66" 6""" 6"" 6" 6"" 66""" " " " 6666666666666666666666666 5M 5M 5M 5 5M 5M M 5M 5M M M 5M 5M 5 5 5M 5M 5 5M M M 5M M 5M 5 5M 5M 5M M 5M 5M 5M 5M M M 5M 5M 5M M M 5M 5M 5 5 M M M M 5 5 5 5 5 M M M 5 5 5 5M M 5M M M M M M 5 5 5 5 5 M 5 5 5 5 5 M M w/ Pw/ P/ w/ P P P P w/ Pw/ / Pw/ P P P P Pw/ Pw/ / / Pw/ P Pw/ P Pw/ Pw/ w/ P/ P Pw/ Pw/ www/ Pw/ / w/ Pw/ Pw/ Pw ww w/ w/ ww/ w/ Pw/ / P P Pww/ w/ / w/ Pw/ P P P Pw/ Pw/ w P Pw/ Pww ww / w / ww ww PENETENETENETENEENETNNETEEENETENETENETENENETENEENENNEETNETENETENETTEENENETNNEEENETTTENETENETENETNNNNNNNNNEENEENEENEEEENNNNENEEEENEENENEENEENETEENETENTRATORATORATORATORATRATRRARATORATOOATOORATORATORATORATORATORATORATRATORATORATOARAATRATOATORATOOATORARATRATRRRRAATORATTOTRATORATOORRARATORATOARATOOATORAAAAAARRRRAAAARRRAAARRAAAATOOOAATOAOAAOORATRROOOR WIR WIR WIR WR WR W W W WR WI IR WIR R WR WR WR WR WR W W W W WR WIR R R R WR R WR WIR W WR W W WR W WIR W WR WR WR WR W W W WR W W WR R R W W WR W W WR R WR R WR W WR WI W W W W W W WR WI W W RE 9RE 9/RRE 9/RE 9/EE9/RE 9/RE 9/RE 9/E9/RE 9RE 9/RE 9/RRRE 9RE 9/9/RE 9RE 9RE 9/RE 99/RE 9//RE 9/RRE 9/E 999/9RE 99/RE 9/RE9RE 9/RE 999//9/9RE 9/RE 999RE 9/RE 9EE99//RRE9/RE 99/9R9//R 9R9/RREEE9/E 9 8/208/20/8/2/208/208/202/228/20/2008/208/28/208/208/28/28/2088/208/20208/228/208/2008/2000888/2888//8/228/2020202088/28/208/20/208/208/208/2088/20/8/20208/20/208888/208/20888/288/2028/2088228828/8/20822088/2088882008/222200003 ni0303 ni03 ni03 ni03 ii003 ni3303 n30003 ni03 n003 n00303 ni303303 n03 n3303 ni03 n0303 ni303 nii00300303003 nni3nnn03 ni0303 n33ni03 ni3303 n33ni33033003030003003033300033003 n0333nininamnamnnamnamnamammnamamnamnamnanaaamammamnamnamnnamnamnamnaaaamnamnammmammmmnnnaamnammmnnamnamamnamnamamnamaanaanamanamaananamnamnamaaaaaaa
CasCasCasCasCasCasCCCCCasCCCaCasCCCasCaCasCCCCasCasCasCCCaCCCCasCasCaCCasCCCCCasCCaaasCaasCassasCasCCaCCCasCaaCasasssCasCasCasaCasCassCaaaasasssasCasssCaaassaasassssaasssassCasCaaaassCasaaasssCCCCaaasasssssCaaassssCCCCasCasasssCCCCCaaasssssCaasCaCCCCasCCaaassCCasaassingingingingiiiiingiingingingiingingingginginingingingngngngnnngnnggggingngnngnnnggnggggiingnnginingnngnggngngngngngggggngnngggggngnnnnggnggggngggingnggiinggggggggggiinnnnngggggggggggggggggggggggggggggggg StStStStStStStSSSSSSSStSSStStSSStSttSSStSSStttSStSSSSStSSSSSSSStStttStSSSttSSStSSSttSSSStSttttSStSStStSSSSSSSSSSSSSSSSSSSSSSSSSSSSSSStSStSSSSSttSSStSSttSStStttrinrinrinriniiiirinririnriririniniirininiirinrinrinrinrinrinririnnnnnnrrrrinrinriinnnnnnnrinrinrinrinrinirinnnnnnrinrrrinnnnnnrrrrrrinnnnrnnrnnniinnrirrinriiiinnnngsgsgsgsgsgssgsggggsggggggsggssgsgsssssggggggsssssggsgsggsggsssgsgsgggssgssssggssssssgggsgssssgggsssgssssgsggsssggggsssgssssssgsggsssggsgggsssggsgggssssgggggssssgsggsssgggggggggggggggggggg
Csg DCsgCsg Dsg DDCsg DCsg DCsCCCCCsg DCCsCsg DCsg DCsDCsg DCsg DCCsg DCsg DCsg DCsgCCCsg Dsg Dg DCsg DCCsg DsCsg DDCCsCsgsgCssggCsgCsg Dsg DCsg DCssg Dsgsgg DCsg Dsg DgDsg Dgsgsg DssgDCsgsCsgDCsgsggDCCsg DCCsggDDggCsgCsg DCsggggggges OD es ODes Oes ODsODes ODes ODes ODOOOsOes ODsOsOes ODes ODODsODODOOes ODsODes OOes OsODsODes ODsODes ODes ODOOODOes OOes ODes ODes ODODeeessOODOeseessOses Oes OOes ODeesssODsses ODes ODeeeesssODsOes ODes OOeessODeessOsODDeeesOOODDesOesssODOODD(in) I(in)(in) I(in) I(in) I(in) I(in)(in) Iin) II(in(in) Iin(in))(in) I(in) I((in)iinin)(in)(in) I(in()(in)(in)nnn)n(in) I(innnn(in(n)))((()iin) In)I)I()(()()(())D (inD (inD (inDD(inDD(in(D (inD(D (inD(inD(D(in(iD (inD(inDD(inD (D(inD(in(((iD(D (inD(inD((ininnDD(((innnD (innD(iD (DD (iDDDDD (DD (inD(((iiinnn(((()Top )To)Top Top )Top)Top)TTTop)Top))Top)))TopTTopTopTTop)Top))Top))Top)TopTo)Topopopppp)Top)o)Topooooop)o)Topop)Toppppoooopoo)Toop)oop)Top)Top oop))Too)Topp))(ftKB(ftKB(ftKB(ftKBftKftKB(ftKB(ftKB(ftKBKBB(ftKB(ftKB((ftK(ftKB(ftKBtt(ftKB(ftKB(ftKBftKBBftKBB(ftKBfftKftft(ftKBKK(ftKBtKBKB(ftKBftK(ftKBfftKBKBKBB((f KtKBBBtKB((BKBKBKBBBKBBKKB(((tKBBBBBBBBftKBKB((((()))))))))))))))))))))))))))))))))))))
Set DSet DSet DSet DSet DSet Det Det DDSet DSSet DSet DSSeSet DDSSet DSettDtDSet Det DSet DSeSet DSSet DSSSetet DSet DSet DSetSetSet DSSSSet DSettSet DDSeSeSeSeSet Det DeDSSet DSeDSSSSeeSet DSSet DSDettSSeDSSet Deet DtDSet DDDetSSeeDepthepthepthepthhtttepthepthepthtepteptepepthpppthptheptheptheptheptppepthpteptheptheptheeeepeptpptepttepthhhepeppepthheeepppeeepppeepthpeeepthepphh
(ftKB(ftKB(ftKB(ftKBftKB(ftKBKB(ftKBB(ftKB(ftKB(ftKB((ftKBf(ftKBftttKKBKftKBKB(ftKBKB(ftKB(ftKftt(ftKBKftKBftKBBftKB((ft(K(ftK(ftKBftf(ftKBtKK(ftKBBftKB(ftKfKK((ftKB((KB(ftKBKKBBBBBKBKBB((ftKBB(ftKBBBKB(fftttKKB((()))))))))))))))))))))))))))))))
Set DSSSet DSet DDDSet DSet DSet DSSet DSeSSSet DDSet DSSet DSet DSet DtSetSet DSet DSet DSSet DSet DSet DSet DSetetetSet DSet DSet DDSSet DSetDSet DDSet DSet DSSet DSSetet DetetDSet DSet DSeeettDSet DDSet DSSeeSSet DeSet DeeDSSeeDSt DSetDeptheptheptheptheptheptheptepthptepthepthpthteptheeptepthepeptppeptppththhheptheptheeeppthhpthppheptheptheeeepthpepthpeeeppeeptheeppthteepteptepteppth
(TVD)(TVD)(TV(TVD)(TVD)TVTVD)V(TVD)VD)VD(TVD)(((TVD)(TVD)TV(TVDV(TV(TVD)DDD))(TVD)TTVDTTVD)TTVVD(TVD)VD))(TVD)((TVTVVDTVDDVDV(TVD)(TVD))D))V )((V )VVDVVVVDDDDTVDVVD))(()()(ftK(ftK(ftK(ftKftK(ftK(ftK(ftKK(((ftK(fftKftttK(ftKK(ftK((ftKfftKftKftt(ftKK(ftK(fftK(ftKffttKtKKffftKfK((KKK(ftKKKK(ff(fttK(ftKKK(((((B) Wt/B) Wt/B) Wt/B) WtBB) Wt/B) WtB) WtB) Wt/)Wt/Wt/B) Wt/WtBB) WtB) Wt/B) Wt/)Wt/)B) Wt/)WB) Wt)Wt/)WWB) Wt/B) WtB) WtWt/Wt/B) WB) Wt/B) WtB) WtB) WtB) Wt/B) Wtt/tt/)Wt/WWB) Wt//B))Wt)WWWtWt/B) Wt/WB) WB) WWt//B)WWBWWB) Wt/BB WWB)))WWB) WBBBB)W /t/B) Wt/WWWW)))Len (LLen (Len (en (LLen (Len (en (en ((en (en (en (Len (Len (eenen (n(en (en (een (en (eenenennnenen (eennneLennn ((eLeeeee (en (enLeneneennLen (eeen (nLeeeeeeLene ((((((lb/flb/flb/ftb/ftb/ftb/ftlb/ftlb/ftb/ftlb/ftb/ft/b/ff/fb/fftttlb/ftb/lb/ftb/ftftb/ftb/b/f/fb/fb/ftb/ftb/ft/f/ftftb/ftlbbb/ftt/ftbbb//ftb/b/bbb/bb//lb/flb/fbb//tt)Grad)Gra)Grad)Grad)GradGrad)Grad)Grad)Grad)GradGGG)Grad)Grad)GGradGGradG)Gra)Gr)Grad)GradGGradGrG)GradGGGdd)G)GradGGrarraGradGraad)Graddad)Grad)raaad)Gra)Gradradd)GradraGraddGradGGradaGraaGddGa)Gradda)GGr)GradaaadeTop eTopeTopeTopeTopToToeTopeToeTopeToTeTopeTopeToeTopTeTopeTopTeeTopeeeTopoopeToppeTopeTopeTopeTopeoopeTopooppToeTopoeeeopeTooeToeeoeTopopopeToeooeTopeeTopepThreaTThreaTTThreaThreahreahTThreaThreaThreaTThreaThreaThreThreThreaThreaThreaThreahreareahrehreahrrrreaeeaeeaaeaahreahhreareeaeaahreaeaearearehreaahreeeeaeeeaThreaaeeaahrehreaaeaaThreaeaeaadddddddddddddddddddddddddddddddddddddddd
CONDCONDCONDCONDCONDOONCONDCONDCONDCONDCONDCONDCOCONDCONDONOOOCONNDCONNONDCONDCCONCONDCCCONDCONDCOONDCONDCONNDCONDNCONONDCONDCONDOONDNDCONDDNDCCCOOOODONDCONDCONDOONNONDCONDCCONDCONDCONDNNNCCOCONONNCCCCOOCCONOOONDONDNNCCCOOODCONDCOUCTOUCTOUCTOUUCTOCUCTOUCTOTOUCTOUCTUUCTOCUCTOUCTOCCTOUCTOTOTCTOCTOCTOCTOOUCTOUCTOUCTOUCTOUCTOUCTOCCTOCTUCTOCTOCTOCUCTOOOCTOCTOUCTOOOCOOOUCTOCTOOCTOCCCTOOUCCTOUCTOCOUCTOOUCCTOCOOOOUOOUUCTOUUUCCCOOOUUUCCOUCCCOOR161R161R16R1616 1R161116R1616R16616 1R16R161R161R161RRR16R1R166661R161RR161RRR16661R161R16R1616R16116 16RR1166R166R16616 1R161R16 11R1611R16RRR16R16R6RRRR6RRR66RRR66666666665.065.065.065.065.0506065.06.0666555.065000606506065.06.060665.065065.065.0605.0606065.065.05.005.0506506506.065.06065.066065.055550665.065.060655555.06665.066506666065.066506555.006665566 34.734.73434 734.734.734.774.734 734.734.7333434.734734.74734 7334 734.73434.73343434.734.77334 73343434.77344734.7434.74.73334.734 7344344733347344734734.334.7333 148.148.148.148484481148448888848848.148.148.148.14148.488481488888148.48148.1148.14848.4811148.14844844888484884844848888448.888414848484488148888848888 014801480148001480148014801480148440140148880148014801480148014801480148148014814448884801401480140140140140148014801480148888014801481401480148148848000148014148140114401480001480148484888488848801488848480880088.0 62062062000.0 62062.0 6266206220620606200660620626.0 6222626206206200620.0 606262062626262622.0 62062060626.0 62062066622006260622006.0 266062026220022006060666222..0 266606.50 H50 H505055000050.50 H50 H.50 H550 H.50 H50 H50 H50005000.50 HH50 H50 H50 H.50 H.5000050050 H0H50 H550500.55500 H5050 HH55555H55.50 H.0 H.5505050050 H550-40 W-40 W-40 W440 W-400-40-40 W40 W40 W40 W0W0W-40 W-40 W40 W40 W40W40 W-40 W40 W0WWW40 WW40 WW0-40 W0W000W40 W40 W-40 W0W-4040 W40 W40 WW40 W40 W40-40 W-40 WWW440 WW40 WWW40W0W0W0440 WWW4WWWWW40 W4WW-40 WW404440 W0WW0W00ELDEELDEELDEELDEEELDEELDELDELDEELDEELDEELDEELDEELDDEEELDEELDEELDLDLDEDEDEDDEEDEELDEDEEDEELDDDDEELDLDDELDEELDEEEEELDEELDEEELDEELDEELDEELDEEELDDEDEDDLDEDDEDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDD
SURFSURFSURFSURFURSURFSURFSURSSSURFSURFSURFSURSSURFSURUSURFRFRFURFSSURFSURSURFSURFSURSURSURSURFRFSURFSSURSURFRSURSURFSRFSSSURSSSSURFSURFSURFSUSRRRRFSUSURSSSSSURRSURSURURURSSUSRRSURURURSUUUSSSSUACE 1ACE 1ACE 1AACE 1ACE 1CACACE 1ACE 1ACE 1AACEAACE 1ACACEACE 1ACACCE 1ACE 1CECECEE1E1ACE 1ACE 1CCACECE 1CE 1ACECECE 1ACEACCE 1ACCE 11ACCCACE 11AAACCE 1CCE 1ACAACACACACAAACEACCEACACCCCCACACCAAC0 3/0 3/0 3/0 3/0 3/0 3/0 3/ 3/0 3/0 3/0 3/0 30 0 3 3/0 30 3/ 3/0 3/ /0 0 3/0 30 3/0 3/0 30 3/ 3/ 3/0 3 3 3/ /0 30 30 3/0 30 3 /0 3/0 3/ 3 3 30 30 3/ 3 3 3 /0 30 0 3/0 /0 3/0 /0 30 30 3/ /0 0 3 3/0 /0 3 30 30 30 3 3 30 0 49.949.949.949.949.949.949.94994949.949944994999994999949949.949.99.9494949.949.999.949949.949.949.949.99949.949.949.94999.9949.9499949.949.94499.99999.949.949949.949.949.94999499449.999.949999949.944449.999449949.999999.9999.99528.528.528.528528528.52528.5285528.528528.5528285282822852528852852852852822528528222528528288288528525252852828852822528528525528528852852852855252852852855252882828555285288.528582233,033,033,033,033,033,033,033,33,033,033,3333033,03333,0333,030033,03,033,033,033033033033,033303033,033,033,03333,03,03333033033,03,033303,0303033,033333033333,0333,000003330333333,0333,03,03000333,0,80.480.480.4880.480.80.480.480 4808080 4808040080 480048880.480880.480.480800480 480.488080080.480.48080.480.480.480.4800.480 4480 480044880.0.4880 480.48488808804480.4488000880880880080 2,192,192,192,192,192,192192,192,192192,1922,12,192,19999222,19221922,1922,112,1992,1992192199221922191,192,192,192,19212119921992,192191,19,192,1992,199212,199,192992,9292,1922,1992,,9992992,99,,9.7 49.7 49.7 49.7 49.79.7 49.7 49.79.7997 497 497 4999.79.7 479.7 49.7 497.7 49.7 449.7 49.79.797 499.7 499797749.7 49.7 49.7979.7 49.77999979.7 49.7 497 499.7 49.7 4499.79997 44997949949.779.7 4.797799997 0.500.500.500.500.50.500.500.50.500500500.500.5.50.5.500.5000000.50.500500.500.50050.500.500.50005000.50550.500.500.50.500.500.500.500.0050.50000.500055555555050.500050050.5005000.500.5550005050 J-55J-55J-55J-5555JJJ55J-5555J-55J-5J-55-5J-5J-55-55J-55J-5555555J-55555J-555555J-55555555J-5-55555J-55555-5----55-55-J-5555J55555555J55J5555555 BTCBTCBTCBTCBTCBTCBBTBTBBTCTBTBTCBTCTCCBTCCBTCBTCCCBBTCBTCBTCBBBTCBTCCBTCBTCBTCCBTCBTCCCBTCBBTCCCBCBCBTCBTCBBBTCBBCBTCCCBTCBTCCCCCCBBCCCCCBTCC
WINDWINDWINDWWINWWINDWINDWINDWWINDWWINWINDWINDDDWINDWINWINDWINWINDWINIWINDWINDWINDWINDNDWWINDWWINDWINDWINDWINWWINDWNNDWINDWNWINNNDWWINDWINWINDWIWWNNNWWWINWWWWNWINWWWNWINDWWNDDWDDIDIIIOW DOW DOW DW OOW DOW DOW OW DOOW DOW DOW DOW DWOW DOW DOW DOW DOW DW DOW DOOW DOW DWW W OW OW DOW W D DOOOW WW OW DW OW D DOW OWOOW W W DOW D DOOW OW D DW W WWWWOW DW OW DW W DOOOWOW W DW DW DOOOW D-SANSANSASAN-SANSASSSANSANSASANSANSSANSSASA-SANSA-SANSANNSSSASSSANSAN-SAN-SANSASANANSANSSANANSSASASAASAANNNASANSAANANN-SSSSASANNANNSANSSSSAANSAAAD86.D86D86.D86.D86.D86.D8686866D86.D8686.88688668666DD86.D8686868D86D86D86D8686DD86.D8686D86868866686DD8686DD866D866886888668668D86D88666D8686888666D86D868D8886888600 6,00 6,00 600 6,00 6,00 600 6,00 6,00 6,00 6,6000 60060600 600 600 6,06000 600 600 600 6,00000000000 606,00 60600000 60600 60000666606600 66000660000600006600666660660006600 6,00000 6000600066,867.867686786786867686867886868686867.8686668667867867867886686686786786767.7866767867867677867886788686788688676867788866787786888667866786 06,806,80606,806,806,806,806,806,806806,806,806006,866,80006,8006,800606,86,86,86,806,806,86,8806,8068006,8006,86606,86,06,806,8066006,86,806,88666,88068886806,8806,86866806,80886680600668,,77.077.0077.007.077.077.077 0077 077.0000777 077.077.07777 007007.0077.077770777.000777 070777777777077.070077777.007.07777.000000 3,663663,663,63,6663,663,663,6636636633,663,663,663,63636666663663,66636663,63,663,663,63663,6666666366366663,663666663,666663,6663,663,63,6666,66,66633663,663,66636,6663,663666666,6663,6636363663336663,6,,,,2.7 227 222.7 22.7 22.7 22.72727 227 227 22227 227 22.7 222.727 22.7 2722222227 227 2222.7 22.72.7 22227222.72.7 22.7 2227 2227 227 227 27772727 227722227 2272722222222772277722.7 29.709.709.709.709709.709.709.70709709979.79.709709.7099709.709.709.709709.709.709.70999.70997097007009.700909.709.7999.779.7097009.700709970779.709770997097099799707009.709.70099
PRODPRODOPROPROPRODPRODPRODPPRODPRODPRODRODRODRODPRODODRODDPRODPPPRODPRORRPRODPRODROPRODODORODODDPRODPROPRPRRRORORRODOODPRPROOODRODPRPRORODODPRORODOPPRPPPPRODPRORRODODRROODPRRODORROOOODDDOOODUCTIUCTUCTIUCTIUCCCCUCTUCTIUCTIUCTCCTCCCCCCTUCTICCCCUCCCUCTUCTCTCUCCCUCTICCUCUCUCCUCTCCUCUUCUUCCCCUUUUCUCCCUCUON 7 ON 7 ON 7 OOOON 7 NON 7 ON 7 ON 7 ON 7 OONNON 7 ON 7 OON 7 ON 7 ON 7 ONNON 7 7 7 ON 7 ONOON 7 OOO 7 ON 7 ON 7 ON 7 ONON 7 NNN 7 ONNN 7 OON 7 ONO 7 O 7 ON 7 OOOONNN7 ONOOON 7 7 7 NOOOON 7 OO 7 7 OOO 5/8 65/8 65/8 6865/85/885/8 65/8 65/8 6865/8 65/8 66/8 65/8 6//8 65/8 65/8 65/8 686865/8 65/8 6555//8/86886885/8 65/8 65/8 65/8 665/8 65/8/8 65/8 66/8 65/8 65/8 6686885/8 65/55/85/8 65/88865/8 6655588/8 665/5 6685/8 66/8/8 686666586686588656.87 2.87 287 2887 287 2.87 2.87 2.87 2222.87 288787 2878787 287 22287 27287 287 287878787 2.87 2777287 287 2287 287272287 2287 287 287 28787 228888772287 2.87 2228887722888787 2878722288872822.8 7.1 77.1717.1 77.1 77.17.1 717.1 77.1 777777.17.1 7.1 77.1 77.1 717.1 777.1 77717.11 77771 77717771 7777.1 777777777771777,388,388388383883,388,38888888,38838388388388388,388388388,38838838888883888,388338388,383,38838838388,388388,3883883388388,3838838838888888,38838,3888838888838838833888838388838888888838888338888,388,,.9 3,.9 3,93.9 3,93993,9393,93,.9 3,3.9 3,993993,9.9 3,333399393993,93,99 3.9 3,9399339993,3939393993,33993933993,393,993.9 339999393,99 33,,730.3730373073000730730.730.730.73073307303033730730730730.730.7773730.30733030307303030073730300073030077300300730.330073037700737303000.7733330330 329.329.33293293329.329.329329.329.2929329.329329.33329332932929.3292329293299329329329.3333293293293292922329.329232999323329.22222932329329923299993293229329932932939922922939939933329.3 70 L-70 L-70 L-70 L-00L-00070 L-L70 L-70 L-70 L-70 L-0070700070 L-L70 L-70 L-70 L770070 L-707070070 L-700L-00070707770L-7 --7000 -70770000 L70 80 BT80 BT880 BT8080 BT0BT0B80 BT80 BT80 BT80 B880 B80 B880880 BT80 B80 B80 B8080 BT80 BT80 BT80 BB80 BT80 BT8080 B808000B080 BBT80 BTBT80 B80 BT80 B0BT80 BTB0BT80 BT0BB0BT800BT880 B8880 BTB880 B0BTBB8080 B80808800B0B C-MCCCCC-MC-MC-MC-MCMC-MC-MC-MC-MC-MCC-MMC-MC-MCC-MCC-MC-MC-CC MCC-MC-MCCMMC-MMC-MC-MC-MC-MMMMC-MMMMC-MC-----MMMMC--MCMCCCMMMCCCC
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Set DSetSet DSeSSet DSSet DSet DSetet DSet DSet DSet DSSet DSSSet DSSetSStetSet DDSet DSSet DSetSSet DSet DSSeeSet DtDDSet DSSet DeeeeeDSet DSet DSSeettSeSeSSet DSeet DeSSeSSSeSSeeDSSSeSetetttDDStepth ptepthepthepthepthtepthepthtepth eptheptheptheptppeppepteptthhepth eepepthpeptheptpephepteepthpptepththheepphpthhepheepeptheeeptteepptttp………………………
6,826,826,826,826828826,88826,8282266,826826,86,82826,826,82686,826,8268826,8286,82826,82826,8222682686,8266,828826822282266,8266,82686,82682,826,86,8288226,868682886,8686888888226,8266,86,8688,8266,,8,,,9.69.69.699.69.69666699.6969.69.699.6969.6966669.69.69.699.69.69.6969.669.69.69.669.69.699966969966999969.69.66999699.6699
Set DSet DSSetSSeSSSet DSet DSet DDSetSetSet DSet DtDet DSetSSet DSet DSet DSSSet DSeStDDet DSet DSSSetSSet DSet DettSet DSet DSet DSeeeeteet DSSeSeetSetSeSetSeeSet DeeSet DSStSeSSSeeeDSSSetDSSet Det Depth epth eptepthtepthepth epteptheptheptheptheptheeeppth epthpptheptepth tthepthhhepteeepeepth pppp hhheepepthpepth theeppeptheeheepeepeppptpthepppttteepptep……………………………
3,653,6533,3,653,653,65636,653,63653,6536563,6533,653,63,653,63,65653,65363,653,656,665533653653,663,653,6653363,666336556563,6553,6536563,65536365553535333,6565665555536656,,,0.90.90.90.90.900.90.90.990.900.90.90.90000.90.90990.909990000.999990099099900.900.9090.90990.99999999099999099
StrinStStrinStrinStrinStrinStrinStrinintrinSStrSttSStrSStStStStrinStrinSStrinStStrStrrinrriniStrinnStrinStrinSStrinrStrinnnnStrinSStrinStrinttrnnSSnStrinSSSSrStrinStSSttStSrg Ma…g Ma…g Ma…g Ma…gMa…g Ma…g Ma…g Ma…gMag Ma…gMgMag Mg Mg Ma…gg Mg Mag Ma…gMag Ma…gMagMagMaggMaMMaMaaagggMagggMMMg MaMaagMg Ma…MaaMMag Mga…gggg aaaaaMMMa…ggggg
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L-80L-80808808-8-80080L-80L-8088000L-80880-80888080800808080888000-80L-80L-80008088808008888888L-800080088L80LL8888000
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23.123.2323.123.1223.12323.123231312223.123.12323232323.13123223 123.123.123323.133222232323212322323233323.223.1232232323323313 23.1223.12323.12322323323.1122323.123.12232332323.123 12223.23.123.133323323 12322233.32231123.13232323.222233233.2333 1223.3 0.000.000.00000.000.00.000.000000.00.000.000.000.000.000.0000000000.000.000000.00000000.000.00000000.000.000000.000000000000000000.000.000.0000.00.000000000.000 HANGHANHANGHANGHANGHANGHANGHANGHANGHANGGGNGHANGNGHANGHANGAANGHANNGNNGANGHANGGANGANGGGAANGANNNGGHANGANGANGANGAANGANANGANGGAANANGGNGANGGNNANGNGNGANGANNNNNANGNNNHANGANANGGGGGGGGGER 10ER 10ER 10ER 10ER 10ER 10ER 10R1010R10R100R10ER 10ER 10R10ERR10R1000ER 10EER 10EER 10RRR100ER 100ER 100R111ER 10ER 1000R100ERRRRRRRRERRRR0R10ER 10R0000EREER.000.00000000000.0000000000000000000000000000000000.000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000 VETCVETCVETCVETCVETCVEVETCVETCVETCCVETCCETCETCVETCVVETCVETCVETCVVETCETCCETCETCCCVETVETCVVETCTCVETCCCCVETCVVVETCCCVVVVCCVETCVETCVCVVVEVVVVVVVVVETCCVCCCCO GRO GRO GRO GRO O GRO GRO O GO GRO GRO GR GRO GRO GR GRRRO GRO GRO GRO GRO O G GR GRO GRO GR GRO GRO GRO O O O G GRO G GR G GO GRO GRO O G GRO GROO GO G GO GRO GO GR GR GR GRO O O GRRO GR R RRO GR GR RO GO GR GO ROO G GR GO O G GRAY TAY TAY TAYAY AY TAY TAY AAAAYAY Y Y Y Y TAY T TAY TAY AY AY TAY AY AY TAY T TAAAAY Y AY AY AAY Y Y Y Y AAAY AYY Y Y AAAYAY Y AY AAY TY Y AY Y Y Y Y AAY AA UBINUBINUBINUBINUUBINUBINUBINNUBINUBINUBINBBINNBINBBBUBINBNBINUBINNBINBUBNUBINUBINUBBUBINNBNUBINNNBBBINNNBUBINBINNBNNUBINNNNUBINUBUUUUBNBBUUG HAG HAG G G G HAG HAG HA HG HAG HAG HAG HAG HAG HAG HAG G G G HAG HAG HG HA AG HAGG G HAG HAG HAG G HAG HAG G HA AG HAG HAG G HAG G HAGG AG HAGG AG HA H HA AG AGGGG HAG AG G AAG HG NGERNGERNGENGERNNGERNGNGERGERGERGGERGNGERRNGNGERGNGERGEGGERNGERGGERNGERNGERNGERGERGERGEGNGERGERGERRRNGERRGRNGERNNNGGGERGERGNGERNGERNNGERNNGNGGERGGERNNNGERGERNNNGNGERRRNGRNGERNNRNGGGGRNGG 4.504.504.50444.504.50504.5050500044.5055004.504504.50504.504.504.504.50504.5000.504544004550555.505045045455544500454.504.54.04050505555500000000000000000000000000000000000000000000
2,662,662,6626222,662,66662,66662,666622662,662,662,662662,6662,6662,6662,666662,662,62222662,662,662,666266662,662226626666662,66226,66666262,66662,6666666666,6666266266266262262666,,5.1 25.1 25.1 25.1 251 2125.1 25.1 251 25.1 2225.1 2125.1 225.1 225.1 251 255.1 25.1 251 251125.1 25.1 25.1 222525.1 251 21125.1 2251 25225.1 255.1 2522222555.555 255.1 ,0310303031,03,0310331,031,0311,031000300003033331031100,0030,0333,03,030331100310313,033303,03,03103110303,0313033030,033300303,,,.7 66.7 66.7 666666766667667667666766766766676766666766766666666.7766667676667666667666676676666666776667667676676666666667766666667666677666666666.85 N85 N.85 N88.85 N.85 N.85 N.85 N88885 N85 N8.85 N85 N885885 N855N85 N.85 N8.885 NN85 N8.85 N88NN85855855NN8.8885585855 N85 N5N85 N885585 N85 N.88855558855855855 N8NIPPLIPPLPPPPLIPPLPPPPPIPPPPPPPPPPLIPPPPPPPPIPPLPPPLLPPLIPPPPPPPPPPPPPPPPPPLE5.2E5.2E5.25.2E5.2E5.255.2225.252E5.2E5.22E5.22EEEE5.2E5E5.2E5.22E5222E5.225.2525.22EE52E5.2525.25.2E555.22522225552E510 CA10 CA10 CA10 C010 CA10 CA10 CA10 CA10 CA10 CACAC0CA0C0CC0CA10 CA110 CA10CA0C0CA10 CA0CA00CCCA0C10 C10 CA000CA0C0CCACCA0CA0C10 CCA10 C0C0CA0CCAA0CAACAAAAAA00CAA00CA0CAC0CC0CACMCO MCO MCO MCOMCO MCO MCO MCO MCO CO MCO MCO O MCO MCO CCOMCOCOCMCO CCO CMCO MCO MCO CO O MCO MMMCO CO CCO CMCO CO CO O MCO MMCMMCO O MCO MCO MCOCMCO MMCMMCOOMCO MM OOMCO MMCOO MCOO MCCOCCO O MCO 'BP6'BP6''BP6BP6BP6'BP6'BP6BP6B'BP6BP6'BP666BP6'BP6BBBBPBP6P66666'BP6BP66'BBBBBP6'BPP66BP6P66BP6BP6666BP6BP6BBBP6BBP6BP6BP66BP6BP666P6B66BB6BBB66-1' 1 1 -1 ' 1' 1 1 -1' 1' ' -1' 1 1 1' 1' 1-1' 1 1 ' 1 -----NIPPNIPPNIPPNIPPIPPPPNIPPNNIPPIPPNIPPPNIPPNIPPPPNIPIPPNIPPPPPPNIPPPNIPPPNIPPNIPNIPNPPNIPNNNPPNNIPNPPPPPPNNNPPPPPPNNNINLE 3LE 3LE 3.LE 3.ELE 3.LE 3.LE 3LE 3LE33LE 3.3E3.333LE 333EEE333333333LE 3ELE 3E33LE3333333..EE333812812812818128881281221222288128812881881112281228128128812881281222288128122812281288121812881281228812288882888881222888228281812888288281
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6,826,826,826826,826826,8266,828886,82686,826826,82,8222226,8266,82686,826,82682686,828268226,8286,828686,8268226,8266,826,8282226,826,86,82,826,86666868826,8268882688886,82,8822268226,8,828666,,8.2 38.2 3882 38.2 382 38.2 38.2 3.2 328228.2 38.2 382 38.2 3238.2 382 38.2 38.2 382 3882322822338.2 332382 3882 3822228.2 388.2 38.2 382 38.2 32282 332338828.2 38888288.2 332388.2 382 332338.2 388.2 388.2 32833322333,650,6506506,650650650,650,6505,650650500,6500,650665065656650650,650,65650650,650650,6506500656,65655,650,650650650,6500656650656506550666505650,6666655050065050555050065500500,6 .6 7567566756.6 75675675.6 757767757675.6 75.6 756756767567567567567567675675675675666756767567.6 757667565756756756567556555657675755.66 567566667.37 T37 T33.37 T37 T.37.377.37 T7T37.37 T3737 T37 T37 TT33.37 TT3737373333773.37737373377337373737737777377337.7 T50T5.0TT5.0T5.0T50T5.050T505.055T5.05.000T5005.0505.05005.05.00005.05.005.055505.0505555.0005.000005.055.0555.0055000 WI00 W000 W00 WI00 W00000 WI00000 WI0W0W00 WI0000 WI00 W00 WWWW00 WI00 WI00 W00 W00 W00 W00 W00W0WWW00 WI00W00W00 WIW00 W00W00 W00 W00 WIWW0WW00 W00WWW0W00 W0WW0WWW00 WWW00WW00000000000W00 RELIRERELRELIRELRRRRELIRELIRELLIRRRRELIRELRRERRELRRERREERRRRRREERERERRRRRRRRRRRRRRRRLNE ENE ENNE ENNE ENNE E NE ENE NE ENE E ENNNNE ENE ENE ENNE ENNNE ENNNNNNNNNE E E ENNE EE EE E ENNNE E EE NNNNNNE ENTRYNTRNTRYNNTRYNTRNTRYNTRYTNTRYTRYNTRYRRYNTRYNTRYYYRYNTRYNTRNNTRNTNTRYNTRRYRYRNTRYRYNTRYYNTRYNNRRYYNTRYNYYNNNTRYYNTRYNTRYYTRYRRYYNTRRYYRYNRRYRYRRNTRNNNNRRNNNYRRY GUI GU G G G GU GU G GUI GUI G GU U GU GUI GU GUII GU GU G GU G GU GUII G G GUI G GU G G G G G GU GU G G G G G G G G G G G G U GU G G G G G U UU G G GU U U U GU G UUDE 3.DE 3DE 3.DE 3DE 3EDE 3.EEDE 3DE 3DE 3DE 33DE 3DE 33DE 3DDDE 3.E3.E3333DE 3DDE33DE 3D33DDDDEE3DE 33DE 3EDE 3DE 3.DDE 33.E 3DDDDE 333.D 33 8708708708888708708707870870870087000870878870870870870870870870088700087078700707088708708708700088708778708770708870087088708708708080800
OthOthOOthOtOtOOOOthOthOthOthOthhOthOOOthOtOthOOtOthhOOOtthOtthOOOOOOOththOthOthOOthOthOOOthOOthOOOthhhhOOOthOtthhhOtOthOthhOOOOthhhOthhOthOhhhhOOhOOOOOOOOOOOOtOOhOOOtOOOtthhOtOOtttther er erer eeereeerrer rereeereeerrrerreererrrrereereeeeeerrereerererrerrreereeererererereeereeeeeeeeerreeereeee InInInInIInnIInIIInIInIInInInInInnnnnnnnnnnnnnnnnnnnnnnnnnnnnnnnnnnInnnnnnn HolHoHHolHoHolHHolollHoHolHoHolHoHolllolHoHHolHoHoHlHolHHlHolHoHoolooooooHolHoHoooHHoooooHHoooloooHooooooooooHHHHooHHooolooooooooooooooHoooooloooe (e (e ((e((e ((e(e (e ((e (e ((((e ((e(e (e((eeee (e (eeee(((eeee ((ee(eee (((eeeee(ee (e(e(ee (e((ee(eeee (e ((ee (eeee (e ((eeee(eeeee (e (e ((ee (((((((((((WirWirWiWWirWirWirWirWWirWWWWiirWWirWWWWWWirWWWiWWirWWWirWirWWWirWirWirWWirWirWWWWirWWiWiiiirWWirWWWWWiWiWiriiWWWWWWiriWirrrWirWWWWWWWirWirrrrWWWWrrWWWrWirWWWWWrrWirWrWWWWrrWWWWWWrWirWrrWWWWWirWWWWWWielielielilielieliielielielielielielielieliiiieliiieeeeeelielielielieeeeeeeeeeeeeeeieelieeleeleeeeeeeeeeeelieeeeeeeeeeeeeeeeeeieeeeelline ne ne nenenennneeeeenenennnneeeeenennnneneneeeeennnneneeennnneeeeenneeeneeeeeeneeeeeeeeeeeeeeeeeeeeeenneeee retrettettretrettretetretetrettretretretetretettretrrrrreeteeeetttrrrerreeeteeteretretrrreeeetreretreeeettrrrreeeetrrreteeeerreeeerteetreeeeeeeeeeeeetttteerreeetreettrierieierierierierieririerieieiiieiirierierierrreeeeerrriereeeerieriereerrieeeeeerrrreeeeerrerieeerrrrieeererreeeeeeeeeeeeeeeeeeeeeeeriieeevabababvabvababvabbbvabvabbbvabbvabvababbvabbvabvabvaaabaabbvabvabbvvvabvvvaaaabaavabbbbvvvvavvabaababbbvabvabvabvabvabaaaaabbbvvvabvabaaabaabbbbvvvvaaaabbvabvvababbbbvvaabbvvvvabvavvvaaaavavvaabvvvaaaabvabbbbvaaabbaaaaabbble lelelellelelellellelllleeeeleeeeleeeeeeeeeeeleeeeelleeeeleeeeeeleeeeeeeeeeeeeeeeeeeeeleeleeeeeeee pluplulluplpluplulplulpllplulplulplplupplpplupplpluplupluppppppplupluplupluppplupluppppppluppluplupluplupppupluuplupuppluuupppuuppluuuuppppuuuulpluuppppplpluuuuuupppluuuuplupppgs,gs,gs,gs,gs,gsggggs,gssgsgsgssgggsgs,gs,gsgggssgs,sgsgggggs,sgsgssggggs,gsgssssgssgsgsgs,gssgs,ss,gs,ssssgs,s,sggggsgsgsggs,ssggssssgggsgsssggsssssggs,gsssgs,gs,ggggsssssggs,ssgggss,sgss,ggs,gss,sgg,gg ,gggggg ,gggg ,,,g ,,gggg vavavavavaaaaaaaavavavavvavvaaaavavavvavavvavaaavvavaaaavvvvaaaaaavavvvaavaaaavvvavvvvaaaaavvaaavvvvavvvvaavvavvvvaaavvvaaaaaavaaaavvaaaaaalvelvelvelvlvelvelvelvelvvelvelvelveveveveveeeevelvevevvvveeeeevvevvvveeeevvveveveeeevevvveeevvvveveeevvevevvevvvvvvvvveevveeeveeeeeveeeeevveeeeeveeees, s,s,ssssssss,s,ss,ssssssss,ssssssssssssss,ssssss,sss,sssssssssssss,ssss,,sssss,,sssssss,sss,,,,,,,pumpumpumpumpumppumppumpumpumpummpumpumpummmmppumppppumppuumumpumpummmpummmmpumpummppppumpupuupummpummmmmppppuumpupupummmmmmmpppuppuupummmmppppumumpppmmmmppupmpupppuuupppupuupppppuuumppppuuuupppppuuuuuummpppps,ps,ps,psps,ps,pps,ssspsps,pps,psppsppssps,sspspsps,ppppsssspsps,ppsssspssspspppspsspssps,ssps,ps,s,ps,pppspspsspsssspsppppssssspsss,ps,ppppsssssss,psssspppppsss,ppps,,,,,,,,,,,fifififffiffffififiififffififffiififfififififfffiffiifiiffiffiiiifffiffifififffiffififififsh,sh,shsh,shsh,hsh,sh,sh,shshshshshshsh,shsssshsh,shhhh,sh,ssssshhhh,shshssssh,hshhssssshhshssshshhshhssshshssshsshssssh,ssssssss ,sssh,,ssssh,sssh,ssshhh,,,,,,,,,,,etetetetttettetetettetetetetteteeeeetteeeetteeeeteteteeeteeeteeeeeteeeteeeeteeteeeeeteeeeteeeeeeeeeeeeeetteeteeteeeettc.)c.))))c.)c.)c.)c.)))c.c.)c.).)c))c.)))c.)ccccc.))c.))c)ccccc )c.))c.)cc.)c.)c.)c.)))c.ccc )c)))cccc.))c.)cccccc.))cc)cccc.)c.)ccc )cccc.)c.)ccccccc.)c.c.))cccc.)cc..)))))))))))
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(ftKB(ftKB(ftKBftKB(ftKB(ftK(ftKB(ftKBK((ftKf(ftKBft(ftKBtt(ftKBK(ftKB(ftKB(ftKB(ftKf(ftKBftKBftKBKB(ftKBB(ftKBftKB(fftKB(ftKB(ftKBfftKKKKKK(ftKB(ftKBBKBKKB(ftKBBfKKBBKfKBKKKB(())))))))))))))))))))))))))))))))Top ITopTTop ITopTp IpIIop ITop IITTopTopooopppTopoooopppppooop IppppTooooppTopoopopTop IopIopoTooopooooppopToopIncl (nclllclcl (ncl (cl (ncl (ncl ((cl (nclncl (cl (ncl (nncncl (nccncnclnnnncnccccl ((ncl (ncccl (cccnncl (nncl (c (nc (cl (c (cnncl (cl (((°)°)°)°)°)°))°))°°°)°°°))))°)°°)°)°)°)°)°°°))°°°)°)))))))))))Des CoDeDes CoDes CoDes CoDDes CoDes Coes CoDes Coes CDes CCDes CoDesDes CoDesDes CoDes Coes CoCes CoDes CoDesDes Coes CoCosCoCDDDeDes CoDesDes CoDes CoCoDDDes Coes CoDes CosCosCCCoDes CoDes CooDes CDes Ces CsDesDes Coes CoDes CDes Cossoees CooesCDes CesCoDsCooDDes CsCoosooCCmMakeMakemMakemMakemMakMmMakmMakmMakeMakeMmMakemMakmMakeMakmMakeMmMakeMakemMakemmmmMakemMmMakemmmMakemMakeMamMaMakemMakeakemMakemMakemMakemmMakMMakeaakkemMakeemMakemmMakemMakemMakeMakeMakeaakemMakkeekeeeMaakakkMeeeemMMakakkkeModelModeModelModelModeMdlModeModelModelMModModeModellModelModelModModedeModeModeModeModelModeMoooodeddddeeeedeModeMooModeodeMooddeMoModModeoodeodeloModeeMoodeoddModeleeodeoeModeMolododelModeMolMMModeMModedSN RunSN RSN RuSSN RunSN RunSN RunSSN RunNRuNRuSN RuSN RunSN RunSN RunSN RunSNSN RSNSN RNRRRSN RuSN RuSN RSSSN RunSN RRSSN RuSRSNRunRSN RunnSN RunNRunNRunNRunnSNRunNRSN RunSN RunnSN RSN RuNSN RunnSSN RuSRnSRSNRnSNRRRSNRuNRSSN RSNuuuuu DateDateDatDateDateDtDateDateDDDDateateDDDateDateDatDDateDateDateateaatetateeeDateateaaeeDDaateaaDateDateaateeeDateeDateaDateDateaeeDateaDDDatateeeeaDatDateDateatte ID (iID (iID (iID (iDID (iID (i(iID (iID (iD(D (D (D(((D(iDDID (iD ((iDDID (iD ((ID (iD(ID (ii(D(iD(D(iI(iD (D (DDDIIIDD ii((n)n))n))))n))n)n))n)nnnnnn)))n)nnn)nn)n))n))nnnn)))nnn))n)))))
3,373,373333333,333373,33,37333,373,373373,373,337333,3,33,373,3333,373,333,3733,37333,33,373333773,373,373333,3773,377337337333,333,3737,37377333333,377333,33333,,4.0 24.0 2440 20400240 204.0 24.0 24.0 24.0 202240 2400240 2002024.0 20202024.04000020202240 222244.0 2040 240 24.0 20240 24.0 2002442244.0 244.0 2002220022020002,322,322323232322,322223222,322322322322,322,32232322,32222322,32232232223322,3223,322232323222222322,322,32232222232223222232222,32222232233222232223322,,,,.2 65.2 6526526522265265265.2 6562656662652652652652652265665265655.2 6522226522666656565265526.2 6522665265226526565665522652626652655522662625.222 6526.30 L303030330.300.3030.30 LL.30 L3303030.330.30003030330333030000030333030030 L0333033.30.30 L3000L3303030LEAK LEAK LEAKEAEAK LKEAKLLEAKEAKEAEAKKAKKKLEAKEAKEAKAKKKKAAAAEAKAKAAAAKAKKEAAAAKAKEAAAKAKAKKKAKKKAAAKAAKEKLLAEAK EAK EAK EAEAK EAK K AK EAK AK EAK K AK K K EAK EAK EAEAK AK AAK AAEAK K K AK AK K AAEAK K K AAAK EAK AAK EAK AK K AK K AAAAK AAK K AK K EAK K AK IDENIDENIDENIDENDENDDENDENDENDEDDENDNNDEDENDDEDENENDENDENDENNDDNNDNNNNENENNENENDDDDDNDENDNDDENENIDDNTIFTIFITIFITIFITIFIFITIFITIFTTIFTIFTIFTFFIFFFFED BED BED BED BD ED BED BED B ED BD BD D B B BEEED BD D D BD B B BD D BED BD D D BD D D B B BED BD BD ED BED B B B BED B B B B BED D D D D B BEED D B BE B BY ELYY EY ELY Y Y Y E LY ELY Y Y Y Y Y Y YY Y Y Y EY ELY Y Y Y EY Y EY Y EY EY Y EY Y Y Y EY E EY EL L L LDL LDL LDL D D LDL D D D D DL D LDL D D D D D LD D D D DL D D D D D D D D L L DL L D DL
AT 3AT 3AT 3AT 3AT 3T 3T AT 3AT 3 3AT 3AAT 3AT 3AT 3AT 3AT 3T 3 3AT 3 3AAAT AT 3AT 3 3AT 3AT 3AT 3 3 3 3AT 3AAT 3AAT 3 3 3AAT 3AAT 3AT 3A 3AAAAT 3 3AAAAT 3 3 3 3AA 3 3 3 3 3 3374'3374'374774'737474374337437374'374374747437374'3744374''3333373737443737437374'374743374'74337444374'333744'3377373743337774334473743744433337374333 RKB RKB RKB RKB R RKB RKBB RKBKB RKB RKB RKB RK R K RKB KBKBKB RKB RKB RKB RKB RKB R RK RK KB RKB KB RKB K R B KB RK RKB R RK K RKB RKB R RK RK KB RKBB R K K K K KBB RK R K K K K R K KBBB KKBB RK K K
1/141/141/14/14/141/14111/14//11141/141/1441/141/141////1/141/11/11/14/4/141/141/11/14441//144/////44/4444///144/202/202/202/202220/20202/20220/202/202/2002022022//202202/2022022020/202/202202/202/202202202/202/202220/2022020002022202202/202222022/22 2/202/2020/2022/20202/2022/2 202222220002200202033.933.9339333.933.933.933.933.93.933.933.93933339339933.93393339333933.933.9333333.993393333.933.933393333393.933.939933.933.9339333.9933.9333.93393393.9993333.9999333993333396060606066006066660606066060606060066666060606060060006000606606060066606060606666660606660666060
3,393,393,3,393393,393,39333333393,3993939933,393,393,393393,33339393,393999339999333,33393393,33,33,393,393,3933993333,39933339339933,3333933,339993,3939993993333993,33,33393,,,,90 29.0 29.090 290 290 2999.0 29.0 29.09.0 29.0 29.0 29.0 29.0 29.0 2290 29.0 290 29.0 202090 29020229.0 290 229.090 29.0 29.0 29.0 2002290 2290 222299.090 2009.0 209099.099.0 229999.0 220299029020029.00 ,3323332332,332,332,3323233,332332,33233332,33233,3323233332332332323223322333233233333,332322,332333222,3323332,33 22332333,33332322232333333332233,,.7 65.7 65.7 65765656576666765765.7 65667665656576676765665765657656765765776676767657656565576576565665765577665667657657656755.7665566665557665.33 L3333.33 L33333.33.33 L333.33 L3L3333333.333333333333.33 L333333333333333333.3333 L333.3333333 L3333333333L33EAKEAK LEAK LEAK LEAKKEAKLLAK LEAKEAKEAKEAKEAKKKKKEAK LEAEAKEAKAAKKAAAKAKAKKKEAAAKAKKAKAKEAAAAAKKAAAAKAKAAKKALAKAAKKEKLAKEAK EAK EAK EAK AAK K K AK EAK EAK AK EAK K AK K K EAK AK AK K K EAK AEAK EAK EAK K AEAK K K AAK K K AEAK AK EAK EAAK K K K AAAK K AK K AK AK AK AK AK EAK A IDENIDENIDENDENDENIDENIDENNDENIDENDDDNNDEDENDDDEENIDENDNDENDENDNNDDDENNNDENDENDENNNENDDDDNDNNDDDDNDDNTIFTTIFITIFITIFIIFITITIFTTIFITTTIFIFFFFFFED BED BED BED BD ED D BED BD BED BEDD D ED B BD B B BEEED BD BD B B B BD B B BD D BD D D D BED ED BD BD BED D D B B BEED B B BED B BED BED BED B BD B BY ELYY EY ELY Y Y EY ELY ELY ELYYY Y Y Y Y Y E L LY YY Y Y Y Y EY EY EY EY Y Y Y EY Y Y Y Y Y EY Y EY Y E L L LDL LDL L LDL D D LDL LDL D D D DL D D D D LDL D D D D D D D LD D D DL D D D D L D LDL D D L D D D DL
AT 3AT AAT AT 3AT 3AT 3AT 3AT 3AT 3AT 3AT 3AT 3T T 3AAAT AT 3AT 3AT 3AT 3AT 3T 3AT 3AT 3AT 3T 3 3AT 3AT 3AT 3AAT 3T 3 3 3 3AAAT 3AAAA 3 3AT 3AAA 3A 3AT 3A 3AAT 3AAAAA 3 3AA 3 3 3AAT 3 9399'3999399'9399'399'39993399'3993993999399399'33993993993999939999399999399999399339999399399999399399399'999399399939933939999399399393933999399999999993993999939993 RKB RKB RKB RKB RK K KB KB RK RKB R RKB RKBB RKB RKB RKB R R R RK RKB KB KB K RK KB RKB RKBB RKB RK RKB R K KBKBB RKBB KB K RKB RKBB RKBBB R R K K K RKB R K RKB R K KB KB R R K K K R R B R BKBBB R R
1/141/1411/14/141/14/11144/141/14///11/141/141/1441/14///141/14/141/141/144111/14/1144/4/14/1/1/441/4/4/44///202/202/2022202202/20202/2020020/20202/202/20202/202/20/202/202/202/2022002/2020202202/202202202/202/202/202//22202/2020200022202/202/2022022020222/20222202//2//20222202/202/2022020220202222222///20200 33.933.933933933.93333.933.93333933.933.933.9339333933.933.93333.93333933933933.93399999933.933.9333933.9333333.933.93.9999333.9993399933933.999333393.933933.93993399933.99333.9339333.933960606066060060606606060606660060060606066060600006660600606060606060606660666666660066060000006066606
5,745,745,745,7,7745,745,745,74,745,75,745757575,74574555,74574744457,74455,744555774745574574575,75,7445,774744445,757445557,755,555,,,0.0 300.0 30.0 30.0 30.0 300300.0 30.0 30.0 300 330.0 3300 300 300 30.0 300 30.0 30.0 30.0 30.00.000 3033300 3300 30.0 3000330.0 30.0 3000000 30.0 3003000.003330.0 3330000.0 3003033000030.0 3,298,2982,298298,29829899898,2988982982298298229298,29898298298299298882989829298298,29829829888,298,29988292989882989298229882988998898229882992829892298299998889988,,,,.5 65.5 65565565655656566656556556556556566565656556565.5 65565565556665655.5 65655656556555656566656656565656656555556655566556665556665556655555.24 L2222.24 L2424444244.24 LL24 L2242424242224222422422424242424222444244.24224442422424 L4422L.EAK LEAK LEAKEAEAK LKAKLAK LEAKEAK LEAKEAKEAKEAKEAKEAKKKKAKEAAKAK LAEAKAKAKKAKAKAKAKKEKEAEAAAKKKEAAAKKKKAKAKAKKAKKEAKLAAAKLEAK EAK EAK EAK EAK EAK K EAK EAK EAEEAK AK AAK AAEAK K K AK AAK K EAK EAEAAEAK K EAK AAK AAK K AK AK EEEAEEEEAK K K EAAK K K EAK AK K AAK AK AK EAAAK AAAK AT ~AT ~AT AT ~AAT ~ ~AT ~AT ~AT AAT ~AAT ~AT T AT ~AT ~AT ~ ~AT ~AT ~AT ~AT ~ ~AAAAAAT AT ~ ~AT ~AT ~ ~ ~AT ~AT AAAAT AAAAAAAAAT AAA 5740574057405740574057405740574000057404074057457405740574075740744574057405740574055574057405745740057407405740774045740557574005757405405745740777404070575574070055057405' RK' RK' R' RK R' R RK' RK' RK' R' R RK RK R RK RKK' RK' RK' RK K' ' ' R K K' ' RK' RK K ' R' R K R RK RK R R K K K K R K K R R K R R K K R K R K KK R R KKKB B B B B B BB B BB B B BB B B BBB B B B B B B B BBBB BB B B B B B B BB B B B
IDENIDENENDENIDENDENIDENEDIDEDDENNIDENIDENDEDDEDENDENDENEIDENNNDENDEDENDENDDENNDDENNNDDNDENNNNNNEENDNDNNDENNNDENENIDDNDENIDDTIFITIFITIFITIFITIFTIFITIITIFIFTIFITTITIFTTIFITIFTIFFFFTITTFFIFFED BED ED BED B BD BED BED BEDD ED BED BED BED BED BED BED BED BD BD ED BD B BD BED BED BD D D D BD B B BD B BED BD D B B BD BED B BED B BD B BD BED B B BD B B B B BY ELY ELY EY ELY EL EY Y EL E LY EL ELYY ELY Y Y Y ELY E ELY EL EY ELY ELYY Y Y Y Y ELY EY EY Y EY Y Y Y Y Y Y Y Y Y Y Y Y E E EL L E E EL EL EL L
ACOUACOUACOUACOUACOUACOUCCOUACACOUACOUACOACOOUACOUOACOUACOUACACOUUACOACOACOUACOCACACOCOCCOUOOACOOACOUACCCOCCOUACOUCOUACOUACOUACOACCOACOUACACOOOACOACOCOUACOACOACOUAACOUACCOOCOUUOACOCACCCOOOOUUAOOUACCCOUSTICSTICSTICSSTICSTICSTICSTICSTIISTICCSTICCSTICSSTICSTICSTICSTICCSTICSSTICSTICSSTICSTTICSTICCSTICSTICSTICCSTICCSSSSSSTICSTICCSSSTICCSTICCSTICSSSSSTICSSTICSSISCSCCSCCCSSCC LDL LDL LD D LDL LDL LDL LD DL DL D D DL D D D D LD D D D D D D LD D D D D D D D D D LD D D D DLL D L
2/112/112/112/12/112/112/1122/2/112/1112/12/2/12/112/11222/1122//12/1111222222/11/11112/112/12/112/112/2/2/2//1////222222//2/2//202/202/202/202/202/20202202202/202/20022022022202/202202/202/202202202/202020002202202202//202/202/20222/2020/2022/202/20220/20202002202/20202/202202//202/2202222220202////202220020020033.933.93333.933.933.933933.93.933.933.9333333933933.933.93.933.933.933.933.93333.93333933.9333.993.93333.9333.933.933.9333.99993393.9333339933.9399933933333.9933333.99393333993399339960606060660060606000660606660606060060060606060660606060606060606060060066006666606066066060660600600
5,995,995,995,9995,999999,995,9999995,99,95,995,999995,9959999995,9999599599599995,99995,995,99,99995995,995,995,995999999,95595955559999595,999955,95,995,95595,9999999555,9995999599,,9.0 39.090 39090 390 399.0 39.0 309.0 39.09.0 3330390 330390 399.0 3900309039.0 3390 39.0 39.0 3039.0 39.09.0 39.0 39.0 309.0 3039.0 333399039.0 390 3390 399900333999.0 3933399.9000909 39.0 333903,40044400,400004004000,400004400,400,40400,4004040000000400404000,400004000,400,40000400,400400004004004000000004,40044400400000000000000,,.2 6826822622226826868.2 682686668268.2 6868268826822682682682686862682668868222682682682266682682682268668626888682686682268266.2 686888682262288688226.86882.2 668.49 L4949 L4999.49949 L.499.49 L9L4499499.499999 LL449999999.49 L99L449944449.49 L49 L4449949949499444999L9.9999999 LLEAK LEAK LEAK LEAK LEAK LEAKEAKAKAKEAK LEAKLEAKEAKAKKKAKKKEAKLEAEAEAKAKKKKAKAKAKAKEAAEAKKKAKKAKEAKKKEAKEAAAKAAKKEAKKAKLAAAKAKEALAAKAEAK EAK EAEEAK EAAK AK EAK K EAK EAK EAK EAK AK EAK EAK K AK K K EAK AK AK AEAK K K AK EAK K EAAK AK AK AK AK AK K EAK EAAK K AAK AK K K K AK AK K AK AK EEAAK IDENIDENDENIDENDENNDENNIDENIDENDENDDIDENIDENNNDDENDDEEDENNDNDDDENNNDENNDENDNNNENEENDENENDDNDNDDNNDENDNDDDDNTIFITIFTIFITIFITIFTIFTIFFIFITIFIIFITTFFFFFFFED BED BED BD BED BD BED B BD BED BD BD BED BD ED BD B B BEED BD BD ED B B BD ED D B BD BED B BED ED BED BE B B B BD B BD D D BED D BD BEED D B B BD BY ELY ELYY ELY Y ELY EY EL ELY YY Y Y EY EY Y E LYY Y EY Y E LY EY Y EY Y Y Y Y Y Y Y Y Y E E E E L L LDL LDL LDL LDL LDL LDL D D D LDL D D D D DL D D D D D D LDL D D D D DL D D D D D D L L D D DL DL
AT ~AT ~AT ~AT T T ~T T AT ~AT ~ ~AT ~AT ~AAT ~AT ~AT T ~AT ~ ~AT ~ ~AT ~AT ~AAT ~AT ~AT AT AT ~AT ~AT ~AT ~ ~AT ~AT ~ ~AAA ~AAAAAAAAAT AAAAAAA 59995999599959995599959995999599999959995999599959995999999999959999599999995999599955959999999999959999995999999995999599995959995999999599955999595999999995999595995999999959995599959999999999599999999999559959' ' RK' R R R' RK' RK RK' RK' RK' RK RK' R RK' RK RK RK KK' RK R R R RK R RKK RK R K K' RK' R R RK RK RK RK RK K K RK R K R K K K RK K RK R R K K RK RK RK K K K RKKK R RKKKBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBB
1/7/1/11/7/1/7/1/7/71/7/1/71/7//7/11/7//1/71/7/7/1/7/1/7//7//7//7/7/7/1/7/7//1/7//77/7/7//7/77/7/7///7//7//7/7///77/7/7///777/////7///77/20232023202320232022023202320220020232023223023202330233202320232023202320220232023020232023022202320232022023202323202202320222022002302322023023023320232023202202202302320232023023200022023202223202000232022023023320203 3.8133.8133.833.8183.883.813.813.813.813.83.8383.8383813.83.81383.83.838.83.813.8181333.883.83.83.83.883.813.8138333833.8138811888.88833.83.883.8388888888881.8 333333333333333333333333333333333333333333333
6,116,66616,16,11116,1166,16,1166,116116666,116,11666,1616,116,116666,16,1111166,16,111166666666666,1666666,66666,6,66,6 1,,5.0 35.05.0 35.0 35.0 35050 350 35.0 35.0 35.0 355.0 350 35.0 3035.0 33505.0 35.0 3003505.0035.0 35.0 3335050035.0 35.0 35.0 303030335.05.0 3303555355.05.0 33505550335.0 3033330035.0 3003,4424424442442,442,44242442442,442222,442442444442442224242442444224244,4442244424,442,442244242424424422,4444424442444,442244,444442,4,4,,,.2 68.2 6822622226868.2 682682682686826826826868268268868226826826826686826868682688268226262686826826868682682682686268868266666.2 6868826888268626866866868886.2 682686688.668.75 C.75 C75 C.75 C75.75 C7.75 C5C.75 C5C5C.75 CC75 C75 C75 C5C5C5CCC75 C75 C75 C75 C5CC5C75 C77C75 C7C775575.75 C555.75 C555C575 C7575 CC5CC75 CC755C5CCC5C755UT 2.UT 2UT 2UT 2.UT 2UTUT 2.2T2.22T2.2UT 2UT 2.T 2UT 222UTT2T2.T2222UT 2UT 22222UUT 2.222222UT 222UT 22222UU2UT 22UU2UUUUUUUUU 375"333375"375375"375"375"753755"375"375"375""375375375"375"33375375375"3757537553755375"37533775"753753755"375377"375""37533753753533353753775757375375375555557 WEL WEL WE W WEL WEL WE WEL WEL W WEL WEL W WEL WE WE WEL W W W WE EEL WEL W W W E W W W W W W W W W W WE W W W WE E WEL WE W W W W W W W W W W W W W W E E W W LTECLTECLTELTECTECLTECTETECCCCCTECCLTECCLTECTLTECTECECCCLTECCCCCTECCCCCCCTECCCCCTEEECCCCCCTECCCCCCLTECCCCC
MECHMECHMECHMECHMECHMEMMECHMECHMECHMECHMECCMECHCHMECHMECHHMMECHMECHMMECHMECHCMECMECCCCHHMEMECHCMECHMECHMECMECHMCCCCMMMMECMECCMECMECHMECMCCMECHMCECHHECMMMMECHMMECHMMCMECCCCMMMECHCCCANICANICANICANIANICANICANICANICANICANICANICANICANICANICANANICANANICANICICANICANICCANICCAAANICANICCCCANICAANICANICANICANICNANICNICAANICAAANANCCANNNCNANICNNAANNNNANICANICNCAAANICCNANICANCANICCAANIANCAL TA AL TAL TAL AL T TAL TAL TAL TAAL TAAL AL TL T TAL TL TAL TAAL TAL TAL TAL TAAAAAAAAAAAAAL TAA AAAAL AAA AAAAAAAAA L T TAA L L L UBINUBINUBINUBINUBINUBINBINBINUBINUBINUBUBINUBUBINUUBINBINUBBINNUBINBINUBINUBINBBUBINBINBBINBINBINBINNNBUBUBUBINUBUBINUBINNNNBINNBNNNBBNUUBINNNUBINBNNUBINUUBUBIUBINNBINNG CG CUG CUG CUG G CUG CU CG CUG CUG CUG CUG CUG CG G CUG C CG CU C C CG CUG CU CUG CUG CU CG CUG CU CUG CGG CUG CG CUG C C CG CG G G C CGG G C CG G G CUGG CUG CGG CU UUGGG CU C C CUUG G G C CU UUUG G CUG C C UT T TT T T T TT TTT TTTTT TTTT
AT 6AT 6AT 6AT 6AT 6 6 6 6 6AT 6AAT 6AT 6 6AT 6AT 6 6AT 6T T 6AT 6AT 6AAAT 6AT AT 6AT 6T 6AA 6AT 6AT 6AA 6AT 6AAAAT 6 6AAAT 6AAT 6 6AT 6 6A 6 6AAAT 6A 6AAA 6 6AT 6 6 6 6115115'1115115115'115'5115'115115115111115115'1555511115'1151151515'115515555555155555555555 RKB RKB RKB RKB RKB RK RKB K RKBK RKB RKB RKB RK RKB RKBKK RKBB R RK RKB RKB R KBK RKBB RKB RKB RKK RKB K RKB K RKB K RKB RK RKB R RKB RK RKBB RKB R R KB KB R K K K KBB RKB KBB KKBB R R K
6/2466/26/26/246/246/246/246/26/26/246/26/246/24466/26/246/24/24666/246/26/2//2426/26/246/26/246/24/24466/26/246/246/24/246/246/22246/266/26/246/26/26/246/24622/26/2244//26/24466//462466/22662246622466/66 466//202/202/20//202/20220220202/202/2020202202202202/202/2022202/202//222/20220220220200/202202/20222/202/20202/2022200/20/2022/20//22202/20/202/2022022/2020/20/20222022222022202/20222/2002/202020/2220220033.933933933.9333.933.933.933.9393339339933.9333333.9333.9333.933.933933933333339993.933.9333333.93333333.93.9933.9339333333.933.999933.933.99333333.333.9333.93933.9933.99933.993999333999333.9606060606060606060060606006060606066666060000060666000606060066660606606066006066666066666006606600
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TypeTypeTyypeTypeTypeTypeTypeTypeTypeTTypeTypeTypeTyTypeypepypepypeTyypeypeypTypTyppeeeypeeTypeTyTypepypypepeypeTypTyypeypeyppeeeeeyyeppepypTypeeyppeeyppyyypypyp
OD ODOODOODOODODODODOOODODOODODOODODOOOOD DODOODODDDDOODDODODOODDDDOOOOODDOOOODD
(in)(in)(in)(in)(in)i )n)(in)(in)(in)(in)))(in)(in)in)in))((i(in)nnn(n(innnn(in)(in)((in(in)n(in)))((in)((in))n))()
TRO RTRO RTRO RTRO RTRO RTRO RTRO ROTRO RTROROOTRO RRO RTRO RRO RRORORORORTRO RTRO RRROTRO ROORTRO RROOORO RO ROROORRRROO RTRO ROORRO RRRORRRRO RRRROOORRRROOTRORTRO RRO RRO RORRununuuununununnunnnununuununnnnnnununnnnnunnuuuuunuuuuunun
(psi)(psi)(psi)(psi)(psi)(psi))(ps(psi)(psi)psi)si)((p(psi)(psi)(psi)(psi)((ps(psipsi))(psi)(psi)p(p(psipspssi(psi(psi(psi)(psi)pssppspspsi)ssi)sssi)(pssi)sispss(pppsssss(p(()(p )p Run DRun DRun DRun DRun DRDRRun DRun DRDDRun DRRRun DDRun DRun DDRun DRun DRun DuuRun DuRunnun DRunnRun DRun Dun Dun DnDnnDRnnDnRun DDRun DunDRRun DRDDRDuuDRun DDDRuRuuDate Coate Coatate Coate Coate Coate CoCeCate Cote Coate CoCCoate Coate Cate Cate Coate CoCate CoCoate Cate Cate CtCCoCoCate Cate Ctetteate Cte Cate CoeCoate CooCoate Coate CoateeeeCeCate Cate Cooate CooeCoate Cate Coeoooate Cooatate Cte CoeCaoate CCte CteeoooaCCemMakemMakemMakemMakemMakmMakeMkmMakemMakemMakemMakeMakeMMmMakakemMakemmmMakemmmMakemMakakkkeakeeMakemmmMakmMakemMakemmmMakeMaMaaakeMakkeekeakeeakemMmMammmmMakMMaMaaakekeeMMakeMakeMMakekeMakeaeMaemMakkeMakemMa ModelModelModeModellodelModeModeodeModelModeModelModMModeModeMModelModelMododeodedededodeeMMoooodModeoododeModeodeModeModelModeModeMModeoodooododeModeeodeoeModoeModeModeModedoddodeeeodddeeeoeeModeModeModel
Port PortPortPorPort PortPorPorPortortttPPortPtrtPorPortPPortPoPPPortortPooortrrPortooortrPoPortoPorPorrPPoorPortPPoPorPPoooooootoPPttt
Size SizSizeSizSSSSize SizeSizeizSizeSSSSizeSizeizSizeSizeSizeSizeSizeSizSSizeSizeSizeSiize eSizeeSSizSSSizzzSizezzeeeSizeSizezeSizSizezzSSizeSizizezeSizeezSizeSzeeeSSizeeSSSizeSSz (in)(in)(in)(in)(in)(in)(in)(in(in)(in)i ))(in)(in(in)(in)(i(in)(in)(in)(in)(i(in)(in)(iin)in)nnn(in)n)nnnn()(in((()()(())
3,513,51353,513513,5133,513,5153,513,513,51353,533335335553,513,513333,53,513513,533,5113513,511333,5153,555351553,53,553,5,513,5355555533555333,5,,9.4 294999.4 29.4 2994 294 2494 29.49.4 294 22294 2294 29.4 294 2994 29.4 299.4 249.4 242294 2.442294 294 29.494 299424229.4 229949.4 2949.494 2429.4 2942429944994422299422999.999 2,3823823,382382382,382,38838283822382822382382382,38238,382382382888888238238282,38282382823823,3838382,38282382382338382282382,388388388,3388238822828382,3883382,,,,.9 65965.9 659696965965.9 65.9 6566659659696965969665696596965696565965965996596669965996696969966569655655965.9 6996566966555996596655559969.99 665965966556.29 1.2922929 129 129 1.29 1.29 1.29 1.29 19991129 129 1292929 12299999.29 129229 12999929 1292299992.29 1999129 12292292922999292292229.299299292299 GAS GAS GGAS GGAS GAS GAS GAS AGAS GAS GAS GAS GAS S GAS GAS GAGAS GAS GAGGAS GAS GAS S AS GAS GAS GAGGAS AAGAS AS GAS S GGAS GGAS GAS AGAAGAS S GAS AS GGGGAS GAS GGAS GAGAS AS S AS GAS AAS GAS GAS G S S GAS S S S G S G S S G LIFTLLIFTLIFIFLIFTLIFTTIFTLIFTLIFTLIFTFFLIFFFLIFL DMY BDMY BDMY BDMY BDMY BDDMY BDMY BDMY BMDMYMY BYDMY BDMY BDMY BYBDMY BMY BDMY BDMDMDMMY BYDMY BYYDMY BBBDMMDMY BYBYYDMY BBBDDMY BDDMYMMY BDMMYYYBMY BBDMYYDMY BYMY BMMMYYYBMDMY BMMMYYDMY BMYYBDMDDMMDDMMMY BBDDDDMBK10.K10K10.K1KKKK101110K10K1000KKKK10K10K100K10K10K10K10K10KK1011K100K100K10K1K1000K10110.1KKK 00KKKKK0K0K0KKK000000K0 07/307/307/307/307/307/307/3007/307/377/707/307/37/3307/3307/3007/00 /07/33307/3/07/3/307/3007707/3/07/307/3707/07/0 7/07/3/07/3/37707/307/337/307/30777//300000773330/1/201/2011/201/201/2020201/201/201/201/201/20/20/20/20201/2011/2/20/2021/202220/20/200/2001/222121/20/2011/2020//000/2020/2022220/202/0/2/2002020///22000017 0.1117 0717 0.70.7017 00.17 00700017 0117 017 017 0.0070707017 017 017 070017 0.17 01717 0070177700077770707000700.7 0000 0000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000
5,945,945,55,945,994945,9495,95,9445,9499945,94555,94995,9495,945,945,5,945,99595945,,995,945,9455559945,945,9455595559945,945,9599445,94595,945,94495,9495995,9455599555,,1.8 3111.8 381.8 3831.8 38381.81.8 331.8 33831.8 31.8 31.8 383833333318 3118 38818 383331331.8 381.888 388883881.8 33.8 388838883388388888.8 3883338333,378378337,378,3783783787,378,37,3783783783788378378378,378,3,378378,37888837833378778378888,33788,3788,37837788837378378873788378888878,37833833,333 83337783.9 67.9 6796.9 67967.9 6967967.9 6796696.9 676.9 677.9 67996996796799669696967966967696.9 677999966767.9 699.9 679676669679696966967967967977979669966796699969669677.83 2883 283 283 28383 283 232.83 2.8383.83 22.83 232838383333383 283 283 22222.8383 28832283 283 22.83 2.8383 2.83 23283 283 283283 283 283 283 283283 2883 283 2883228883 28322883 2322883332828333GAS GAS GAS GAGAS GAS GAS GAS GAS GAS GAS AGAS GAGAS GAS GAS S GAS GAS GAS GGAS GGAS GAS GAGAS AS GAS GAS S AS S GGGGGAS AS S S S GAS GGAS GAS AAGAS GAS GAS GAS AS AS GAS AAAS GAS GAAGAS S AAAS GAAS GGAS S GGAAS AAGGAS S GGAS AAS S S LIFTLIFTLLIFTIFTLIFTLIFTLIFLIFTIFFTIFTFLIFFFF DMY BDMY BDMY BDMY BDMY BDMY BDMY BDMY BMMY BMMY BYYDMY BYYDMY BMY BDMY BBDMMYMYDMY BYDMY BDMY BDMY BDMY BDMY BDDMY BMMYYYDMY BMY BDDMYDDMDMY BMY BMYYMY BBDMMYMYMY BDMYMMMMYYYBMY BYBYMYMDMYYMMMMDDMMDDDMBBMBBDMY BMMBBK10KK10.K10K10KKK101K10.K10111K10K100K1010K10KK10K1100K1000K10KK10.000K10K10K100K10K100K10K10K100K0K10KKKK100KKKK0K00KKK10007/307/307/3007/307/307/30707/307/307/307/377777/7/33307/3307/307/307/300007/3//333007/37///07/3330707/37/3307/7/37337//337/333/377/3/33377307/3/300073307/30070/20000/200/200/200/200/200/20/2020/20/200/200/202020/20/202000/200/20/20/20/2020/20200/200/200200/200/20/2020/22200/2000/2000/2/2/2000/2000/2///22/20020220/2/2022/22//22200/20/2000//2000/2017 0.1170717 0.17 0.77017 017 00070017 070017 00000017 0.117 017 0707070717 017 00017770707017 0770.7000777707017 00770000 0000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000
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Top ITop ITop ITop ITop Iop ITopToTTopTopTop ITop Iop ITooopop IppppIoooopopoppop ITopooopoopppToopopopTooppppoooppppppIIpnclnccnclnclnnncncnncnccnnncncncccnnnncnccccccnncnnnccclnclcccccccccccccnnclnc
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6,886,886,8866,886,88888886,8886,88886,886,86,88686,886,888886,88,88886886,886,888886,8866,8866,8888888886,886886,8868888888886886686,8888886886888886,886,86,8868688888888,88868,,,,,2.2 32.2 322 32.2 32.2.2 3232.22322.2 32.2 3232.2 322.2 322 3222222.2 3222 3232.2 333332.2 322.2 322 32.2 322.2 322.2 322.2 322332222 32.2 3222232.22223232223222 32.2 322 323323222222322.2 32222332333,6646,6646646,664664,666666,66444466666664,664666666,664664,664,664664,664666666666466666466646666666666666664664446,66446666666,664466666446444,6644666644666666.0 75075007500.0 7507575075.0 750750750707507500075.0 7075007507075075707555075075775007507075507507555550757557555507755755075007005.68 P68 P68.68 P6868668 P688868 P.68 P.68 P.68 P6868 P68 P68 P668 P666868 P868.68 P868868 P68 P68 P68 P66686668688888P68 P68 P68 P668PP668 P86688P668668 P6688868P68P8PP868 P666866888688888ACKEACKEAACKEACKEACKACKEACCCACKACKACKEACKEACACKECCACKECKECCACKKKCKAACKACKECACCCKCCKKCKEKACKEACKAACKACKACAAACKEACAACKECCKKKAAACKECKECKKAKECEACKACKEACCKKCACKACACKAAKCKKKAACCKCR6.6R6.6R6.6RR6.6R6.6R6.666R6.66R6.6R6.666R6.6R6.6R66RR6.6666R666R6.66R6.6R6.6R6.6R6.6RR6.6R666666666R66R6666RR6.6R6666R666.66.66.6666666RR666.66666R66666R6.6R6.6RR6.66R66666R666690 BA90 BA90 BA99090 BA90 BA90 BA90 B90090090 BA90 BA90 BABA90 BAB90 BA9990 BA99090 BA00B90 BA0B90 BA90 BABB90 BA909090 B090 BBA90 BA90 BAA0BA90 BA90 BA90 BA90 BA90990 BAA90 BA0BA0A90 BA990BA990B0BBAA90 BBAA9999B9090 B90BA9A90KER KER KER KER KKEER KER KER KEKKER KER KER R R KER KER KKER KER R KER R KER KER KKER R KKKKKER KER R R KER KER KKER R KK R R R R R K R R KK R KKER RR KK SC-1SC 1SCSSSSC-SC 1SCSCSCSCSCCSCSC-1CSC-1SC-1SSSC-1SSC-1SCSC-1SCSCSCCCSCSC-1SCSSC-1SCSC-1SCCC1SC-1SSSCSC-1SCSSSSC-1CSCSCC-1SCCSCSSSSC-SSSSC-SCSCSCSCSCSCSCCSSSC R RER RR R RER RER RE RRR RR R R R RR RER R R R RR RE RER RE RR RER RR RER RER RER RE RR R R RR RR RER RR RR R R R R E ER RER R R RR RER RR R RR R RR R R RER R RR TRIETRIETRIETRIETRRIERIERIETRIETRIERRRERIETRTRTTTRIERRIERRIERRRRIERRRRRRRIEERIERERIERRRRRRRRRRVABVABLVABVVAVAVAVABLVABVABABLVAVAVAVABVABLVABBABVABVABVABLVVVABVABABVABABVABBVABVABLVABVABAVABLVABLVABVVVAAABVVABAVVABVVVABLAVABVVVABAAAABVVVVAAABBVVABBBLBBE EE EE EE EEEEE EEE E
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4.0044.004.004.00004004.00044.004.000040404.004.000000004.004.0044.0000004.0004.0000000440404.00404.0004044000004.004.000000400000000000000000000000000000000000000000000000000
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LINERLINERLINERINERLINERLINERNERLINERILINERNLINERNENLINERLINERLINERRRNERINERINERNERNLINERELINENERRNRNENNRNNEERRNRNNNNLINERRRRNLERRLNERLINERLI D-SAD-SAD-SADD-SASAD-SAD-SADD-SAD-SAD-SAD-SDSDSAD-SASSD-SAAD-SAD-SADD-SAD-SD-SSSD-SASASASSAD-SAAD-SADSASSSAAD-SSSSSD-SASASASSSASADDSSSSDDDDDDDDSDDSAAAADSAAND; 6ND; 6ND; 6NDND; 6D; 6NDD; 6ND; 6ND; 6ND; 6ND; 6ND; 6NND; 6ND; 6NDND; 6666ND; 6NDNDD66D; 6ND; 66ND; 6ND; 6D6NDND;6D; 6ND; 6D; 6D; 6ND; 6N;66NND; 6ND6D; 6ND; 6ND; 6D; 66NDND; 666ND; 6;66DNDD6;;;,84,847.,847,847,847.,847.88847,84784847.8478478477,8477.,84888478478847784778478484847.8884748484778,88488,848484,84784848,847.,88844,847474888,847.,7.1-11111-11111111-11-1--1-11
12,1712 1712 1722,172,1712,172,1712,1712,17212 1221212,1721722222172,1712 1,17217712 1712,17121177112 17112,17212,11771222177712,2 77712212227,,2.62.62.62.62.622622.62.66222222662662626262262.662.66222222622.666666226666222.6226666.66
HANGEHANGEHANGEANGANGHANGEHANGEHANGHANAANGANGEANGENGGGEANGEHANGEHANGEHANGEHANGEANGANGNNHANGEHANGGHANGEANGEGNGANGEEANGANANGNGANGANGGGGGEANGANGAANGGHANGEANANANGGEAANHANGGANGNGGGANGAANGNGGGAAAGGHGER; 6,R; 6,R; 6,RR; 6R; 6,RR; 6,R; 6,RR; 6RR; 6R; 6,R; 6R; 6R; 6RR; 6R; 6R666R; 6,R; 6R; 6R; 6RR; 66666R; 6R; 6R; 6,; 66R; 6RR; 6,R; 6;66666RRR6666R;6666R;6,R 6,,;;;,;;847.1847 1847847847.17847.1884747.171477847.18478478847847 18847.1847.184784777847.847.1884784847847.1847 1847 11848471888447784848484778847.1847.4847474444887847.88 7.8 .-6,86-6,866866,86686,866,8666,866866,866686-6 866,866-6 868686,868686,8686,86666,866,866,86666,8686,8866866,866,8666-6,86666-6,886,868866-6,866,868668666,6 8888,868686668666,66,88666,8664.04.004.004.04.04.00044.00004.004.0444.0400000404000444000044400.0444.0444.444.0044444.0000.
TT; 6TTTT; 6TT; 6TT; 6T; 66TT;TT; 6TT 6T;TTTT; 6666TT;TTTTT; 6TT; 6TTT6666;6TT; 666T; 66666666666; 66666T;;;;,828.82828888828,828.828828828828828.828828.82,828.8828,82888288288288282,828.88828.8828,828.,828282828828,828.828822828.8,828.8288288228828888882828228282828888828882888 22222222222222222222222222222222222222
NIPPLNIPPLNNNINIPPNIPPLPPNIPPPNIPPPPLNIPPLNNIPPLNIPNIPPNIPPLIPNIPPPPNIPPLNIPNIPPLNNIPPPNIPPPPNPPPNPNIPPLNNNIPPPPPLNIPPNNNPPIPPLPNIPPPNNNNLNIPPLE; 6,E; 6EEEEEEEEE; 66E6E; 6E; 6,E; 6E; 6,6666E; 6,6; 6E; 66666; 6E; 66;66666EE; 66666666E; 66E;66E; 6,E;6666,E;;66;;;,,;,198.7198 719898 7998798.798.78777198.7198.798.79998.7981998 798 799989889898.7198.7798 7198 71198.798988198.77191998.798 788798.79198.989888.799899899879888987
EXTENEXTENEXTENEXTENEXTENEXTENEXTENXTENEXTENEXTENEXTENEXTENEXTENEXTENXTENXXXTENTENTNEXTENEXTENEEXXTENXXTENEXTENNXTENXXXXXXTEXXXXTENEXTENNXTENXTENXXNXTENXTENNEXXNNXXNNXTEXNNXXEXNXXNNSION;SIONSIOSIOSIONSSIONSIONSIONSIONSION;SIOSION;SION;SIONSIONION;OSIOONON;SION;SIONSSIONSIOSIONOONOSIONONSSIONSIONSIONSSONSIONSOOOSIOSSIONOSIONNSOONSSION;OOOONNNSSIOSOONSNN;;;;;6,1766,176,176,1761766161761777766,17617617616171776,1766,17666,176,1177617616,1776666666,17766,176,1766666,66 7,7.17.7.17177777717177717.17.1777.111777111771177771777.
PACKEPACKPACKEPACKEPACKEACPACKECPACKEACKEPACKEPACKEPACKEPACKEPACACKPACPACPACKEKKKEPACKEPPACKPACKACKACCACACCPACKEKACKKCKEPACKEPACKAAACKKKAACCKCKCKACKACKCKPACKACPPACKPAAACKEPACKEEAAKAAACKACCAACCCKCKR; 6,R; 6,RR; 6R; 66R; 6R; 6R; 6RR; 6R; 6,66R; 6,6R; 6,RR; 6,RRR; 66R; 6R; 6R; 66R; 6RR66;6RR; 6,66RRRR; 6,R 6R; 6R666R; 6RR;666RR;666RR6; 666;;,171.7171.7171.7171.17171 7171.7171.71171 7171.7171 771 711171.7171 71711771 717171 771171.777171.71.7.7171.711171 717171177171.1711 771.77777771777777.7
PBPBR;PBR; PPBRRPBR;PBPBRBRPBRPBR;BPBR;PBRPBR;PBR;PPPBR;BBPBRBRRRRPBRPPBRPBPBR;BRRPBBR;RPPBPBBPBRR;PPBRBBRRBBBR;RRBBRRBBRRBRR;;6,1416,1416,146,1416146,16,141661466,1416,1416,6,146146,1416,1416146,1416,1416,141666616,1411416161411614161446,1416,14166114,141,14116146614466416,14144464666666,.11.1111111111111.11....11
CUT; CCUTCCUT;UTCUT;UTTCUT;CCUTCUTCCCUTCUCUTTTCCCUT;CCUCCCUCUTTCCCCUCCCUTC;CCUTCCUCCUCCCUUUCCCUT;UUUUUUT;T;;6,11561156,1156116,1156,1156,1156,1151156,11561166,1156,1156,115116115611561155666115611566611561116,11561156,1156161556,1156,1156,1156,1151116,1156116,115611566115556611555556115665666,115666,11565,,.0.00.0.0.000.000.000000.000000000000000000000000.00000
GAUGEGAUGAUGEGAUGEGAUGAUAUGEGAUGEGAUGEGAUGEGGAUGGAUGGGAGAUGEGAUGEGAUGGAUGEAUGGAUGEUUGAUGGGGAUGEGGAUGEGAUGEGGGAUGGAUGEGGAUGEGAUGEGAUGEAUGGAUGGUGGAUGEGAUAUGEUUGEGAUGGAUGEGAGAAUGAAUGGGAUGGAUGGAUGGAGAUGAGAUGAUGEUGGEEGAGGAGGGGAUGGGGGAAUUUGGGGAUGAAUUU; 6,0; 6,060606,06,066,006060;6,066,0660666000;6,00606,066,000;;6,060; 6,0; 6,06,0600006,0600606606,6660606; 6,06; 6,06,066066666660000; 6,0,;;,56.456.4556.456.456 456656 456 4566456.44556.4656 464456.456.456 45656.46456.456556.456.466446456 45656.466656.444.456 4565656556456 4445664456565456555566456
PBR; PBRPBRPBRPBRPPBRBRBRPBRBRBRRPBR;PBRPPPBRBBPBPBRRPBRPBR;PPBRPBRBR;PBR;;PBBBR;PBRRRRPPBBRRPPBR;BBRBBRBBRRBRR;;6,00366,0036006,00360036,00306003600360036,003000036006,0036,003600366,003006,0036006006,0030036,00366,06,00360006000003000336,0036,003003030600336,00300006,0033360606,003600660036636,00366,00306,00336,0000000003,003603,.666666.66666.666666.666.666666.6.66666666..666666666.
SLEEVSLEEVSLEEVSLEESLEEVSLEEVSLEEVSLEEVSLEEEVEESLEESLEESLEEVSLEEVVSSLEEVSLEEVSLEEVSSLEEVLEEVSLEESLESLEESLEEVVVVSLEEVSSLEEVSSSSLEESLEEVEEVEVVEEVVSLEEVLEEVSSSSLEEVSEVVVSSESVSSSLEEVSSSEVSLVE-O;E-OEE-OE-O;E-OE-OE-OE-OE-O;EE-O;E-O;EO;EOOE-O;OEOE-OE-OEOE-O;OOE-OOE-OE-OEOOO;E OO;OE-OOOOO-OOOOEOOOEO;;;;5,9985,9985,9985,99899999995,9985,998599859985,9959985,95,9985998999989995998985,9985,998595,9989985999995998985,9989985,995,9985,99885,9985998555,99859995,99885,9985598885559989989599895,99,9988995,99958595,9999999,99899888.3333.333333333.333333.333333.333333333.33333333
LEAK;LEAK;LEAKAK;EAK;AK;EAK;LLEAKLEAAAKKLEAK;LEAK;EAK;EAK;LEAK;LEAELEALEAAKLEAKAKAKKAAKAKKAEAKAKAKKEAAAKKAKAAAKKK;AAKKKAKK;LEAKKAAKKAAAAKKKLEAK;AA ;LLL K;5,995,995,995,95,9995,99995,995,995995,995,995995,995,995,999,9999995,9955,9999959999999995,999955995,9999995,95,995,9955959959999955599595,999995,9955995,959995,99999,9.09.09.009.09.0909.09.00.0999.09.090900909.0099099.00000099009099.009.09009.09.099.09999909.0999.00999..9.0009
NIPPLNIPPLNIPPLNIPPLNIPNIPPLNIPPNIPPLPLPLNIPPLNNNIPPLNNNIPPLNIPPLPPPPNIPPPPPPNIPPNIPPLNNNIPNIPPLNIPPPPNIPPNIPPNPPPNIPPNIPNNNNNPNNNNPPPNNNPPPPNNNE; 5,E; 5EE; 5,EEE; 5,EE; 5,E; 5E; 5E; 5EE; 5E;EE; 55E; 5,EE; 55,5E; 5555555E;E; 5,5555E; 555,555E555;55;;;;;;996.19996.1996996996.96.1996.996.1996996 199699696 199999696996669999699699969969996.199696996 1.1996996996196.196 19969999996969996696.1996.119696199999666999999966199699
GAS LGAS LGAS LGAS LGAS LGAS LGASGASGASGAS LGASGAGAS LGGASGASASAS LASSSGASGASGASGGASGGGASAASSSGAS LSSGASGGAS LGASGASASAGAS LSGASASGAGASGAGASSSSGGAASS LGGGAASSGASSLGASSSASGGASSSSLGALASLIFT;IFTIFTFFTIFTFIFTIFIFFTFT;FT;T;T;TTTTTTFTTTT;FT;T;;;5,94159415,95945,9415,94195,94,94155,9415,94595,945,9995,94999415,9415,945,949999949945941941559999945,9415,941155559414415,955945994945945,94949,9445,9994544459555994,,.8.8888.8888888888888888888.8888.888888888..888888
LEAK;LEAK;LEALEAEAK;LEAKLEALEAKLLEAKEAEALEAKLEAKLEAAAKKEAK;LEAK;AKAKKKEAKAAKAKK;KAKKKEAAAKKKAAKKK;AKAAKAKAAKKLAKKKAL;;;5,74755,745,75755755775,74445,745,74555,7475745,7455,747745,7445,745,5 7575,744574575,74557455575,7445,774445555554,,,0.0.0.0.00.00000000000000000.000.00.00000.0000.00.00000000000000.00.00.00000000.00.00000000000.0000000000
GAS LGASGGAS LGASGAS LGAS LAS LLGGAS LGASGASGAS LGASGAGAS LGASGASGGASGASASSSGASGASGASSSGGASGASGAS LGAGGAS LAAASAS LSSGASGAAGASGAGASAGAAASGASGASAASSGAS LGASGASASGAS LASSSGASSGAGGASSSLGASLGAAASLLIFT;FTIFTTTFTIFTFIFIFFTFT;IFT;FT;TTTIFT;IFTTT;FTT;;;;;;;3,51933,51993,51951935193,51913,519,51953,519919333,5193,51935193,51955195193,5193,5193,51995199935193,513,513519353,5193,53,5193,5199331919993,51935515199335593,519519553,519353,5193,5193,5193,519559,5193,53,55 9511,.44.44444.444444444.4444444444.444..4.
LEAK;AK;EALEAKLEAK;ALEAKELEAKEEELEAK;LEAKLEAKLEAK;LEAEAK;EAK;EAK;LEAEAAAKAKKKKAAEAKKLEAKAK;KKAK;AKKAKAAEAKKKK;AAKAAKKKKKKKLLEAKAAKKLAAA;;;;3,393,393,393,3393,393,333933,39333333,39333,39393,393,3339393,39339339933393,39333933933,3,393,39393,3993,3993,3939,39939333393399333,393,3933393,393333,399,3933,339,,9.09.09.099.09.09.09.099.0999.09.09.0909.0909.000909.0909.0009.009.09.0990009.0990099999990.0099.0099999..09.00
LLEAKLLEAK;LEAK;EELEAKLEAKEAK;LEAKLEALEAKLLEAKEAEALEAKLEAKLEAAAKKEAK;LEAK;AKAKKKEAKAAKAKK;KAKKKEAAAKKKAAKKK;AKAAKAKAAKKLAKKKAL;;;3,373333333373,373,373,373373373373,37373373,373,33,37333333,3737373,373333333,37773,33333,377,373333373,37333333373,37373373,33 33373,74.04.04.04.0.04.04404000004.044.04.0040.0040040040440400.004.0440004.04400400000000004...0
SURFASURFASSURFASURFASURFASURFASURFARFRFASSSURFASURFASURFASSURFASURFAURFASURFAFRFSURFAASSURFASURFASURFASSRFARRFASURSURFAFASSSURFASURRSURFASURSURFAAAARFAASURSURFAASURFASURFAURFASRSURSSRAAAASURFARRRRRFASAAASSSUUSUURASSSUUUURRAARCE; 2CE; 2CECE; 2CE; 2E; 222CE; 2CCE; 2CE; 2CE; 2CCEECE; 2E; 2CE; 22CE; 2CCE; 2CE; 2CE; 2CE; 2CECE; 22CE; 222CE; 2CE; 2CCE;CCE; 2CE; 22CE; 22CE; 2CCCC;2CCCE; 22EE2CE; 2CE; 2CCE; 222CCCCE;CC 22;;8.3-3888.3-383388.3-38.3-338.3.3-338333-38338.3-3883-3833883-333833-33338.3-338.3-38.3-3383-38.3-38.3-33-33-33338.3-3388.3-38333838.3-388.3-33338.3-3883-38333383-33883--388.3----333383338,080.08080080080080080080.88880.0080.08008008000808008080,080.80800080080080,080.0800808080080080008008080080.,080.0880,080080,080.0808888080880,00 0080008800880000880080,4444444444444444444444444444
FLOATFLOLOFFLOATFLOATFLOAOFLOOFLOATALOATFLOATFFLOATLOTFLOAFLOAFLOAFLOATFLOATFLFLOALOAOFLOAOAOOATOAOAOOAOAOATLOATOOOAOAOOOAAAAOOLOAAFOOAAALOAOOOOOOAAAATOOAA SHOESHOESHOESHOESHOESHOOSHOEHOESHOESSHOHOESHOEEESSSHOESHOESHOESHOESHOESHOSHOESHOSHOESHOEOOESHOESSSHOSHOSSHOSOOSHOOESSSHSHOHOEOOSHOESSHOHOOSSOSSOOOOSOOOSSOSHE; 3,03,03,0;3,003,0; 3,0;3,0;3,03,03,03,03,03; 3,03,0; 3,033,033,0303,00; 3,033,00;30; 3,; 3,0330; 3,03,0;3,; 3,030330000330;3,03,000; 3;3 0;00;,,;,78.9-778 97878 9-78.98.9-78 978.978897878.9-78 9-78 9-7878.97878.98.9878.98978.978 9978.998.9-778.9778.98878.9898.997878 98988878.988978 9988977889--77 98.99-788 989787 3,0803,08033,0803,0800803,0803,0800008083,08003,0803083,08030803083,0803,0803080083,08,0803,08003,080888,08030803,0803,08008003,03,0803,0830803080,0803,080083,08808000080333,080803,08030803,08088803,080888088388308000033,88803,08000880,.4444444.444444.444444444.44444444....
FLOATFLOATFLOATFLOATFLOATFLOATFLOATFLOATFLOATFLOATOOATOOLOAALOATFLOATFLOATFLOAFLOATFLOFLOATFLOAFLOATFLOAFLOAOFLOATFLOATFLOOAOOFLOATLOAOAOATTOATTOATFLOAFFLOATOOFLOOOATFLOATTOATFLOATFLOATAOAAFLOAFLOAFLOATAATOATAAAFLOATOOOOOAAOOOAAAATOO COLLCOLCOCCCCOOOOOLCOLLLLCOLLCOLLCOCOCCOCCOCOCOLLCOCOCOCOCOLLOLOLLOLLCCCOLLCCOLLCCCOOCOOCCCOLLOCCOOCOLLOCOCOOCOOCCOCCOOLLLOOLCOCOCOAR; 2AR; 2AR; 2AR;R2R2RR2R; 2AR; 2AR; 2AR; 2AR; 2AR; 2AAAR; 2RAR; 2ARRR; 2R; 2R; 22AR; 2AR; 22AR; 2ARAR; 2AARAR; 2RRAR; 2AR; 2AR; 22AARAAAR;AAR;RAR; 2AAR;R; 2;R; 222AARARR2;2RARR2AA2;;,990.,990,9999990990.,990.,9909900,99990999099,9909909990,99099099099099099099099,9909999999990,9909990.0,990099999,990.0990,990990909009990999099990999909990999090000.99,990...,9990990,1-111111111-1111111-------
2,9912,992,9912,9922992,99199292999999919912,992,9912992,99122,929999992,999992,991229922,992,92,992,99129911299129999911122,99999222,999999992299992,9999999992,9,999 .999999.999999.9999999999999999999999999999.999
NIPPNIPPLNIPPLPNNNIPNIPPNNIPPNIPPLIPPLPPPPNIPPLPLNIPPLNIPPLNNIPPLNIPPNPNIPPNIPPLNIPPLNNNIPPPPPPPPPPPPNNNNNIPPNNNNNIPPLPPPLPPPPPNNIPPNPPPLPPNNNPPPPPNNNNLNPLE; 2,E; 2,E; 2EEE2E; 2,EEE; 22E;E; 2,EE; 22E; 2E2E222E; 22222E; 2;22EE; 2EE2,2; 2E; 2,EEEE;E 222; 2E; 222222E; 2E; 2; 2E; 2E;2,;,665.1665.1665.16656656666665665.15665.1565.1665.16665665.166656656656665665665.16666656656516666666656656665.1665 15.166665665.166516666666665.66656656666656656555666666556665665.66666566.1
CONDUCONDCONDUCONDUCONDCONDUCCCONDUCONDUCOCOCONDUOOOCONDUCONDUONDUCONDUONDUNDCONDUCONDUUCOCOCOCONONDCONDUONDCONDONDCONDUUUCONDUCONDUOCONDONONDCONDCONDUCCCONDUCONDUNNDCCONDUONDNNDCONDUCOUCCCONNCOCONDUONCONDUOONCCONDUONDUUCONDCONDUONNDUCCONDUDCTOR;CTOR;CTOR;CTORTORCTOR;CTORCTOCTORCTOCTOCTOCTOR;TOR;TOROOOCTORORCTOR;CTORCTORCTORCCCCTOR;CTOTTOOROORCCCTOCTOROR;CTOOOR;ORR;RORCCOCTOCTOR;;OR;OROOR;CTOR;;ORROOORRCOORRCCCCOOOORCCOO;O 34.73434.734.734.734 734.334.734.73347434.734 73334.734 734.734434.34.734.7733477334344434.7334447734.734.7343444434.3334447434.773733433447-148.148.148448114814-148.-14888888.1481148148.4848888148148148.148.11148.1484488848.88148.1148.4844888-148488848-484888848888888888..0000000000000000000000000000000000000000
HANGEHANGEHANGEHANANGANHANGENGHANGEHANGEHANGEHANGEANGGEHANGHANGHANGEHANGEHANGEAANGANGNGNNGGGHANGGANGEANGEANGENGEENGEHANGANHANGANGEGANGANGEGANGNGEANGEHANGANGHANGANGNANGGAANHANGEGHANGHHANGEHANGEANGNNEANGNGGNGANGNGNNANGGGGAANGGGEANGGEHHHAAANGNNGEER; 28R; 28R; 28R; 28R; 28R; 28RR28R228RR; 28RR; 28RRR2R; 2822R; 282282R; 288R; 2888R; 28R; 28R; 28RR; 28R28R;22828R; 2R; 2888RR; 22R; 28828RR; 28;288R;R;22R; 28R; 28888R; 288RR228RR; 28R; 2228R88R288; 2822R; 2R;22288;.3-323-3233-323.3-32333223-32333-323-33-323-323-3.3-323-3222232-3233233-323-3333-33-3233-33333223-32322333-323333-323323-3333-3233323-32323-3233-323-32-3223-3223-33322.3 3.3 3233333.3 32.3323322.8.888.8.8.8.888888.8.8888888.88888888888888888888888888888.8888.88
HANGEHANHANGHANGEHANGHANGEHANANGNGEEHHAHANGHHANGEAANANGNGHANGENGNGEGGEANGNGHANGEGEHANGHANGHANGHANGEANGHANGNGEGENGGGENGHANGNGEEEHANGANGANGANGGGGANGHANGHANGHANGEANGENNHANGEHANGANGAANGENNAANNHHHANGEANGNEENGANGEGGAANGEANHANGEGAANGGGHAAGGGHHHANGENNGAGER; 27R; 27R; 27R; 27R2727R; 27R; 27RR; 27R; 27RR; 2R; 272R; 2722727R; 2R; 27R27R27R27RR; 27R22R; 2277727; 27RR; 2722277R; 27R;R;222R; 27R; 272R; 27RRR; 227;27RRR; 27R; 22R; 277R; 2722R; 27R2RR2R; 27RR2R; 2; 27272;.1-301-30.1-303033.1-30-3011-301-3030303030301-3001-11-30330330001-31-3031-3031-30300.1-3011-301130.1-301-303-300-3033333--3303033030300.1313000..8.888.888888.8.8888888888888888888888.888888888888.8888..8..
HANGEHANGEANGEHANGHANGHANGEHANGEANGEANGENGGEEGHANGEHHHANGEAANGEANANANGANGGEANGEGGEHANGHANGEHANGEHANGEANGHANGENGGGEGGANGNGEANGEGANGAANANGGGAHANGEANGAHANNNGGHANGHHAANGANGEEANGNNGHHAAANNEEGGANGNNNHANGGGEANGGGGEEEANAR; 23; 233R; 23R; 23R; 23R; 23R; 233R; 23R; 23R; 23RR; 23R; 23R; 2322233R; 23R; 23RR; 23RR; 23R; 232222R; 23R; 2332323R; 23R; 23R; 2R; 222R; 22;23;R; 23R; 23R; 2R; 233RR; 2R23R; 2R; 23R2233R; 2322333;23232223R; 23;.11.1.1.111.111111.1111..
KUKKUKUKKKUKKUUKUKUKKUKUKUKUUKUKKKKKUKKUKUKKKUKKUKKKKKUKUKKKKKUKKKKUKUKKUUKUKKUUKKUUKUKUUKUUUUKUKKUUUKUUUP PPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPP PPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPROROROOOOORORORROROROROROROROOOOROORORORORROROOROOROOROOROROOROOORRROOROOOORORROOOROOOOORROOROORRORROROOOROORRRRORRRORROROOOROROOORRROOOROOOROOOOODDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDD
KB-GrKB-GrKBKB-GrKB-GrKB-GrKKB-GrKB-GB-GB-GBB-GB-KB-GrB-GGrKB-GrKB-GrKB-GrKBKKB-GrKBGGGGKB-GrGKB GrKBGrKB-GGKBKKBGGKB-GBGGKBKGGKB-GrKB-GrGrrrKB-GrKKGGB-GKBGrKBGKBGGKKGGKKKBGrKKKBGd (ftd (ftd (ftd (ftd (ftd ((fffd (ftd(fd (ftd(ftd(ffft(ftd (ftd (ft(ftd (ftd (ftd (ftdddd((d(ffd (ftfttd (dddd (d (fftd (ftd((fftfdddd(ddd (fttddt(((())))))))))))))))))))))))))))
34.734.7473334.734.734.734.7434.734.734 734.73334 734.343434.734 734.7734.7334.734.7334.734 733434.734 734434.7747447344734.7447344444.3334444.7434433337.73730000000000000000000000000000000000000000000000
RR DaRR DRR DRR DaRR DRR DaRR DaRRRDRRR DaRR DaDDRR DaRR DaRR DaRRR DRRRR DaRDaRR DaDRR DDaRR DaRRRDDRR DRRR DaRR DaRRRDDRR DaRR DaRR DRRDDRDaRR DaaaR DaRR DaDRDRDaRR DaRRRRR DaRR DaRRRRDaaaRRRR DaRRRDDaaaRRR DaaRRRaatetetttetettettetetteteeeteeteteetteeeeeeeeeeeeeeeteeeeteeee
8/318/318/318/318/3138/38/318/318/388/38/3188/38/38//8/338/38/38/38/31888/3188/3/3/8/33/38/318/318/318/8/3318/31/38/8/318/31/3118/88/38/31188/318/3/31888/3833318888/8 38/318/31/888 33883333/318383/200/200//200/200/200/20000020000/200/200/200/200200/2200/20020000000/2/200/2002002220200/20000/20200000/200/200/200/20/200/20/2000///2002/2000002/2000/2000//22200222000/200/200200220000002200000000000033333333333333333333333333333333333333333333
OtherOtheOOtherOtherOtherOtherOthOtherOOtheOtheOtheOtheOthOthetOtheOtherhOtherOOtherOtOthOtherOtheOtheOOtheOherOOtheOtttthehOtheerherrOOOheeOtherrrOthetOtOtheOtheeOtheeteerrhherOtherOtheOOOO ElevEleElevElElElevElevElevElevEEleEElevElevEleveveeevevevElevElevevevevevvvvEEeeeveveveEEElevevvevveveelevevvvveeeeeeeeeElleeev……………………………………………
1B1B1B1B1B1B1B1B1B1BBBB1BB1B1B1B1B1BB1B1BB1BBB1BB11BB11B11B1BBB11B1B11BBBBBBBBBBBBBBBBBBBBBBBBBB1BB-111-11-11-11-111111111-1111111111-11---11010101000100010101001000001010101011010001000101010001001010110000001001011101000000000000000000000001
..................................
TDTDDTDTDTTTDTDTTDDDDDDTTTDTDTDTTDTDDDDDTDTDTDDTTTTTTTTDTDTDTDTTTDDDDDDDTTDDDDDTDTDDDDTDDDDDDDDDDDDDDDDDDDDDDDDDDDTDTDTDTDTDDD
Act BAAct BAct BAAct BAct BAct BAct BBBAct BAAct BAct BAAct Bt BtAct BBBAct BAct BAct BBct BAAct BAct BAct BtBActAct Bct BAct BBAAct BAct BctBBBBtBActcccct BtBct BAAccBBAAcAccctBBBAAAAcBBActBBct BActBActcAActActccctBcBtm (ftm (ftm (tm (ftm (fff(ftm (ftm (ft(ftm (fm(f(m (fm (fm(fm(ftm (ftm (ft(tm (f(ftm (fftm (ftm (tm (ftm (ftm (ftmtm (fttmm (fmm (mtm (tm (f((f(ftm (fftm (fmmmmfttm (f(ffffmtm (fm (ttt (fmftKB)tKBtKB)KKBKtKBtKB)BBBB)tKB)tKtKB)tKB)tKBtKBKKBtKBKB)BB)B))tKB)ttKB)ttKBKKKKtKB)tKB)BtKB)B)ttKB)KKBKBBBtKBttKB)tKBtKKtKB)tKKBttB)BBBKBtKB)tKB)BBBBKKKBBtKB)tttKKtKBKKB)))
12,212,212 2222,212,212,212,2222222,22222212,222112,212,2222222,22,2222,222221122,212,212,2212,21121122,2121122,12 2222,22222222222,,2222,,22212,22,222222,,,,30.030.030.030.0000030.0003330.030.03030 0330.030030.0300030 030.030.0330.030 030.0330.0000.030.00.000.000.00.030 030030 00.030.0330 0000030.030.0000030.30.3030.03330 0330 030.00033030.00000030.003330000.0..0303300030.0.0
WeWeeWeWeWeWWWWWeWWWWWWelWeWeWWWWlllWWeWelWWWWelWeWelWWelWWeWWWWeWWWWelWelWWWeWWWWeWWWWWeWelWWWeWeWWeeeWeWeWeWeWWWeWeeeWeWWelWWWWWeeWeeWeWWWWWWWeWeeeeWeeWWWeWeWeWeeeWWWWWeeeWeeeeWelWWWWWeWWeeeWelWWWWeeellWWWWeeeWeWWWeeeeWWWeWWWeeeeleeeeel AAl AlAl AlllAAAAAl AllAlAAAllAAllAAAAAAAAAAAAAAAAAAAAAAAAl AAAAAAAAl AAAAAAAAAAAAAAAAAAAAAAAAAAAAllAAAAAttrttrttrttrtrttrttrtttrttrttrtttttrtttrttrttttrttttrttrttttrttrtttttrttrtttttrrrrrttrttrttrrtrttrttrtttrttrtrrrttrrtrttrtttrttrrrttrrttrrrrttttrrttttttttrtttttttttttrrttttttttttibuibuibubibuiibiiibuibubbbbibuibuiibubibubibuiiiiibibuibbubbuibiiibbbbbibbbuuubuuuuibuibiibbbbbuibuibuibbbubububbbbbuuibubbbubbbbbbbbbubibbbubbuuuibbbuuuubbbububuubbbubbuuuuibuibubbbbbuuuuuibubbbbbuuuutesetestestetestestesttttestesttesttestesestesestesesestttesttesesesestesstesstessestesteetestestesstesessteteesteseesesessstestestteeeeeeesstessetesssessseesssesesseeeesssstessseesesestteeeeeesssstttteeeesstteeesesssteeestttetesessssttettteeeesssss
FFieFieFieldFFieldiiFielddFi ldFi ldFieFieFiildieldleldFieldFFieldielFielieldFiieldFieieiieeeeelFieldFieldFieldeldFielieFieldeddeldeldFFFieFeldeeelddielddedFFFeelddedeldededielldFieilddddNameNNNNamNNameNNNaNameNameNNameNNamNameNameNamNamNameNamNameNamNameaamaaameNamNamemeNameameNamNameeameNamNNNameaaNamNamemNameeeNaaNamemeeeeeNNmameeNameNameeNaeNNameameNameeaeeNNaeeeNameNamamm
WESTWESTWWESTWESTWESTWWESTWESWESEEESTESTWESTWESWESWESWESWESTWWESTWESTWWESWESWESTEESTWESTWESWESTSSWESWWEWWESWESTWEESTWESTESSSWESESWESSWESTTSTWESWEWESTWWESWESWESSWWWWESTWESSSWWESWSSWEWEESESSSWSWSSWSWWWWWSSSEEESSSWSWESTWESTWSSSS SAK SAK SAK SAK SAK AK A A AK AKK SAK S S SAK SAK SAK SA SAK AK SAK AK SAK S SAK SAK S SAK SAK SAK SAK SA SAK SAK SAK SAK A SA A SAKK SAK SA AK SAKKK SAK S S A A A SA S A S SAK S SA AKK S AK SAK AK SAK SA AK A AK S SAAK S SAK AKK S SAK A AKKK S S S AK S A SAK S S AKK
WellbWWlWellbWellbWWllWelbbWlWWWellbWellbWeWllWellbWellbWelWelllWellbWellbWellbWellbWellbWWellbWellbWellbWellbWellbbWellbWWWeeellbbellbWellbWeWWeWellbWeeWellbWellbbWellbeWellbebWWWeWWWellbWeWellbWeeWWellbbebWeWeebWWWeebbbWWWWellllbbore Aore AAAore Aore Aore AeAAore Aore Aore Aore Aore AAore Aore Aoreooore Arrereoreeore Aore AAore Aoore Aoreoore Aorerere Are AAeAoorereeeeore Aore Arore AAAre AAAAeooooeeAAore AooeeAooereAore AAPI/UWPI/UWPI/UWPI/UWII/UUPI/UWUI/UWWUWPI/UPI/UWPI/UPI/UWPI/UWPI/UWI/UW/U//UWWWPI/UWPI/UWPI/UWPI/UWPI/UWPPPI/UWPI/UW/UW/UPI/UWPI/UWUWUWWPI/UWPI/PPPPI/UWPI/UW/UPI/UWWPI/UWUWWPI/UPI/UWPI/UWUWWWPI/UWPI/UPWWPI/UWPP/UWWWUW/UWW/UWUWUUUWUWWUWPI/UIUWWIIIIIIIIIIIIIIIIIII
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
WellbWWlWllWellbWellbWllWWelWellbWellbWellbWWellbWellbWWellbWellblWelllWellbbWelWellbWellbWelWlWellbWellbWellbWelWWellbWellbWWWeleeellbWellbWellbellbWeWeWWellbWeWellbWeeWellbWWWeellbeWeWeWelWellbWellbWellbWellbWellbWeeWeellbbWeebWWelbbbWWeelbbore Sore Sore SSore SeSore SSore Sore SSSeSore Sore Sre SSre SSore Sore Sore SSoreoreore Sore Sore Sre SrreeSSSore SSooreeeSore Sore Sore Sore Sororeore SSoreooreroree Se Soreoreorere SSorre SoeSooeeSeSSeeSoreeeeSSoreore SSStatustatustatutatustatutatutatustustatuttatusatusattatustatutatutatatustatustatusataattatusatustusttatusssustatustatustatustatutatussustatustatusaatusatustatusatusaaatusatusatuasssatusaatustatatuatustusustattusttaatuss
PPRODPRODPROPRPPRODPRODRPROOPRODRODDPPRODPRODPRODPROPROPRODRORROODROPRODPRODODPRODPRODPRODPROPROPRODPRODPRODPRORPROORODDODPRPROPRORRPRODOPRODDPRORRROROOODDPRODODDRRODROODDPPRODPPROPROORPRORODRRORDOODOOOODDODDDRORPRODROOO
MaxMaxMaxMaxMaxMMMMMMaxMaxMaxMMMMMMMMaxMaxMaxMMMMaMaxMaMaxMMaxMaxMMMMMMMaxMMaaaxMMMMaxMaxaaMaxxxxxMaxxxxMMMaxMMaxaMaxxxMaMaxMaxMaaxaxaxxaxxMMMMMaaaaaMaxaxMaxxMMaMaxaaaaaMaMaxxMaxMMaxMaaaxxMaMMaMMaaaMMMMaaaxMaxMaaaaxMaaxMaaaxxaaMaaxxMMaaaxaxxxMMaxxxxMMaaaxxMMaxMMMaaaaxxxxaaaa AnAnAnAnAnAAAAAAnAnAAAAnAAnAAnAnAAAnAnAAAnnnnAnnAnnAnAAnAAAnnnnAnnAAAAAAnnnnnAnnAnAAAAnnAnAnAAAAAAnnnnnAAAAnnnAAAAAAAnAAnAAAAAnAAAAAAnAAAAAnnnnAAnAAAnglegleglelllglglegleglegleglgleglglelgleglegleglegleglegleglegleglegleglglegggleggeegleegglglegggleeglegleggleglegglgleeeegggleggeeeeegggleeeeggeeegleeglegeeeeeeeggeleeggegleggeeeegggleggggeegleeeeegggegleegleggeeggggleeeeeegggeegggggggggggggg & & &&&&&&&&&&&&&&& &&&&&& &&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&MDMDMDMDMDMDMMMMMMMMMMMMMMMDDDDDDDDDMMDMDMMMDMDDDDMMMDDMMMDDDDDMDMDDMDMMMMDMMDMDDMDDDMMMDMDDDMMMMDDDMDMMDMMDDMMMMDMMMMMDMMMMMMMDMDMMDMMDMMMDDDDDDDDDDDDMMDMMDDMMDMMMDMDMMMDDDDD
IIlIIncl InInclnlclIInclInlclclIncInclInclncnncnncnccccnccccncnccncncccncIccccnclcncInccnclnclcl (°)(((°(°)(°(°)(°)°)°)°°)(°))(°)(°(°)(°(°)°°))(((°)°(°)(°)(°)(°)(°)°)°°(°)(((°)°((°(°(°)())))))(())(())
92.892.892 8992.892 8892.8992.92.82292.892.8882.8282892 892.8929992 892.892.892228282289292 8888992 892.8292.888892.8992.8992 892.88992 828892.892982892.892.892 889929228899892.82882228822.2.892.82.899922.882882.822..6666666666666666666666666666666666666666666666666666666666666666
MDMD (fMD (fMD (fMD (fMD (MD (MDD (fD(DMD (fMD (f(ffMD (MD (fMD (fMMD (MMD (fMD (fMDD(MD (fD(fMD (fMD (fMD (fMMD (fMD (MD (fMD (fMDDMD ((fMD (fMD (fMD (MD (D(fDMDMD (fMDMD (ffMD (ffMDDMD (fMD (fDMD (ffffMDMMMD (fMMMMDMMDD (MMMD (M ((tKB)tKB)tKBtKB)KKBKBtKB)KtKB)BtKBtKB))tKtKB)ttKB)tKKKB)KKB)KBKtKBKB)KB)tKB)))tKB)tKBtKBttKB)tKB)KtKtKBtKB)tKB)KB)KB)KB)BtKBtKttKB)KB)tKB)KKB)BBKB)ttKBtKB)BBB)KtKB)BKBBKKB)KBtBBtKKttKtKKB
777,807,80800008077,7,808807,807,807807,807,8000,807,807807807,8088080808080807,807,88,807,80800807,807,807,80,8078007,8007,80788007,80780877807807,7,88080807,808007,8007,80800788807,8800,3.283.283.283.2883.283.288333283.2832323.28232283.283.28283.283.28328333.283.28323.283.28883283.283.283.28228283.282883.23.23.2332883.283.282838833.2328833.283233288832888223383.228833888333222322
WELWELWEWEWEWELWELWWWELWELWWEWEWWELLWELWEWELWWWELWWELLWELWELWELWWWEWELWEWWEWEWEWELWEWELWWEWWELWWWWEWWELWWWELWWWWELWWWWWEWEWWWEWWLWWWEWELWEWWWELWLLLNALNALNALNALNNAALNALNALNALNANNALNAAANALNALNANNANNANAALNNALNANAANANANAAANAALNANNANANAANAANNNNAAALNANANANAAAAANANALNALLNANAAALNALNANANAAAAALLNALLNNNNNNAAAAME WME WME WME WME WME WME WME WEWME WME WWME WME WME WMEWME WME WME WWWME WME WWWWME WWME WME WMEEME WEME WEME WWWME WME WWME WMEEME WEWWME WME WME WMEWME WME WME WWME WME WME WME WMME WMEMEME WWME WME WWMEME WME WME WWMWME WMMEWME WEWWEEWME WWMWWME WEMMMMEME WEWWELLELLELLELLELLEELLELELLELELLLLELLLELLELLELLLLLEEELLEELLEELEEEEELLEELLELLELLLELELLLEELLEELLLLLLBOROBORORBORBORBORBBORBORBORBORBORORORBOROBORBOROOBORRBORBORORRBORBORBORBORBORORORORRORBOROORRORBORBORBORBORBORBOBORBOBORBORBORBOROOORBBOROBOROROBOORBORBBORRRBBOBORRORBORROORBOOOORORBBOBOROOORRRRE1B1BE1BEBE1BE1B1BE1BEBE1BE1BE1BE1BE1BE1BE1BB1BB1BBE1BBEBEBBEBE1BE1B1BBBBE1BEE1BBEBBEEEE1BBEB1BBE1BE1BBEEEBEBEE1BBE1BB1B1BEB1BBEBEBBEBEBBEBEE1BBBEEE-10-10-1-101-1000000101-1001000-101-101010000100-1010110-1000-10-10-101011-100-101111-----10-100000000111000011111111111111111111111111111111
AnnotAnnotAAnnAAnnotAnnotAnnoAAnnotAnnotAnnotAnnotAnnoAnnoAnnotAtAnnoAAnnotAnnoAnnotAnnotAnnotnAnnotnAnnotnnotnnAnnnotnnnonooAnnotoAnnotAnnoAAnnonotAnnoAAnnotAAnnnnooAAooonnonooAAAootoototatioationationationitionatiotatioatiationiiationatationationationtionationatioaatioationatatioatationionionatiooonnnatioaatatioatiotionatiotoonnnaaoaioatioooaoaatioaooaaaooatto
LastLasLasLasLasLastLastLastastastastLastastLassasaassasaststttastaaaLaasasastLasLastLastastaasasssssaaassaasssLasasaaaassaaaaastsasasas WO: WO WO: WO WO: WO: WO WO: WO WO W WO WO: WO: W W O WO WOO WO: W W WO W O WO WO WO:O: OO W W WO: WO WO: OO W W WO WO O WO WO O WO W W W WO: WO: W W : W W W WO W W W W WO W WO W WO W OO: O O OO W O OO
End DEEndEdDEnd DEdDEnd DEndEnd Dndnd DDEnd DEnd DEnd DEnd DdDDnd DEnd DEnd Dnd DEnd DDEnd DdDnEnd DndndDndddDEnd DDnnd DnddddEdddddDDDnddddDDddateateatattateatateateateatteatateateaaateaatetetetateeeeatateateateteeeeateeateateeeateeateaateaaeateeaeateeeeaaaeaatettH2SH2H2H2SH2S (H2S (HH2S2S (2SSSH2S (S2SH2S (S (H2SHHH2S (H2S (22S (2S2S (SSH2SH2S (S2S2S ((H2S (2SH2S (2S2 (22SSS (22H2SSSS(2S2SS (S(222S (H2H2S (S22SSS2SSS2SSSSS (SSSS ((ppm)mpm)ppm)ppm)ppm)ppm)ppm)pm)pm)ppm)m))ppmpmppm)pppmpppppmppppmppppm)mmppmm)mmm)pm)ppppm)ppmpmppmpppm)ppmppmmpm)ppm))ppm)mppmpmppmppppppppm)ppppm)pm)ppppp )))
1010101011010000101000000010001001101010001010100101010110000000100100000000000
DateDateDatDateDateDateDateDateDateDateDateDateDateteDateDateDateDDateDDDatDateateateDDateDateateaatDatetteeattDateeDateDateeeaaDDateateaateeeDDaaatateDDaatat
8/128/128/128/128/18/128/128/128/1288/1288/18//8/1218/128/128/12288/128/128/8/12/8/8/8/1128/1228/12888/128/1211228/128/18/128/111/12888/12/112288/8/128882228/228888888828/12282228//28/118/128/1/888888888 /201/201/201/2/201/20120/201/201/20//2202201/20120120/20/201001/201/201//20220/20/2/22200201/201/201/22/20202011/202001/22010002010/20/2//2/20220201/201/2010000000006666666666666666666666666666666666666666666666666666666666666
CommeCCCommeCommeCCCCommeCommeCommeCoCommeCoComCCommeCoCommeCCCommeCComCCommeommeommeommemmemmComCommCommComommeommeommoComommemmCommommmmmommemmemeCommemeeCoCommmeooommmmmeeommeCommemommCommemeCommCCommeCCooeCCoeCComCContntttttntntntntntntntnnnnnnntnttttntntnntttntntntttt
SSSVSSSVSSSVSSSVSSSVSSSVSSSSVSSSSSVSSSVSVSSSVSSSSSSVSSSVSSSSSSSSSVSSSSVSSSVSSVSSVVSSSSSSVSSSSVSSSSSSSSSSSSSSSSSVSSVSSVSSSVVSSSSSSSSVSVSSSSVSSVSSSVSSSVSSSVSSVSSSSVSSSVSSSSSSSVSSSSSSSSSSSSVVVSSSSSSVSSSSSVSSSVSSSSSSSSSSSSSSSSSSSSSSSSS: WR WR WR R WRR W WR WR WR WR W W W R WRRR WR WR: WR W W WR WR WR WRR WR: WR W: WR W WR WR W WR WR WR: W W W W W W W W W W WRRR W WR W RRR WR W W WRRR WR WR: WR W: WR R DPDDPDPPDPDPDPPDPDPDDPDPDPDPDPDPDPDDPDPDPDPPPDPDDPDPPDPPPPPPPPPPDDPPDPPPPDDDDPDPDP
Casing Strings
Casing Description
LINER D-SAND
OD (in)
4 1/2
ID (in)
3.958
Top (ftKB)
6,847.1
Set Depth (ftKB)
12,172.6
Set Depth (TVD) …
3,657.9
Wt/Len (l…
12.60
Grade
L-80
Top Thread
NSCT
Liner Details
Top (ftKB) Top (TVD) (ftKB) Top Incl (°) Item Des Com
Nominal ID
(in)
6,847.1 3,655.3 75.57 HANGER FLANGED HOOK HANGER 5.630
6,864.0 3,659.3 77.37 SWIVEL TORQUE-THRU SWIVEL 3.990
12,104.9 3,654.9 87.87 BUSHING BAKER PACKOFF BUSHING 3.000
Perforations & Slots
Top (ftKB) Btm (ftKB)
Top (TVD)
(ftKB)
Btm (TVD)
(ftKB) Zone Date
Shot
Dens
(shots/f
t)Type Com
6,940.0 12,105.0 3,670.6 3,654.9 WS D, 1B-
101L1
9/6/2005 16.0 SLOTS SLOTTED LINER, 0.25"
x 2.5" slots, alternating
blank/slotted 31' joints
w/16 shots per slotted
joint
Notes: General & Safety
End Date Annotation
9/8/2003 NOTE: TREE: ABB VETCO GRAY / HORZT / 4 1/16"" 5M w/PENETRATOR WIRE
9/8/2003 NOTE: TREE CAP CONNECTION: 10.75"" CWCT ELECTRIC FEED THRU MANDREL, HORZT OUTLET
9/8/2003 NOTE: MULTI-LATERAL WELL: B-SAND (1B-101), D-SAND (1B-101L1)
7/17/2009 NOTE: View Schematic w/ Alaska Schematic9.0
Comment
SSSV: WRDP1B-101L1, 8/3/2017 1:34:25 PM
Vertical schematic (actual)
LINER D-SAND; 6,847.1-
12,172.6
SLOTS; 6,940.0-12,105.0
PRODUCTION; 27.1-7,388.9
TT; 6,828.2
NIPPLE; 6,198.7
EXTENSION; 6,177.1
PACKER; 6,171.7
PBR; 6,141.1
GAUGE; 6,056.4
PBR; 6,003.6
SLEEVE-O; 5,998.3
JET PUMP; 5,996.0
NIPPLE; 5,996.1
SLIP STOP; 5,995.0
GAS LIFT; 5,941.8
GAS LIFT; 3,519.4
SURFACE; 28.3-3,080.4
NIPPLE; 2,665.1
CONDUCTOR; 34.7-148.0
HANGER; 23.1
Annotation
Last Tag:
Depth (ftKB) End Date Annotation
Rev Reason: PULL SLIPSTOP & ISO SLV, GLV
C/O, OPEN CMU, SET JET PUMP & SLIP STOP
Last Mod By
pproven
End Date
8/3/2017
KUP PROD
KB-Grd (ft)
34.70
Rig Release Date
8/31/2003
Annotation
Last WO:
End Date
1B-101L1
H2S (ppm)
10
Date
8/12/2016
...
TD
Act Btm (ftKB)
12,197.0
Well Attributes
Wellbore API/UWI
500292317360
Field Name
WEST SAK
Wellbore Status
PROD
Max Angle & MD
Incl (°)
92.58
MD (ftKB)
7,653.90
MaMMMMManManManManMMMManManManMaManMMManManMMMaManManMaMaManMMManMaaManMannnMananMaMaMManMaaannManManManMaMMaanannnnManMMaMaMaannnManaMaaannaaaMaaaMaaaaMaaaMaaandredredrddddredredredredredredredredredredredredddredredredrererredredreedredddrrredreedrereredddrdrrdrereredddreddredrereedredredrereeeereddedredrereedreeddeeeeel IlllllIIIIlIlIlIll Il IllIlIlIll Ilnsensensensensensnsensensensensenseseseseseseensennsnsseeensseennnsennsesseseesenssesesensseeseeseeesesssseessesseessseesseenssrtstsrtstrtsttrtrtststtrtstrtsrtsrtsrtsrrtsrtrtsrrtsrtstrtsrtssrtsrtsrrtssssrttrttsrtstsssrtsssrtssssrtsssststtsssssststssrtssss
StStSSStSStStStSSSStStttSSStSStStStSSSSSSSStttSSSStSttStSSSSSSSSSSStSSSSSStt
atiatatatiittatiatiiatiatatatatiiatiatiiatitatiiiaaaatttatitatiiataaatiatiiaataatatttiaaaatitiaaaataaaataataatiataiii
on onooonoonnooonononooononnononononooonooonoonooonnnooonoooooonoonooooooo
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
o///////o//////ooooooo/o//oooo/oo///oooooo////o/o/oo//o/ooo/TopTopTop (Top (Top (Top (TTop (TopTop ((op (p (op (Top (Top (op (op (((TTToTop (Top (op (Top (Top (op (oop (opopop (oppopp(pop ((op (oopp ((op (op (p (p(ppopopoppp (op (op (ppp (oo ((p ftKB)ftKB)ftKB)ftKB)ftKBftKB)ftKB)ftKB)KBftKB)BfftKB)ftftKB)tftKB)KBftKBKKftKB)tKBKB)tKB)ftKB)ftKB)ftKBfftKBftKB)ftttftKB)KB)KB)KBKB)ftKBfftKBKtKBftKB)))ftfftftKBttKKKBBfftKBftKKKKB)KB)ftfftKBtBBB)KB)BBftKB)tKKftKBBBKtKB)BtKB)tKKBtK)KKB)K )))
Top (TTop (Top (Top (Top (Top (Top (Top (TopTop (((p(Top (TTopTopT ((((Top (Top (pop (op (oop (opp (opp ((TToooTopopTopppp(ToToopo (pp (pp (oppTooopoppTop (oop (opp ((TVD)TTVD)TVDTVDVD)TVDDTVD)TVD)TVD)TTVD)VD)VD)VD)DTVD)VD))TTVD)TVD)TVD)TVDVVVDVDDVVDTVD)VVDD)VD))TVD)VD)VD)D)DDVVVD)DDVVV))TVDVDVVDVVVD))VD)VVDVDVVDDVTVDV)))))))
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TypeTypeTypTTypeTypeypeTypTTypeTyTyTypTypeTypeTypeTypeTTypeTTypeTypeTTypeTyTypeTypypeypeTypTypepppepeTypeTypyppypypeypeypeypeTTypeypepppypeeeypepyppeypeyyyypypeeyyppypepeppeeeypeTypeypy
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TRO RTRO RTRO RTTRO RTROTRO RRO RRTRO RORO RTRO RTRO ROORO RTRO RTRORO RRORO RORORORRTRO RTRO RTRO RTRO RTROTRORTROTROTRO ROORRORROOORRRO RTRORO RRO RRO RTRO RORORO RRRROROORRRRO RTRO RRO RRRRRORRRO RORRORORORRROOOORORRRRun ununun ununuunnnnnunuunuunnnunnnunnunuunuunuuuuuuunun
(psi)(psi(psi)si(psi)psi)(psi)(psi(pssi(psi)(psi))(psi)(psi)(p((psi)i)psi))(psi)(psi(psi)i(psi)(ps(psppssi))(psi)psi)ppppsi)(ppsi)pspsi)psi)(pspssi)((psi)pp(p(pspsi))(psi)pssiisps(ppssi)(psspppi()(((Run DRun DRDRun DRun DRun DRun DRun DRuRun DRun DRun DRun DRRun DRun DRun DRun DRun DRun DRun DRRun DRRnun DRun DDDRun DRun DRRun DRununuuun DnDRunDDnDRun DRun DRRunuunuunRunnRun DRun DnnRnnRRRRDun DRun DRuuDuuuDRun DRuRuuuate Coate Coate CoeCoeCate Coate CCeCCattate Cate CoCte CCote Cate Coate CottCoeCeCate Cate Coate Coate CoCCate Cate Cate Coate Cate Coate Coate Cate Coate Cte Coate Coeate CoCCoooate Caate Cate Coaate Cote CoeCoate CoeCooaattteateeate Coate Cate Coateaeooate Ctete Coate CoaCoateateaCeCCoooate Cate CoaeateCottoommmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmm
111111 575,75,75,75,75,75,75,75771111555,75577775757111115,755,75,75,75,777575,7,75,71111571155,7555575,75777111111555,75,77111171575557711555571555555,5 77555,555,5,75,77557755575,775557515555571555555,,7,715,555,755,,,7,777155,,7,,,,21.421.421.421.421.421.421.21.421.42121 421.422221 4221221114421.421 421.4221.4221.221 421.411421.42221.421.42212121421.421.421.421 421.422221.421211.4111144441.421 422221.4111144.44221444421.4222114444442224442214442214444442221444444422214444444222144221...42221.2222211 44 3,593,593,593,593,593,593,593,53,593,593593,533,593,593593553,595553,593,5999993,59593,5933,593335935933,593,59593,59359593,5953,599595999993535335935,5953,593,5993,5993333359553,599993,5999333,5595993,593,3,5953599933533355559595993555595593,593593,5933595555999993,5953,593,5999355,599935559,59933355959933,,5955595933,53,,555999933,,,555599999,,,,9.89.89.89.8989.89.89.89.89.89.89.8 CCCCC9.8998989.89999889.88 CCCCCCCCC9998989.8998989.8888 CCCCCCCC99.89998989.889889.8 C88CCCCCCC99989.8988 CCCCC9.89.88989.88888 CCCCCC9.8999.89.8898888 CCC99.8999.89.8.88888 C9999888CCC99999.8888.888 C999999988889.8 C999999.8888 CC98888CCCCC998888CCCCCCCC999..88888 CCCCCC9988888CCCCCCCCC999888CCCCCCamcoamcoamcoamcoamcoamcoamcamcoamcamcomcomcmamcocccoamcoaaamamcamcoaaammmmmmamcommmammmmcccccamccooamcoamcoooaaamcamcoaamcaamcoamcommmcoammmmcommmmmamccamccccooooamcocooamaaamcoammcmammamcocccooooamamcammamcomcomcoccooooaaaaaamcmamamcooamcoaaamcoaaaammcooooaamcmoooaaamooooaamccccooamaamcmcooooaaaaamcoammcccccooooo KBMGKBMGKBMGKBMGKBMGKBMGKBMGKBMGGKBMGKKKBKBMKBMKBBBMBMGKBMGKBMGMMMMBMGMGGGGGGGKBMKBMGKBMKKBMGKBMGKBMGBKBMKBMGBBBMMMMBMGGKBMGGGGGGBMGGKBMKBMGKKKKBMGKBBBBKBMGBKBMGKBMGMMKBMMGGGMGMGKBMGKBMKKKBMGKBMBBBMMMMMKBMGGBMGGKBMGKKBKBKBMGMMBMMGGBMGGGKBBMMMMMMGKKBKKBMBMBBBBBMGBMMMGBMMMMMGKBBBBMGBBBMMGKBMGKKKKBBBBBBBBMMGGKKKKKBBMMKBMGMGGGKKBMGBMMGGGGKMGGGGGKMMMMMMGGBMGGKKBMMMGGGGGGKKKBMGBBBMMGGGGGGGKKBMGKKKBBBBBBMMMMGGGGGG 1GAS1GAS1GAS1GAS1GAS1GASGAS1GAS1GAS1GASGASGAS1GASGGAS1GAS1GASGASGASGAS11GGGGGASGASGGGGAASASGASASSASSGASS1G1GAS1GASGG1GASGAGASGASGGAGGASAASSSSASAS1GAS111GAS1GAS1G1GASGGGASGASAASSSGASSGAS11GA11GA1GGGASGASGGAAAASSGASSGASASS1GAS1G1G1GAS1GASGGGASAAAAASSSS1GASGAAGAA1GAGASGAAAAASGASASSSGASSSGGAAASSASSGGGAAGASSSGASSGASGGGGGASAAGASSGGAGASSGAASSGGGGGAAAASSGAAAASSSSSGGGGGGGAAASSSS11GGGGGGAASS L LIF LIF LIF LIF LIF I LIF LIF F LIF IFF LI LI LI F LIF LIF FFF LIF LI LIF I F F F LIFFFF LI LI F F I F F LI F LIF F F F F F FFFF F F F F FFFF F IF F F F F FFFF L F L LI L L L L L L L L L L L L L L I I F FTDMYTDTDMYTDMYTDMYTDMYTDMYTDTDMYTDMYTDMYDMTDMDTDDMYTDMYTDMTTDMYTDMTDMTDTTDMTDDMDDDMYDMYMMMMYYYYYYTTDMTTTTTDMYTTDTDMYTDMYDDMYDMMYMYYDMYYYDMYYTDTTDMTDMDMDDDDMMMMMDMYYYYMYYDMYTTDDMDDDMMMMMMYYYYYYTDDMDDMMYMMDMMYMYMYYYYTDTDMMMMMTDMYYYYTDMDMMYDMYYYYYTDMMMMYYYYTDMMMMMYDDMMMMMYYDMDMDDMMMMYYDDDMMMYTDDMMYDDDDDDMMMYYTDDDDDDDMMYYTTDMDDDDDMMMMMYYY BK 0.BK 0.BBK 0.BK 0BK 0BK 0.BK 0BK 0BKBK0BK 0BK 0BK 0.BKBBBBBBBK 0.KK0KKBKKKBK 0000BK 0.0K0BK 0BBK 0.BK 0BK 0BK 0BBKBBKKKKKK000BK 0BK 0BBBBBK 0BBKKKKK0KK000000BK 0BK 0BK 0.BK 0BBK 0KKKKK0000BK 0K0BBBBKKKKK0000BBBBKK0KKBK 000BK 00BK 0BKBBBBK 0BBK 0BK0KKK0K000BBBBBBKKKKK00BBBBBBBBKKKKK0BBK 0KKK0000BKKK0K000KK0K0.0000BBKK0BBBBBBKKKK0000..BBBK 00000.BBBBBBBKK0.K0.KKK 000.000 0000 0000 0000 0000 0000 0000000 0000 000000 0000 0000000 0000 0000 00000 00000000 00000 0000 000000000 00000 000 00000 00000 0000 00000 000000 00000000000000 0000000 00000000000 00000000 00000 0000000000 00000000000000 000000000000000000 000000 00000 0000000 00000000000000000000000000000000000000000 000 00000000 00000 0000000000000000000 00000 000000000000000000000000000000000000 0000000 0000000 000000000000 0000000000000 0000000000000000000000000000000 0000000000.0 10.0 10.0 10.0 10.0 100100100010.0 1010.0 10010000001000010.0 10110000000.0 100001000010010001010101000000000100001010110100000001010011101000010000.0 1011111.0 10.0 10000100000111010000000000000100000000000001000000100001000000000010001001000100000...0 10000000000000...0000000 00000.0000 1000/21//21//21//21//21//21//21/222/21//21//21//2/21//221/221/222/21/111//21/21//21//21//21//22221/22222211/21/1//21//21////222122/21/2211121121///21//2///222/221/21121/11///21////21//22222211/2111///21//2/211////222211////22 ////221////222211////2221/21//21///22221////22211///2222222 ////2221/2222211//20172017201720172220172201720172017017201720172017220172202200000020111772017201772017202220202022201700201700201702011201172017201772017017201222220172220170020120201111777220220170002017111112017772220200101201117770177202200020117172220200177222000077200007722202017772222001700772220170007722202000020000077201722222200117
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End DEEnd DEnd DdDEnddEnd DDnd Dnd DEndnd DEnd Dnd DDd DDEndEnd DEnd DEnEnEndEndnd Dnd DDEnndnnnd Ddnd Dnd DndEnd DdEnd Dnd DDndnd Dnd DEndEnd DEnndEEddDDEEddd Dnd DDndDEndnnddDDdddate Anate Anate Antate Anate Aate AnAnate Anate Ate Aate AnAeAate AnteAate Anate AtAatetate Anate Anate Anate AnAeAnate Anateaate Anate Aate Anatate AtteeAAnnnate Aaatate Anateteate Aate Ate AnaateeAAAneeeeate Annate AeAeAnnaaeAeeeAnate Aeate Anate AAAaeeeeAAAAatteAnnnaaeenotatnotnotattotatnotatnotnotnotatttnotatnotatnotatnotnotatotattnotanotatnotattataotatnotatotanotattnonotatnnotanotatnoooottnotataaotatotatnnotaonotatoottotaanotatnnotatnotootataatooaatnotaaaataonotaootaaatonotatotatottatotoaaionioionioionionionionionioionionoonioniioonionnononioiononooonnionionooioniooooooiooonooooooooooionioniono
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E E E E E E: EE: EEEE EE E E E E E E E E EE: E EEE: EE: EEE EE: E E E: EE: E E E E: : : E: E: E E: EEEE E E: EE : : : E E E E EE: EEEEEE E E E E EE: E E EEEE: EE EE: E E E: E E EEE E EEEE: EE : : : E E E E E E E EE : : E: E E EEEE EE E : E: : E E E E E ESP FSP FSP FSP SSP SP FSP SP FSSSP FSSP SSP P P P FSP P P P P FP P SP F F F F FSP FSP FSSSSSSSP FSSP SP FP P SP SP P FP P P P SP SP F F F F FSP FSP FSSSP SSP P SP SP FP P P F FSSP FSSSP F FSSSSP SP SSSP FP P SP F FSSSSSSP P P P P P F F F FSSSSSP P P P P P P P P P P F F FSSSP FP P P P F F FSP FSSP P P P P SSSSSP P SP FSSP FSSP SP FSSSSP P SSSSSSSSSP SSP P P F FSSSSSP P F FEED-EED-EEDEEDEEEEEEDEEDEEEEED-EEEEDEEEEDEEDEED-DEDDDEED-EED-EEDEEED-EEDEEEEEED-EEEDEEED-EDDDEEDDDDEEDEEEEEEEEED-EDDDD-EEDEEEDED-DDDDEDDDDEED-DDEEEEEEEEEEEDEEEEEDDEEEDEEEEEEEEEEEEEEDEEEEEEDD---DD-E D--D-EEDDEDDDEEEEEEEDEEEEEEEEEEEDDDDDDDDEEEEDDEEEDEEEDEEEEEDEEDD THRUTHRUTHRUTTHRUTHTTHRTHRTHRTTTTHRUHTHRUHHHHRRRRRRHRUUHRUTTHTHRUTHRUTHRTHTHRUTHTTHRUHTHRUTHRUTHRHRUTHRRRURRHRUUHRUTHRUTHRUTHRTHRTHRRUUTTHRHRUTHRUHRTTHRRUHHHHHHRHRUTHRURRRRHHRUHHHRRRRRTHRUHRRRRRRRTHHHRURRRTHRURRRUHRURUTHRUHRRUUUUUHRRRUUUUUUTHTHRUHHRRRRUUTHRTHHRRUUUUUU PAC PAC PAC PACCC PAC P P P P P P PAC P A A A ACCC PAC PACCACCC PAC P PAC P P PA PAC P PAC A A AC ACCCCCCCC PAC P P PA PAC PAC PAC P AC A AC AC ACCCC ACC PAC PA P PAC P A A A A ACCC PAC ACCCC AC P PA P PAC PAC A A PA ACCC P P P A A A A PA A PAC AC PA P P P A A A AC P P P P P PAC P A AC A A AC P P A A A P PAC P A A A A A A A AAC P A A A A A ACC P A A AAACC A A AAACC PAC P A AACCCCCCC P P A A AAACC P P A AACCCCCKER KER KERKKKER KKKKEREEEER KEEEEKER R R R R R KER KER KKEKER KER KKER KER EKER EKEER EER ER EEKER R R R R KER R KER KER KKKER KKKER EEER R ER R R R KKKKK RR KER KER KKEKER R R KER KKEKER R R KKKKKEEEEEEEEER KER R R R R KKKKKEEEEEEEEEERR R KER R KER KKKKKEREER R R R R R KKKKKK R R R KKK R R KER KKKKK R R KKKER R KKKKEEEEEER R KKKKEEERR R R R KKKKEEEEEEEEER R NECENECENECENECCCENECENNNNNECENECENNNECEEEEEEECEEECEECCCCECCCCNECEEEEEEEENECNENENNECNECENNENECEEEEECEECNECECCCECCENECECCCEEEEEENNECENNECENNNNECNECECCEEENNECNENECCECECCECEEENNECNECNNEECCCCCCCEENECNNECENNNNECNECNECCEEENNECNNNECEECENECEEEEEENNECENECEEEECENNNENECENNNCCENNNECCENNCCCCENNNECEECCEENNNEEECECEEECCCCEEEEEENNNNECCCCENNNEEEECEEEEECCCCCCEEEESSITSSITSSISSITSSSSSITSSITSSSSITSSSITSSITSSSSSSSSSSSSSSSSSSISISISSITTSITTTSITSITTTTSSSSITSSSSSSITSSSSSSSISITSSISSITTTTTTSSITSITSSSSSSSSSSIISSITSSITTSITSSITSSSSSSSSSSSSSIISSITSITSSITSITSSSSSSSISSISSITSSITSSSSSIISSSSSSSSSSSISSSSIITTTSSSSSSISSSSSSSSSSITSSSSSSSSSSSSISSSSSSSSSSSSSSSSSSSSSSIISSSSSSSSSSSSSIISSSSSISSSSSSSISSSSSSTES SES SES SS ES SS SES SEEEEES SES SEES SS S S S SS S SS SS S S S S SS S S SEES ES SES SEES SS S S S S S S SS ES SS S SES S S S S SS S SEEES SS S S S SS ES SES S SES S S S S SESS SS SES SS S S SS S SES S SS S SS S S SES S S SES SS S S SEEEES SEES S ES S SS SS S S S S S S SEEEES S S S SS S S S S SEES SS S SS SS S S S SS S S S S SSS SS ES S S S S S S SEEEEEEES S S S S S S S S S S S S S S SES S S S S SES EEEES S S S S S S S S S S SLOW LOW LOW OOLOW LOW LLOW LOW OW OW OW OOW OOWW WW W OW W LOW W W LOW LOW LOWOOOOOOLOOWWWW OW OW OW LOOOOOOWWWOW W W W W W LOW LLOW OOOOOOWW W W W W OOOOOWWW W W W W OOOW OWWW OW W OW W OOOOWWW W W W LOW W W OOW OOW WWWWW OW W LOW W W OOOOWWWLOW W W W W OOOWWW W W W OOOWW W W W W OLOOOWWWW W W W W LOOOOOWWW W W W LLOW LLLOOOOOOWWWWLLOOW OOOWWW LLLLLLOOOOOOW W W BLEEBLEEBBLEEBBLEBLEEBBLEEBBBLEEBLEEBLEELLEELEEBLEEEBLEEEEEELEEEBLEEBBLEEBBLEEBLEBBBBBLLELBLEEEEEEEEEEEEBLEEEBLEEBBLEEBBLEEBLEEBBLLLEEEBLEEEEBBLLEEBLEEBBBLEEBLEEEBBLEBLEEBLEELBBBLEBLEEBBLLEELEEEEEEBLEEEEEBBLEEBBBBLEEEEEEEEBLBBBLEEBBBBLEEBBBLEEBBBBLEBBBBBLEEBBBBBBLEBBLLLLLLLEEEEEEEEEBBLLLEEBBBBLEBLEBLEEBLEBLLEELLEELLLLEEEED OFD OFD OFD OFD O OD OD OFD D OFD OFD OFD OFD D OD D OD OF O O O O OF OFD O OF O FD OF F FFFD OD D D D D OD D OFD D OFD OF O O O O O O OD OF O O FD OFFFD OFD D OFD D D D O OD O O OD O O F FD OD O O O O O O FD OD O O O O O F FD O OF OFD O O F OFD OFFD O F F F OFFD O O O O F FD O O OD D O OD D D O O O O OD D D D O O O O O O FD D D D D D D D O O O O OD OD D O O O O F FD D OFD D D O O O O O FF OFF OFF OF OF OFF F F F OFF F OFF OF F OFF F O O O OF OF OF O O O O O FF OFFFF F F F OFF OFF OFF F F O O O O O O OF O O O F OF F FF OFF F F F OFF OFF O O O OF O O O O OF OF F FF F O O O OF OF O O F F FF F F O O O O OF OFF F F O O O O O O OF F OF OFF F O OF O O F F FFF F OFF OFF O O F OFFFF F O O O O FFF F O O O FF O O O O F FF F O O O OFF O O O O O FF O O O O O O F FF F O O O O F FF O O O O O F PRE PRE P P PR PRE PRE P P P P PRE RE RE PR R RE R PR RRE PRE PREEEE PRE PREERE P PR PR PRE PRE PR PRE PR PRE PRE R R RE R RE R RERREEEE RERE P P PRE P P P PRE RE R PRE R R REEEE RE PRE P PR RER PRE PRE PRE P P PR RE RE P P P RRE PRE P P PR R PR R R REEEE REEE P P P PRE P P P P P R R R R RRR PRE REEE P P PR P R R R R R RE PREE P P R R RE R P RRE RR R RR P RRREEEEEEE P P RREEE P PRE RREEEEEEEESSURSSURSSURSSUSSSURSSURSSSSURSSUSSSSURSSURSSURSSSSSURSSURSSSSURSSUSSSUUUURRRRRRSSURRSSSSSSURSSSSSURSSSSSSSURSURSSSSURSSSSURUURUSSURRSSURURURSURURRRSSSSSURSSSSSSSSSURSSSSUURUSSURURRRSURRSSURRSSSSSSSSSSUSUURUSSURRRSSSSSSSSSSSSRSURRSSUSSSUSSSURSSURSSSSSSURSSSSSSSSSUUURRRURRSSURSSSSSSSSSSSUSSURRRRRSSSSSSSRRURRRRRRRSSSSSRURRRSSSSSSSSSURSURRSSSSSUSSURRRRSSSSSSSSSSUUUURRSSSSSSSSSSSUUUUURRSSSSSSSUURRRSSSSSSSSSSSUUUUUUURRRE INE INE INE E INE E E E INE E E E IN I I N N N NE IE IE E INE INE E E E E IN IE IE INE INE IN N NE INE INE E E E INE IE I N N N N IN NE IE IN N N N N N N N NE IN N N N N NE E INE E E E E N N N NE IE E E E E E E E N NE INE E N N NE IN N N N N N NE N N N NE E N N N I N NE E E E E E E NE I I N NE E IE E E E I N N N N N IA. IA. I I I IA A A A A I IA. I A A A A I A A A A IA. IA. A A A A A A A A A A A A A IA A A A A. A IA A IA A A A A. A A A A A A A A A IA A A A I I A A A A A A A A A A A IA A A A A A A A A A IA . . . I A A A A A. . . I A A A A A . . . I A A A .
4/124/124/124/124/121/124/124/124/124444///4/11/122224/124/12224/1244/1244////1111222224/12444444/12/11122224/12444444/4/12/121111222224444/14/1122244/12444///222444///124/12/12/1222444//2/122444/1244///21224444444//1222444/124/12444///222444444///1222444112224//22222/12444/22/201/201/201201/201/201/202/201/20///2/22202020200/2011/201//201/2/22222022201001000000120120101/20//2202/2022/2000002011012011//22220020012011112011///2220/2000001/2//202200/200/2220000/22202//2200/20/2222000/2/22220000011/2201/2000200//2222222000/20//22200000 6NOT6NOT6NOT6NO6NO6NOT6NOT6NOTNOT6NOT6NOTNO6NOT6NOT66NOT6NOT6NOT66NNNOTNNNOOO6NOT6NOOOTTTTTT6NOT66NO6NOT666NO6NO6NOTN6NOT6NNOOOO6NOOONOTTNOTTOTTTTT666NO6NOT6NNN6NNOOO6NOT66666NN6NONNNNOTNOOOOTTNOT6NOT66N6NNNNO6NOOONONOTTT6666N66NONNONN6NNOO6NO6666NNOOO66666NNNOO666NN6N6666NNNNNNOOOT66NNNNOO6666NNNNN6NOOTT6666NONOOOO66666NOOOO6NNNNOOOTTTOT66666OOOOOE: WE: WE: WE: WEE: WE: WEEEE: WE E E E W W W W W WE: W WEEE: WE: WE: WE E: WE W W W W WE W WE: WE: WEEE: W W WE: W W W W WE: W WE: WE: W W W W WE: W W W W : : W: W W W W W WE: W W WE: W: : E: W W WE: W W E: WE: WE : : : WE: W W W W W W E: WE: WE: WE: WEEE E W W W W W W WEEE W W W W W W WE: WE W W W W W W W W W W: W W W W W W W: W W W W W W W WEE: W: : W W W WEE : W W W W W OOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOO
1C-101C-1010C-101C-11C-11C 1C-101C-101C-101C-10CC1C-11C-1C-10C-100C-1001C-1011C-1CC-10CC-10CC110C-100C-1001C-10001C-101C-11C-CCC 1101C-10C-1011C-11C-10111100C-10C-C1000CCC00CCC1002, 1/2, 1/2, 1/22, 1/22 1/12, 1/2, 12221/2, 122, 1/112, 1/2, 1/1,1/21/211/1/11//, 1//2 1//222 /2 /222 1///222,1//,,//,,,16/2016/2016/20216/216/20116/206/266/2016/206/206//6/26/216/20216/216/20/200016/216/2016/26/216/2066/2066/26//2020/2020166/26/2/20/6/226/26/20006/20116/26/2026/206/2006/2066/0006666/20/2000/66/206/22216/2/666/06/19 8:9 8:19 8:11198989 898:19 8:9819 8819 88819 8:19 81998:99 898:99 8:8:988881919 8:9819919 898:1919 8:88:8:1999 8:88898:9 8:119 8989 88:819 8:999 8899 89 819819999:8 54:5454:554:5454:5454:5454:5454:5454:544:5454:5454:5454:5454:54454:5454:5554:54554:554:5454:5444:554:554:5454:5454:554:554:5454:5444::554:5454:55554::555:5445444:544:54555554:544454:5454444454:55554555555 AMAMAMAMAMAMAMAMAMMAMAMAAAAMMMAMAMAMAMAAAMAMMAMMAMAMMAMMAMAMAMAAAAMMMMMMAAMAMAMMAAMMAAAMMMAMMAAAAMM
VertiVertVerVVertiVertiVertiVertVertiVeVVVertrtiiVertiVVerVerVertiVertVVeVVertVeeVertiVerrtitVertiVertVVVeVerrrrttVertiVVeeeVeerrtttiVVVeeVerVVertVeeeeVVVVeeVerteeercal slcalcal scal scal scal scal scal scal sccal sascal sal scccal scal scal scaal saaasal sssscal scal scal sccal scal saassscccal saal scal sssscacscaaasscal scaaccal sscaalchemachemachemahemhemachemahemahemachemachemachechemachemahchemaechemachemachemchemaemmaaccchemachemachcchemahhemheeeemmchemchemammmchemamaemachemaaamachemachechemacchhhemhemaemmchemmmmaaaaaaceemaccechemmaaceeeemcaacceemchemacmhhmaatic (tic (icti ((ticticic (tic (((ticttic (((tic (tttiticcctic (tic (tic (tictic (tiic(cic (ttiic (ccc(tic ((tic (cc (ctic (tic (ticictic (ctic (ic (ccctic ic (ccticcttic (((actuaactuaactuaactuaactuaactuaactactuaactuaactuaactuatactuaactuaaactuaaactuaactactuactuaactuatuattuaactuactuaactuaactuaactuctuactuattactuuuaactuaactuaatuaaactuactuactucacctuattactuaaactuacccactuuactuactuctuaauuaaaaccctuaaccuuaccactuatuuul)l)ll))ll)l)l)ll)))l))))))))))))))l)l)ll)))))
B-SANBB-SANBSB-SANSB-SANB-SANAB-SANSAN-SANB-SANB-SASAB-SANB-SANSANB-SANNB-SANB-SANB-SABSSASB-SANSSSSANSAB-SANNB-SANB-SSB-SSASSAB-SANAASANNB-SANSANAAN-SANSANBBB-SASANSS-SANNSB-SANSB-SANNBB-SB-SA-SA-SSAAB-B-SANSSAA-SSANNSSSBSANNNAANND LIND LINDDLINDDLLIIDLINDLINDLINDLINDLINDLINLLD LINLINDLINDLINNDDLINDDLIND LINDLINNDDDLINNDLINDINNNNNNND LINND LIND LINDDDLNNNDD LIND LDDDIINNER; 6ER; 6EEER; 6ER; 6R; 6RRER; 666ERER; 6ER; 6ER; 6R; 6ERER; 6EER; 6ER; 6R6RR; 666R; 6R; 66R;R; 666ER;ER; 6R; 6R;R; 6EREER; 6RRRR; 6R666ERRER; 6ER; 6RR;6RRR; 6RERRR; 6R6R;RRER 66EERR;;666EERRR;6;,042.0400424,042,0422042042.0,0420,042.,042424204204200420042000420404204204204220,042404042242.420400044204200,042.,042204242042200404200442200422,042,04200,,,4-4-44-4444444444-444-44444444---44444444-4--444--4
10,5510,5500510,5510,5510,5510,50,550,5510,5510 5510,500,550,55005510 550,5510,550500,555550,55510,5510,500100,55100,5505555100,555555550555550,5555555550500005555000,,55550,55,55,,0.90909090.9990090900999090000999900.9090.900090.90.9090.909909999000.0.9.99909999000.909990000.90.999099
SLOTSSLOTSSLOTSSLOTSSLOTSSLOTSOOSLOTSSSSSLOTSSLOTSSLOTSSLOTSSLOSLOTSSLOTSOSLOOTSSLOTSOOTSSLOTSSLOTSSLOTSSSSLOTSSLOTSSOSLOTSOOOTTSLOTSOTSSLOTSSLOTSSLOTSSLOTSLOOLOTSLOTSOTSSLOTSSLOTSOTSOSLOTSSSLOTSOTSOSLOOTSOTSSSSLSSOSSOSSLOTSSSSOSSSOOOOTTSSSSSLOTSSSTSL; 6,5; 6,5; 6,56,56,566; 6,5656,555566666,5556,5666;6,5656,55;65;6,5;66;6; 6,5; 6,56,5; 6,56,5556655556656656,56,56,6,56666556; 6,556,55;;5,47.0-447.0-47 070-47.047.0-47447.0-47.0-47 0-70-70-47.0-747.0-47.047 0047.047.0447 047 0047.07.00047.0477004470047 0-4474747.0-00-004770444700--4 0--44 00000.0 10,4610,4610 460,4610,4661110,4600460464440,4660,4610,4610,4610 4610 460410,4604046041040,464666610,40,46046046460,4610,461110,46104046046,461110 46046660464604660,4446460,4600,4644666010,4640,46660000,4606660,6,,6.06060606.06.06.066606.0006066.066.060000666.06.06006.00066.06.000066066660666.06060066666600660066.00
SURFASURFASSURFASSURFAURFASURFASURFAURFARFARRFSURFFSURFASURFASURFASURFASURFASURFASURFARSURFASSURFASURSSURFASURFASSSURRFARFAASURFASSSURFSURSSURFAAAAASSURFASURFASURFASSURSRFARSURFSURFAAASURFASRASURFAURRAASSSRFARSURFASURRURUASSSUFAARRRSURFFAAACE; 4CECCE;CE; 4CECECE; 4CE; 4CCE; 4CE; 4CE;E; 4ECE; 4CE; 4CE; 4CCE; 4CECCCE; 4E; 4E4CCCCE; 4CE; 4CE44E; 4CE;;4CE; 4CCE; 4CE; 4ECE; 4;4CE; 44EECE; 4CE; 4CE44CCCE; 4CCC4CCCECCEEE;;CCE; 4CEE;4;;1.2-612-61.22262-6-61.2-611.2-61.2-62-62-61211.2-6222261.2-62622666-661.2-6112611.2-62222266661.2-61.2-61.22221262-61.2-62212-66662--62222-62--6612-62226611.2 66.2 626,518.518.555,5185518,5188518518518.5181518,518.8885518518,51518851888518.518,518.551818518,518,518.5518515185518.5185851851855851888855558,518.,55185518..,,55118,,22222222222222222222222222222222222222222222
D-SAND-SANNDD-SAND-SAN-SAND-SAND-SD SAND-SANND-SAND-SAND-SANDD-SAD-SAD SANDD-SAD-SAD-SANDSSASAANNANSANDDSD-SAD-SASSDSSSAAAD-SAND-SANAD-SANND-SANSSAND-SAASASAD-SANDSSD-S NND-SAND-SSASD-SASAD-SAND-SANDD-SD-SANANANNSANAANDSADDSSADSSAANDDDD SANDSSAANND LINDLINDLINDLINDLIND LINLINDLIND LINDLINDD LIND LIDLINDDLIDLINDLINDLDD LDLINLIDLINNNDDLINDDDDDNDLINDLINDLINDNNDDNNNNNDLINDLINNNDLDNNNDDDDDDDLDLDDND LD LINDD LIINER; 5ER; 5ER; 5ER; 55R; 5ER 5ER; 55ER; 5ER5ER; 5ER; 5ER; 5ER; 5ER; 5ER 5ERR; 5R; 5ER; 5R; 5R; 5R; 555EER; 5ERER; 5RER; 5RRRER; 55RR5ER; 5RRRER; 5;55R; 5ER; 55EEER; 5ER;RR; 5RER;R; 55ER; 5R; 5ER;RRRRRR; 555ER;R 5; 55E;555EER; 5ERR55 9,935.,935.,935.,935.35,93993935535935,9359993593593933,935935335,9359359359399935939,935.935935,9359335935593593535559,93,93353553559,935.535593555993,93595355993,9355935,99935335.99359355..7-77777777777-7-77777777777777777777----777777777
10,5605605610,560,510,56510,560,560561105600,50,560,505650,5666610,510,56010,5610 560,5600555656665610 5610,50,560,560,5610,5660,560,5610,561010050,56666110,560560,5560,56605655560,565656,56655605500550,566660,00,,6.06.0606.06.00006.066.06.6.0066066.066000006.06.06.0660006.00006666006.0666.060066000666666666.066006666600666.0.06.0..00
MuleMuMuleMuleMuleMuleMuleMMMMMullMuleMuleMMuMulelMMuleMeMMlMuleMulMMMMuleMuleMuleeMuleeeMuMueeeeMuleMMleMuMMuleMuleMuleMMMMeeleeuuleeeMuleMuulee Shoe;ShoeShoeShoeSShShoeShoehhShoe;ShoeSShoeSShoeShoeShoShohohoe;ShoeSShoeShoeShoShoeShoShoShoe;hoShoehoeShoeoShooeShoeShSShoeShohShoe;Shoe;oeeShoeShoeShoSShoeShShoeShohhoe;oShoeShoeShoeSShoShoShooeeShoehSeeeoSoooe;;Sh ee;;;;;;5,895,8955895,895,895558885,895,8955,895,895,895,895,8985889895,8998995,8955,895898895,898899995,89995,895,895895,8985,8995,89555,895,8985895,8589585,889589895,89998588999589995555895,3.133313133313333.13.13133333.1111333.131331113.13333333333333.3.13.1
XO EnXO EnXO EnXO EnXO EnOEEXO EOEXO EnXXO EnXO EnXO EOEEEnXXXO EnXO EnXXXOXOOXO EnOXO EXOXOOEnO EnXO EXO EnXO EnXXXOXOOOOXOO EXXXOnXO EnXXOXOOEnXOOEnXO EnnnnXXXOXOOXO EnEEnEnXO EnOOnXOXXXnXXOOnXXOOXXOOEnnlargilargargirgillargrgiilarglargiirgilargararglargarargglargargarglaargargaargirgargiargigigargargiaaarglargargrgrgiagargiarggiaargargargaggagaaargagaaaargirggiiggggng ; ng ;ng ; nngngng ;gnng ;ngnng ;ngnng ;ngggggg ;;nngngggng ;ngngngggnggggnggggnggggggggngg ;gg ;gggg ;;g 5,8495,84958495845,8495,8495849558498498858498495,8495,8495,8495,845,8495,849849584984985,849848495,84998495,84955,8495,84988495,8485,84498495,8495849585,8495,84958495,849949555,8495,8498495,848495,849584585,84988844884449958495849995,8884555895,.77777.7.77777.7777777777777777777777.777.
X NX NIPPX NIPX NX NIPNIPX NX NIPXNIPXNIPNIXNIX NIPPXXXNIPX NIXXXNIPXNIPXNNXNIPPPPNIPPX NXNXNXXNXNPPPXNIPXNIPXXXNIPPPXXXXNNPPXXXNPPPPNNXNIPXXNNXNIPXNNNXXXNXXXX N PXXPLE;PPLE;ELPLEPLEPLEEPPPLELELEE;PLEPLE;PLPLE;PLE;PLEPLPLEPLEEEPPPPPLPLEPLEPLLE;PP E;;LPPLE;PLLE;PLE;;;5,848585,8485,8485,848,8485,8485,8485,8485,848848584848485845,8485,84858485,84858485,8485,8488485,84888584845,8485,84885848848884884885,8484884884885,848584858488485,84858485,8455848588485,845848885845,848848848555,8445,8484888488855,8848455,84855848555,,5,,8,,.88888888888888888888.8888888888888.88.8888.8888..88.8.8
XO ReO ReXO RXO ReXO ReReO ReXO ReORXO RO RXO ReXXOXXOXO ReXOXO RXO RXO ReXO ReOXO ReXO ReXO ROReOXO ReRORORORRRXO ReXXXO ReXO ReOOReXO ROOOXO RROReXO ReXXO ROXO RReeXO ReXO ReXXOXO ReXO ReOReReReeXXXORReReeeOReOReORORXO ReXXOOXO RXXOReXO ReXOReXXOeXXOORXXOORducinducinddiniducinduciiiduciiucinducdducinducincucucinducinnducinducinducinducducinducducinducinuuciccducinnnducinducddducducinccduccucinduciucinducinducinduducnducnducinundunducinuucccduccduucinng ; 55g ; 555g ; 555g ; 5g ; 5g;55g ; 5g;55g ; 5g ; 5g ; 5ggg ; 5g;5g;5g;5gg ; 5ggg ; 5g ;g ; 5g;55g;5g ; 5ggggg ;;5g ; 55g;5gg5g;55gg5g;5ggggg;;55g ; 55gg;;5555g ; 5g;5gg;gg ;;g ,846.8446.,846.846,8466468,84646.884846.,846.8846846884846,84684,84684666,846.846466846848846844666,846.668468846846,8466468884684646684664646884846846,846666846886888444668444866686.84688,7777777777777777777777777777777777777
PACKEPACKEPACKEPACKECKEPACPACKKEPACKEPACKEPPACKAPACPACKPACKEPACKEKPACKEPACKEPACKEPACKEPACKEPACKEPACKEPACKEPACKACCACKCACKPACKEKKPACKEACKEACKEACKEPACKEPACKPACKPAACKCKPACKECCACKCKEAPAACACKAAAACKECKPKKKEEACPAACKCCKCKKACKKACCKKPAACKKEKEPACER; 5,R5RR5RRR; 5,R; 5R; 5R; 5R; 5R55R; 5,R; 5,R; 5R; 5R; 5,R; 5R; 5R; 5,R;55RR; 5RR5R; 5R; 5,R; 5RR; 5R; 5,555R; 5,RR; 5R5555RRR5R; 5RRRRR; 5R55R55RRRR;;5555RR; 5R;;55;,;;,;793.4793793.493.4793.493.4793 4793 47793.493 434343493.4793.4793.479793.4793.493 4993 43933.479393 434793.4797793 479993 4993793.4333793.4793.499793.43493.477793937934447939993493.4799947799393 44493.47993.3 493.43.47999333793.49933
PBRPBRPPBR; PBRPBR;PBRBRPBR;RRPPBRPBRPBRPPBRBR;PBR;BRPBRRPPPBPBRPPBRBPBRPBR;BRR;BRPBR;PPBR;PP RRRPPBRPBRRR;;PPBBBRRRPBPBBRRRBRPBRPBPBRBBBRRPBRBRRPBRBB;;;;;5,7805,7805,78075,785,780780578057805785,7807807805,78085,785,7805,780780578078057805,78057877808080,78088005780005,757857805,78005,780578578077805,7805,78080557877888555780,780058077805,7808808055,7805585788055,80,.0.0.00000.000000000000.00.000.0000.0000.0000.00000000
SEAL SEASEALSEAESEALSEAL SEASEALSEASESEASEASEALEALEALSSSEASEASEASEASSEASSESEALALSEASEALAASEASSASEASSESEASEASEALASEASASEASEAAASSSASSEASSSASSSSEALAASELA ASSY;ASSY;ASSY;ASSYASASSYASSASSYASSYASSASSYASSSSYASSASSASSSY;SSSSYYYASSY;YSSYASSASSASSYSSASSSSYASSSSASSY;ASSSSSYSYASSYAAASSY;SASSYASSYASASSSSSSSSYASSYYY;;AASASSSSSYSYYSSYASSY;SASSYASASSSYY;AASSSSSSYAAAASAASSASSYASSASSSY;S ;;5,775,775,775,775,775,775,75,77577577575,75777757775775,7757557777775,7775,75,777757757777775755577,75777557755,77757755,75577,7775555555,75,7,707.007.07770770000007.0777000007.07.07.007.0007.07707700077000777077007077.00007.0
LOCATLLOCATOCATLOCATOCATOCATLOCAOCALOCATOCATOCATLOCATLOCLOOCOCAOCATOCATOCOCOCACCLOCATOCATLOOLOCAOCAOCCCCACALOCATLOCATOCATTTLOOOCAOCACCCCCOCAAAAALOCATLOCATOCAOOCCOCAAAOCTOCAOOCAAAAOCAOLOCAAAOCAAOCCCATALOOCCOCCCATAOR; 5OR; 5OR; 5OR; 5OR 5OR; 5R; 5ROR; 5R; 5OR; 5ROR; 5OOR;OR; 5OR; 5OR; 5OOR; 5R5OR; 5OR; 55R; 5OR; 5OR; 5OOROR; 5R; 5RRR5OR; 55R; 55OR; 5OOOR;OR; 5R; 5ROOR; 5ROR; 5OR; 5;55OOORR55R5RR5OR; 55RRR;5OOR; 5OOR555OOOO55R;;,776.7777677776776,776.,776776,776.776.,776.7767767767767776766677,7777776.66,776.776776776.7776676,776.776.7776.66777676677767,7766776.777776776777,776766776666666,,,6666666666666666666666666666666666666666666666666
UN-COUN-COUN-CON-CON-COUN-CUN-COUN-CUUN-UUN-CONN-CNCOCOCOUN-COUN-COON-COCOUN-COUN-COUN-COUNN-CON-CONN-COUN-COCCOCCOOOUNCON-COCUN-COCN-CONNNUN-COCCCOUN-COCOUN-CON-CN-UN-COOUNNUN-COUNUNCOU-CN-COUUNCCUN CCCUN COOOUUNCOOUCUN COATEDATEDATEATEDATEDATEDTEDATEEDAATATEATEDATEDATATEATEDTATEATEDATEDDAAATTEDATEDTEDTEDEATEDEATEDDAATETTATEEDDATEDATEAATEEDDDDAATEDAATDATEAAEEAAATEDATEDAAATEDEEDDDAD 5,64955,6495,649565,649565,649495,65,65 6495566495,6495 6494499,6495,6495,64995,6495,645 64955,65 64965,645,6495,64995 6495,6495,6495,64964995 649555,649646495,6449995555645666496444995 6496446499955 64964966,6494999555,66 95,6496669999,,.2'- .2'2'-2'.2'-22'-22''-222222.2.2''222222''2222''2'-22'22222.2-22 --.2-2 ----222222 5,8935,8935,8935,8935 8935,893558955,8935 8938935 893893,8935,8939393335 89335,89355,8935,8938988935895 89358995,8935,893935,8938935,893585 8935,8935,8935,898935899,89,8935,8935 8935,8985,8935895,895888935,8939558893888389889399,89388999358938833,3,'; ''';''''';';'';;';'';;;;;;;;;;
5,6495,6495,6495,6495,6495,64965,65,6495,649495,64956456695,6499565,64956465,6496644645,649564956495,6495,649566496,649,64956,645,64964995,649956495,64956496566445,64996495,6495,649649649,6494949955,49999445,649,64996995556645649.222222.22222222222.2222222222222222222222..22..2
GAS LGAS LGAS LGAS LGASGAS LGAS LGGASGASASGAGAGAGASGAS LGASGASGGAS LGASASGAS LSSAS LGASGASSSLGAS LGGGASGASAASSASSGGGAS LGASAGGAGASAAASGGASASGASSSASASASSGASGASSSASGGAAS LASSSASGGASSLGGGASSLIFT;IFT;FTFTFTIFT;IFFFFT;FTTTIFTIFTIIFIFFFTFT;FTFT;TIFTTIFFFTTIFTFTFT;IFFT;F ;FFIIF ;IFT;;;;5,7215,725,725725,725,7275,725,7215,721721575,72175,72125725,755725,725,725,72775,7277225725,7227215,72115,72155725,7225,727215,72172572115,7215725,7217225721112157555725,7217,725,7215572725,721225,725555,,,721,,,.4.4444444444444444444.4444444444444444444444...4
XO RXO ReXO RXO ReXO ReXO ReXO ReXXXXO ReXOXO ReOXOOROReOXO RXO ReXO RRRXO ReXXXO ReOXO ReXO ReXO RXORRXO RXO ReXXOOXO ReOOReReXO ReRXXXO ReXXOOOReReXO ReXO ReXOXOXOXO ReReXO ReeXO ReXRRReXO ReXORRReOReeXXOOReOOReRRXXOXOeOOReOORducinducinddducinduciducinducinduciducindducinducducdddduciuciuciucccnnducinnducinducduducinducinducinduccnducinnducducindducincinucincinducinducindducinducinucncinducindnddduucducccddudug; 5,5g; 555g; 5g; 5g; 55555g; 5,g; 55,ggg; 5g; 5g; 5,g; 5g;5;5g; 5g; 5,g; 5ggg; 5ggg; 5g; 5,g; 5g;g; 55g; 5g; 5,g; 5g5g; 5g; 5gg5gg; 5,g;g; 5,g 555ggg555g;; 5,gggg;,;,ggg 674.6674.6674 6674.6674674 6674.67774 6676746744674 66674.6674 667674 6674 6674.676776744667474.6667466674.6674.674774.674.66674674.674.674.644474.646674.6674 6674 6667677674.644644666644.6674 6674 6674.666746674674.64446667466644666674.667666
SBE ;SBE ;SBEBEESBSBESBSBESBESBSBE ;SBBBEEESSBSBSBSSSBE ;BE ;BESBE ;SBE ;SBESBSBESBSBSSSSSSE ;SBE ;;SSSBSSSBESBESSBBESBE ;SBBSSBSSBSBE ;SBESS ;;5,655,655655,6555,6565,6556565,6555,655,65565665,65665,655,655,6555,65,65665,6555,65,6555,65665656556566556555565556565655566656565556665,655566655655565,6555,5 65,4.848444.8848488484.8444.84.888848.84884.848844.84484.8884.848484.848488884.8448848488.848884888.
SEAL SEASEALSEASEALSEAL SEASEALSEASESEASEASEALEALEALSSSEASEASEASEASSEASSESEALALSEASEALAASEASSASEASSESEASEASEALASEASASEASEAAASSSASSEASSSASSSSEALAASELA ASSY;ASSY;ASSY;ASSYASASSYASSASSYASSYASSASSYASSSSYASSASSASSSY;SSSSYYYASSY;YSSYASSASSASSYSSASSSSYASSSSASSY;ASSSSSYSYASSYAAASSY;SASSYASSYASASSSSSSSSYASSYYY;;AASASSSSSYSYYSSYASSY;SASSYASASSSYY;AASSSSSSYAAAASAASSASSYASSASSSY;S ;;5,645,645,645645,645,64564555,645,64565646564556555665666565,64445,645,6665645,64644564564566646464645,655645,66664455,64565645,5,65,66655665,6455566,,,9.29.29.29.29.2999.29.922922292999.29.222229999992229.29.299.2992229299.9 29.299929292229929229922999922999.22299
XO ThXO ThXOXO TOO ThXO TXO ThXO TXO TO ThXO ThO TOXOXXXO TXO ThXXOOTOXO TOXO ThOOTThXO ThOThOThXOXXOXOXOOOThXOXO ThOXOTThXXOXXOOhXO ThXXXO ThXOOOXXOhhhXOXOOhXXXOXOhXOhXXXXXOOOOOOOhhreadsreadsadadreadsreaddreadsreadreadseadsreadseeaaddsreadsreadsreadreadsreadsreadseadseadeadseeaaeaadseadadadsadsreadsdsadssrreareadreadreadeeadseeadeadsreadadsadsadsaddsreadssreadsdddddsadseadsseaaaddadseadsaaddreddsseadseaas ; 5,5555; 55;555555;55555; 5,5555;5;5; 55,; 555;555555,555555555,;55555,,,5,,;;,,,;;;652.9652.965652.9652.9652.9652.95252652.9265652.99652.965652.9652.9652 9665652 955265252652.9652.952 9652.9652.952.9652652.96652.9652 95296522652.929652.99965252652 9652 965522652.99652 9652292662962952.99652652.922529652 96555652.952.9552.9299962..965..9
LOCATLOCATOCOCATOCATOOCACOCCATOCATLOCATATLLOCAOCATOCOOCATOCATLOCAOCAOOCACCATOCCOCATLOCATOCATLOCAOOOCACAOCATOCATTTLOCATCATLOOCAOOCAOCAOCCCCAAAAALOCATATLOCATOCAOCOCCCOCAAOCAAAOCAALOCAOCAOOCACCAAOCAOCCCCTLOOOCCCTCATOR; 5OOR;OR; 5OR; 5OR; 5OR; 5ROR; 5R5R; 5ROR; 5R; 5OOR; 5OR; 5OR; 5OR; 5OOR; 5OR; 5R; 5R; 55R; 5OR; 5OR; 5OOOOROR; 5R; 555OR; 5OR; 5OOR; 5R; 5ORR; 55OOR; 5OR; 5RORRROR; 5;55OR;OOOR;55OR; 5RRRRR5RR5OORRROORR555OR; 5OOO5ORO;;,648.,6486486648.648448,6488,648648.648648648648648.,648.6486488,64866486648.64864866,64864844886484864664488648648464848,6488648644864888886664868,648.648,64848,,,77777777777777777777777777777777777
XO EnXO EnXO EnXO EnXO EnXO EnXO EnXO EnXO EnOEnEXXXXO EnXO EnXO EO EnXO EOEnOOEnEXO EnXOXO EnXO EnXOXOO EnXO EOEOEnEnEXO EEnXXXOXOXOOXOXOOEnXXXXXOXO EOOXOnnnXXOOOOEnnnOEnXXO EnOEXXOOEEEEnOEnEnXXXOOXXXXOOXOOOEEXXXnnnlargilargllargiargilarglargrgiilarglaargiiargiargiargargargirargigargiargiargaalargrgrgarggggiilargilargiargaargirgargiggiargiaaaaargirgiggargaaaarglaarggaargrggglargggagggaarggiigggng ; ng ;ngngngngg ;ngg ;ngngnnngnnng ;ggg;ggng ;g;nnngnnnggngg;ngngggngnng ;ggngggg ;gggnggng ;;nggg ;gg ;;gg 5,6105,6105,6105561055,61061065,615,6105610565,6105,610565,6105,6105,6105,6106106566110055,610565610565,6166561010615,6101005,610556106665,6105,610056661061115,615,6100066610615,555 65,6,6655661566005566100055,610,,6106605610,.5.5555555.5555555.55555.55555555555.5.555.555555..5555.55
GaugeGaugeGGGaugeGGaugeGaugGaugeGauGaugeGaugeGGaugeGGaugGaugeGaugeGGaugeGGGaugeGGGaugGGaugeGaugaGaugegGauggeGaugeGaugGaugeGaugeaGaugaugeuuGaugegeGaugeGaugaugGaaugeaugeaugeGaugeugeeGaugeauuggGGaugGaaugaugeGaugeGaugeaugeGaugeugeGaaeGaugegugeeGaugeGGugeeeGaaaueggggggg / Pu// PuPPPu/ Pu//PPPP/ PuP/ Pu/// Pu/ PuPP/PPPu/ PuPP/ Puuuu/Pu/PuPuPu/ Pu/PPu/ PuPPPP//PPPPuPu//uuuu/ump Semp SeSpSemp Semp Sp SeSSpSeSemp SSeSmp SeSemp Sep Semp SeSSmp Semp Semp Smpmp Semp Semp Semp Semp Semp Semp Smp Sempmp Semp Semp Semppmp SeSepSemp Semp SemmmmppppSeemp Semp mmp SepSeSSmpmpppSSSeSemSeSSemSmpSepppSSSeepnsor;nsonsor;nsnsornsor;ssor;sooor;nsor;rrnnsnsonsonsornnnssososonsonsoonsororr;nsonsornsonsorsosssooonsoor;rr;nnsor;sorssnsonsor;orssoorsossssnsssor;oosoosoo ;;5,595,595,595595595,5555,55559595,595,595,595595,595,595555,59595,59995,595555559555955995,5955959959559555599555,59595555555595,595,5595,5995995,5,5955555555999555,,55,59595,5955999.89.8989.8989.8889889.899.89899889.88899.899898989.8989.89.89.8999888998898998989.88889.899899.89998889.889.8998.89999.898898
UN-COUN-COUN-COUUN-COUN-COUN-COUN-CON-CONUNUN-COUN-CON-CCUN-CCOCUN-COUN-CON-COO-COUN-COUN-COUN-COUN-COUN-COUN-CONN-UN-CUN-CUN-CON-CCOC-COOOOUN-COUUN-CONCN-COOOCOCOCOUN-COUN-CONCCCUN-CONCOOUNUNNUN-COOON-CNN-CCCOUN-CONUN COUUNNCOOOOOCATED ATED ATEDATEDATEDATEDATEDATEDATEDATATEDATEDATEDDATEDATEDATEAATATATEDTEATEDTEETEDATEDATEDEDDATEDAAATEDATED DATEDATED AAAA DDDAAAEEDAAEEDATEDEATEDDAAAEAADDAAAEDD 5,5835,5835,5835,5835,5835,585,5835,5835,5835,585,583,585,5835585835,5835,58335,5835,585,583555,58355835,5585,583838383835,5835,58358583,588335 583558585,58585,58583355555858,585 583583335,58558558355583883,5835,58855555855,5583535538,,,.8'- 8'-8.8'-.8888'888'-8'-8.888'-8'-88'8'88888888''888888.88888888 -88.8888.88 5612.5612.5612556125612556125612.66126126156125612.56125612561256125612561256126125612612656121156122561225612561256561612156156125612561256161561256122125656126661556662555566612656622.612556612622566..1'; 1';11';';''1';111''1'1'1';1111'1'';;111 ;1;;11 ;;;1 ;;;;;
5,5835,5835,5835,58355,5855,585,583555,5835585585583558355,583,583558383583835,55,5835,5835,583555583558388388,5835,583335,585585588358583355585,583585,583885,5835835,58358355,585583555888,583558355583558558355885835,58383355835,558358833355833388335,583,583,835,8,,.888.88888888888888.88888.8888.88888888.8888.888888.88888
TubinubinubinTTubinTubbTubiubinubiinTubTubinTuiiTuTubinTubinbinTubinubinbbbinnnnTubinubiuubinbbbinbbiniubinnubinnubbinbinbinnubinnTininubbinuubTubTuuubinbig - Pg - PPg-Pg-PPg - Pg - Pg-Pg - Pg-Pg-Pg - Pg - Pg - PPg - PPg-PgPPg-Pg - Pggggg - Pg-Pg - Pgggggg - Pg-PggPPPg - Pg - Pg - P--g - PPgggPggggggggggggup; 5up; 5up; 5up; 555up; 5p; 5up; 5up; 5up; 5up; 5upup; 5up; 5ppup; 5; 5p; 5up; 5up; 5uupupp;pppp; 5pp;555up;;55pp55p; 5555uppupp5up; 5uuupup55uup; 5pp5uuup;;5uuuup;p;5;p ,595.,595.595595.55955,59595595.59595559595,595595959595595.599,595595.595955599595.955959995959559559995959555995595555559555599999595555995,,,595.,777777777777777777777777777777
Tec WTec WTec WTWTec WTec WTec Wec WTecec Wec WTec WTec WTec WTec WTec WTecTWec Wec WcWWec WcWTeTec WTecTTeWcWec WTec WWcWWWec WececWcecec WWec WWcWWec Weeec Wececccec Wec WWec Wecec WcWcWec Wec Wec WWccWWeWeeeccWTec WeececcWWire Gire Gire Gire Gre Gire Gire Gre GGire Gire GGeGre GeGeGire Gire Gire GGGeGGre GeGGGire GeGeGGGire Grre GeGGGGire GrreeGeGire Gre GeGGGGGeGGeGGGGeGeGeeeGeGGeeeGeGGGireeeeGGGGGuide uide ideduiduideiiuiduideuideiuidedeeeuideuiduuiduidddddededeuideeeuideuideiddddeeuideeeeeuiduidedeuidededuidedeeeddeuideuuideuueuideeeeuuddeeuuuiideee Sub; Sub;SubSuSubSubSubSubbSSSubSSSbSubSSubSubSub;Sub;Sub;SSubSububSSubSub;SuSubbSSuSubSububSuub;uSubbb;SubSub;SSuSubSSSSub;SSuSSSubSSSuubbSSSuubb;;SSSSub;uub;bbb;5,541,5455,541,55,55545,5415,555455,541415,5415,5415545555,5554545,5415415,541554555541555455445,541415554415,5415,55,5455,5455,5,5455,55445541554115555,545,54155,5415554555,54,544555,544555,5555,555555555 1,,.33.3333333333333333333.3333333333333333..33333..3333
Jet PJeJet PPPJet PJJet PPPJJetJtJet PtPJet Pet PJet PJet Pet PtPet PJet PJet PPPPtPPtPJtJet Ptet Peeteet PJeettet PPPeeePPPPt PePPJeeeJeJJeJeeeeJJeJJetJeettump;uuump;ummmp;umumumumpmmpmmp;pppumpump;mp;;uumpump;ump;mmumpump;mmumpmpmpmpppp;mmp;ump;ppmp;pumpppumpumpumpumpmpumpuppum;;5,5375 5375,535 5375 5375,535,537,5375 5375,53775,5375,53755,537555,5375,537535 5375,53733535,535 5375,53775535,5375 5375 5375,53733335,5375,5375,5375,55,535,5375 5373755335,55,53733753755,55,537555,5375533375,53555,535553775335,,5375,537375,55,5 77,,.000000000000.0000000000000000000000000000000..0..00000
SlidiSlidSlidiSSSlidiSlidiSSSlidiSlidSlidSlSliSlidddSlidiSSlidSliSlidiSlidSlidilidSSSlidiSlididSidddddSSSlidiSlidSlidSliddddSSSiSliddiSSSdSliddSSdSSdSSlidSddSSdddSlddSidng SlgSSSng Slng SlSng Sg Sng SlSSlng Sng SSgSSgSlng Slg SlSng SlSng Slng Sng SnnggSlggngnngngng Sng SlgSggSSngng Sng SSSSngggggSSSngnSSnggnggSgggSSggng Slggeeveeeveeeve eeveeveeeveeeveeeveeeveeeeeveeveeeveevevvveeveeeeeveeeveeeeveeeveeeveeveeeveeeeveeeeveeveeeeeeeveeeveeeveeeveeeveeveeeeveevvvveeeeveveeveveeeeveeveeveeeeeeevveee (O); (O);(O);OO(O)((O)OO(O(O);(O(O);)((O(O(O)OOO(O)O)(O)(O)O(O)O)(O(O);OOOO);((OOO));;((O(OO(O);O);O)O)(OO)OO);(O)OOOOOO(OO))(;;;((5,5375,5375,5375,5375,5375375,537,535,5375,537553755375,53755335,5355375,5375,53755375,5375,5375537335375,533375,5375,537553535,5375555,537553375,53755535553777555,5555375553775377777555533335535,537537 2.2.2.222222222222.22.22222.22222222222222.22.22
Tec WTec WTec WTTec WTeTTec WTec WTec WcWec WWTec WTec WTec WTec WTWec Wec WWWec Wec Wec Wec WTec WTTec WTec WWec Wec WTec WcWcWeec WecccccWec WWeeeececcWeccWWWeec Wc WcWecWec WcWccWecWcWcWeeeeWec WcWire Gire Gire Gire GeGGGire Gire Giire GGGeGre GeGeGGeGGireGeGeGeGre Gire Gree GGGGire GreGeGeGeeGGGreereeeGeGre Gere GGGGeGGeeGeeGGGeGeeeGGGGire Greeee GGGuide uide uideuideidedeiiuideuideuididuiduiddeeuuideuideuiddeddeduideeeeuidduiddeddeeeedeuideuideideeeeeuideduideuddeeuideuideuuudddeeeudeeuuidudee Sub; SSSSubSubbubSubSub;SSubSubSubSubSub;bSSSub;SSSSuSub;Sub;SubSSubSubSubSuSubSub;SSubuuub;bbSubSubSSuSubbSububSuSububSubSub;uSSSSSSubSSubbbSSubSub;;SuSubSuubbb;;;5,5365,5365,53655365,5365,535,53636365,5365535,5365,5365,536555,5365,536536535,53635,53653665,53665536555,53655353335365,535,536365,536366365536553655,5365,53365365366,5365555365365,53653666665,53655365535365,555365366655365535536355,533665,535536,.33333.3.33333333333.3.33333333333333333333333333..333.33
CONDUCONDUCONDUCONDUCONDUCONDUCCONDUCONDUONDUOCONDUNNDUCONDUCCCONDUCCONDUOCONDCONDUOCONDNDCONDCONDUCCONDUCCONDOONDUOOCONDNDNDDDDCONDUONDUCCCONCOOCOONDONCONDUDCCONCONOCONNNONDDDCONONNNNNNNDUCOCCONDCCCCONDUONDUCOOOODUCCONDUCCNDDUONDDDNCTOR;CTOR;CTORCTOCCTORCTOCTORCTORTOTOR;CTOROR;CTORCTORCTORCCTOCTOCTORCCTORCTORCTOR;CTOR;CTOOOOCTOR;ORTORCCTORCTOR;CCTOR;TOOROOCTOR;RCCTOTORCTOCTOCTOOROROROOOR;RCTOR;CTORORR;TOOCRRRCTOORCOCTOORRCORC;OO ;;40.040440.0040 000.0040.040.0440.040.000.040.00.00000040 040.044400.0040.0040 00.040.040.040.0440 04000.00.00440.0444440004040.004404400400000040.0-161.1611-161161.6-16-1616-161116161.6-16-161.16161611161.61616661161161.1616161.6111161.161.1661.61611666161666666666661.16 000000000000000000000000000000000000000
HANGEHANGEHANGEHANGEHANHHAAANHANGANGANGENGNNANGGGEANGHANGHANGEHANGEHANGEHANGEHANGANGHANGEANNGEGGANGGHANGEHANGHANGANGEGEHAANANGANGGGGAAHANGENANGEGGHHANGNGEAAAAANNNHANGEHANGEAANNGANGNNGGGHANGGGGEHANGENER; 39RRR39RR3R; 3R; 3393R; 39R; 3939R; 39R; 399R; 39R; 39RR; 39R; 39R; 333R; 3939399R; 39R; 39R; 39R; 39R; 39R; 3939R; 39R; 399; 39R; 39R;;39R; 3R; 399R; 399R; 39R; 3R; 3RRR; 39939R; 39R; 39R3R; 399RR399RR9R3999R; 3R339339; 39RR;9;.0.000000000000000000.0.000000000000000000000..00
HANGEHANGEHANGEHANGHANGEHANGEHHANANGEANGNGEHANHANGENGNNGGEGANGGEGEEHANHANGEHAHAHANGANGEANGEANGANGENANGGNGANGEANGEANGEGGGANGEHANGEEANAHANGNGHANNGHANGHANGGGEHANGHHANGEGANGHANGEHAANHANGEHANGEANAANGENNANGENGEEHANGEHANGAHANGEGEHANGEANAANNGENGGANGEGEEEEHAAGEEEGR; 35R; 35R; 35R; 35RRRR; 35R; 35333R; 35555RR; 35R; 3R; 35R; 3R; 35R; 3R; 33R; 3R; 355R; 355RR; 35RRR; 353R; 35R; 3535R; 35R; 35R; 35RRR; 35R; 3533R; 3535R; 35R;;;33555RR3R; 3R; 35555; 33R; 355R; 3R; 333RR; 35R;3355R;355;35;3;.444444444444444444444444.4444.44444444...
KUKKUKKKKUKUKUKUUKUKUKKUKKKKKUKKKUKKUKUKUKKKKUKKKKUKKKUKUKKKKUKKKKKKKUUKUUUKKKKUKUUUUKKUUUKKUKUUKUUUUUUUUKUUUUUUUP PPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPP PPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPROROROROROOOORORORORORORORORORORORORORORORORROOROOOROROROROROOROROROOOROROROORORORROROOOROOROOROOROOOROOORORRRRORRRORORROROROORROOOOOOOROOOOROROOOODDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDD
AnnotAnnotAnnotAnnotAnAAAnnotAAAnAAotAnnotAAnnotAnnotAnnotAnnAnnotAnnotAnnoAAAnnotAnAnnoototAnnoAnnoAAnnotAnnonnnnnnonnnAnnonnnAnnnnAnnoooottttAAnnoAAnAnnnnAnnotnnnotnAnnotnnonotoAnnotooAnnottnnotAAnnoAAnnonnnonAnnnotnAnnotnoooootttAAAnnnAnnnnAnnoooootAnnnnnnnotoAnnotnnnnoAAnnnooonnonotAAAnnnnnnooooAnnottAAnnoAAAnnotnoooottAAAnnnnnnnoootttationationationationatatiiatiationtttiiiiationtationttationiationiationtiatitttatiiioatioionatiaatioaationattationtttiiiioooonnnnnnationationationaaaaatiationaationttationatioiiooatioatioonationnationnatioaatioaattttiotiioniotioonnatationtiiooonnnnaaatioattttioootioatiootionnnaaataationttiiioooionnnnattionooonnaaaiatiiooooooonnnnaaattioonnnatioaaaaaatttionoooonnnn
LastLastLastLastLastLasLasLLLasLtastLLastastastLaaaassastttasaasaassssssstttsttaastastaaaaaLassssststaststttaastaasaaLassssstttaaaastaaaassaststtLasLaaaaaassstLaaaaaaaaassLassaasaaLaaaasssstaaaaaassasaaaasssLLLLaaaaaaassssstttLLLasaaaaassstaaaaasss WO: WO WO WO WO: WO: WO WO WO WO W WO W W W O WO WO: WO: WOO WO: W WO W W W W W W WO: O O WOOO:OOO W W W W W W W W WO: O: O O OOO WO WO WO: WO W W W W O O WOOOO W W WO: W W W W WO: WO O WO:: WO WO W WO: WO W W W WOO WO: W W W W W W W W O OO::: O W W W W W W W W W W WO WO W W W WO WO W W W W W O O W W W W W W W WOO: W W W W WOO W W W W W W O O OOO W W W W W O WOO W W W W W O O OOOOO:: W W W O OOO: OOO
End DEEEdDEEEEEEnd DEnd DEnd DdDddDdDnd DDDEnd DEEEdDEEdddnd DDDDDdDDdDEnd DEEnd DEnd DEnd DdEndEnd Ddnd Dd DEnd DEEEEdDEnd DEnEnddddEnd DDDDDdDEnnnnnnnddddddDnd DEnd DDEnnnnnnEnd Ddd DddDnd Dnd DDDEEEEndnnndddddDnnEnddEnd DDdDEEEEEEnnddDdDEnndDDDEddddDDDEnd DEEndddDDDdDEdddddDDEEEnnndddddDDateateateteateatetetttatattateattateattaaaaaaattatetteeeeateeateaatateateateatetattateeateateeaateateaaatettteeeeeateaattteeeeeeaaattteeaaaateaeeeteeaaaaaeeeaaaatateeeeeeaaatettteeeeaaaaaaattteeeeett
1C1CCCC1CCCC11C1C1C1CCCCC1CC11CCCC1CC11CC1C1C1C1CCC1CC1CC1CCCCC1C1CCCCC1CCC1CC1C1C1C1C1CCCCCCCCCCCCCCCCCCCCCCC-111-1111111111-1-11111-1111-11111111---02020020202020202222022200202020202020202002202020200202002222202020200202002020220220020022222020002000202020222200200000
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ID (iID (iID (D(iID ((((D(iIDD (D (D (iD(iD(iDD (iID (D(D(iDDDD(IDD(iD(iD(iiID (D ((i(iDD(D(D(DDDDIDDDDIDIDDDD iii((((n))))n))n)n))n)n))nn)nnnn)n)nnnn)nn))nnnn)n)n))nn))nnnnn)))))
15.015.015 05.5.515.015 0015.01515.0515.05.015.050015.01505.05055.055.05.00505.00015 015.15.01515.05.005.015.015.005.015.050015.0550015.055.0555555555.0000505505.00005.055015.055500666666666666666666666666666666666666666666666666666666666666666
Top (Top (Top (Top (Top (op (op (Top (TopTop (op (op ((((Top (op ((p(TTTop (opp(Top (oopop (popp (Topoopooppp(((p (oop (oopopop (opppop (Toppop (ooToop (ppoopppoppTopp (p (ftKB)ftKB)ftKB)fftKB)fttKB)ftKBftKB)KB)ftKftKB)ftKBftKB)tKB)tKB)tKBftKBKKBKtKBBB))ftKBftKBftKB)fftKB)fttKKKKKKB))ftKBKBftKBB)ftKB)fftfftKBtKBKBKB)ftKB))B)ftKB)KBftKftKB)ftKBBKBBBBBB)B)KBBKB)BBtKBBttKftKBftKBtKBKKBB))
38.038.0338 038.038.38.038.038.03838.038.08.03838.038 038.08.08038.038.00338.3838.38.038.038 03880838.08808038 080038 038.038.0388008.033338.038.0838.08.08.03338.08838.0383838.0383888.03388.088088838.003380303800383038.08
Set DSet DSetSet DSet DSSSet DSetSet DSet DSet DSet DSSSet DSetSSet DtDSetSet DSet DDSSeSet DSet DtSet DSet DStSet DDSet DDSSeeSeeSettSetet Det DSet DSet DSet DSet DetDet DettDDSSeeSetSet DSSeeSSDSSeeeetSeSSet Dtt DDepth eptepththeptheptpthtpthpthepteptheptheptheptheptheptheptheptheptheptepthpptppthpthpptepteptheptheptheptheptheeppthepthpeppptpthepeepppppththepthhepeptepteptheepppptepptteeppthpthhp (ftKB(ftKBftKB(ftKB(ftKB(ftKBKB((ftKB(ftK(ftKBff(ftKBtK(ftKB(ftKK(ftKBKKB(ftKB(ftKBBB(ftKB(ftKB(ftKfttK(ftKBKBKKKf(ftKBB(ftKBftKftttKBtKftKK(ftKB(KKBKB(ftKBtKBKKBB((ff K(ftKBBKKBtKBBfK(t(ftKBtBftKBftKBttKBBBB(())))))))))))))))))))))))))))))
158.15815158.158585858158.158.158555158.585815158158.55585858815858811581158585858115858858.581585858885585855851588858.858858858..155858855888.000000000000000000000000000000000000000000000000000000000000000
Set DSet DeetSetSet tSet DSet DSet DSet DSet DSet DSet DSSet DSet DStDSSettSet DSet DSet DSSeSSetDSet DDet DtDSetSet DeettDSet DetSet DeeDSSet Det DSet DSeSet Det DSet DSet DSet DteSet DSSSeeSeSeeeDSet DSeeeetDDSetSet DSet DttDDepepth eptpthepthteptheptheptptepthepteeepepeppepepthepthepteptepthtepthepthepthepthepepptepeppeptheptheepepthpepthptthtepthheeeptpthptheeepthpeepptheeeethpheeptepepeeptepteppthhhhpp (TVD)(TVTVD)(TVD)TVD(TVD(TVD(TVD)TVD)V(TVVD)((TVD)TTVTVV(TVDVD)DVDVD)D))(TVD)(TVD)(TVD)(TVD)TVD)(TV(TVD(TVD)V(TVD)(TVD)TVD))(TVD)(TVD)(TVD)(TTTTVVD)DD)VVVVD)((TVD)VD)D(VDVVV(TVV(TVVDTVDVDDVVD)D)TTVDVDDDDD))(()()……………………………………………
158.158.158581585858158.58.58.158.8158.15815158.55855158.158158.55585585588858888815811585888158158158.158558885855855555558858515888588858558..5558858.555585888.0000000000000000000000000000000000000000000000000000000000000000
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82.082.082.082.082.082 082282.082.082.00082 082.082 082 082.020282.0082 08882.0828882.082.0222.082 082 0082.0082 00888882282282.0082 082 02.082.00082.0882282 082.00828202820082 088288882.02882.0282 022082.08002.088880882.082.02000000000000000000000000000000000000000000000000000000000000000
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PRODPRPRODPPRODPPRODRRRORORODPRODPRODDDODDPRODPRORODPRODPRODPRODPROPRODPROPRODPRODPRODRODRRRODPRODODPROOROODDPRODPRODPRPRODPROPPRPRORRODRODDDROROPRODRODPPROROROOPRODODPPPPRRRORODPRODPRODRPRRODRROOPRODDODODDRROOOODUCTIUCTUCUCUCTTCTUCTTUCTTIUCTUUCTIUCTIIUCTICCUCCTCCUCUCCTCTUCTCTCTCCCCTUCTICCUCCTCTIUCUCCCUCCUCUUCCUCCUUCUUUUUCCCCCCUUUUCUUCCUUUCTCCCCTIONONOOOONONOONNOONOONNNOONOOOOONONNNOOOONOOONONOOONONONONOOONNNNOONNNONNNOONONONNNNNOONNONOONNOOONNOON
OD (iOD (iOD (iOD (iOD (iOD (iDDDODOD (OD (i(iiOOD (OD (iOD (OOD (OD (ODOOD(iDOD (iOD (iD(iOOOD (OODD(D ((iOD (iiOOOD (OD (OD (OOODD (iD(D(OD (iOD (iOOD(OD ((OOOD (OOOOODDDOOD (OOODD (ODDOD (in)n))))n)n)))))nnn)nnnn))n)nnn)nn)))nnnn))n))n)))nn))))))))
7 7 5/7 57 57 5/ 5/ 5/ / 7 57 5/7 5/7 7 5/7 7 5/7 5 5 5 5/ /7 5/ 7 5/7 5/7 7 5/ 5 5/7 5/7 5/7 5/ 7 5/ 57 5/ /7 5/ 7 / 7 5/7 5/7 5/ 5/ 5/ 5/ 5/ 5/ 5/ 5 5 5/7 5/7 7 5 5 5 7 7 7 57 5 5 5/ 7 5 / 7 5 /7 5/ /7 5 5 5 / 7 5 / 5 5 /8888888888888888888888888888888888888888888888888888888888
IID (iIID (iDDDDDD (((D(i(ii(iIID (iD (iD(DD (ID (iD(iiIDD(iDD (D(((iiD(D(D(iD (iDDD(IDID (((iIDD((D(D (DD (DD(D (DDDDID (i(ii((((((n)n))n))n)n))))))n)n)nnn))nnn)n))n)nnn)n))))n)))nn)n)n))))))))
6.876.876.876.876.876.8786877876.8768778766.876.8766877666.876868766.886.878878786876876878766686.876.866.88786.87886.87666.87.86.86.87.8766.876.86.87.876886668766.88766687.876.87868766.76876
Top (TTTop (TopTTopop ((op (Top (Top (op (p (p(Top (op (TopTop (Top (TTTop (p((op (Topoopp(pop (op (Top (oopopooppp ((op (Top (opooopop (op (op (poopoopooppTop (((((p (((((ftKB)ftKB)ftKB)ftKBftKB)ftttKBftKBKKBKKKBBBBftKB)KB)ftKBffftKB)ftKB)ftKBftftKBftKBKBftKB)KBKKBftKBB))ftKBftKBftKftKBKftKKKB)ftKBBtKB)))ftKB)ftKB)fftKBtKBKB)KKB)BftKB)ftKB)KB)KB)KKKBKBB)ftKB)BBBBBBtKBBftKB)KKBBB)ftKKKKK )tKKBB)BKffttKKBB))))
40.740 74040.70040.70700.7740 70740 740.740.7000774040400400040 740.740 70740.7740.740 70400400.77.70.740.704040.740.7404000777404440.00 7040.77407440 74040.700.7400774000.70740
Set DSet DSet DSet DSet DSet DSetet DDet DDet DSet DSet DSet DSSeSet DSeSet DSettet DSet DSet DSeSet DSet Det DSet Det Det DSSeSetDtSet DSet DSSeetDSet DDSSSet DeetDttSSet DSSeeSet DSSSeeSSet DSetSDSSSeSett DDSSSeeSeteteSStDepth pththhhthepteptheptheptepth eptepthepepthepthepthpptthhepeptheptheeepppthepeptpptepthepthheeepthpppthepttepttepthppepthhepthptphptteeeppepptteepthpthpthp (ftKB(ftKB(ftKB((ftKB(ftKBftftKBft(ftKBK(ftKftKBKBKBKBBKBB(ftKB(ftKB((ftKB(ftKfftt(ftKtftKKK(ftKtKBKBtKB((ftKBfftKBtfttKBBB(ftKBBKB(ftKft(f(ftKfttttKKKB(ftKBKKBKKB((ftKB(ftftKBKKBBB(ftKB(t BKKBKKB(ftKBBtKKBB(ftKBftKBtt(ftKKB(((())))))))))))))))))))))))))))))))
4,934,934,9349,934,939349333494,93493993344,939394,9393,939493934,933344,93494,934934,93333349394,9334,934994,933344,93493494,9349494,933499394,9349944,934,,,9933,993334,,,9993,,8.4848.48.48.88488.48.448.48848888488.48884848.48.48.88.48.4884884484888888448.488488448.48.488888448848844448448.48888.88.
Set DSet DSet DSet DSet DSet DSet DDSet DStDSSet DSet DSSSet DSet DtDet DSSeSeettet DDSeSSet DSet Det DDSet DSetSeSet DSeSettDttDSSet DSet DSeSeteSet DSSeet DeeSettSeeSet DSSeSeeSet DetDSSetDSSeDDSeetDSetSSSeeDSSeetetepth eptepthepthteptepthepthepthepthepthepthepthepthhepteptheeepepeptpthepptepteptepthpthepthepthheeepeptppeptheptheepepthptpptthheeeepthppeeepteeepepptteeepphpthheptpp (TVD)((TVD)T(TVD)TVDVVD)VD(TVDD(TVD)((TVD(TVDTVD(TVD(TVD)TV(TVV(TVVVDVD)))(TVD)(TVD)(TVD)(TVTVD(TVD)TV(TVDVD)V(TVD)(TVD)VD(TVD))(TVD)(TTTVD)TVDTVDTV(TVD)VTVD)VVD)(TVD)DD(TVD)VVDVDD(TVD)VD)DD)VD)VVD)(TVTVD)V(TVDV(TVDD)VTTVDVD()((……………………………………………
3,803,803,803833,8038003,803,3,803380380003383,803,803803,803,803,88803,80808008003,803,8033,8033,80383883,8003,80003,803803,803,8080383,83,80333,808038038383800333,8083838888,803,888,80333383,80,,8003,808003,880,,7.9797777797.997.9997.977.97.979797797.997.97.9799979797.9797.9999797.9797.999999997979999977.99999977.99997797.99..99997777..9
Wt/LeWt/LWt/LeWWWt/LeWt/LeWWWt/Wt/LeWWt/LeWt/LWt/LeWt/LeWt/LeWt/t/LetWt/Le/LeWt/LeWWt/LeWt/LeWt/tWttWt/LeWt/LeWt/Wt/LeWt/LeWt/LeWt/Wt/LeWWWt/LeWt/LeWtt/LeWt/Let/Wt/Le/Wt/LeeeWt/LeWt/LeW/t/Wt/LeeeWt/Let/LeWt/LeteWt/LeWt/LeWt/LeWeWt/WWt/W eWWt/eWt/LeWteeteWttt//Leetn (l…(n (ln (l…(l(n(l…lll(n (l…n (n (l…ln (l…n (l…(ln(l…nn (nnn (nnn (l…n (l…(n(ln(l…nnn (l…n (ln(l…n(n (l…n(l…n(n …………nnn (l…(…n (l………(((((
29.729.729.72929 729.729.7297729.729.729.7229 799.777729.72929 72929.7997299929 79.729 729.7229.7229.29.729.79772929 79929 729 729 779.72997977229979972922277292299729.2299 729.77000000000000000000000000000000000000000000000000000000000000
GradeGradGradeGraGraGraGradeGradGradGradeGradeGradeGradGradGradGGGradeGradGradeGrGGGGradeGGradGGGraderrrrGradeadaGradedeeGradeeGGradeGradeGrGraderaradeGraddradGradeGraradeadaradeeGradeeadeGradeGGradGaGradGradeeeeGrraGraadGradeeeGradeGraGradGraGradeeaGradeeGradeGradeeGaadraaddd
L-80L-808L-8808L-8-8080-8080L-80LL-8080L-8080808080L-80LL-80880888-80L-800080008080880808000-8080808080L-8808-880-800080L-888008L-880088--8800000L88800L8L00
TTTTTop TTop TTTTop TTpTTTop TTop TTop TTTop TTToTTTop Top TTop TTTTopopooooooopopToppop TTopoopopoppppop TpTTopoooooopTopoopop Tooooooopop TpopppTTpphreadhrehhreadddddhreadhreadreadhreadhreadhreadhhreadhrehreadhreadreadreadrreadreadeadhhreadhrehrereadreadeadreaeadeadahreaddhreahrhhreareeeeahreadaddhreadeadreehreaddhreadeeaeaaeadhaadadeeeaeaddehreadaaahreadddeeadreddd
BTBTCBTCBTBBTBBTCBTCBTCBTCTBTCBTCBTCBTCBCCBTCBTCBTCBTCBTCBTBTCBTCBTCBTTCBTCBTCBTCCBTCBTCBTCBTCBBTCTBTCCCCCCBTBTCBBCCCBBCBBTCCCBBBBTCBTCCBBBCCCCBBB
CasinCasinCasinCasinCasinCasinCasisiCCCasinCaCasisiCCaCasCCasiCCaCasCasinCasinCCCinsinCasCasaasinnCasinCasCasCaCaasinsasinCaCasaaCassssCasisinnnnaCasinssCasCasinCasinCaCaassCasCasCasCCCasassCCassssCaCasaaiCasanng Desg Dg DesDg DesDgDDesg Dg Desg DesDeg DesDDDeDeDesg DgDeDesgDesgDesg Desg DesDesegDesesgDesssgDesgDgDg DesgDesDsssgg Desg DDesDeeeeg DesesssesDeseg DesssDeg Desg DesggDesDDegDesDessgggeeg DesssesgDssgcriptcriptticricriptcriptcripttiptiriptiptcccriptcrcrcripptpppcriptriptcccripccriprrricriptppcriptpcriptcriptcripcripccrrippptttiptccptripcriptcriptccpcripcccpppcpprppptttioniioionioiiionioniionionooonnonnionioooooionnononnioiioionoionnonnonoionooniooooooooooononon
WINDWINWWINDWINDWINDWWINDWINDWINDIINDINDDWWINDWINDWWINDWINDWWINDWININDWINDDWINDWINDWINDWINDWWINWINDWINDWNWINDWINDWINDDDWWWINDNDWINDWNNNWINDWINDWINWWWNNDNINDWINDWNWINDWNWWNDNWWWWWWINDINNWWNWINNDNWWNOW LOOW OW LW W OW LOW OW LOOW OW W W L LOW LOOW OW LOOW LOW OW W W W W W LOOW OW WWW OW LOW W OW LW LOOOW OW W W LOW LOW OW LWW OW W OW OOW LOW W W WOW W WW OOWWOW W W L LOWW L111111111111111111
OD (iODOD (iOD (iOD (iDDOD (iOD (D(iOOD (iOD (iOD (ODDDOD (((OD (i(iOOODOD (OD (iD(OD (iOD (iOOOOOD (iOD (iDD((iiOD (OOD(iDOD (iOOODDODOD (OD (iODOOOOOOODDDOOOD (ODOD (ODD (O (OD (iODii((n)n)))))n))))))nnnnn)n)nnnnn)))nn)nn)nn)nn)n))n)nn)))))))
666666666666666666666666666666666666666666666666666666
ID (iIID (iD (iDD (iD(iID (IDDDID (D(iiIID (iDD((D(ID (iD (iDD(iD(iD(i(((ii(iIDD (iiDDDD(DD (D(D(iID(DDDIID (i((i(((((n)n)n)n))n))n)))))nnnn))n)nnn)n)n)))nnnnnn)nn)n)n)n)))nn)n))))))
5.005005505.005.00005.005.00005005.0055.05.00005.05.00005.005.005.005.00000000005.05005.00050000005.000055000005.00000.5.005.00005.005.00005.055505555000000555505.0000.00555.00000
Top (Top (Top (TopToTTop (To (op (Top (Top (Top ((op (p (op (Top (Top (Top (TTToTo (op (p(op (TTopopppop (Topop (oooppop ((Top (opoop (opop (op (p (oopooooooppppp ((((((ftKBftKB)ftKBftKB)fftKB)tftKB)KBKKB)KBKB)B)ftKBKKB)tKBKB)ftKffftKB)ftKtftKftKB)ftKBKKftKBB)KB)ftKB))ftKBfftKKKB)ftKKBtKB)ftKB)tKBBB)ftKB)ftKB)KKB)ftKB)ftKKB)KB)fftKB)KBKKB)BBtKBB)B)KBB)B)KBBBKBBKKBtKBftKB)ftKKB))
4,494,499994,494,494,49494,494,49,4944494,49449944949944994,494499994,499444,49494494,4944,44444944994,4944494,49944,44494,49,49944,4999444,494,4944444,44444944444,49499,994,49,,,4.04.04.000004.040404.004.04.0404044040404.0404.00444.004.04.004.04.0444000404.0404.0444.00444400444.04.44 0044.04.00440000000000
Set DSet DSet DSSet DDDSet DSetSet DSet DSSetDDSet DSet DSetSttSet DSet DSSet DSet DSSet DSetSet DtDSet DSet DtDSSeeeeSeSet Det DSSeet DetDDDDSetSSet DeeetSettSet DSeSet DSeSet DSSSSSeeeDSet DSSeteetDSSDepth epthtepthhhepth ttthepththepteeeptpthepthpheptheeeptpthpthppeppepthepthheepepeepppthpppppteptthhpthpthheeepeepthpeepteeppeepeepteeet (ftKB(ftKB(ftKBftKKBKB(ftKBftKBftKB(ftKBftKBtKB(ftKB(ftKB((ftKB(fttKK((ftKB(ftKBftKBttKB(ftKB(ftKKBKftKB(((ftKBfBftKBftKBKB(ftKBtKftKKB((KKKKBB(ftKB(ftKBftKBttKKBBB(ftKB(f KtKBttKKKBBtK(tKK(ftKBBftKKBK((ftKtKKB(()))))))))))))))))))))))))))))
4,52445254,54,524,524,524,5254,5225224524,524,5254522,5225224,52452452,524,524,524,5244,524,5244,52452444,52444524,5255525255524,525244,5244224,5252455,,555524,52,555,,,,5.05.050555.55.05.005.05.0055005.05.05.5.0505.0550050005.0055.5.55 000005.05.55.00000005.005.05.05555.055.05.055.005000500550
Set DSet DSet DSSet DSSet DSet DDDDDStDStDSSet DSSttDSet Det DSet DSet DDSSet DStSet DSet DSetSSet DSet Det DtDSet DSet DSSeSet DeeetttDSSet DSeet DSet DDSSetSeSSSeSet DeDet DSSeSeSSSSDSSeDSSSeettSSSetDepth pteptepthepthttepthepthepttteptheptheptheptheeptheepthpteppepppptepttepththhpthepthepteptpppeptheptheptheeeptpepttpteptheepeptheeepthppppteephepeepepthphh (TVD)(TVD)(TVD(TVD)TVTVDTTTVD(TVD)TVVD)(TVD)(TVD)(TVD))(TVD(TVD(T(TVD)TVD)TVV(TVDVDVDD(TVD))TVD)(TVD)((TV(TVD)(TVD)TVVVD)V(TVD(TVD)))(TVD)(TVD)(TVD)TTVDTVDTTTVVD)(TVD)TVD)(TVD)VVDD(TVD)(TV(TVD)DVD)(TVDVD)VDVVVDV(TVDDDV(TT )()………………………………………
3,7533,753,73,753,753,753,75,775753,75757775537737533,753,753,753,75333,77375,7573,75753,75753,753,7533753,7573,73,75753,75333,753,7533,7555537375553,7553,753,7533,7573,7,75337,73353,5,,,1.21.21221.2221.21221.2222.222221.11122211.221.22211.222222222222222.2.222221.2.
Wt/LeWt/LeWWt/LeWWWt/L/LeWt/LeWWt/LeWWt/WWt/LeWt/LeWtWt/Let/Le/t/LWt/LeWt/LeWt/LeWt/LeWt/LettWt/Le/Wt/LeWt/LeWWt/LeWt/WtWt/LeWt/LeWt/LeWt/LeWWt/LeWt/LWtt/eWWtWt/LeWWt/LeWt/LeeeWWttt/Wt/LeWt/Let/LeWt/LeWWtWeWWWt/LeWWt/LeWt/et//eeWeWWeWt/Leeen (l…(n (n (l…n (ln (l…n((ln (ll(n (l…((n(l…((ln (l…nnn(nnnnn ((n (l…nn (l…(n(l…n (lnln (l…nn (l…n ((…(l………((…((ll………(((GradeGGradeGradeGradeGradedeGradGGradeGGGradGradGGradeGGGradGGradeGradGradeGGradeGradeGdeGradeGGraderGradeGraGradadGradeadeGGGraGraderaGradGradeaadeadeadedGradeeadedeGrradeaaaadeeeGradeadeGradGGGaradeeGaGGradeaGraddeeadeGaadeeaddGraaa Top TTop TTop TpTTTTTop TTop TTop TTop TTop TTop TTTTopTTTTop Top Top Top TTopTopop Top ToToopTopppopoppopoopppTop Top ToToppTpooooooppoppop ToooopoopoppTTphreahreadhhreadhreadhreadhrhreadddhreadhreadhreadhreadreadhhhreadreadrearereadeadaaadhreadhreadhreadhreadhreadrreahreeaeaeeadadadaddhrehreadhreadhreadeereaeeeaaadareadeereadreadadreehreaaeadareeeeeddeeaeadaaddreadeead
to 1o 1o 1to 1to 1to 1to 1to o 1to 1to 1tto 1to 1 1tto 1to t o o o o 1 1o o to 1o o to to o o o o to o o to o o o o o o o tto to o tt o o 1C-10C-10C-10C-1000C-10C10C1C-10C-10CC-100C-100CCC10C-10C-10C-10C-10C-1C-100000C-100CCC10CCCC-10100000C-10C-10C11C-10C-10C-10C-10C-1C-100CC0C-100-100C-00C-10000C10C1000CCCCCC0C009L19L19L19L19L19L19L9L19L19L1999L9919L19999999LL19L19L1999L19999L1999999L19L9L99999999999L999911
CasinCCasinCasinCasinCasinCasinCasCCasiCaCCasCasCCaCasinCasinCasinCCasinCCinsiCasinCasCasinasinCasinCasinCCasCaasinaCasnnCasasaCasassCasinnasinasasisssnCCasinCasasasCasCCassCasnCCCCssssiCCCCCaasssCasaanCasCassnng Desg Deg DesDesg DesgDgDesgDeg DesDDgDesDesDesDesDg Desg DesDeesDesg Desg DeggDgDeg Desesg DessggDegDgDeg DeseDeseDesDesg Desesgeg DesssDesg Deg DessssssDeessggg DeseggDDeeg Desssg DeDesDeessgggcriptcriptriptptcriptcripticriptcripttptiriptcriptcripripcrriptcripcccccriptrriprcripriptcriptcripcripcriptiptcripcrippcripcripttripticriptrcriptrricppccripccriptpptcripccriptrpptttioniioniioionionionionionoionionionoooonnonnonoooonoionnnnionionnioooooooooooonoiionooonn
D-SAD-SADSAD-SD-SD-SAD-SAD-SDSSD-SAD-SAS-SADD-SAD-SD-SAD-SD-SD-SASSD-SAD-SSAD-SA-SAASADD-SAD-SADDD-SA-SASD-SASSAAD-SD-SAAADDD-SASAAD-SAD-SASASADDSSSAASAADSASASSAD-SASA--SSA-SADDSAAAADDDDSADDSAND LND ND LND ND D D ND LNDND LNNND ND LND LND D D LND D D D D LND ND ND D D ND NND NNND NND D LND NND LNND ND NNNNNDNND D NNND ND ND LD LD LND LND D L LINERINERINERNERNERNERNERRINERINERNERNERNERNENERENERINERERRNERNERNERNNERNERERRRRRRNERNERNERRRNENERINNERNRNNRNNNERERNNERRNNNNRINERNERNREERRINNRR LEM LEM LEM E EMMM EMMM LEM LEM L EM LEM EM EM EMM LEMMM EM LEM EM E E EM LEMMMM LEMMMMMMM EMMM EM EMM EM EM E EMMMMMMMMMMM LE LE LEM L EMM L LE LEMM
OD (iOD (iOD (OD (OD (D(ODODD (iOD (D(iOOD (iODOOD (iDOD(OD (iOD (iOOOOD (iOD (iDODOD (iD (OD (OD (iD(iODOD (OD (iOODOD (D(i(OD (OD (iiOOOD (iDOOODD(((OOOD ((OODODOOD (OOOODOD (OOO (i(n))))))n)))n)))n)n)nn)nnnn)n))nnnnn)))nn)n)))))n))))))
5.25.2555.25225.25.25.25.25.25.25.25.25.2525.225.222555525.2225.252525.225.2255.225555.2525.225555255.2555.2255.2555255522255.22
ID (iID (iID (iD (ID (iDD (iD (D (iD (iIID (iD(D (D(ID (iD(iD (D (iD(iD(iiD(iDID (DDD(D(IDD (((D (DDD(DDDD (((ii(((n)))n)))n))n)))))nnn))n)nnnn)))nnnn)nn))n)nn))n))n)nnn)n))))
3.693.693.693.693693.63.693633.6963.693.69693.69363.693.693693.693.693693.6936693.69363693.69936333693369699993.6933.693.693696693693.69693.693.6969693.69669369669933696969366693.69999993.696636693.6333.693.669333.9
Top (Top (Top (Top (Top (Topp (TT(Top (op (Top (p(op ((Top (Top (Top ((op ((TopopTop (popop (op (ooopopopop ((op (opoopp (pp(oopooop (pp (TopopoopTop (oooppp ((((((ftKB)ftKB)ftKtKB)ftKB)ftKB)ftKB)ftKB)KBftKB)KBftKB)f KB)BBBffftKB)ftfttKB)tKB)ftKB)ftKB)KBKB)KB)tKB)ftftKB)ftKBftKB)ftKB)KBftKtKftKBftKBB))ftKBKBKKKBKBtKB))ftftKB)KKKB)BBBKBKBKBBKtKBB)KKK )KKBKK)ftKfBB)))
4,424,424,424424,4244,42442,4244242,424442424,422,424,424,4244242224,42444242224,42444,4244,424424,42,42444,424444,42,424422444224444444,424424,444444244,442,2244,42,4242,,2.62.62.62.62.62.62.6622.62.6662.66262.6262.6222622.622.62.66662.62.62.62222.62.662622.6262.622.6662626226266262.622.66262.66.6..66662.66666
SeSet DSet DSet DSet DSet DDSet DSSetSet DSet DDSet DDSSet DSttSet Det DSetSet DSet DSet DSeSetet DSet DSet DSet DSeeeSet Det DSet DSSet DeeSet DDDSSeeetSSSSet DSet DSSetSeSet DeDSSeetSett DDSSetDSSSSepth eptheptepthhepteptpteptheptheptheepthpthpepthhhepthepeeepthppeptepthheepteeeppthpepthpthhheppthhpthphepteeeeeppppheeeeppppttepteephepteeppthpthtt (ftKB(ftKB(ftKBftKBfK(ftKB(ftKB(ftK(ftKKB(ftKBB(ftKBKB(ftKB(ftKK((ftKB(fttKB(ft(ftKB(ftKBKK(ftKB(((ftKBfftKBtKBKKB(ftKBKBB(ftKK(ftKBB(ftKKKBKBBfttKBKKBBBBB(ftKBKBBBKBBKKBKKBKKB(ftK(ftKB(ftKB(ttttKBKB(((()))))))))))))))))))))))))))))))))
4,604,604,604,6046,64,604,604,60646004,600046604,606060604,604,6004,60,6004,606606,6646004,606000460604,6004644,664,6,60604,64,604,664,6004604,64,66606644646066046604444446644,600606044,0,,,3.83.83.883.88333.8383.88383.3.833.83833883.883.83338338888838383.83.8383.83.8383383.8838883.83.83833338888388883.88883.83.8383.833.8883.83.8388333..88
Set DSet DSet DSet DDSet DtDSStDSeSet DSSet Det Det DDSSetSet DSet tt DSeSet DSSet DSet DSet DDSet DSet DSSeet DeSetSet DSetDSSeSeSeSet DDSeettDSSeeSSSeSSSDSSeeSSSeetSSettetDepth eptheptepthepthtteptepthepthepthpteptheptheeptepepthepthepthpptheptepthhhepthepepepepphhpthepeeppeptpthptheeeptheepthepteepteptppepeptppepthepthpppth (TVD)(TVD)(TVD)(TVD)TTVDTVDTVD(TVD)((TVD(TVD)TVD(TVD)TVDTVVDV(TVD(TVD)VD)D)(TVD)(TVD(((TVD)TVD(TVD))TVTTVDTTVD)(TVD)VD)(TVD)(TVD)(TV(TVVD)VD(TVD)(TVD)((TVD)(TVD)DDD)VVVDVD((TVD)(TVD(TVDD(TVD))VVD)((TVDTVD)(TVD)((((………………………………
3,77377773,7773773,73,773,773,3,773,773,773773733373777773773,773,77373,773,7737733,7737773,77773,3 773,773773,7333,773,7733,77333,77777333777333,73,7777733,7773,77733,77,3,,,,,5.5.5.85.855.85.8555.8858885.8585.8585.85.8585.85.885.85.858585885.88885.85.8585.858888585.85.85.88885585855.85885585.88888888585885.85.88555.85..8
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4,474444744744474,474474,474,47474474474744474,4744,47474,4744,47,44,47444,474444,4744,47444444447744447,447444477,477,7,,,4.1 341 34.1 34113134.1 334.1 31334.1 334.1 34134.1 33341 34.1 341 3333413113331341 3333341334.1 34441 34.1 34.1 34.133443343343444433.33333133,732,732732,732,732732,73,73273232732,73222737332,7323232323732,73273273222,732,7323327323323732327322732732732222732727,7327323273322732273,7322,733233,.4 674674646746.4 67676666.4 67.4 67466764664674646446466676464676746667677.4 64676467467746676644677746766746667446666.6766677.33 N33 N.33 N3333 N33.33.33 N333 N.33 N.33 N.33333 N.33 N33 N3N33 N33 N3N3333N33 N3333 N33N3N333N333333 N3333 N33 N33333 NN33333N3333 N3N3NN.33 NN333333 NNN33333333IPPLIPPLIPPLIPPLIPPLIPIPPPIPPLPPLPPPPPPPLPPPPPPPPPPPPPPPPPPPPPPPPPPLPPPPPPPPLEDB EDB EDB EDB EDB EDB DB B EDB DB DDB DDB DB EDEDB EDEDB DB DB DB B DB B DB DDB B EDB B B EDB EEDB DB B EDB DB B DDB B DDDDB DB DB E DDB DB B NIPPNIPPNNIPPNIPPNIPPPNIPPNIPPPNNNIPIPNIPNIPPNIPPPNIPNIPNNIPPPPNIPPNIPPPNIPNIPPPPNNIPNIPNIPNIPPNNPNIPPNPPNNIPPPPNPPPPPPNNNPNNPLE 3LE 3.LE 3.LE 3.LE 3.E3LE 33LE 333LE 3LLE 3E3E3LEE3E3E3333E3E333333E333E3LE 3E3EE3EE33E33333.LEE 333L3 75075075075075075057505050500575050007500750775055555050075007500757507507775507500075075505575050507757057505505000050
4,484,484,484,4844,484,484484,48,484884,484,4844,488448444484884484,484484,484,484484,4844488448448444484484484,484,484848,48448484448,48884,48484,48,88,,8,,,,,3.5 33.5 333.533.5 333.5 33.5 33.5 33.5 3533.5 33.5 33535 335 33.5 335 333.5 333.5 3353.5 3333335 33333.555 335333.5 335335333.5 3335533.5 335 33.5 3533.5 35333.5 33553355333553533333.5 3333333.5 35533333.,736736,736,736736,73636363636,7366,73336736736,73673633,736636667733336,736373636673667367,73333736367363373636733663636677363673366733366,73667,7366,736336,3,,.0 67.0 67006067.0 6706767606660606706067006700670676666.0 670670670060670676606766767670676660670660670006667706766067067000676066600066.000 67.70 H.70 H.70.70 H.70 H0H7007070 H.70 H0H07077000700.70 H.707070007070.70 H707000HH7070770 H77770007770.770070700 HANGEANGEANGEANGEANGNGANGEGGGANGEANGNNANGANGGGANGENGGANGNGGANGEANANANGANGGGANGANGANGANGAANGGGGEAANGANGENNGAANGANGENGNANANGANGNNGNGGANGAAANGGGAANGANANGANGNGAAANGGGANAARLEMRLEMRLEMRLEMRRLEMRLEMLEMRLEMRLEMEMRLEMRLEMRRRLEMRLEMMRLEMRLEMRRLEMRLEMMRLEMMRLEMRLEMMRLRLEMRLEMMMRLEMRLEMRERLEMMMMRLEMRRRLEMRERLEMRMRLEMMMRMMRLRMMMRLEMLEMM HH H HH HH HH HH H HH H HH H H H H H H (abo(((abo(aboab(abo(abo(abo(ab(abo(abo(abo(abo(abo(abo(ab(aaboaboab(abo(abob(abo((aaboaaboa(abbbbaboabo(abooo(a(aboaboab(abobbbaboooo(aboaboaboabo(aboa(a obo(aboaboaabaao(abaabbobo((((ve hve hve hve hve hve ve hve hve hv e ve e e e he hve h hvve hve ve vve hve hve e e hve ve ve he hve hve hvve ve e e e ve e h h hve e he h vve ve ve e e hvvvvve h ve ve e hvve hook ook ook ook ook oook ooook k k ook ook ooooooook oooook oo ok o ook ok ok oo oook ook ook oook k ook oooook ok oooooook oook o k oo k ook ok oook o k oooook oook k k 10.610.6110.6006060610.66661010.610.610 60.6100010.60660.6110.600060.60.6660.60.60.60.6610 61000.66066610.6006060.60.6666666010666666066610661) 3.1) 3.1) 31) 3)1) 31) 3.3)31) 331) 331) 3.)))33.31)331) 31) 3)1) 333331) 31)))3)3.3.1) 3)3)3)333333)))3)3)1))333331) 3.))33)))99099099099909999990990990990990990990999900999999999999099009099099909999099990990990990990999999990999099909909909909099099099999909990999909999099999099909900
4,494494,494,49444,494,49,4994,494,494,494,494,494,494949494,49994,49449449494,494,49994494,4944944994494,4944444444944999444994,449499999,,,9,,,,,4.1 3444.1 34.1 34.1 34.1 34.1 3134.1 31341 34.1 34.1 314.1 34.1 344.1 313133333341 34113133341 34334.1 344441 3334.1 3334441 3413133434.1 3334.333,740740,74074074074,740,740,7400,740740,74040074074074,740074000400,740740747400,740740007404077444740407744740,740407774070700,7,,,.0 68068006068.0 680680686806888.0 68006806860688068068068.0 6806806806806866068666806806888068006860666880680686860680680680068068068068606806808866680688668800688866880680686688.068.11 H11 H.11 H.1111 H11H.11 H11 H11 HH.11 HH111H111.11 H11111.11 H.11 H11.11.11 HHHANGEANGEANGEANGEANGENGENANGANGENGENGEGEGEGANGANGEANGEANGEANGNANGANGGGANGEANGNGANGEGGEANGEANGANGEANNGNGEANGEGGAANGANNANANGAANGENNNANGNAANGANGAANGANGANGANGNNGNANGGAANGGGAAANGAANGGGANGRLEMRLEMRLEMRLEMRLEMRLERLEMLEMLEMRLEMRLEMRLEMRRLERLEMRLEMMRRLEMRLEMEMRLEMRRRRLEMMMEMMMMMRRLEMRLEMRLEMRLEMMRRRERLEMMRRLEMMMRREMMMMRLEMRLEMRRLEMRMRMRMMRMMRREEMMM HH H HH HH H H H HH H HH HH H H HH H H HH H (bel(((b(belbel(be(belbb(bel(be((bel(bel(be(bel((be(bb(bb(beebeee(be(bebbbbb(be(beee((bebb(beebel(be(b(bebe(beeebeebel(e(beebb(beleeb((((ow how how h h how how how hoooow how how hw how hw hw how h hooow hoow w w ow how hw h hoow hw how how how w ow oowow ow w w ow w w oow w w w w w w w w w oooow how how ook ok ook ook ook ook ooook ook ook ok ok ook ooook k k ook ook oo ok ook ok ooook k ook ook ook oook ok ook o ok k oook oooooook k k ooook ook ooook k ooooooook ook k ooook oooook 24.52224.524.524 5424 524.524.5524.524.524.54.524.5224 5224 524.524224.524.5524 5524 524224 54524 54.554424.52455224524.545224.54.54.555222245224224.524.544.55.525554..1") 31) 31") 31") 3") 31") 31") 3))1") 31") 31") 33") 31") 3)") 3)31") 31") 3))31") 333)3)3") 3") 33)331") 3)3331") 31"11") 3""") 3331") 3)"") 3)331) 333)3))33)))333))))))).688688666886886886868688688.6886888688688.688688668688686886688688688888688686886888888688688688.68868866888868888688688668868686888868868868688868866888886888888888866868888688886886888.
4,564,564,56564564,564,5656456645664,564,564,56,5664,564,5654,564,5,56665664,564564,566645645656645644,564,564,564,565,5664,56556454,565,56664,5556566646655565665556664,56,3.3 333 33.3 333.3 333.3 33.3 33.3 333333.3 333.3 33.3 3333333.333 333.33.333.333333333 33.3 33333333.3 333333 33.33.33.3 33.3 333 3333.3 333.3 33333333333.3 33.3 333333.3 333.3 333.3.3 333333333333.3 333333333,764,76476,7647,764646,764667664,764,7646764764764767666,764766,76764,7647767646644,764,76476476644476646,764764676647644,76766464766476,76466467647,7666,666,,.0 71.0 7100071.0 710071071071.0 71710070710710007070700717107007107071000771071000700777007770707707070000007.0 710.75 N7.75 N775 N.75 N.75 N75 NN.75 N75775 N75575 N5N.75 N75 N.775 N575 NN775 N5N5N75.75 N775NN55N75 N7555755N5N75 N5N5N55N75 N75N7N55NN7555N575 N577555N7575IPPLIPPIPPLIPPLIPPPIPPLIPPLPPPPPPPPPPPPPLPPPPLPPPPPPLPPPPPPPIPPLPPPPIPLE3.5E3.5E3.5E3.5E3.5E3.5E33.5E333335E3E3.55E3.5E3.53.5E333E3.535353E3.55E3.333.5E3.533555E33.55E3.53.5E3.53.533.5555E3.53535553.53.5333355E3563" 636666663" 63" 63 3" 63" 633" 63" 63" 66363 63" 3" 63" 666363 663363 3" 3 63" 6633 " 663663" 3 63 6663 63 " 666363663 63 6663 6663 633663 33 6 DB NDB NDB NDB NDB NDB B NB B DB NDB DDB NDB NB NB NB DB B NDB NDB NDB NDDB NDB DB B DB B NDDDB DB NDB NDB N N N NDB NB NB NDB N N NDB DB B NB N NB NDB N NB B NDB N NDB N NB NDB NB NDB NDDB NB IPPLIPPIPPLIPPPPPPPPLPPIPPLPPLIPPLIPPLPPPPPPPPPLPPPPLPPPPPPPPPPPPPPPPPIPPLIPPLLE3.5E3.5E3E3.5E3.5E3E3E3E3335E3.553.533.55E3.5E3.5E3.5E33.533.5E3.533.53.5333E3.5553.53.533E3.55553.555EE33555535353553.553.5353.553555553.556363636636633636363366636636363636366636363636336363663633363663633363636336636363336366366663333366663
44,594,594,594594,594,594,59,594,59594,59594,59459594,5955959959959445594,599594,59459459594459944,5954,594555599944,5959595994,5999945955995999,9,,,,,,5.8 35.8 35.8 35.8 355.8 388358885.8 385.8 35.8 35.85.8 35.8 358 3555.85.8 3885.8 35.8 358 358 3838335835.88 38358 335.8 3835.8 35.8 388355.8 38358 385.8 388835.8 3835.8 355.888 38385858 358838883388333358,773773,7737737773,773333773773,77377733773,7737737773,7733333773773777,77333,773,77337777,77373773773,773777377,7733777377377,773,33733333,,.6 7367363673673673.6 73673.6 73673673367366766336673673667367367673677367673673367373673366736736673336736673673736733663673337366736766367667363.6 3.92 L92.929292.929292L.9292 L.92 L.92 L9.92 L292 L9292929292292922922992999292 L92929299292922929292292229LL99999OCATOCATOCAOCAOOCATOCATOCATOCOCAOCATOCAOCATOCATOCATOCAOCAOOOCATOCAOCOCOCCACOCCOCACOCATOCAATOCATATOCOCAOOOCOCCCOCCAAOCACATOOOCACACAOCAOCOCAOCAAOCAAOOCCOOCAAAOCCOOCOCACOAAOOOOCOR 4.OR 4OR 4.OOR 4.OR 4OR 4OR 4.OROR 4OR 4OROR 4OR 444OR 4OOR 4OROR 4OR 4OR 4OR 4OOOOR 4OR 4OR 4.ORROR 4OROOROR 4ROR 4OOROROOO44R44OOROOROR 44RROROR 444RRR4OR4R44OOOOOO5" L5" L5" L5" L5" L5" " 5" L5" " L5" L5" L5" L55 5" " " 55" 5" " " L 55" L5" 55 5 L55 5 55 5 55 5 55 55 5 555 OCATOCATOCATOCATOOOCAOCATOCATOCATOCOCATCATOCATOCATOOCAOOCATOCAOCATOOOCCACCOCAOCATOCOOCAOOCAOOCACCAOCATOOOCAOOCACCAOCAOOCATOCAOCAOCATOCAOCATCAACAAOCAOOOCCACOCCAOOCCCAOOCCAOCOR +OOR +OR +OR +OR +OOR +OR +OR OR OR OR OR OOR +OR +OR OOR OR +OR R +OR OOOOR +OR +OR OOOOR OR +R +OR OOR +OOR +OR OR R R R R OR OR OR OOOOR OR OOOOOOR XO XO 3 XO 3 XO 3 XO 3 XO XO 3 XO 3 O3 O O3 XO 3 XO 3 O33 XO 3 X XO 3 XO 3 X O XO 33 XO 3 XO 3 X X XO 3 XO XO 3 XO O3 XO 3 O XO 3 XO 3 O33 XO 3 O3 X XO 3 XO XO XO 3O33 X X 3 XO 3 X O3 OOOO3 OO 3O O3 XO 3 O O XO 33 XO XO O OO X O XO 3 X X O 333 O O3 OO 3 O O O 3.68868.68868868866888888.688688.68868868888688886886886668868.6886886886688888886886886886888688688688688666688886886886888688886886886886688886888888.68886868866888886888668
4,594,5944,594,594,594,599,59594,594,594595959459594,59959594,5959944,5959945944,59945999455944,54,5599594,594,5944,5955599599459994594,599999999,5959,99,,,,,8.2 38.2 38.2 38.2 38.2 38.2 323232238.2 38.2 38.2 382 388.2 3828.2 38.2 388828282 38.2 38.2 382 32228.2 38.2 38.2 38.2 38.2 338.2 382 322282 38.2 382 38.2 388282 382238.223882 3882823388.2 328.288 3338882338883338,774,774,7747774444774774,77477777747474,7744,7747777777447744,7747747,7747744774777744,77777477474747744777777747,,77,77,,,,,.2 74.2 742742727422274274.2 74274.2 74274274272744.2 742742742727427427744227274427274277427424274427427747442222774442772747.08 S08 S0808.08 S08 S08 S08 S8S.08 S08.08 S8SS8SS08 S008 S8S08 SS008 S08 S08 S080808 S808 SSS8S08 SS08 S080808SS08 S.08 S088.08 S8S08 S08 S08 S08SS88S8SS8808 SSS088SS8S088SSS08 S00SSEA EAL EAL EAL EAL EAL EAL AEAL EEAEAEA EAL AAAEAAAAAAAEAAAAEEA EEAL A EEAAAEAAEAL AAAAEEAA ASSYAASSASSSASSSSSYASSYSSSSYSASSYSSYASSYASSYSSYASSYYASASSYSASSYASSASSYASSYAASSYSSYASSSSSSYSSSSASSYSSYASSYSYASSASSYSSSSYASSYASSYAAASSSSSSSSSSSYSSYASSYSSYSSYYASASSSYYYASSYSSSASSYASASSSYSYASSSYAASSSSSASASAASSS SEALSEASSEALSEALSEALSEASEALSEALSEAEALSEASSESSSSSEALSSEASSEASEALSEASEASEALSEASSSSEAASAASEASSEALASEASEASASEASEASEASSEALSASESEASEAAEASAAAASSSSEASAASAAS ASS ASS ASS ASS ASS S SS S SS S SSS SS SSSS ASS SS SS ASS ASS ASS SS SS AS S S ASS SS ASS ASS ASS SSSSS ASS A A A ASS SS S SS ASS ASS ASS S ASS SS A A S S ASS SS A ASS ASS S S AS A ASSS A ASS S SSS A A S SS A S A SS A A S S S A S SS S SS SEMBLEMBLEMBLEMBLEMBLEMBBEMBEMBMBBEMBLEMBEMBMEMBBMBBLMMMMBMBMBBBEMBEMBMBMBEMBEMMMMMBBEMBLMBEMBEEMBMMBBEMBLEMMBBMBMBMBBBBLMBY 5.Y 5.Y 5Y 5Y 5.Y Y 5.Y 5Y YY 5Y 5Y 5Y 5Y 5Y 5 5 5Y Y Y Y Y 5. 5Y Y 5Y 5.Y 5.Y 5Y Y Y 5Y 5 5Y Y 5.Y 5 5 5 5Y 5 5 5Y 5 5 5 5 5 60" 60" 60" 6060" 60" 660" 6000" 60" 60" 60" 060" 60" 60" 60 666660" 00600 60 0 66660 660 000 60 6660" 600 " 00 60" 60060 660666660 6066660 6600 6600 w /2w /2w /w /2 /2 2 2 2 2w /2 2w /2w /w / 2 /2 2w /2w /2 2w /2w /2w /w /2w /2 2 2 2w /2w /w /2w /2w /2w /w /w / /w /2 /2w /2w w 2ww 2 2w w / / 2w /2w w / 2w / 2w w w / 2w / 2w w w /' SP' SP ' S S S' S S' SP S' SP' SP' SP SP SP S P' SP' SP S S S S S SP SP SP P P S SP SP SP S SP P' SP' SP' SP' ' SP' S S SP' SP' P S P S S S P S S S S SP P P S S S S S S S S S S S ACE ACE ACE ACE ACCACE ACE CACACE ACAAACACE CCCACACCACACE CE ACE AAACACE CACACACE AACE E ACACACCE ACACE ACE ACACE E E E AA E AACE ACAACCCAAACCACC OUT 3OUT 3OUT 3OUOUT 3OUT 3OUT 3OUT 3OUT 3OUT 3OUT 3OUTOUT 33UT 3OUT 3OUT 33OUT 3OUT 3OUT 3OOUT 3OUT 3OUT 3OUT 3TOUT3OUT 333OUT 3OOOUT 3OOOUT3OUT 3OUT 3OUT 3OOOO3OUT 3UT 3OU33OOUOOOUO3OOOOUUT 3U3OOUT 3OO3OUUUU33OOU33.0000000000000000.0000.000000000000000000000000000000000000.00000000.00000000000000000000000000000000000000000000000000000000000000000.000000000
CasinCasinCasnaasCasiCCasinCasCCasiCasinCasCasinCasinCasCCasinCCCasCasCasinCasinCCCasisinCasaasiiCasininnasinCasinCasasaaasnsinnnaaCassinssasinnnCaCasCasinnCaaCasasssaasssssasaasiCng Desg DesDesg Desg DesgDesDDeDeDDgDesgg Desggg DDesg DesgDesesssgDesggDegDgDesDesegDesgDesesssggg Desg Degesssssg DesgDesg DeeseessDesDeDessg DesesDesesgDesegDesDeessg Desgeesg Dessssgegg Dggg criptcriptcripticcriptcripttcripttcriptcriptriptcriptriptccriptrirriipcriptpcripttcriptptcripcripcripcrcriptriptptcrcriptcripcripripppptcripcpppcrrcripptccppcriptccppptcripccpptcpppioniiononiionioionionioioioonononniononnioniioooooonnnniooonooooooonnononionooooooon
B-SAB-SAB-SAB-SAB-SASSB-SASSAB-SAABBSASSASB-SAB-SABB-SAB-SABSB-SSASBSSB-SASAB-SABB-SAB-SB-SABSSBSAAAAB-SAB-SBB-SASA-SABSB-SAB-SAB-SASSASAB-SASBB-SAB-SAAB-S-SA-SBSSAAABSSAAAABBSSABSABBSSND LND ND LND ND LND ND LND LND LND ND ND LND D D D ND NND D ND NND ND D NND ND ND NNNND ND NND D LNND D D D D LNNND LND L LINERINENERNINERINERERRRININERNEINERINERNERRNEERNERNERINERRNNERRRNNINERNERNERNERNNRNERNERNEERRNRRRNNNERNNRRERNRNRNNRERRINNER
ODOD (iOD (iOD (iOOD (iOD ((OD (iDODOD (iOD (iOD (iO(D(iOD (OD (OD (iOD (OOODD(OOOOOD (ODDD (D (iOD (iOD (iODOD (ODD (iiO(OODODOD (OD (ODDOD (OD (OD (OOO (n))n)n))n)))n))nnnnn)nn))nn)nnn))n)nnn))n))n))))n)))))))
4 1/4 4 1/ 1 1/ 14 1/4 1/4 14 1/4 1/4 1/4 1/ / 4 1/4 1/4 1 / / 4 4 1/4 1 / 4 1/4 1 1 / 4 1 / / /4 1/4 4 4 4 1 /4 1/ /4 / / /4 / / / 4 1/ / /4 1 / /22222222222222222222222222222222222222222222
ID (iD(i(iID (iD (iD(IID (iD (i(iD(iIDD (i(iIDD(iDD (i(i(iID (D (iiiDDD((IDDD (DDD (D (D ((D(iDD ((D (i(((n))n))))))n)n))n)nnn)nn))nnnnnn)))nnnn))n)n)))n))))))))))
3.963.3963.96996.963.963.96663.963.963.963996633.963963.963393963.963.9696963.96339639633.963.96663333.9699993.966333.969.963.963666333.9693.96966966696696663.96396399969669633996693333333.96
Top (Top (Top (((Top (Top (Top (p(op (TTop (Top (((Topoop (Top (Top (pppop (opop (op (oTop op (popoooooop (opop (ooop (ppop (opooooppop (oopTop (op ((p(ftKB)ftKB)ftKBftKB)ftKB)ftKBBftKB)KB)ftKB)ftKB)B)ftKtKBtKBBKB)ftKfftKBftKB)ftKB)ftKtKKtKB)KKBftKB)f KtKB)B)ftfftKB)tftKB)KB)ftKB)ftKB)KftKBKB)KB)B)KBKtKKKKtKKBBBBftKtKB)ftKB)KK )B))
4,594,594,594,59594,594,59594,59,594459,59594594,59459,59,594,595994595994594,594595595959994,594,559,594,5595594594,559994595,5999459445959994,559595494,,,,7.177.17.1711717.177717171171771711177.7777777 17777.1777..
Set DSet DtSDSet DSet DSet DSet DSet DSet DSSetDSSet DSet DSet DettSet Det DSet DSet DSetSet DSSet DSSetSeSet DtettSet DSet DSet Deeeetet DSet DSet DSSeeetet DSSeet DSSet DSSeSSSeeDSSeSSeet DeDSet DeettSDDStepth epthepptepthepthepthteptteptepteeepthpthpeptheptteptheepteeptheeepthppepthhepthheeepeepeptepptpthepthheptepppthepteeptepptettp (ftKB(ftK(ftK(ftKBftKBK(ftKB(ftKBtKBftKBB(ftKftKBftKt(ftKB(ftKB(ft(ftK(ftKBftKBftKttKBtK(ftKKKBB((ftKBtKBK(ftKBB(ftKB(ftft(ft(ftft(ftKBKBKKBB(fttKBB(BftKBtKB(ftK(ftKtBtKKBBBttKBB(ftKKK()))))))))))))))))))))))))))))))))
77,487,4877,487,484447,4874887,48887,487,487487487,7,48487,488748748487,48484887,48874487474887,4877,4848874487488748887,48848,4887487,487,48,88,8,8,,,,,3.033333.033.00303.03.03.033.0003.0303303303.00300303333.0003.03.00303.03.00303.00333.0033.033.0003.3.0033.0333.003.03.0.0
Set DSet DSSet DSet DSeSetSSet DSetSet DSet DSet DtSet DSSet DSet DSet DSet Det DSet DtDSet DDSSetSet DtSet DSSet DetDSSeSet DeSet DSeet DeSetDSSet DeeDSeeSeDSeDSSSeeetDeet DttDSttDDepth teptheptheptheptheptheptheptheptheptheptheppepttepteptheptheepthepptheptepthpthepteeeepptptepthhhephhepthepteepepepthpeptheeptheeeeeppptteepeptpthhpp (TVD)(TVD)(TVD)(TVD)(TVD)(TVD)(TVV(TVD)(TVDTVD)(TVD)(TVD)VD)(TVD)(TVD)(TVD)D)(TVD)(TVD)((TVD)T(TVD)TVVVD(TVDVD)DD))(TVD)((VDDD)VD)VVD)(TV(TVD)V )V(TVD)VDVD)VDVVDDDDD(TVD)(TVDVVD((()(……………………………
3,793793,793,7937793,793,793,793,7933,793,793,7979333,793,7937933,79379793797993,7993793793,7933,79,79793,79937933,793,797337793,7393,73779337779977379933999993393333993,7933,999,,,,,3.43.4333333.43.44333.443.43434343.43.43.43.33.4343.43.4343.434343.433.43.43.434334443343.333333.4
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Set DSet DSet DSet DSetSeSeSet DSet DSet DSet DSet DDStSet DSet DStSet DDSet DSSeSet DDSet DDSet DeSeetttet DDSet DSSSeSeSeetet DeDSet DSetSeSet DteSeSeSSSeDSSSet DSSSeeettSSSeetSeDSepthteptheptheptheptheptheptteptheepteeeptheppppptptepteptthhepthepeepthepepthppephepthhepthpeptptepthhptheppptheteepteptppepteeepppttepthp (ft…(ft…((ft…(fft(ft…(ft…f(f(ft(ftt(ft(ft…ffft(ftt(fftft(ffftt(ft…ft…ft(ft(f(ft…(ft…ftft…tffttft(((ft…(((((
4,314,34,314,34,3334,314,31,314,34,31433334,34,314,31443434,34,3143434,3134,31443114434,33344333434433333333,,,9.89.89.899.89.89.89.89.888889.89.89.89.89.89.8999.88989.89.8889.89.8989.89.899.8898889889899.88888898989.88999.8889.888888899889.8999.8.898
SetSet DSSetSeSet DSSet DSet DSet DSet DSet DSeSet DtDSet DSSSet DSSet DSet DSttSet DSet DSet DSeSet DSet DSet DSet DtDDDDSet DSeteettSettDSSetSeeeeeSeSSeeettetSSeeSeeSet DeSeSSet DSSeSetSet DDDDSSSeSttSeDSepth epthepthepthepthtepthteptepthptheptheptheeppeppttttepthepthepeptepthpptepthhepeepteeppptepthheepepepeeptheeeheepepeeppteetppp (TVD)(TV(TVD)(TVD)(TVD)TVDVD)(TVD)(TVD)(TVD)(TVDVDTVD)(TVD(TVD))(TVD)(TVD(TVD(TVDVD(TVVV(TVD)(TVD)(TVD)((TVD)TTVV(TVD)(TVD)DD(TVD)VD)((TVD)VD)(TVDD)VVDVVD(TVDVVVDDVT)))())()()(…(((((…(((…(((((…((((((………(((…(…(((……((((
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RATIRATIRATIRATRATRRATIRATRATRRATIIRATIRATRATIRATIRATIRRARAAATIRATIRATTRRRRRRAAAATRATTTRATRAAAARAAAAARAARARRRRATAARAARARRAATAARAAARRRATIO), O), O), O), O) OO) O), O) O) O) O) O) O), O) ) ) O), OO) O) ), ) O) OO) O) O) O) O) ) O) O) O) OO) ) ) OOO OOO , , OO) OOOO) , , ) ) ) SHOCSHOCSHOCSHOCSHOCOCHOCSHOCHOOSSHOSSHOCSHOHOCSHOCSHOCHOCSHOCSHOCSHOCSHOCSSHSHOSHOOCSHOCSHOOCOSHOCSHOSHSHOSHOCHOCCSHOCSHSHOCOCSHOCSSSHOCSHOCSCSHOCHOCHSHOSHOCSSSHOCSHSSSSOCSSHOCOOCOOCSOCCSSSSHCCK AB ABK ABK ABK K AB ABK ABK K A BK ABK K ABK AK AK K K AB A AK ABK ABK ABK ABK ABK AB BK K AK A A B B BK ABK AB A AB AB BK AK A AB AK AB ABK AB BK AK A AB BK ABK K A A AK AK A AB A BK K AK A AK AK A AK BK K K A BSORBSORBSOSORBSORBSORBSORBSOOROSORBOORBSORBSORBSORBBSORSBBSORBSORBSORSORSORBSORBSORBSOORBORBSORBORBORBORBSORBBSORBSORSSORBOORBRRBRBSORBBSOSORBOORRRSORORSORSSORBOBSSOORBRSORBSORBSSSRSORBSOBSSOBSORRBSORBSRRER, EER ER, ER, ER, RR ER, EER ER, ER, ER ER RR, ER R R, ER ER, RR R R R, R R R R, ER R ER ER R R R, R R R, , ER EER, R R , AND ANDANDANAND ANDANDANDAND NANANDNAAANDAANAND ANDDAND ANDANDAANANANDDAND DANDANDAND DDAAND ND NNNDANDAND AAANDANNNANDNANANNANANNNANNANNDAAANNDD
SPARSPARSPARSSPARSPARSPARSPARPARSPARSPARARSPARSPARSPARSPASPARSPARSSPARSPARSPARARSPARSPARSSPASPASPARSPASPARSPAPARSPAPARSPAARSPASPARRSPASSPARSPARARSPARSPASPASSPASSSSPPAARRSPARPSPARSSPARRSSSPARSSPARSSRSASARTEK TETTEK TEK TEK TEK K TEK TEK TEK ETEK K K K K TETETEK EETEK K K K K K K K K TEK EK K EK EK K K K K K K K TEK K EK K K GAUGGAUGGAUGGGGGGAUGGAUGAUGGAUGUGAUGUGGGAUGGGAUGGAUGGAUGGAUGGAGAGGAUGGAUGGAUGGGAUGGAUGGGGAUGGGAGAUGGAUGGAUGGAUGAUGGAUGGAUGGAUGGGGAUGGGGGGAGGAUGAGGGAUGGAAUGGGAGAGAGAAGGGGAUUUGUGGGGAAUGGGAGE (9E (9E (9E (9E E (9E (9 (9 ( (9 9 9 9E (9 ( ( (9 9E (9 9E (9 9 (9E (9 9 (9E (9 (9 (9 9 9 9 (9 (9 9 9 ( (9 9 (9 9 (9E (9 9 (9 9E (9 9 9 9 9 9 9 ( ( 9 9 ( ( 9 9 9 9 ( (9 9 9 ( 9 ( 9 ( ( ( (5" O5" O5" O5" O5 " 5" O5" O O5" O O5" O O O5" O5 " O" O O5" O5" O5" O O5" O5" O5 5" O5 " 5" O5" O O O O5" O5" O O5 5" O O O O O5 O O5 5 5 5 5 5 5 O O5555 5 O O555 AL)AL)AL)AL))AAAL)AL)AL)AL)AL)AL)AL)AL)AL))AAL)AL)AAAL)AAAL)AL)AL)AAL)AAAL))AAA )AL)AL)AAAAAAL)AL)AA )))LA)))))))
10/210/210/20/10/210/2100/20/20/22210/20/210/210/20/20/20/0/20/210/20/20/220/20/20/2210/20/210/0/200/210/22022210/220/210000//2/0/220/2//2/0/2/200/10/20/20/2/202/202/202/202/202/202/2/20/2/202222/2002/202/202/202/222/202/202/2/202/2022/202/202022/202/202/202/202222/202/2022/202/20/202/22/202/2022/2002/20002/2022/20220222/2/220//20022/022/222/22/2/0000021 PH2121 PH221 PH221 PH21 P121 P21 PH21 PH21 PHPH21 PH21 PH21 PH21 P221 PH21 PH21 PH2221111PPP21 PH222221 P22121P21 P221 PHP21 PP2P221P2221 P222222 -104-1041-104-104-10400-10410441-10404040-100-10441010400400041010-104-1041041444000404041040400044-0440010400033333333333333333333333333333333333333333333333333333
1C-10C-101C1C-101C-10CC1C-10CC-10C1C-101C-10C-10C-10001C-101C-10C1CCC-10C-10CCC-1010001C1CCC-10C-1010011C-10C-10CC1C-1000C-101CC-10C-1010C-10000C--100C-1000CC10C009, 109, 109, 109, 109, 109, 109, 109, 101919, 1009109, 1091009, 199109, 1099919, 109, 109, 1000,1009109, 109, 109, 1999, 1119, 19, 109, 10091019, 10999, 10999991099909, 1099, 1099,009, 1090,/23/223/2/23/2/23///2323/2/23/223/2/23//2323233/223/2//23/23/2222/23/23/2/2223323/23//23/2223/2/23/22/23///23/2/23/223/23/23/2323/2/23/23/22/2223/23/2/22/23/223/23 23/222233/23/223/223/2/33//2/333/23/22/223223/23332233021 2021 2102021 2021 2021 20021 2021 2021 22212021021 2021 2021 2021 202000021 22021 22221 2112021 221 22021 202021 212221 20021 20221 2121 2021 2222021 2021 221202021 2222220222221 222220022:35:11:35::35:133535:133:35:355:35:135:1:3535335335355:11:35::35:1:3:35:1355:151:35:1:35:::35::355::5:11:33355555:35:::155355333355:35355553:3 PM3 PM3 PM33 PM3 PM3PM3P33 PM3 PM3 PM3 P3 PM333PM33PPM3PMPPM3PM33 PMPPPM3PM3PM3PMP3PM3PMM333PM3 PM3PMM3 PM3PMM33PPPPPPMM3PMPPMPPMMM3 PMM3MMMM3M3 PM33M333
VertiVeVVVertiVertiVVeVertiVertVVeVertitVertiiVertVeVertVrtrtiVertVerVVVertieVerterVerrttVeVVeVertieertererVerrtrtVertVerttiVertVerVVeVertertieVertiertrtertVerteVertVeeiVVeeeVeVtVVerterteVVeeeerrtitcal scal slcal sllcal scal salcal scacal scal scal scal sallscal sccccccal saal saacal slscal scal ssal sccal sccal scaaaaacalssscal scccalscal scal scaal scasssascal sccacccalasccal ssscaalsschemachemahhhemchemahememachemachemachemchemahemachemaemechemachemchemaemaachemachemachemachemachemachemachemhhchemaemahemaeeememmmchemaemaaemaachemacccchhchemaemamchemchemaachemaaaccchhechemaemaaeeeaccheeeeeachemachemaaachecceeacaachehemematic (iitic (c(tic (tii ((tic (tic (tic (itic (tic tic (ticc ((tic (tictttiic (cctic (c (tic (tic (ttictticcccc(tic (ticcc (ticcticticc(cticcccc (cc actuaactuactutactuaactuaactuaactuaactuactuaactuaactuactuaactuaactuaactuactuaactuaaactuactuaaacccaccccactuatuatuauauuuaaauaactuccctactuatactuaactuactuactuaaacuactuaactuaactacccacuactuaaacctuaauactaaactuaactuactuaal)ll)ll)))l)l)))l))))))))l)))))))))ll))))))))
B-SANB SANB-SANB SANB-SANB-SAN-SANB-SANSANB-SANB-SANB-SANB-SAB-SASB-SAN-SASANANB-SANB-SAB-SB-SANBSSB-SASASSSAANB-SANBSAB-SASSAB-SAAASANNB-SANB-SB-SANSSANNB-SAB-SANBB-SANB SANSSSAAANNB-SB-SANB-SASANSAA-SAABSANSSSANAABSBSAABBBBAAAND LINDLINDLINDD LINDLINLLLDLINIINNNDLINDLIND LINDLINDLIND LINDLINDDD DLINNNDLINDDNNLINNND LINND LINDLINNDD LINDDLINDLIND LINNNNNDDNDLLIND LIDDNER; 4ER 4EEEER; 4ERER; 4ER; 4RRRR; 4ER; 44EER; 4R; 4R; 4ER;ER; 4R; 4RRR4R; 44RR; 4R; 44R; 444ER; 4RR;;R; 44ER; 4ER; 4RR4R4RER; 4;444; 4R4ER; 444ER;RR;ERR;,597.59755597,5975599,5975975975975997,59759759755595999959799,59759797555979,597,59759759797755979797555975599997,597.999,597.55999,,55997.,,55 7,,1-7,41-7,4171-7,4-771-7 471-7,41-7,41-7,4177,4111774411-7,77 447,41-7,47444-7 41-7,4-77,444744444-7 41-7,477447,4477447,17,477,,83.083.08383 083 083383.0883.0883.0303083.08883.0883.0333.083.0383.00083.083.083.083 083.083.03333.0000883888383.0383.0000083 083.083833.00830030008300830888833.00
SLOTSSLOTSSLOTSSLOTSSLOTSTTSLOTSSLOTSSLOTSSLOTSSLOTSSLOTSSSLOTSSLOTSSLOTSSLOTSSLOTSLOTSSLOTSOTSOOOSLOTSSLOTSOSLOTSSOTSSLOTSSSSSSLOTSSLOSLOTSSLOTSOTSOSLOOSLOTTSSSLOTSSLOTSSLOTSSLOOOTSSOOSLOTSSLOSSLOTSSLOTSSLOSOOTSSLOTSSLOOSSLOTSSLOTSOOTSSSSSOTSSOLOSOTSSSSLOOSSLOTO; 4,9;4,94,94; 4,94,9; 4,9; 4,944;4,9;4,9;4,94999494;4,9999;4,9;4;4,9999; 4,94494,9444; 4,99949; 4,94,9499944,9,99;4,94,949999;;9;4,,;,,62.0-6262.06262.06262 0-62.06262.0262.062 062.0662.062.0-62 062626262.062.0262.00062.062 00-666622 002062 0062 0-62 06662.2.0-62.0662.62.000062206662.0-62.0-222 00662662.0620622002222 7,4507,4507,4507,457,455,4507457,45077,4507,457450007457,457,4507,4507,45074507,45457,45054507,4554500450000450774457,450000074574505507,4504504557,455507,450007457,4505574447,4507400745055550,0,,,.0000.000.000.000.0.00000000.000000000.00000
PRODUPRODUPRODUPRODUPRODUPRODUPRODURODURODRODROOODPRODODUPRODUUUPRODUPRODUPRRODODPRODUPRODURODUPRODUPROPRPRODPPRODRODRRRODUOODUOODUOORODRODPRODUPRODURODUPRODUPRODUPRODURORODUODUOODRODUDDDPPRPRODUPRODUOPRORODPRORRDODUURROOOODUURDUPRRPROCTIONCTIONCTIONCTIONCTIONCTIONCCTIONCTIOTITCTIONTCTIONCTIONOONCTIONCTIONCTIOCTIONCTIONCTIOCTIOONNNCCCCTIONCTIOCTIONTIONCTIONCTIOOOCTIONNCCCTIOONCTIONCTIOCCOONNCTIONCCTIOONOONCTIONNNNOCTIOCOONCCONNCCTIOONCTIOTOONN; 40.4; 40.; 400; 4040; 404; 4000.;4; 40000004; 40040000;40; 4044; 400044040; 404040440;40404404; 404400; 440000..0..77-4777777-4,97-4,97-4,97-4,99,97-4 97-4,97-447-4,97-4,997-4,97-4 97494,9494,97-4,997-4,977447-4 9997-4,97774444,99494,9444949497-4 944,9997-4 944997-4 9744449777-447-4,9749974,97999499,38.438 4338 438.4838.4.438.4438.4338.4838 438 4438.4338 438383838383838.48843838 44383833838.4383838.438.43838 4844848438 438.43848844338.438443838484844.4.4.433844338388.38 4
D-SAND-SAND-SAND-SAND-SANSD-SAND-SAND SAND-SAND-SAND-SAND-SAND-SAND-SADSSASD-SSAASANNSAND-SAND-SAND-SANDSAD-SANDSSSAD-SSASANAD-SAND-SANSD-SANSANSAND-SANDD-SANNND-SANSANSANS-SAD-SANSSANASAND-SAD-SA-SASAN-ANADSASNDSSADSSAANNNND LIND LINDLIND LINDNDDLINDLINDLINDLINDDDDLIND LIIINNND LINDDDLINDDLINDLINDLINNDLINDDLINDD LINNDDD LINND LINNNNND LINNNNDLINNDDNNDDDDLINDLINIDINLINIER LEER LEER LEER LEER LEER LEER LEER LEER LEER LEER LERLEER LEERERER LLEER LEER LEER LERLERLERER LEER LEERRLERRRRREER LRRRRREERRRER LEREERRRLLRR LEM; 4,M; 4M; 4,M; 4,M; 4M; 4,MM; 4M; 4M4; 4M; 4,M; 4,MMM; 4,M; 4,MM;M; 4M; 4M; 4,M; 4MM;444MM; 4,MMM 4M; 4,44MMM; 4444MMM444M; 444MM44444M;M; 44;;422.6422 6422.6422.64222.6422.6226422 6422.6422.622 622.6422.622 622 62622.6422.66422 6422.64422.6222 622.622 622422.622422 622 6422.622.622222 66422.64422422442262222644422.62662664422222.6422.622222.64222.62226622..62222---------
4,60344,6034,60360346034,6034,60360360604,60334,6034,60360346603606060346030304,6034,60334,60366034,60,60460303603634,603464,60364,604,660360303600333663336666033330334,60360.8.888.8.888888888888.888888.888888888.8888888.88
WINDOWINDOOWINDWINDOWINDONDOWINDOWINDDOWINDOWINDOWINDOWINDOWINDOOOWINDOWWWINDWINDOWWINDOWINDOWINDWINWINDOWINDOWINDOWINDODODOWINDOWINDOOOWINDWINDOWWINDONDDOWINDOOWINDOWINDOWINDOWINDOWINDOWWINDOWINDONDOWINDOWWNWINNWINDONNNWINDWDDDDDOWINDONOWNWW L1;W L1;W L1W L1;W L1WWW L1;W L1;W L1W L1;WWWWL1WWW L1WWL1WWWLWWW L1;1;1WWL1WL1;WL11WW L1;WW L1;1;W L1;WWW L1;WWWWWWWWWWW L1;W LW L ;W ;;4,494,49,494,494,499444,494,4994,4944944,494494,499449449449494494499,494494,494,494,4994449444944949,494,494494994,4944994,49449494499999,4.0-44.0-40404040-40-4404444.0044.0-440-44000-40040-44.0-440004.0-40040-400-44.0-44440-44400000-440-444.0-44.4.0-44.0-440-44444.0444--44444.0000-44.4.0-4.00000 ,525.525.525525.52552552525,525.25.,525.,52525525525525525525,525252552,525.525525222225255255255255252525525525555522252555,525.55 522255552555225555.5 5.,,,000000000000000000000000000000000000000
D-SAND SAND-SAND-SAND-SANDSADSAD SAND-SANSAND-SAND-SAD-SANAANND-SAND-SAND-SAD-SAND-SADSSANSSASAND-SAND-SADSAD-SANSAND-SAND-SAND-SANSAND-SANSAND-SAD-SAD-SAND-SANDD-SAND-SANSASSSAAD-SANANDD SANSASSNNSAASSAASSSANSANDD-SAND-SAND-S NNNSSASSAAAANDNND LINDLDDLINDLINDLINDLINDLINDLINLLLDLINNNLINNLINDLINDDDD LIND LINDLINNND LINDLND LINDDLINLINDD LINNNNNND LINDDLINDLINNDDLINDNLINDDDLDNNDINER; 4ER; 4ER; 4ER; 4ER; 4ERERRR; 4R; 444ER; 4ERER; 4RR44ER; 4R; 4R; 44ER; 4ER;4; 44R; 4RR4ER; 4ERRR4ER; 4R4R444444RR4R4ER; 44444RRRRR;EER 4;;,493.,493.493,493493.993934939,493.9349333,493493493,493949499349393393,49349,493.9393939333449349934934433449493493,493499934934493,493.44499949444993,49333933.,4933.4-44-4444444-44444444-444444444444-4--4--444444
75127,5127,5127,51275127,57,5121751251211251227,51275127,512751251127,51227,5127512127,5122212512551211751221275127,5127512755511277,5755512512277527,51227557,512,5 2252,,.5.5.555555.5555.5.55555555555555.55555.55
SEAL SEAL SEASEALSEALSEAL SEALSEALEEALEALSEALASEASEALLSSSEASEALSEASEAEALESEALSEALEAAALLSSEASSSEASALSEASSEASLSEALSSEASEAASSSSEASSEASESSSAAASSSSEASAALSSESSEALSSEALLEAA ASSY;ASSYASSY;SASSYASSASSYASSYYASSYASSASASSYSSYASSY;ASSY;ASSYSASSYSSYASSASSYSASSYYASSYYYSYASASSASSYSSYSSYSASSYSASSASSYYASSSASSSASSASSY;ASSYAASSY;AASSSSSYASSYSSYASSY;AAASSYSSSYYYSSY;SSYASSSSAASSSASSSAASSSSSSSSSAAASSSA;;;;4,4244244244242224,42444,424444422422444,422442442444442242444,424224442,4442244442222442444,42444,42,422224248.48.4888888.4844888.4888848.48884848888448848.48.48848.44484848.4884888444888.488
LOCATLOCATOLOCACATLOCATLOCATCATOCATOCOCATATLOCATLOCATOCAOOCAOCLOCAOCOCCCCATLOCATOCOCAOCAAAATTCATLOCAOOCOCACCCAOCCAOCAOCATCOCALOCCAOOCAOCOCALOCCCAOCAOOALOCAOCAACCACAAOCOOCCCALLOCAOR; 4OOR; 4OR; 4OR;OR; 4OR; 4OR; 4OORROROR; 4OR; 4OR; 4OOR; 4OOR; 4RRRROR; 4OOROR; 4OR;OOR 4RRORRR4OOOR; 4OOOOR;OROR 44OR; 4OROOOR;R;OR; 4OR;4ORRR444OR; 4OOOR; 4RROR; 4OOR;OOR;OORRR;4,427.27427.427.7427.427.277,427.427427,427,42722,427227427.77427,427274227.,427.,422272774242427742224442422774424227744274442222..,7777777777777777777777777777777777
XOXO EXO EnXO EnOEnXO EnOXO EnXO EnXXXO EOXO EXO EnXXO EnXXXXOXOXO EnOEXO EnXO EnXOOXO EOEO EnXXOXOEnOOOXO EnEEXO EO EnXXXOOEnOEnXXXOOOXO EOEnEnO EnnXO EnXXXOXOXOXXOOOOXOXO EnXXXEnnlargilaargargilllargiargilalargiargilargiargilaargrgarglargaaargargiaaargirgrrggggarglaaargargiggaargiaaaaggarggargaglarglargagggggggggng ; ngng ;nng ;ng ;ngng ;ng ;nngngnggngngggng ;ngnngngnnggggggng ;nnnggg ;gggggggggnggg ;g ;gg ;ggg 4,42644,4264,426264,4264,42644,42624,42644264,4264,426442644,426224,426426264,426442664,4426222442264,4264,4266442644264444,426264,4264444266642266424,42664424444446444,4224,426444,44 66426266626666.22222.2.222222.2222222.2.222222222.2222.22222..222.22
GAS LGAS LGASGASGASS LGAS LLGAGGAS LSGAS LGAS LGASGAS LGASGAGAS LGGASGASGAGASSGASGASGAS LGASSGAS LGASGAGGAGGAS LGAAAASSSGASGASGGASGASASGASGASSGGAS LASAGGAASSSASSSGASSSAGGGAASSSSLGAGASSLLIFIFT;FT;FTFTTIFTIFTFTFTIFTFFIFIFFTFT;FT;FFT;T;TTTTT;TTT;IFT;;;4,3704,3704,3704,3704,37037043704374,370004,34,3704,37034,3704,3703704,370,370704,37707704,37037037037043704,3704370,370370737000437043703374,37044370070434,370403,370,377700370337370300,370,.9.9999.9.999.999999999999999999.99999999999999999.999.9
XO ReXO ReXO ReXO ReXO RXO ReXO ReXXOO ReXOOReRRXO RXO ReXO RXO ReXOOReOReOReXOXO ReOXO ReReXO RORORXO RO ReXO ReXO ReXOOReOReOReXORReReRXO RXO RXO ReXO ReXO RXO ROReO ReXXO ReXO ReOXOOOReReeXO RXORRXO ReeXXO RXXXXOXOReXXOReXReXXOORRducinducininducinducinducinducinducinciducindudcducinucinducinddddccucincducincucinnnducinddducccccnducincinducducduciniducincinduucccduucuduucinuucccnucing; 4,g; 4g; 4g; 4,g; 4g; 4,g; 444g; 4,g; 4gg; 4g; 4g; 4gg;g; 4,g; 4,g; 4g; 444gg; 4g; 4,44gg4g44g; 4g; 4gg4ggg;g; 4,g;gg;;ggg;,g;,,;324.2324324 2324.2324.2324.2324.2324.222324.2324 2324.2324.23324 224.224.2324242324.224 2324 24424 224.2324.2324.2324 2324.2332422232324.224.4 2324.2232332424423243332442324.2324.233324.224 23242324324.224.2222
SBE ;SBE ;SBESBESBE ;SBEBESBE ;SBE ;SBESBESSBESBESBESBSBSBESBE ;BSBEESBSBE ;SSBBEBBSBSSSSSBSBSBE ;SBE ;;BBBSSSSBEBSBBBBBSSSBBESSSBSSBBBBEESBBBBEEB ;;4,304,304304,334,30430444,3043434,303,3030004,304,303434,30304,30303004304434,304,304303303000444,4,3043330430044304,44 304,3443030043044303330044330034.5454.54.54.545454.54.544.54.554545444.555455445455444.554554.5444.555554555544455555455.554...
SEAL SEASEALSEALSESEEALEALEAEALAASEALSEALSEALSSEALSEALSEASEASSEALSEASEALEAAASSEASEASEASEASSSEAASEALSSSEAL SEASEASEASEAASAASEASSESEASEASSSESAASEALASEAALSSEEEA ASSY;ASSYASSYSSSSSASSYSY;YASSYASSYASSY;AASSYASSYSASSASSY;SSYSASSYSASSASSY;SSYSYASSYASSY;YASASSY;SSYASSYASSSSSSYSYASSSSSY;SYSSYASASSASSSYYAASSYSSYSSSYYYAASSSASSY;SASSASSYASSYYASSSSYASSSSSASSSAASSSSSASS;AAAAASSY;SSS ;;4,294,294,2922292292994294,294,2929294,2924,29,294,294,294,294,2942429422294299994292244294,29294,29429944242999299922292992299,229,,8.3838383338.38.3888.38.388.38338.38.38.38388.38.38.3338.3.38.388.3383883833338.3883338.38.388.388833883883
XO ThXO TXO ThXO ThXXXO OThXO ThXO ThTTXO ThXXXO TXXXOOXO TXOTOThOThThXXO ThXXXXOXOXO ThOXO ThXO ThXO ThXOOThXO ThOTXXXO ThXOOOXO ThhXO ThhXXOOOOhXXXO ThXXOXXXXOOOOO ThXXXXOOOOOXreadseadsadsreadsreadsrerrreareadseadseeadsreaeadseaeadsadsaddddsssreadsreareadsreadseadseadseadseadseadseadsreadsaadseadsddseaeeadsaadsssreadsreadsadsaadadadsssaaasseadaddseeeaaddddeaaasd (Cas(Cas((Cas(CCCCCas(((CasCasCaC((Cas(C(CaCasCCasCas(Cas(Cas(CasC(CasCasCa(Cas(CCasCCaCaas(Casasss(CasCas(Caa(Casas(Casss(Cas(ssassCaCasCassCaaCa(CCCCaasss((CasC((((ing);ing)iingi)ing)iing);))ing)ng))ing)g);ng)ing);ing)ngnning);ngng)ng);ing);gg)ing));ing)ngnngnggg)iing)ingg)ng)g)ggg)g))g)gg);;g)));g);gg)4,304304,3043033030434,30304,30434,30304304303004,30434,3300044,34,3043004303030004,3044334304,303344330300304,30330330403,2.522252522525252.5252252.52.52.522.5252.522.5255252.52.52.5252525252255552252525552255555.5
LOCATLOLOCALOCATLOCATOCAOCAOCATOCATOCATCATLOCALOCATOCOCAOCAOCAOOCCAOCATOCATCOCAAATTOCATLLOCATOCAOOCAOOCOCACCCATOCCALOCATCATOCAOCCACCAOCCOCAOCAOCAAAOAACAAAAOCCAOCOCAOAOR; 4OOR; 4OOR; 4ROR; 4OR; 4OR; 4OR; 4OOROR;OR; 4OOR;R;OR;OR; 4ORR; 4R; 4OOOR; 4OR; 4OR; 4RORORR4OR; 4OR;ROROROR; 4OR; 4OR;OR;OR; 44OOO4RRRR44RR44OORRR44OROOROOORRO;;,297.297.,297.297.,2979297.29722297297.229299,297.2979729772292972979,297.97729729729297.29,297.999729722997297.2297297297,297.292999999299,22299929999 88888888888888888888888888888888888888888
LinerLinerLinerLinerLinerLineineinerneeLinerernnneneneeeneLineenerrrnLinnennLineeerrnereeLLinerLineeeLiLinnne - PuPuPPPuPuPPuPuPu-PuP-PuPPPPPuPPuuuPPPPuP--PPuuuuuuuPuuuuPPuuup; 4,4p; 4,p; 4p; 4,444ppp;p;4p; 4p; 4ppp;p; 4,;4p; 4,p; 4p; 44p; 4,pp; 4,pppp;; 44pp; 4,p; 4p; 44p44p; 4p; 44p; 44pp;;; 4,;;,p 292.7292.7292.7929292292.7292.7292.72929222229292.7292292.72929292.792292.7292292292.722292.777292.7292292292.72292 79927292792.72292229292.7929292792.72292 792.72292 79292 7992299292.72922292 722992729.729292
XO EnXO EnXO EnXO EOOEnXO EnXO EnXO EnXO EnXO EnXXXOXXO EXO EOXO EnOEnOEnOEnEOEnXO EnXXO EnXO EnXOEOOEnOEnOOEXXO EnOXOOEnXO EnXXXOXO EnnXO EnXO EnXXXOEnnOEnnXO EnXO EnXO EnXEOEnXXXXOOXOXXXXXOOXXXXXOOnOlargillrgilargilargilarglargiilarlargiargaargaargrgirlargrlargiglargargiargiaaargargiaarrggarggargargilargargggaargiaargaaggargaagglarglagggggggng ; ngngng ;ng ;nngngnnng ;gnggggng ;ngngngngngnnnngggnggng ;g ;ggnggggggngngggg ;gg ;gg ;g 4,258425844,25842584,2582584,2582584,25824,2584,2582588582584,25842584,2584,2582424,25825825884244,258254425844,2582584,258585588584254,2542585884,25888442544,2582258588844422258854425458422584,.5.5.555.5.55555.5555.55555555.5.5.555555.5.55555555.
GaugeGaugeGGaugGGaugeGaugeGaugeGaugeGaGaugGGaugGaugeGaugeGaugeGaugeGaugeGaugeGaugeGaugeGaugGaugeGaugGaugGaugeGaugeGaugGGauGaugeuaugGauggegeeeGGaGGaugeugeggGaugeaugeeaugeaaaugaugGGGaGaugggGggeaaaaugGaugeGGaaugugeaugeeegeaugugg / Pu//PuPuPuP/P/Pu// PuPuPuP/ Pu//PuPPPPu///P/Pu/Pu/Pu/Pu/Puu/ PuP/PuP//PPu/PPPu/Puuu/Pu//uuuu/ Pump Semp SeSSSmp Smp Semp SSemp SSmp SeSpSepSemp Semp SSemp SeSpSSmp Semp Semmp Semp Smp SepSeSSemp SepSemmp Semmp Semp SmpSeSSeeempmp Semp SeSSppSSSeeeSeSemp SeSpSpppSeSeSeppSeSemensonsnsor;nsonnsonsnsonsor;ssornsosor;sonsoronsornsorornsor;nsor;nnsonsornnsor;sssoororsoonsornsor;nsossososor;n ooononsnssoonsssosonssoonoono ;;4,244244,2424,244,244244,2244,24,2244,24424244,244242224,2444,244,2222442444242444242244244242444444422444424442,,,7.77.7.777.777777.7777777777777.77.777777777777777777.77.7777.7777.77
TubinTubTubTubinTubbbiubininTubTubiTubinTubinbbbubiTubinubiubinbinbinubiubinubbubinnnubinubinubinbbbinubbnnnbinTubinubbnnbbbbububbbbbuubnbbg - Pg - PPg-P-PgPg-Pg-Pg-Pg-Pg - Pg - Pg - Pg - Pg-Pg-Pg -PPgPgggggg - Pggg-Pggg - Pg-P-P---gggggggggggggggg up; 4up;up; 44p; 4up; 4444up4up; 4up; 4up; 4up; 4up; 4up; 4up; 4up;uup;up;upup; 44up; 44up; 4pppp44up4ppp4444444444pup; 4upppp;44upppp;;p ,243.2,243.2243.,243.433,2432,243.243243424343243322422,2432424324343243243242432432432243.43332432232434322422442434,2433243223.3,243.243.3,4,777777777777777777777777777777
Tec WTec WTec WTTec WTec WTec WTc Wec WTec WTec WTec WTec WTeTec WWWec WWWc WTec Wec WcWWec WWWc WWec WWTec WeecccWWec WcWec WWec Weeec Wcec WccWec Wec WecWWWeeeWWWWWec WeeeeccceeeeecWWWeeeccire Gire Gire Gire Gire GGire GiGGeGire Gire Ge GeGire GGGire Gre GGGire Gre Gre GGire GGire Gire Gre Gre GrereeGGGirreGeeeGire GeeeGire Gire GGGire eee GGeeeGGGGGGGeuide uiduide uiduideuideuidideuiduideuideuide uideuideuiuideuidededeeeuideddduideeeuideuuidede uiddeedeuiduidideuududeddeeeud Sub; SubSSub;SubbSub;SubSuSSubSubSubSSubSubSubSubSuSuSubSub;Sub;Sub;SSSSSubSubub;SubbSSub;S bbbSSSubbSubSubSSbSSSSubSub;bbbSubSSSuubSu;4,15744,15741574,1574,154,1574,1574444,1571154,157574,1574,157574,115754,15741571574,1574415157415744151571115415774154157554,1574,157441544,15544,1544475741545755155,.7.77.7.7777.77777777777777777.7.77.777777
JET PJET PET PET PET PEJETTTTPTPJET PJET PJET PEET PPPTPJETJET PPPJET PETJET PPPPJET PPPPPJETJJPJJEJJEPPUMP; UMPUMUUMPMUMPMMPPUMUMP;UMPMPUMPMPUMP;UMP;UMPMPMUMPUMPMPPPUMMPUMPUMMPMMMPUMPUMP;MPPMP;MMMMUUMP;UUMMMUUMM ;MP;MMM ;;;;4,154414,1544,1544,15414,154541544,1544,15414,1544154,1545444,1541154,15454154444,154,1544154,15441155441544154441444441555445545455555444441544515445154444,154,554455,.000.0000000000000000000000000000000.000000000000.000..00
SlidiSSlidSliSlidddiSlidiSlidSSlidSlidiSlidiSlidSSliSlidiiSlidSlidiiSSdiSlidSlidSSlidddiSSlidSlidSSdSlidddSSlidSSSlidSdSlidSlidddSSlidSlidiSSSdSSddSSSdSSlidSdlddding SlgSSSng Slng Slng Sg SSng Sg Sng Sng Sng SSng Slng SlSSg SgSng SSSgSng Sng Sng Sg SgSng Sng Sng SgggSSnnng Sng Sngg SggSSSSg SgggSlngggSnSSSggSggSSSng SSnng SgSgggggg eeve;eeveeeeeveeveeeveeeveeeeeveeeveeeeeveeveeeveeeve;eeve;eevveeveeeveeeve;eeeeveeeeeveeveeeveeeveeveeveeeeveevve;eeveeveveeve;eeeveeeeveevevevveeeeveevevevveeeeeveve;eeeveeve;eeeevve;;;4,154,154,1515154,155154,154,154,151,1554,1554,155441415554,154,15155,1544,154,154155415545415554,1555444455,15,55553.633.633.666633.63.63363363.63.63.63.6633.633636366663.633.63636363.66663363636.633.63.666366633.6366336
Tec WTec WTec WWec WTec WTec WTWWcWTTec WTec WTec WTec Wec Wec WWWec Wec WWTTTec WcWWWec Wec WWec Weec Wccec WWececccWcWccWWec Weeec WeecccWWWec Wccec WWWWWec WWWeccWec WeececWWcWWTec Wc Wcire Gire Gire Gire GeGire Gire GiGeGire GiireGire GeGeGeGGGire Girere GGGeGGGrire Gire Gre GGre GeGire GirerreeeGire GeGeeeGGrreeeGeeGGGGGre GGeeGeeeeeGGGeGGie Guide uideidideuiiideuideuide uiuideuide duiduideeeuideuidddeuiddeeeededddeededeuideuuidddeueddeuuideuddeeuuuddeuudee Sub; Sub;SubSubSubSub;SubSSub;SubSuSuSSubSub;Sub;SSSubSubSub;SuSbSub;SuSubSub;SuSubbbSSbSubSubbSub;SubbSub;SSSSSSubSbSSSubuuubSSubSSub;uu ;;4,152415244,1524,1521524,1524,1524,1524,1524,1524154,15241521154,1524,1525224,15241521151524,1524,1522522241524415115254,1524,152,1521,152415555224152554,1542444454524444222,15255524,152,152.7777.77777.777777.7.777.7777777777777.777...7.7
LinernLineLinerLiinerLinLinerLinerineinererininLineeeneeerrernnerneererLinernneneeeereeneLinereeLinneen; 130130; 130130301; 13131330130; 1300130131301303;1303; 1300303013303001300;130130130300001133300033;1300000130330; 13000030;;.4.44444444444.444.44444.44444444444444.4.44444
CONDUCONDCOCONDUOCONDUCONDUCONDUDUCONDUCCONDUCONDUCONDUCOCOCONDUONDUOCONDUCOCONDUNCONDUNDNDONDDUUUCONDUCCONCCONDUCONCOOCONDUCONDUDCONDUNDUCONDUOOCONDCOCCCOONDNDONDUONDCONNNNCCONNDUONDUNNUUCCONDUOOONDUNDUUUCCONDUOONDUOCCDCTOR;CTOR;CTORCTORCTOR;TOR;TOR;ORCTORCTORCTOR;CTOCTORCTORCTOCCTOR;TORCTOROOCTOORCTORCTOR;CTOCTORCTORCCCTOTCTORTOR;OCTORORCTOORORORCTOR;CCCTORTORRCCCR;CTOROOOORRRRCTORCCRRCORROROOR;;;38.038.0338.038.0800338.038 038.038.03888038 0038 038.038 03838808880808038.00338.08088038.038.0338 03880033808.088.038.00038.03333383838 03800030-158.1158-158.158.15-158-1581581155-158-1585885811585158.588-1588811-158.1115858.585881-158.55885858588858.585555581585888888-555158.00000000000000000000000000000000000000000000000000
LiLinerLinerLineiiLLLinerLinerneinernnnernereLineneerrLinernnerneeerrrnennenenerLinereeenneLinereeeeeen - PuP-PPP-P-PPPPP- PuPPPPuP-Pu-PuPPuPPuPPuPuu- PuPuPuPPP-PPuPuuuuuuuup; 989899998p; 9899999p; 98988888p; 989898p; 9p; 98999p; 9889898898p; 98p; 9898p; 988p; 98p; 98pp; 98pp; 98p; 9p; 9898p; 9988p; 988ppp; 98pp; 9p; 988pp; 98p988pp; 98ppp; 9899p; 988p; 98988898p9p98pp; 989pp98;;;p;p 5.5.555555555555.5.555.55555555555.555.55.55.5555.5555.55.5
LineLinerLinerinerLineLineLinerLineLinerLinerLinerLinerLinernerriinneneeererrrnernenneeLineLinenneeeLinereeeLineineeeereeLeeerne; 59.; 59.5959;59.5599959.5595955959.99; 599; 5959;5999; 59.595959599959;59; 59;559; 599; 595559.5555959955995959995555555955.;;;1111111111111111111
XO ThXO ThXO ThXO ThOThXO ThOXO ThXO ThOTOThThXO ThXXO ThXOXO TOOOThOThXOOTXO ThThXO ThhXXO ThXXXXOOThXOXOOXOXO TTTXOXOXOOThXOXhhhXOXXXOOOhhhOXXXOhXXXOOhXXXOhXXXOOXOOTreadsdeadsreadsreadsrrrreadsreareadseadseadseareadeadseadreadsreadseaaaadddsadsadsadsreadsreadsreadseeadseadseadseadadsaddseadsadsreadsreadseadsadsdeadssreaeeadseeeadaddseasaaasreeadsddseadseaeead ; 39339;39393939939939393939393;39939; 393; 3939399;;33999;39333;39399339393993999339999; 393399; 399399;;3;;.999999.9.999.99999.999999999.9999999999999999999999.99999999
HHHANGEHANGEHANGEAANGANGHANGEHANGGGGHANGEGEEHANGEHANGEHANGEHANGEANGANGANGENNHANGGHANGEANGANGGNGEANGEEANGAANGNGGGGANGEANNNGANGNNGGHAHHAANGGEEANGGANNGGGNNGEAGANGGGNGAAAANGEER; 38RR; 38R; 38R; 38338R; 38R; 38R; 38R; 38R3R33R; 38338;388R; 388R; 3R; 38R; 3RR; 383383R; 3838R; 38R; 3838R; 38R; 3833R; 38R; 3R; 38;3388R; 38;333883888R338R; 38388R; 3R388RR33;38RR;38;;;;.444444.44444444.4.4444444.44.444444..
ANHANGHANGEHANGEGAANGNHANGEANGHANGENGEGEANGNGGEHANGEHANGEHANGEHANGEHANGEANGANGNNHANGEANGHANGEGEEHANGAANNGEANGEGHANGEGGNGGGANGEANGEAANGGAANGGANGANGANGNNGGGEAANGANGEHANGANGANGNGGNGANGGGEAGHAAAGR; 34R; 34RR; 34R; 3434RR3R; 34R3R; 34R; 34R; 34R3R; 3R; 34R; 3R; 34R; 344R; 34RRRR; 3R; 34R; 334; 334R; 34R; 34R3344;343R; 3444RR;R; 333443R344R; 3R; 3R; 33434RR; 3344R333R;3R3;;.88.888.8.888.88888888888888888888.8888.8888888888
KUKKUKUKKKUKKUUKUKUKKUKUKUKUUKUKKKKKUKKUKUKKKUKKUKKKKKUKUKKKKKUKKKKUKUKKUUKUKKUUKKUUKUKUUKUUUUKUKKUUUKUUUP PPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPP PPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPROROROOOOORORORROROROROROROROOOOROORORORORROROOROOROOROOROROOROOORRROOROOOORORROOOROOOOORROOROORRORROROOOROORRRRORRRORROROOOROROOORRROOOROOOROOOOODDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDD
KB-GrKB-GrKBKB-GrKB-GrKB-GrKKB-GrKB-GB-GB-GBB-GB-KB-GrB-GGrKB-GrKB-GrKB-GrKBKKB-GrKBGGGGKB-GrGKB GrKBGrKB-GGKBKKBGGKB-GBGGKBKGGKB-GrKB-GrGrrrKB-GrKKGGB-GKBGrKBGKBGGKKGGKKKBGrKKKBGd (ftd (ftd (ftd (ftd (ftd ((fffd (ftd(fd (ftd(ftd(ffft(ftd (ftd (ft(ftd (ftd (ftd (ftdddd((d(ffd (ftfttd (dddd (d (fftd (ftd((fftfdddd(ddd (fttddt(((())))))))))))))))))))))))))))
45.445.445.44545.4445.4454545.445 445.45.445.44545 445 4445.445 45.445.444444545.45.44445.445.4444545.455.45445 4455545455.545 44445455445 445445 4444445.4445454445555.5 5555555555555555555555555555555555555555555555555555
Rig RRig RRig RRig RRig RRi RRig RiRiRig RRig RRRig RRig RRig RRig RRi RRiiRRi RRig Rig RRig RRRRig RRig RRigiiggRRRig RRig RRRigRigRig RgggggRRig RRiggRgRRig RRig RRRig RRiggggg RRgRig RRigRRRigRRRig RRgRRRRRRgRggggeleaseleasleleaseleasleleaseleaseleasleleaseleelelleaseleaseleaseleaseleaseleaseleaseleaseeaeleaeleeleasaeasaeasasseleaeleeleasaeleaseleasseleeleaseeleaeleleeleaaseleaseleaseleeleaeleeaseleasalaseeleaeleleaaeasseeleaeaseeeleasleassssease Date DatDatDDDeDate Date DatDaeDDaeDateDe Datte Date DatDateDateDatDaDDateDe DateDateDae DateDateeDe Dataaattee Dae Dataaate Daeate DeDaaaeeDaDDataaDatDe DatDteDDaaeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeee
11/11/1111/1/11/1111/111/111/1//111/1111111//11/111111/11/11/1111/1111/111/11111111//1 //////////0/200/20/200/20/0/200/20/200/200/200/200/2/2/202020/200/2000200/200/2000/200/200/200/20/2020/200/20/20000/20/20200/200/200/20/2/200/200/20/20002/200/20/200/200/20200/20//0/20/220/20220/2200/2020/200000/20/20000000010101010100110000100110101000001110001000110000101011010000000000000000
1C1C1CC1CCCC1C1C1CCCC1CCCC1CCCC1CCC1CCC1C1CCC1C11CCCC11C1CCC1C1C1CCCC1C111CC1CC111CCCCCCCCCCCCCCCCCCCCCCCCCCC1C-1-11-1111-1111111111111111111-11--110909090909090909090909090909909090990900090990909009099909090090999999090990990900900909090900909099909999099990099990909990000909000009009990009999
..................................
TDTDDTDTDTTTDTDTTDDDDDDTTTDTDTDTTDTDDDDDTDTDTDDTTTTTTTTDTDTDTDTTTDDDDDDDTTDDDDDTDTDDDDTDDDDDDDDDDDDDDDDDDDDDDDDDDDTDTDTDTDTDDD
Act BAAct BAct BAAct BAct BAct BAct BBBAct BAAct BAct BAAct Bt BtAct BBBAct BAct BAct BBct BAAct BAct BAct BtBActAct Bct BAct BBAAct BAct BctBBBBtBActcccct BtBct BAAccBBAAcAccctBBBAAAAcBBActBBct BActBActcAActActccctBcBtm (ftm (ftm (tm (ftm (fff(ftm (ftm (ft(ftm (fm(f(m (fm (fm(fm(ftm (ftm (ft(tm (f(ftm (fftm (ftm (tm (ftm (ftm (ftmtm (fttmm (fmm (mtm (tm (f((f(ftm (fftm (fmmmmfttm (f(ffffmtm (fm (ttt (fmftKB)tKBtKB)KKBKtKBtKB)BBBB)tKB)tKtKB)tKB)tKBtKBKKBtKBKB)BB)B))tKB)ttKB)ttKBKKKKtKB)tKB)BtKB)B)ttKB)KKBKBBBtKBttKB)tKBtKKtKB)tKKBttB)BBBKBtKB)tKB)BBBBKKKBBtKB)tttKKtKBKKB)))
775175757577,5175557,517,51777,577,515517,517,51757,57517,57557,5117,551517511177551,517,57,557,5177,555575,55557,557,577,515,5,,5577,55755557,7,51555,0.0000.00.0000.00000.0000.0000.00.0000.00.00.00.00.0000.00.00.00.0000.000.000000.0000000000.00000.00000000000000.0000..0000.000.0000.00.00000000
WeWeeWeWeWeWWWWWeWWWWWWelWeWeWWWWlllWWeWelWWWWelWeWelWWelWWeWWWWeWWWWelWelWWWeWWWWeWWWWWeWelWWWeWeWWeeeWeWeWeWeWWWeWeeeWeWWelWWWWWeeWeeWeWWWWWWWeWeeeeWeeWWWeWeWeWeeeWWWWWeeeWeeeeWelWWWWWeWWeeeWelWWWWeeellWWWWeeeWeWWWeeeeWWWeWWWeeeeleeeeel AAl AlAl AlllAAAAAl AllAlAAAllAAllAAAAAAAAAAAAAAAAAAAAAAAAl AAAAAAAAl AAAAAAAAAAAAAAAAAAAAAAAAAAAAllAAAAAttrttrttrttrtrttrttrtttrttrttrtttttrtttrttrttttrttttrttrttttrttrtttttrttrtttttrrrrrttrttrttrrtrttrttrtttrttrtrrrttrrtrttrtttrttrrrttrrttrrrrttttrrttttttttrtttttttttttrrttttttttttibuibuibubibuiibiiibuibubbbbibuibuiibubibubibuiiiiibibuibbubbuibiiibbbbbibbbuuubuuuuibuibiibbbbbuibuibuibbbubububbbbbuuibubbbubbbbbbbbbubibbbubbuuuibbbuuuubbbububuubbbubbuuuuibuibubbbbbuuuuuibubbbbbuuuutesetestestetestestesttttestesttesttestesestesestesesestttesttesesesestesstesstessestesteetestestesstesessteteesteseesesessstestestteeeeeeesstessetesssessseesssesesseeeesssstessseesesestteeeeeesssstttteeeesstteeesesssteeestttetesessssttettteeeesssss
FFieFieFieldFFieldiiFielddFi ldFi ldFieFieFiildieldleldFieldFFieldielFielieldFiieldFieieiieeeeelFieldFieldFieldeldFielieFieldeddeldeldFFFieFeldeeelddielddedFFFeelddedeldededielldFieilddddNameNNNNamNNameNNNaNameNameNNameNNamNameNameNamNamNameNamNameNamNameaamaaameNamNamemeNameameNamNameeameNamNNNameaaNamNamemNameeeNaaNamemeeeeeNNmameeNameNameeNaeNNameameNameeaeeNNaeeeNameNamamm
WESTWESTWWESTWESTWESTWWESTWESWESEEESTESTWESTWESWESWESWESWESTWWESTWESTWWESWESWESTEESTWESTWESWESTSSWESWWEWWESWESTWEESTWESTESSSWESESWESSWESTTSTWESWEWESTWWESWESWESSWWWWESTWESSSWWESWSSWEWEESESSSWSWSSWSWWWWWSSSEEESSSWSWESTWESTWSSSS SAK SAK SAK SAK SAK AK A A AK AKK SAK S S SAK SAK SAK SA SAK AK SAK AK SAK S SAK SAK S SAK SAK SAK SAK SA SAK SAK SAK SAK A SA A SAKK SAK SA AK SAKKK SAK S S A A A SA S A S SAK S SA AKK S AK SAK AK SAK SA AK A AK S SAAK S SAK AKK S SAK A AKKK S S S AK S A SAK S S AKK
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5,495555,495,4995,495,495,495,4545495,44495,495,495,495,495,495,495495495,495,45,49495,4995,4945,495,49495,494995,495,494945,4995,45,4555,4549554945499554955495,49499549999445,44449995,449544444955,,499555,95559,,6.2966.296.296.296.296.296.296.2966.26.2926.29629229962962996.296.296296.296.2966292962999996.6.26.2966296.26.299629666.296226.292966296.26296296.296.29966296966629296229299996.296226629966666999962.2999.229
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))))))))))))))))))))))))))))))))))))Type CType CType CType CType CType CType CType CType CType Cype CTpe CCeCType CType CCType CCTType CType CType CType Cype CeCType Cype Cype CType CType CTTType CType CType CType CeCpe CType CCCType Cypyyyyppe CypeeType CeCCpe Cyppepype Ceype CCyypeepeype CCTypeCyypeeCyyCypeCeypeCCyyppCCCyyyomomomomomomoomomoommmomomommooomoommmommmoooommomommmoommooomommooooooomoom
4,964,964,969694,9696964,964964,964,964,964,9649699964,9664,964,964,9694,9964,969966664964,964,964,9644999664,964,99496496496496,964,94499696,96999644,969644969,96696,96444,969694499,969,996,969966696,2.0 72.0 72.020 722.0 70702.0202.0 7022022.0 70702020 70007772220 7202.0 72022.0 702.0 702.0 702.02.0 7072.02202.0 70722.0 702.0 720 7222.0 72.0 702.0 70072.0 7220072.0 72072.0220002.0 777220072.0.00 770,450,450,4504504545045050045,45045045,454505000,450,450,454450,45045045045,4500,450,45050,4545505004505500405050450450450045455450445554445045504450454550,450,4550,450,00.0 3,030003,0.0 3,03,03,03,3033.0 3,.0 30030030.0 3,0303330333.0 3,000303,00 303030033,33,000303030300330.0 300033300303333,.0 33,.0333,0 3 808.808.88880800880808.808.880880880880880880880880808.80800808808.8808.808808808880800800088808808808088808880800800880888080088088088880808.808008808.880808808808880888880888080880880800880800888888.0888088 33,733,733,733333,733733,73333,73,733,7733,73,733,333,733373333,3333,73333,733,7333,7733,73,7333,733,733733,73333,73337,733733,7337333333,7333,7333733733,7333,7733333,7373,733373,7333,7733,7333333,7333333,3,,,93.593.5993.593.593.59333393.593.593.5993.593.5993 593 59393533.59393.5593.53593.593 593.593939393393.59393.535.593.5593993 5993.593.593.59939393.593.359555593.593 5559993593.593.53.599993599393.33..55993.59555 WS BWS BWS BWS BWS BWS BWS WS S WS BWS BWS WWS WS BWS BWS WS WS WS BWS BWS WS BS BWS B BWS BWS BWS BWS BWS BWS WS BWS BS WS B BWWWWS WS BS BWS BWS BWWWWWS BWS BWS BS BS BWWWWS S W B BWS BWWS BWS S B B B BWWWS BWS BS WS WS B BWWS BWS WS S BS BWWS WS B BS BS S S B BWS S BS , 1C 1C 1, 1C 1C C C 1C C, 1C 1C 1 1C C, 1C C C C C, 1 1C 1 1C C 1C C C, 1C C C C C, 1C 1, 1C C C C 1C 1 1 1C 1 C C C C 1 1 1C C C, 1C 1C C C, 1C 1C 1C C C, , C C C C, 1 C C C, C C, -109-109109-1090099999109109-100910909-10900990909-109-10910001090109109-109-10999909109109099109-1010909911100909910909-109910999999--99-109090909909000900 10/210/210/20010/20/210/2110/20/0/2000/20/20//0/2220/210/210/210/2110/210/2000/2100/20/200/20/10/220/221100/0/2/20/2110/000/2210/210/10/110/0/20/222210//10/0/210/2202222200/0/2000009/209/209/29/20/9/209/20209/209/209/209/29/209/209/29/29/29//20/20/209/20/22209/20209/2009/209/209/209/209/2099/209/29/202229/209/20/20/209/209/2029/200/209/209/20/9/2009/2099/29/2/29/20920099/209/20999/202209/209/209/9/20929920/202009/09901 3201 301 3201 3201 301 301 3201 3201 301 3201 323201 3201 32132201 32000101 32001 32101 3232301 3201 3201 3201 32201 301 32101 323301 323201 32322001 301 301 321013323201 3201301 32201 320111113232201 30132323132332213222223201 3322001 30020033033.0 SL0S0S0S0S.0 SL0S.0 SLSL0S0SSS0SL000SL0S.0 S0S0SS.0 SS0SLSS.0 SL0SLL00S00S0SL0S0SSSSLSL00SLSSSL0S0S0S00S.00SSSSLL0SSL0S.0 SL00SS.SSSS0SSSOTS SOTS SOOTS SOOTS SOTS SOTS SOTS SOTSOTS SOTS SOTS SSSOTS SOTS SSSSSOTS SOTSSOTS SSOTSOTSOTS SOTS STS STS STS STS SOTS SSTS SOTS SOTS SOTS SOTSSOTS SSOTS SOTSOTS SOTS STOTS SSSSTS SSSOTS SOOOTS SOTS SSOTSOTS SSOTS SOOOTS SSSOOSSSOOTS SOOOTSOTS SSSSSSSOOOTS SSSSSSOOTSOSSOSSSSSSOSSSSSSSOTSSSlottlottllottlllottlottttotlolottottlottttlottottttlottoooottottttttttlooottottottttlooooottottottooottottottoooottoottloottottoottotoootootoottted Led Led Led Led Led Ld ed Ld ed Led L ed ed Ld d Led Led Ld ed Ld Led Ld eeeed d ed Leed ed ed d d Led Leeeed d d ed eeed ed d eee d d eed eeed Leed eed ed Le ed ed ed Leed d ed Leed ed ed d inerinerineiiineineineinerineiineninernerineriinenennerineerrrerinnenerneeerrinennneeeeeernerneeerinneneeenererneeeeeeeeeeeeee
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rrrrrrrrrrrrrrrrrrrrrrrrrr Type SType SType SType SType SType Sepe SType SSSpe SType SType SType SSType STypeype Sype SSType Sype Spe Spe SeSTTType STyype Sype SSType Syype Sype Sypeyyppepeppeype SeSypeeype Spe Sype Sype STyypeype Sppe SeTypyyype Sypeypeypeype Sype SypypeypeSppe SSype SSpeeepype SSeeeSSSppeeeSype SpTypepeypeyyyyyubtypubtypubtyubtypubtypubtypubtypubtypttubtypubtyptytypbtypubtyubtypubtyubtyubtyubtypbubtypbubtypypyppubtyppubtypbtypubtypubtypyypbbtypubtypubtypypyppubtypubbtypyyubtyubtypubtyubtyybyubtypyuubtypubbbtypttybtypypuubbtytubpyyppe StareSte Staree Stare StarStarSe StaSe StarStae Stare StaeSe Stare Stare Stae StarSSStareSe StaSStaeStStarSeSe Stae Stare Stae Stare StaeeSStare StareStte StaarrreSStae StaStare Stare StareSe Staee StareStSe Staae Stararre StaeeSareeSSSreeeSarSaeSSaaeSee StaStaaaae StaaSta t DattDtDattDattDatDatDt DattDatDatDDatDatDat Datttt DtDatDtDaDDatatttDatDDatDDatDDatttttDtDDDaaDaaatttDaDaattDaDaaaaaatt DatDaDatt DaDataDat DatDattDaatttDDaatte Top eTopeTopeTopeToe Top TopTopeTopTopTopTopeToeTopeTeTopTe Top eTopeTopeTopeToeTopeTopeTopeTopoopeToppeTopeTopeTopoeTopeTopeToeToeeTopopoeToppeTopeTopeTopeTopeoeTopeeeToeeeopopeTopeeeoopppeeooeppeTopTTopp(ftKB(ftKB(f(ftK(ftKB(ftKBf(ftKBKB(ftKB(((ftKB(ftKftKBftK(ftKBftKBftKBtKB(ftKK(ftKBKB((ftffftftt(ftKBK(ftKBKBB(ftKB((ftKBK(ftKBKBtKBBftKftKBftKtKBtKB(ftKBB(ftKBftKB(ftKBKBB(t(tKBKKKKBBBBtKBKKBKt(K(ftKBfKB(((()Btm)Btm BtmBtm)Btm)Btm)Btm)BtmBtm)Bt)Btm)Btm)BtmBtmB)B)Btttm)B)Btm)BtmBtBtBtm)Btm))B)BtmBBtm)Btm))Btm)B)BtmBBtmtBtmtmm)Btmtm)Btmtmm)BtmBBtmmBttm)BtBtmBBBBtt)B)B)BtBtm)B)tmmm)))))(ftKB(ftKB(ftKBfftKBftK(ftKB(ftK(ftKB(ftKB(ftKB(ftKB(ftKB((ftKBftK(ftKB(ftKB(ftKBKK(ftKBK(ftKB(ftKBKB(ftKBffftKBtft(ftKBKKBKB((ftK(ftKBtKB(ftK(ftK(ftKBKB(ftKB(ftKB(ftKBftKf(ftKBftfttKBKBftKBBtKB(ftfft B(ftKfftKBKBBKBBKBtBBBfttBfKB(())))))))))))))))))))))))))))))))))))))))))))
ProppPProppProppPProppPProppProppProppProppProProPProppProppPropProppPropProroppProppropopPropPropppppppProppPropropprrooopppProppropprroooopoopppProppppppPPropProprPrroooPropppprooppPropropoProppoppppoppoopppproppPoopProppPPropproppoppppppant antanttantantnttanttanttntananaantnttantaanananananntantanaaaantnntantaaaantnnanaanaaaanaaantaatttaaaanannnt
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ProppPProppPProppProppProppProppPropProppProppPPPProppProProProppPProppProppProppPropproppropProppropprroppoppropproppropppProppPropProprProopppppPPProproppProppropproPropopppppppppProppPrroppppPropproproopopppPPropoppopppoppppppopppooppPropPopppant antanttantantantanttaantaantnnnttaanannantntantantaaannnantanttaaanantnanantantaaantaaaaaaanaantattaaataaanaanntntt
TotalTotalTotalTotalTotaltalotalTotaTotaTTtattalTotalToTotalotaTotaTotaTotaTotaTToTotatotaTotalTotaotaotaotaotattatalTotaloTotaaTotaTottaaaotaToToTootloTotaotaToaataaTootaaaoooaToootaotataTTootaal (lb)(lb)(lb)(lb)lb)b)b)(lb)(lb)(lb)(lb)lb(lb)lb)bb(lb)(lb)(lb)(((lb)(lbb)b)b)(lb)(lb)b)b)((lb)lbb)(lb)b(lb)((lbb)(lb)(lblb)b)bb)b)(l )(b(bb(bbbbbbbbb((b)())
Vol CVoVoVVol CVVVVol ClVolVol CVol CVol CVol CCVol CVlCVol CVoVol CVoVol CVoVol CVolClCol CVVVol CVol ClVol CVol CCCCCCCVVVol CVol CVol CoVol CCCVol CVol CVoVolVol CVVVol Coool CCVVoooCVoVolVoCCVol CVVol CVVool CCCVooCCVoCCool ClCClean leanleanleanlealealealeaneaneleanaaeaaaneannleaneeeaeaanneaneeaneaneaeeaaananeananeaneeeannleaeaneeaeaeaeaeleeaaaaeeeneeeaaeeaalleeaaann
TotalTotaTotaTotalTotalTotaotalTotaTotalTTotattalotalTotaTottotattalToTtooooootattotaaaTootaoootalotaaTotaTottaaotataToootaotaaaaalTooaaaTotalootataaToooaaottaltaalTotooa (bbl(bbl((bbl(bbb(bbl(bbl(bbl(bbl(bbl(bblbbb(bbbbl(bbl(bbl(bbl(b(bbl((bblbblbblbbbl(bblbbl(((bbbbbbbb(bbl(b(bbbbbbb(bb(bbl(bbbbblbbl(bbbb(bbbbb(bblbbbb(bbbbbbbb(bblbbbb(bbbll((())))))))))))))))))))))))))))))))))))))))
Vol SVol SVol SVol SVol SVVol SVol SlollVol SVol SVol SSSVVVol SVVol SVol SVol SVVVoVoVol Sol Sol SSSVol SVVVol SVol SVol SoVol SVol SSVol SVol SVol SVoVoolVoVVoSSSVol SoVol Sol SSVol SVolVoSVlVol SVVVVVol SoVolVoSSVoSSVol SVVoSlurrylurryllrrlurryurryrylurrylurrylurryurrylurryrryurryrrrurrylurryrryrurrrrryyryrrryrurrurryrryurryrrryrrryyyyyryyyyyyyuyuuuyuuyllluurrryyyy
TotalTotaTotalTotalTotalTotaTotToTotaTotaTotttlotalTootottlTotaTotaTotTTtTotalootaTotatatotataaaaaotaTotaootaotoTotalTotaotaaoootaottaaTootaaotalaaotaaotaaaoototataTTtt (bbl(bb(bbl(bblb(bb(bblbbl(bbl(bb(bbl(bblbblbbbbbl(bblbbl(bb(bb(bb(bbb((bblbbbbbbb(bb(bbblbbbbb(b(bbbbbbbbblbb(bbbl(bbbbb(b(bbbbb(bb((bb(bbll((((()))))))))))))))))))))))))))))))))))
0.0 00.0 00.0 000.0 00.0 00.0 000.0 00.0 00.0 000.0 000.0 00.0 00000.0 00.0 0000.0 000.0000 00.0 000 00000000000 000.0 00.0 0000000.0 00000.0 00.0 00.00.0 00000000.0 0000000000 000000 00000.000 00.0 0000000.0 00000.00000.0 00.0 00000.0 00000000.00 000 0.00 0.00 00000 0.00 000 0.00 0000 0.00 000 0000 000000 000 000 0.00 000000 0.00 000 000.00 000 0000.00 00000 000000000 000 00000000000 00000 000.00 0000000000 0000000000000 0000.00 0000000000000000000000.0000000.000000.0000.0000.000.0000000000.0000.00000000000000000000000000000000000000.00000000.000000.00000000000000000000000
ManMMMManMaManManMMMaMaMManMMaManManManMManMMMaManManMaMaMaMaanManManMannManMannManManMMaManaananManManannannManManMannMaMaMaManaMaaanannnnMMananManMMnManaanMMManMMaaaMMaMaaaaManMaMaMManandredddrddredredredredreddredredreddredredredreredrerdredredreedreddredreddredrerererdreedredredredrededreeddrrreedreedddrerdredredreeedreerredreeedredrereddedreedddrrel IlllllIIIIIll Il IlIl IlIll Ilnsensennsensensensensensnsesessnseseseensnsensennnsnsensensesesesensesesensennsesesenseensnsnnsessnseseeennsensesseseennsesensseeessseeseeesssssesseeseeennsseertsrtsttrtsttsrtsrtsttrtstrttrtsrtrtrtsrtsrtsrtsrtrttrtsttsssssrtsrrtsrrtsrtttssrtsrtrtstsrtsrtsrtsttssssrtsstsrrrrtsttsssrtstssssssssssssstststsrrtsrts
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(ftKB(ftKB((ftKB(ftKBftK(ftKB(ftKB(ftKKBKKB(ftKBB(ftKB((ftKB(ftKB(ftKftftKKBKKKBKB(ftK(ftKBftKBBB(ftKB((ftKB(ftftKBK(ftKB(ftKBftKB(ftKB((ftKBtKBKK(ftKBKB(ftKBtKBB(ft(ftKKKBBftKBBB(ftKKKtKBBKKBKBB(tKtB((((()))))))))))))))))))))))))))))))))))
TopTop TopTopTTp TToTTopTopTTopToTopToTopTTopTToppooppopoopoppppToopTopopppppppToopoppTooooppppooppoooppp
IncInclIncIncl clnclIInclIlIlncncnncnclcncnnnnncccnnncccccncIlccncccccccccc (°) Ma(°) M((°) M(°) Ma°) Ma(°) Ma(°) M(°) Ma(°) MaMa°) Ma(°) Ma((°) M(°) Ma(°) Ma°)))M)M((((°) Ma°(°°°(°) Ma(°) M)Ma)Ma°) Ma)M((°) Ma)MaMa)MM(°°) M°°) M(°)(°) M(°°°°M)Ma)Ma(°) Ma°) M°MMaa() MaMaMaaMaaMa)Ma))Maaaa()()(()ke Modke Modke Modke Mke ModMke Modke MoeModModMModeModke Modke MoMoModke Moddke M dke ModModModke ModMododke Moke Mke Modke MoeeModeMeModdModeModke Modkke Modke Modke ModeMoke MoeeMMModeModeMoodke ModModke MkeeeModeMooododke MoMeModdke ModMMke ModkkeMMMMokkeeMooodokodoodel ODel OD el ODelel Oel ODel ODelel ODOOODel ODDelelel OODel ODel ODel ODODOODOel Oel ODOODel ODODDel ODel ODOOel OODel ODDDel ODODel ODeOOel ODODel ODeel ODel ODeeeeOeleOOOeOOel OeOOel ODDeeeOODeOOOODD (in) S(in) S(in) S(in) S(in) Si(in) S(in) SS)S)SSS(in) S(in) Sin) S(in) S)SSS((in) Si))S(in) SS(in) S(in) S(in) S)(in) S)SSSSSin) S(in) S(in) Sn) Sn)n))Sn) SSS(in) S(inn) Sn) Snn) SS(nn)SS(in SSSSSS((in) S)S)(())((erverververververververververveervrvervrvrververververeereerrvveeeeerveeervrvvveeeerervrervrvervvveeevvverveeeree
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TypeTypeTTypeTypTTypeTypeTypeTypeTTypTypeTypTTypTTypeTTyTypeTTypeTTyppTypeTypeTypeypypeyypepeypeeTypeypeypeypeppeypTypeeeTypypyyypeppepeeTypeTypeyypyyypeeyepypeeeeepeypeyyyyyyp
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Port PoPPPortPort PorPoPoPortPortPorPort PortortPorPoPoPoPortPortttPPortPorPPPtPPPPortPorPororPPortPortoorortortPPoPoortorttttPPorrtPororttrorttoooooot Size SizeSizeSizeSizeSizeSSizeSSize SiiiSSizeiSSSizSizeizeSSizeSizeSSizSizeSizSSiSizeSizeSizeSizeSizeiSizezzeizeeSSizeSizzzeeezeeSizeezeSzeSizzSizeizeeSzzeeeeSzeeSSzz
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14,314,314,314,314,1414,314,314433433114,444,334,3333314,31431444334,333334,314,314,34,31434444,4,344334,3,334,3433,34,3344,34,34,34434,33414,3,,3334,3314,,,3370.970.977707700970.90.970.970.909970.970.97070.970.9090909700.970.970 970.90.990.970.9770.97700970 9070.970.997070.900.9970 970.900970.900970.999.9.970.99.99099909770.9977000.0.9900.9.970.9 3,683,3,6863,683,683,683,68683,683,6883,63,68363,683,63,683,63,68,68683,68683,686883683,683,33,68368,663,683688883,6883,683,68663,683,6866886883668688333663,68363,6863,66836883,683688,6883,683,68636683,6888333,6683688,9.2 69.2 69.2 69.2 69.2 69.2 6992 699.2 622626999.2 69.2 692 69.2 692 6.2 629.2 626669.2 699.2 699.2 692 6992 6269.2 69.2 6262692 669.2 669929.2 6666699.29.292 69.2 62226699.29262692 6999269266296992666699669.29.2 6.2.22222 3.003.0033.003.0033.00003.003.000003.003.003.03003.003.03.0033.00300000003.003.0000330303300000003.000003.0030003.003003.03.003.00003.0003.03003.00303.3.000033303.00003033.003.00..0.00033.0033.00.00033.00000 CamcCamcCamcCamcCCCamcCamcCamCamcCaCamcCCaCaCCamcCamcCCCamcCamcCamCamCamcCCamcaCaCamcaammmcmcamamcCamcamcCamcCCamcCaCamcCamcCamaCaammmmcamcmcCamCamcaammCamccCaCamcmmamcamccmCamcaCCCamcamcaCCCCaacCacccCCCCCamCaaammmmmco KBMKBMo KBMo KBMo KBMKBMo KBMo KBMo KBMKBKBo KBMo KBMBMMo KBMo KBMKBMKBoKo KBMoKoKBoKBoKBo KBMo KBMBMKBMo KBMMMo KBMo KBMoKKBMBo KBMo KBMKBKBMo KBMoKBBKBMo KBMoo KBMo KBMKBMKMBMoo KBMoKoKMo KBMooKBMBBoKBMoKBBMMo KBMKBo KBMo KBMKMMMMooKBo KBMooKKBMooKBBBoKBKKBBBBBBMG1GAG1GAGG1GG1GAGG1GAG1GAG1GAG1GAGAAG1GAG1GAG1GAG1GAGG1GAG1G1G1GAG1GAG1GAGAGG1GAGG1GAGG1GAG1GAG1G1G1GG1GAGG1GAG1GGGAG1GAAG1GAGGG1GAGGG1GAG1GAG1GAGAG1GAGG1GAGG1GAG1GA1GAAG1GAGG1GAG1GAGGGGAAG1GAAGAGG1GAGAGG1GAGGGG1GGG1GAG1GAAGGG1GAAAAGGAGAAGG1GGGGGGAGGAGGAAS LIS S LI LS LIS LIS S S LIS LS S S S S S S S S L LS LIS LIS S S S S LS S S LS LS LIS S S S L I IS S S S LS S S S S L IS LS S S LS S S LS S S S LIS LIS S S S S L LS S S S S LS L L IFT DMFT DMFT DMFT DMFT DMFT DMTDMTFT DMFT DMDMDMFT DFT DMTDMDMFT DFT DFT DMFT DMTDMTDMTDMTDMTDMDMDDMTDMFT DMMDMFFT DTTDMTTTDDMDFT DDDTDMMDMFT DMFT DMDDMMTTDMDMDMDFT DMFT DDMMMDMMMMFFT DMDMDMMDDMMDDMDDDMFT DMFT DMDMDDMMYBK 0YBK 0YBK 0YBK 0YBYBK 0YBKYBK 0YBK 0BBBK 0BKKYBK 0K0YBK 0BK 0BKYBK 00YBK 00YBK 0YBKYBKYBK 0YYBKBKYBK 0BBKK0YBKK00YBK 0YBK 00K0K0YBK 0YYBKYBK 0YBK 0YBYBKBKKKKK0YBK 0YBK 0YBK 0K0YBK 00YYBK 0BKKKBK 0BK 0YBKYBK 0YBKYYKK00000YBKK000YBK 0K0BBKK000YBBK 0B0BBB0000YBKBBKBBBB.0000000000000.000000000000000000000000000000000000000000000000000000000.000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000...000000.00000000...00 00 0.0 10.0 10.0 10.0 10.0 10.0000 10.0.0 10000.000.0 101000.0 100000000.000.00100010.0000000000.0 110000.000010.00000 1111000.00000.0.0000000000.00000..00000.00000.00 110/12000/120/12/0/1200/120121220/1220/120/1200/120/0/120/120/10//1120/120/12/120/1200/0/1200/1120/120/1220/120/1200/12/122220/120/120/12200/120/0/0/1220/120/200/0 2/00 2200/12121222222/201/201/201//201/201/2012/2020011/201/20/2/20/20/201/22/2012000/20202001/2/2/2/22/20/2001201/20//2200/200/20/2/2/200001/201/200/20/20/22010120/202/20//22002020/2200/2001/2//2012200177777777777777777777777777777777777777777777
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D-SAND-SAND-SAND-SANDSAD-SAND-SAND-SANSD-SANSAND-SAAND-SAND-SAD-SAD-SANSSD-SASD-SAD-SASASANND-SD-SANDSAANSAND-SAND-SANDSSAND-SAD-SANNNDSAD-SASASSSANSANSANNDDSSSAND-SANSSSSAD-SANNDDSSAASASAND-SANSANSSANSSANSAANDDSDSND LINDLINDLDLINDLINDLIND LINLLILIND LINNDLIND LIND LINDLINDLINDLINDLINLIND LID LINNNDDDLINIDLINDDD LINDLINNNDDDNDLINNNNND LDDDLINNDDINDDNDNDNER; 4ERERER; 4ERER; 4R;ERRER; 444ER;ER; 4ERRR; 4; 4R; 44ERRR; 44RER; 44R; 4ER;R;;444EEEER; 4R; 4ERER;;44ERRR; 4ERRER; 44RRR; 4R444RERRRR;;;;;,493,493.4,49,493494939393,493,493494,493999393,493.3349349993334493.99493,493,49349449993344,49933349934493.9949933393444449999393933,494934933,493.933,9333.4-44444444-44-444444444444----444--444
7,512757,5127,5127,51277,57,5127,5127,517,51227,512757,512227575127,577,512,5127,5125,515127,51512222512775112225127,512277,512511227512757,5551251127,57577,51251227,551257,5121,512527,5127522512551255522,557,51251,,.5555555.5555555555555.555555555.5555555555..5555..
SEAL SEASEALSEASEASEASEASEALSEAESEALASEALSSSEASEASEASEALSEALSEAEALEAALSSSEASEASSEALSEALASSSAEALSSSAALSEALSSEALSEALLSSSEASEAEAAAASEAASSAASEASSAASSSSSASEA ASSY;ASSYAASSYSSASSYASSYASASSY;SSYYASSYAASSASSYASSY;ASSYASSASSSSASSASSASSYSSY;YSYASSY;YYASSY;ASSASSSSSYSSYASSASSSSYASSASSY;YYSYYAASSYASSYASSY;ASSYASSYASSSSSSSYYSYY;AASSY;ASSSYSSSSASSYSSYSASSAASASSSSYYAASASSSSAAASSSSSSSSSS;;4,42442444424244242,4224,42444,424,424,42,44,4242422422444,424,424,424,4444242224444442,424,4244,4224444224,4244424444242,444,442,2,,8.4888848.48.4448.48.4848888.4848.488888.4884488888.448888.488448484848.444488844444.488488884488.4884
LOCATLOCATLOCATLOCTOCAOCATTLOCATLOCATLOCATLOCAOCCLOCATLOCATLOCATOCAOCOCALOCATLOCATOCAOOCACLOCATCCATAOCAAOCATLOCATCATLOCATOCATOCAOOLOCATOCAOCACACACCOCAATCATLOCATOOCATOCATTOOCACAALOCAOCAOCATACAOOOCCAOCCAOCCLOOOCCALCTOR; 4OROR; 4OR; 4OOR; 4OR; 4R; 4R; 4OR; 4ORR; 44OOOR; 4OOROR; 4ORORR; 4R; 4OR; 4R; 4OR; 44OR; 4OOR;OR; 4OORORR; 4RROR; 4OR; 4OROROR4OR;OOR; 4OR;R; 444OR;R; 4ROR;OR; 4OR4RRRR;44OOR44OOOR44OROR;OR;,427.,427427.427.,427.4274277,4274272227.7442424242722722727427727427.,427.,42744274227272277427.42722277744444274444227742724,4,44227,4274274422424,422,427,427.227227..427.2,,77777777777777777777777777777777777777
XO EnXO EnXO EnXO EnXO EnOEEXO EOEXO EnXXO EnXO EnXO EOEEEnXXXO EnXO EnXXXOXOOXO EnOXO EXOXOOEnO EnXO EXO EnXO EnXXXOXOOOOXOO EXXXOnXO EnXXOXOOEnXOOEnXO EnnnnXXXOXOOXO EnEEnEnXO EnOOnXOXXXnXXOOnXXOOXXOOEnnlargilargargirgillargrgiilarglargiirgilargararglargarargglargargarglaargargaargirgargiargigigargargiaaarglargargrgrgiagargiarggiaargargargaggagaaargagaaaargirggiiggggng ; ng ;ng ; nngngng ;gnng ;ngnng ;ngnng ;ngggggg ;;nngngggng ;ngngngggnggggnggggnggggggggngg ;gg ;gggg ;;g 4,4264,426,4264,4264,4264,4264424426424426442442644,4264,4264264264424,426264,426426644264,4264426442664442644,426,42622622,42664,42666444466644,426424426264,4264,426426426442244,42644264,4244262644426422666662,.2.2.2222.2.2222222222222222.22.2222222222222222222.22222
GAS LGAS LGGAS LGAS LGGAS LGASGASGASASLGGGGGAS LGASGAGASGASGAS LGASAGAS LGASSSSGAS LSAS LGGGGGGAGASGASGAS LGASGGAS LGAAGASGASGGGASAASSGGASASSSSGAS LAGAASSGSSAASGASGAAASSSSGASSSLIFT;IFTFTFFT;IFT;IFTFTIFTFT;FTIIIFFFT;FTFTFTTFTTIFTTIFIFTTTFTFFT;FT;FT;F ;IFIFFIF ;IFFT;;;;;4,3704,37,374,37074,370,37043704,374,373704,370044,3704,37043334,37337074,370437703704,37004,3704,37034,37033370377700037043704,370,37037044374,3737770703707044,373370374,37037043444,370304,3434444370370433,3 0,,3,,37,.9999999999999999999.9999999999999999999999..999999..999..9
XO ReXO ReXO ReXO ReXO RXO ReXO ReXXO RXXOO ReRO RRXXXXOOXO ReXO ReOROReXO RXOXO ReReXO ReRXO ReXXXXO ReXO ReXO ReXOXO ReOOXO RRXO ReReXO ReXO ReXO ReXO ROReReRXO ReXXOXOReReeXOXO ReReOORXXOOORXXOOReXXXXOReXXOReORRXXOReXeeducinducinduciddducinduciiducinddduciiducidduciduciduciducindducinucincinucinducinducducinduducinducinducinuducduccucnducinducinducdddcuccnducinucinnncindddudducinnducinunducinducinucduccndduuccccinnducduccduccinng; 4,g; 4g; 4g; 4,4,4g; 4g; 4g; 4g; 4g; 4gg; 4g4g; 4ggg; 4ggg;g;4g; 444ggg; 4,gg;;g; 44;4g; 4,g; 4g; 4g4,g; 444g; 4444g; 44ggg; 4g; 444ggg; 4,4;,,ggg;,,,ggg;;,gg;;g 324.2324.2324.2324.2324.2324.23232232.2324.2333324.2324 2324 2324324.224.22324232442324.2324.223324324 23324 23324.232424.222324.2324.222324 2324 2324.232322232324.22324 2332224442423242244222324324344.4 224 222324.24324324.244433324.2422322..32424.242
SBE ;SBESBESBE ;SBESBEBE ;SBE ;BEEESBE ;SBESBSBESBBEBSBBSBE ;SBEESSBE ;SSBE ;SSBSBBEBESBESBE ;SSBE ;SSSBSSBESBBE ;SSSSSBESBE ;SBSBSBE ;SSSSSBESSBBESSSBSBSSSSBSBBEBS ;;;4,3044,304,303334,304,304304334,304303004,3004,30434,304,304,30304,303430,30004430300304,3044430304300433044,34334,34330044304,304,30334,304333033034,,4.54.5454.5454.54.554.54.5454.54.544.5545445454444.5545554.5555454555554.54.5554.54.5454.4 55555.55.5555
SEAL SEASEASEASSEAEEASEALLSEAL SEASSSEALSEASSEASEASEALSEALEASEASEALSEASSSSSEASEAAASSSSEALEAASEALSSEAEASEAEALSEASEAAALSSEASSSSSEASEASSALSAAASSSSEAEAASEAA ASSY;ASSYASSYSASSYASSSSYYYASSYASSYASSASSASASSY;ASSY;SASSYSSSASSYASSY;ASSASSYSSASSASSYSSYYSSYASSYSYSYAASSYASSY;SSYSSSASSSSY;SSSY;YYYASSSSASSY;YASSYSSYSSYAAAASSYASSASSASSASSYYSSY;ASSYSSSSYYASSY;SSSASASSASSSASSSSSAAAASSSS ;AAASSSS ;;4,29444294,2929,294,294,2944,294,29224,294,294229294294,29294,2994,294,29222242999994,29,294294299294,2944429242944292994422994442929944,2942229299,,24,29,,,,,8.3838888.3838338.38.388.3838.38383338.38.3888.38.38.3338.3888838.3338.38333888.333888.33888.38.33888383388.38.338.3
XXO ThXOXO ThXXOO ThOTThTTXO ThXXO ThXO ThXXOXXOXO ThXO TOThOThXOXO ThXO ThThXO ThXXOXOXXXO TOXO ThOOXOXOXOOXO ThTXO ThXOXOXXXOXO ThOThXO ThXO ThXO ThXO ThXOOXXOXO ThhXXO ThXXOXXXXOXXOOhreadsreadddreadsaddreadseadsdsreadsreadreadsrreadsreadseaeeadareadseadsadsadsdddsssreadsrreadsrearreadseadseaeadaeadeaddeadeadsreadsreaeadsadddsreadeadseeaaddsdseadsadseadsaaseeaeeadaddssseaddddsssdsa (Cas(Cas(C(CaCasCCa(Cas(CCasCas(CasCa(Cas((CaCCas(Ca(CasCaCCas(Cas(CasC(Cas((CasCC(CasCas(CassCas(C(CasCass(C(CasCCasssC(CaCassasC(CCa(Ca(CaCass(Cassasas(CaCas(Caaas(CCassss(((ing);ining);)ing)ing)ing))i g)ng)ing)ng)ing);g)ing);ingnng)gggg)g);ing);)ngnngng)gggg)g)g)nng)g)g)ng);g)nnng)ng)nngg)ngg)g);ngng);)gg);;;g))4,3044304343,303304,30300304,3044,304,30303043330030043033004,304,304,44304,304,300004434,3003003030300443,3044,3043433004,30433330003300,333,,,,2.52522522.2.52.52552522.5222.52.52.52555222252555252.5552.522555.52.52552.5222552.552552.52.5555.55
LOCATLOCATLOCATLOCATLOCAOCATATATLOCLOOCOCAOCATOCATOOCATCOCOCCCLOCATLOCATOCATLOOOCLOCAOCAOCCACACOCATCAOCATOCATOCATLOCATATOOCLOCATCCCOCAOCAAATLOCATOOCOCAAOCOCATLOCAOOCALAAOLOCAOCAAAAOOOCCCLOOCOCCCTCAOR; 4OOR; 4ROR; 4OOR;OROROR; 4OORRR;OR; 4OR; 44OR;OR; 4OR; 4OOOORROR; 4RR; 44OR; 4OR; 4ROR; 4; 4OR; 4OOOOROR;R; 44OOORRROR; 44RRR4RROOR; 4RRR;44444OR44OOORROOOORR;;;,297.2972,297.,29792979729229729729,297.97979797297.797722297292297.929297997297297297.2972979,297.29292999777,297.29997297,297.297229929799,299929,.,,,,888888888888888888888888888888888888888888888
LLinerLiLineLineLiLinerLineriiiLLineLiinerLinenLinenerLinerLinernerLinnenerLinnernineLineeeerinerLinnernnnnereeeeinernerneeLineLinerLinnnrneeLinerrLeeeLineLLineeLLinier - PuPuPPPPPPu-Pu-PPuPuPPPuPPPPuPuPuPuuPuPPuPu--PP---uuuuuuuuuuuup; 4,444p; 44p; 44p; 4,;4p; 4pp; 4p; 4p; 4p;pppp;4444p; 4pppp; 4;;; 4p; 4p444; 4,44,p; 4444pp;4,4444p;pppp ,pp;,ppp ,,;,,;,292.7292.7292.7292.7292.7292.7292.7292.7299292.792.72922292.729229292.729299292.7292.792 72992292.7272.7292.72.722922292 72922992922227722922292 792.7922792292.7292.7229292 7927792.729229229292292229292.79992792.79729292722..29 .7.
XO EnXO EnXO EnXO EnXO EnXO EnXXXO EXO EnXO EnXO EnXO EOEnXOXO EnXO EnOOOEEXXXXOXOXO EnXO EnOOEnOXO EnEXO EnXO EnXOOXOOEXXOXO EnXXOOOOnnOEnnXOXXXXOOEnOOEnnnXOXOOnXXOXO EEnXXXOOnXXOnXOXXOEXOOOOOnnXlargilarlargiilargililargillargiaargiargiaargirrgrargargiargggilargiargiargargargaaaaaargargrgggargiargargirgiaarargaargargaarggarggargiggaalarggggargrgggggggng ; ng ;ngng ;ng ;nngngnnng ;ggggg ;nngngnnngng ;ggg ;ngngngngngngnnnggggngnngnggggggggnggngggg ;g;gggg ;;g 4,2584,25842542584,25822258258254,2584,2584258554,2585825858,25844,25842258258224,2584,254254,25884,25884,2584258252585584,258225825225854,2584,25884,258254,255558828884825,25888442258258255588,22,.55555.555555.5.5555.5555555.5555.5.55.55555.555.5
GaugeGaugeGGaugeGauGaugGaugeGaugeGGaugGGaugeGaugeGaGaugeGaGGaugeGaugGGaugeGaugeGGaugGugGGaugeGaaGaugeuuguggeaugegaugeeeGaugGGaugaugeauugggeegeGauGauggeGaugeeGGaugugeGGaaugeauggeaugeGGaGuguggeeeGGaaugggg / Pu// PuPPuPP/ Pu// PP/PPuP///PuPu/PuPuPuPP//P/ Pu/PPu/Pu/Pu/Puuuu/PuPPuuu/PuPPu/P//Pu/u/u/uuuump Sep SeSp SpSmp Smp Smp Semp Smp SSemp SeSSepSmp Semp Semp SepSemp SepSpSmp SSpSempmmmmp Semp Semp Spmp SSSSemmmmp Smpmp Semp Smppppmp SeSmp SeSSemp SemmmSemp Sempmp SpSeppSepSeempmp SpSSSpSemppSeempSSeppeeeppnsonsonsor;nnsnsonsor;nsonsor;nsornsor;ssonsoooosornsor;nsornnsornnnsssoonsor;nsor;sornsornssor;osor;nssosssoosososoonnsossor;sossssoooosor;so ;;4,244,244,244,244,24242424244,2442442222422244,2444,24422424224,2444,2442442442244244,24242244442444424,244442244444244442422,,7.7.77.77.7777777777777.77777777.7777777777777.7777777.7 777777777.7777777.7777.77
TubinTubiTubinTubinTubinTTubinubinubiTubinTubinTubinTubiTubibininiiTubinTubTubiniTubTubinubinuubinbbinbbinTubininubinnubinbiubinnnbinnTbbbiininiuubbbuububbububing - Pg - PP-PPg - Pg - PP-Pg-Pg-Pg - Pg - Pg - PgPPg-Pg - PPg-Pg - Pg-PggggPg - PPgggg -Pg-PgggPg - Pg --g - Pg - P-Pg-P--Pggggggg Pgggup; 4up; 4up; 4up; 444up; 4up; 4upup; 4up; 4p; 4up; 4upupuuuup;ppppp;up; 44upup; 4upppp;4up; 4uuup; 4pppup; 44upupp4; 4up444; 4ppupp;up;up;;4;pp ,243.,243.,243243.243,243.2224324243434324333243.2432432,2432424333,243.43243.2432434,243.32422432243,2432224443324422243332243434,2434324432432433333,243.2 3,77777777777777777777777777777777
Tec WTec WTeTec WTec WTWTec Wec Wec WcWWec WTTec WTec WTec Wec Wc WWWWec WTec WTec WTec WTec Wec WWWcWec WTecWTec Wec Wec Wec WcTec Wec WWec WWeec WeeccWWWcWWcWeeecec WWWWec Wec WcWWWeeeccccWWeecWcire Gire Gireire GGire Gire Gire Gire Gire Gre GeGeGGeGGre Gire Gire Gire GeGGre GeGGeGeGeGeGire GeGire Gire Grre Grere Greire GGGGGrre GreeGGGe Gere GGeGGGreGGeGGGeeGGuide uideuideduidiiuideuideuideiiuideuideuideuiduideuuideduideuidedduideedeuideuideuideideduideduidedeeedduiddeuddeeddeeeeuuddeeeuuiduideide Sub; SubSSubSubSubSuSub;SubSubSubSubSSbbbSubSSSubSSSubSuSuSSubSubSSubSub;uuSub;uSuSubSub;SubuuSub;Sub;bbub;bbSSSbSuSubSSSubuSuSubSubSSbSSSuSubub;;;4,1574,1574,15174151575774,15741541574,1571571574,1515741574154,1575757744,157414,1574,1571575,155771574,157575744157,115744,151157,15754,1557774555755574,774,157457,5 .7.777777777777777.7777777.7777777777.7.7.77
JET PJETJET PJETET PTTPTTPTJET PPJJET PJJET PJET PJET PJET PEJETTTTPPET PPJJETJETPPJET PTETJETPTJET PEEJETPPPPJJJJJJJEET PJJJJETTPUMP; UMPUMPUMUMP;MMPPPPUMPUMPUMPUMPMMMPUMMMMMUMPP;MP;PMPPMMUMPUMPMUMUMPUMPUMPUMP;MP;MMMMMMPPPUMPMPMP;;MPPPUMUMPPMMMUUUMMMUMMUUM;UUMMMP;;;;;;4,1544415415,15554,1544,154544,1544,1544,154411154554,15441544,1541544,15454,15454415111415544,1544154155,1544154,154,154545454415444154555444,4,15444154544,1544,1545455,154,154,1555 .0.00000000000000000000000000.00.0000000.000000000
SSlidiSlidSSliSlidSlidiSlidSlidiilidiSSSlidSlidiSlidSSSSlidiiididiSlidiSlidSSSlidiSSlidSlidSliSliddiSlidiSSlSSSlidSlidiSlidSSlidiiidSlidSSlidddSSddSSliddSlidSSSSdSidddSidng Slng SlSng Slg SlgSlSgSng SlgSng Sng SSng Sng Sg Slg SgSng Sng Sng Sng SlSSng Slngngng SgSng SSg Slng Sng Sng Sng Sng Sgng SgSSnngSggSSg SlgggSg SSlnSSgggSSSSggSnngSg Slggggeeve;eeveeveeeveeeveeeeveeveeeeeve;eveeeve;eeve;eeeveevevvveeveeeveeeeve;eeveeeeve;eeveeeveeveeeveeeveeeeveeeve;eveeevevvveeeveeeveeeveeeve;eeeveeeve;evveeveeveeeveveeveeeeve;eevvveeeeeeveeeveeevev;eee e;;;4,1544,154,1,1514,154,1554,154,155444,154,1515414,15554,154,155415115415554154,1541541541541544,4,151154155415544554144,5441444555555,55,1,3.633333663.666363.633.6333636663.63.663.6333.3.6363.636663.66663.633.63.6363333666663.636666366663.6366663.63.3 66.636636633.3 6
Tec WTTec WTec Wec Wec WcWTec WTecTec Wec Wec WWTec WWTTec WTec WTec WTec WTec WTWWec WWec Wec WTeTec WTc WcWWWTec WcWec Wec Wec WeeecececccWWcWcWcWeececcWWWec WWec Wcc WWWWWeec WecWWec WcWWWWeeecWec Wire Gire Gire Gire Gire Gre GiGire GireGGGeGGGGeGire Gire GGGeGeGeGire Gree GeGGire Gre GrereeeeGGGrreeeeeGre GreeGGGeGGreeeGeeGGeGeGeeGreeGGuideuide iduideuidduideiuiuideuideuideuidddeuiuideideidededdduideuideeedeuiuidduiddedeeeuideeedeeeeuideudeuuideuuiddddeeuuidideeeuuidede Sub; SSub;bbSubSSSuSub;Sub;SubSubSubSubSSub;ubSSSubSSSSSubSubSSubSuSubSub;bbSubSubSubSub;SuububbbbSuSuSuuSubbb;Sub;SuSSSSSSuSSubSuub;SSSSuSubSSSub;;SSuu ;;;4,1524,1524,152152152524,1524154152,1524,152521544,1524,14,1524,151554,1524,1525541524,1524,1525241524154151524,1522224154,1521521525224,1524152111554,1522415245524555244,15242424,1524215,152552222,.7.77.777777.777777.77777777.7777.7777777..777.
LineineLinerLineLinerLiineLinerLinerLinerLinerLinerineiinerninernenerneererrrnernnenneeeeeeerrrLinernnnernneeeinenerLinerrineLinerLinereeLLeeenLr; 130; 1300; 130;11130303033001130; 13033033313033003000130;13033; 1300; 130;13;1113331300; 130;13;;131300130330033330300300330; 130330033;;.4.4.4444.44444.4444444.4444.44444444444.4444.
CONDUCONDUCONDUNDUCONDUCONDUCONDUCONDUNCONDUCONDDUONDUCONDUCONDCONDCONDUCONDUCONDOONDUOCONDNONDUCONDUNDNDUONDUCOCONDUCCONDCCCOCONOCONDCONONDUNDONDUDNDCONDCONDCCONDUCONOONNONDCONDUCCONDUCNONDUCONDDOONDNNNNDCCOCCCONDUONDONDDUONDONUUCCONDUCONDONDONDUUCCONDUOONNNDUUCTOR;CTOR;CTOR;CTCTORCTOR;CTCTORORORCTOR;CCTORCTORCTORCTORCTOR;CCTOORCTOROOORRRCTORCTORCTORCTORCTOR;CTORCTORTTTTOOROROOORRRCCTORCOOCTOR;ORCCCTOOCTOO;;CC OO ;CTOR;CTOR;C OORCTORCORORRCOCCTOOR;OCTOCOOO ;C OO ;38.038.038.038.038.038838.03838 038.0338.038.038.038.08038.038.038.038.038.03338.038.03388038800038.03838.03838.38 00338.088008.003338.03838808.0383388.0803888.080003800033388888.00388-158.-158.158158.-158-158-158.58.158.115858-1581585158888158-158.515855558888-158.11555588811155858815588888855585815858.58-158-585585888588888158158858.58158.5 .00000000000000000000000000000000000000000000
LinerLiLLLLineriiLineLLiiiLiLineLineineineLinerLinerLinenneeLinerrLinerininerLinernneereLinerriLinLinernennLinerneLineeeerrrLinernennLineeeeereeeenerineinneLeeeLLLLeeeLinerLinnernnee - PuPPPPP-PuPPPuPPPPPPPu-PuPPPPPPP- Pu-PuPPPu-Puuuu- PPu- PuPPuP-Pu-PP- Pu-PuPuuuuuuuPuuuup; 98999p; 98p; 988999998p; 9889p; 98999998p; 9898p; 9888p; 9899;98989998p; 988p; 98p; 98p; 98; 98999p; 9898898p; 98p; 98p; 98p; 98;9p; 98p; 9888p; 9ppp; 98p; 98988988p; 9888p; 9899p; 9p; 98p; 9898998p; 98889pp99; 98p999888p;98p;988;;.55555555555555.5.5555555.55555.55555.5555.5555555555555.55..5555..555
LinerLinerLinerLinerinerinerLinerLinerLinerLinerinerinerinernerneneerLinerenLinenereLinererrLinernenernnnrnneerLinereeeeeeeLineeerLLeLineLLinnneerr; 59.; 59.;595;5955;59.; 59.959; 595959595995959; 59999; 599955959.959;;5595595595559999; 595595599; 59; 5999599999559599;;;9.;9..;111111111111111111111111
XO ThXO ThXO ThXO TXXXO ThXOXXO ThXOOOThOTXO ThhhXXOXOXO ThOOXO ThXO ThOOThTXO TXOXO ThXOOXOXO ThTXO TXOXO ThXXO ThOXOO ThOXO TThO ThXO ThXXOXOOXO ThTXO ThXO ThXXOOOOThhhXO ThXO ThhXXOhXOXXO TOXXOOOXOXXTXThreadseadadreadsreadsreadsreadsdsreadsreadsreadsreadreadseadseadeadsreadsadsdsrreareadsreadsrreadeadseadsreeadsreadadsaddaddreadssrreadsreadeeadseadsdsddeadseadseadreaddsadssadsreeasseeeadseadseadsdseadeeaereadssrseads ; 39; 393933399;393933393939993993939393;3; 3939399393933939; 393999333999; 39;3393399939939939939; 3999399333999;; 3933;3;.9.9.9999999999.999999.99999.99999999999999999999999.9..9
HANGEHANGEHANGEAANGEANGANGEGEHANGEHANGEHANGEHANGEHANHANGHANGANGENGNGEHANGANGEGANGHANGEANGENGEEHANGANNGNGANGENGGEHANGEANGANGNGGGHANGEANGEHAAHANHANANGEGANGEHHAANHANGHAHANEANGEAANNEHANGGGHANGNAGGGGGAGEHAANGAGR; 38R; 38R; 38RR; 38R; 38R;R; 38R; 38R; 38R; 38; 383R; 383888R; 38R3R; 3RR; 383R; 3833888R; 38R; 38R; 3R; 3838R; 38R; 38R; 3R; 3;;R; 383R; 388;388R; 38RRRR; 38R; 3;33; 33888R338RR; 3338388RRR3R; 3888RR38833388RR;;38R88;;.44.444444.44444444444444.44.4444444444..44
HANGEHANGEHANGEHANGEANGENHANGEANGEANNGEANGEHANGHANGENGHANGEHANGHANGHANGANGANGHANGENGHANGANGANGANGGEANGEGGEANGEEEHHHANGHANGNGEANGANGGEANGEGGENGEHANGANGEHANANGNGEHANGANGANGENGANGHHANGEHANGHANGNGANGEHNGAANGAAGHANGEANGEGGGGANAANNGEGEHHHAANGENGGGEEEER; 34R; 34R; 3434R; 34R3R; 34RRRR; 3;34R; 34R; 34RR; 3RRR; 343434R; 34434RR; 34R;R; 3R; 34RR; 34R; 334R; 344R; 3R; 34R; 3343434344RRR;RR; 3R; 34R; 3;344;R;3344344R; 34434RRRR344RRR4434344RRR33R; 3R3333R;;344;;.8888.88888888888888888888888.888888888888.888888.8888..888
KUKKUKKKKUKUKUKUUKUKUKKUKKKKKUKKKUKKUKUKUKKKKUKKKKUKKKUKUKKKKUKKKKKKKUUKUUUKKKKUKUUUUKKUUUKKUKUUKUUUUUUUUKUUUUUUUP PPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPP PPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPROROROROROOOORORORORORORORORORORORORORORORORROOROOOROROROROROOROROROOOROROROORORORROROOOROOROOROOROOOROOORORRRRORRRORORROROROORROOOOOOOROOOOROROOOOD1D1DD111DDDDD1D1D1DDD11D1D1DDDD1D1D1DDD11DDDDDDD1DDD111D11DD1D11DDD11DD1DD1DDDDC-C-C-C-CCCCCC-CCCC-CCCCCCCCCCCCCCCC-CC-CCCCCCCCCCCCCCCCC-C-C-CC-CCCC-CCCCCCCCC-CCCCCCCCCCCCCC 101010101000000101011000001001011010011001010101000010001001011010001011000000000000000009999999999999999999999999999999999999999999999999999999999999999999999999
...............................
WELWELWWWWELWELWWWWWWWLLWELWWWWWELWWWWLNALNALNNNALNALNANNNAALNALNNNAAANNAAME WME WMEME WME WMEEWME WME WWEME WME WME WMEEEWWWWWMMEWWWWWWWMMWWWWELLELLELELLEELLELLLELLELLELLLLLBOROBOBORBOROOOBOROBBORBORBORBOBOBOOOOORRRRBOOORROOO1CCCCCCE1CC1CE1CEC1CC1C1CE1CE1CCCCC1CCEEEE1CCCEE1010101101100000110000001009999999999999999
Casing Strings
Casing Description
D-SAND LINER
OD (in)
4 1/2
ID (in)
3.958
Top (ftKB)
4,493.4
Set Depth (ftKB)
7,512.5
Set Depth (TVD) …
3,734.3
Wt/Len (l…
12.60
Grade
L-80
Top Thread
BTC
Liner Details
Top (ftKB) Top (TVD) (ftKB) Top Incl (°) Item Des Com
Nominal ID
(in)
4,493.4 3,739.7 68.09 HANGER BAKER FLANGED HOOK HANGER 4.500
4,516.3 3,748.0 69.81 SWIVEL BAKER SWIVEL SUB 3.958
4,558.5 3,760.6 76.54 SLEEVE BAKER SLIDING CMD SLEEVE 3.430
4,563.1 3,761.7 77.50 XO Reducing 4.5"x4" 4.000
4,595.5 3,766.8 84.06 XO Enlarging 4"x4.5" 4.500
7,456.9 3,735.7 91.42 XO Reducing 4.5"x4" 4.000
7,490.3 3,734.9 91.42 XO Reducing 4"x3.5" 3.500
Perforations & Slots
Top (ftKB) Btm (ftKB)
Top (TVD)
(ftKB)
Btm (TVD)
(ftKB) Zone Date
Shot
Dens
(shots/f
t)Type Com
4,593.0 7,453.0 3,766.6 3,735.8 WS D, 1C-
109L1
11/10/2001 32.0 SLOTS Slotted Liner
Stimulations & Treatments
Proppant Designed (lb) Proppant In Formation (lb) Date
Notes: General & Safety
End Date Annotation
11/10/2001 NOTE: MULTI-LATERAL WELL: 1C-109 (B-SAND), 1C-109L1 (D-SAND)
8/21/2008 NOTE: WORKOVER, SET D-SAND LEM
8/30/2008 NOTE: View Schematic w/ Alaska Schematic9.0REV
3/4/2012 NOTE: WORKOVER
Comment
SSSV: NONE1C-109L1, 8/27/2017 12:23:54 PM
Vertical schematic (actual)
D-SAND LINER; 4,493.4-
7,512.5
SLOTS; 4,593.0-7,453.0
D-SAND LINER LEM; 4,422.6-
4,603.8
PRODUCTION; 40.7-4,938.4
WINDOW L1; 4,494.0-4,525.0
Centralizer; 4,394.1
GAUGE; 4,392.2
ESP MOTOR; 4,383.9
GEAR BOX; 4,382.1
SEAL; 4,368.3
ESP INTAKE; 4,363.8
GAUGE; 4,303.8
GAS LIFT; 4,249.8
GAS LIFT; 2,286.7
PACKER; 2,173.6
XO Threads; 2,158.8
GAS LIFT; 2,049.3
CONDUCTOR; 38.0-158.0
XO Reducing (Tubing); 68.1
HANGER; 36.1
Casing 1; 0.0
Annotation
Last Tag:
Depth (ftKB) End Date Annotation
Rev Reason: PULL WRP, CATCHER, GLV C/O
(PULL DV)
Last Mod By
pproven
End Date
7/21/2017
KUP PROD
KB-Grd (ft)
45.45
Rig Release Date
11/10/2001
Annotation
Last WO:
End Date
11/22/2014
1C-109L1
H2S (ppm)
25
Date
1/29/2017
...
TD
Act Btm (ftKB)
7,525.0
Well Attributes
Wellbore API/UWI
500292304760
Field Name
WEST SAK
Wellbore Status
PROD
Max Angle & MD
Incl (°)
98.10
MD (ftKB)
4,719.62
Baker Oil Tools
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SURFSURFSURFSURFSURFSURFURFSSSURSURFSURFSSURFSURFSUSURFURFSURFRFRURSSURSURSURFSSSSURFURFSURSURFURFSURFURRURFURFSURFSURFSURFSURSURFSURSURFURRRFRFSSURFSSURFSURSSURSSSSURFRRSSURFSURFRRSURRSSSSRURRSSUSSURFRSURSUUSSUSUSSURRRRRFACE 7ACE 7ACE 7ACE 7ACE 7ACE 7ACEACEEACE 7AACE 7ACEACE 7CE 7CACE 7ACEACE 7E777ACACE 7ACE 7CE 7CE 7ACE 7ACEACE 7CCACE 7ACECE 7AACE 7ACACECCACE 7CCE7ACEACE 77ACEACEACE 7ACACE7AAACE 7ACCECE 7AACCCCCACACE 7ACE 7AACECEACE 7AACCCE 7ACCAACACE 77AC7AA77CCEAACE 7CEEEE7 5/8 5/8 5 5/8 5/8 5/8 5/8 5 5/ 5 5/8 /8 5/8 5/8 8 8 5/8 5/8 5/8 5/8 5/8 / 5/8 5/8 5/8 5/8 5/8 5/8 8 5 5/8 5/8 5/8 / 5/8 / 8 8 88 5/8 5/8 5/8 /8 /8 5 5/8 88 5 5 5/8 5/8 5/8 8 8 5/88 5/8 5 / 5/8 5 5/8 /8 /8 5/8 5 8 8 88 5/8 /8 /8 8 5 8 5 5 5 5 88 5 /6.876.876.876.876.87876.8766.876.8766.876.876.8878776.876.87687686.86.8766.87878878876.87686876.876.8688787687687666.86.878.868878766686.8868776888.8776.8668787876.86.8868768687666.86.876.87666687666..87887 32.732.732.732.732.73232.732.732.73232.7323232.72777732.73323233232.73222322.732 77732.33332.722.722732 77732.73323232.732.732.7322227773322732.73332.72.73732.7332327722227277233222.77333323222..7 7,287287,287,287,28287,287,287,2877,2872,287,2828,288,28828728728777,28,282822828,2887,2882872877287,2877,2828287,287,287,288877287,2287,28,2877,282287,27,28828288228877287,28288287,2828728287,2282887,8,28877,287,22228228,,5.2 35.2 35.2 35.2 35.2 35.2 35.2 35.2 35.2 35552 35.255.2 35.2 3235.2 3235.2 35.2 3352 352 35.2 3525.223225.2 322352 33323235.2 35.2 35.2 323235.25.2 35.2 33322235.2 352 3225.2 32323352 3355.25522 3335522223235.2 3.2 35.252 3333555..2222 333,766,766766,7667666,766,76676,77766,766766,766,76666,7666,766,76676676766766766666,7667666766766766766766666666676667666766,7676766667666766666666,7666666766766666,,7 666,666666,7666,,.1 29.1 2912912912929.1 29121292991292912911129229.1 2299.1 291229292929292999.1 291129292229299929129129.1 291299929129929229999299999129999999299.1 21222929.70 L.70 L.70 L70 L700.70.70 LL.70 L770 L70 L70 L70 L0700L70 L707070770070700070L70 L7700L0700070000.70 L77770777777770070 LL..70 L.770700 L000..70 L.770 L-80 B-80 B-80 B80-80 B-80 B8080 B-80 B-8088-80 B8080 B0-80 B80 B0B0BB-888880 B80 B80 B-8080 B80 B0B00-800-80 B80 B0B80 B0B-80 B-80 B-80 B880880 B80 B800080 B0-80 B80 B80 B80 B8B80 B-80 B0B88-8080 B0B80B0BB8880 BBBB80 B--888800 B8880080 B80BBT&CT&CT&CT&CT&CT&CT&TT&CT&C&CT&C&CCT&C&CC&CT&CT&CT&CT&CT&&C&C&CT&C&CT&CC&C&CT&CTT&&&CCC&C&C&C&C&CT&TT&CCT&&&&C&&C&C&CC&&C&CC&C&&CCCC&&CCTCCCCTT&C&&C
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LINELINELINELINEINELINELINELINEINELINEELINELINELINELINEINENNLINENELINENLINELINNNLINLINEINENNNEEEEEEEEINNNEEEEENNLINENNNNNELNEELNELINEINENR 20R 20R 20R 20R 20RR 20R 20R 20R 20R 20R 20R 20 2 2R 20 20 2R 20R 20 0R 20 0 0RR 2R 20R 20R 2R 20R 20 20 20 20 20 0 0R 20R R 2 2 0 20 0R 2 2R 2 20R 20R R 20 2R 20RR 20 0 0R 20RR R 2 20 2 0R R 20R R R R 2R 2R R 20RR 2 2 2 0R 2 0R 20R 2 0 R R 2 0R 2 2 0 0R R 20R 2 01 4 01 4 01 4 01 4 0101 4 0101 4 0001 4 01 4 01 4 01 4 14 01 4 14 4 01 4 01 4 01 4 01 4 0100101 4 01 4 001 4 01 4 01 4 01101 4 001 4 000114 101 4 4 01 4 0001 4 4 0 4 4 4 4 01 4 4 4 01 4 4 0001 4 4 4 4 0 4 4 00 4 010 1/2 31/2 31/2 31/21/2 31/2 31/2 31/2 331/2 31/2 31/21/2 3/2/2 31/2 3231/2 32322323/2 31/2 3/2 3/2 311/2 31/2 3223331/2 31//2 31/2 31/2 32/2231/2 331/2 3/22233311122311//2 32//22 322/2 333/222/2 33/22/22 3/2/2 3/32/2 333331/2 33.96 796 7.96 796 796 7.96 79696 796 7996 796966.96 767.9696 796 79696 79996 796 7.96 7.969696 796 7796 799696 796 796 796 77996.96 796 7696 796 796 7677996 7696 79696 796796 799669666799697996.99696 796999667..9966 77,159,159,159,159,1595,15915151,15999591599,159,159159159159,15159595,1595915999,151559599,159,15915,151595991,15915995959559,15999955599599995999995959,,599955559,155,.1 11.1 11.1 111111.1 11.1 111111.1111111111111111.1 111111111111111111111111.1 1111111111111.1 11..1.111,670,670,670670,670,67066676706706,67070,670670,670670667067067067670,6706706706706700670,670670,6706767067066670670700,670670,67,670676666766676670,67706667670070,,7700600,6670.0 3,.0 3,.0 3.0 3,0303.0 3,0303,003030303.0 33303,0003030303303,03030303,3.0 3,303030.0 303,0300033.0 333030333.0 33303003003,0000 333,00 303,00333,,,,,,,753.753.75353757537753.537535337537537537753753.753.753537537533353753775533377553.35357535537537553535357535753.7575377555353375353775333.5533337533.112.112.112.112.12112.1121121121112.1121212.212.221112.1112.2211222112111212.12.112.12.2111212.1122.2211112222112112.112.222222212..22122 60 SL60 SL60 SL60 SL60 SL60 S60 SL060 S60 S660 S6060 S60 S60 SL060 SL60 S0S60 SL060 SL60 SS60 S60 SL60 SL60 SLSL60 S60 SL60060 SL0SSS60 SL60 SL60 S60 S0S60 S06060 SLS60 S6660 S60S60 SS60 SS60 SSSL660 S60 SLS60 S660 SS6060 SSS60 S60 SL6S60 SL6S066SS60SL660SSSL060 SLLHTHTHTHTHTHTHHHHTHHTHTHHTTHTHTHTHTTTTTTTHTHHHHTHHTHTHHT
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Set DSetSSSSeSet DSet DSet DSet DSetSet DSetSet DSet Det DSet DSet DStSSSet DSetSetSet DDSSet DSetSet DSSet DtSet DSSSet Deeet DettDSSSeeSet DeDSet DSeet DeeeSetSSet DeeeeDDDSSeeSeDDDStDepth eptepthtteptepthpthepthepthepteptepthepthepthpthepth epthepteptheepthpppthepthtthepthepthepth epthepppeppthpthhheeeeeeppptheeepeeeeephepthpeeppeeepepteeppttth pp …………………
7,127,127,127,12227,12171127,1222227,1277,127,12112127,1227,12712712277127,1227,1271,1227722,12227127727127227227,7 2,,,,6.0660066.0606666.0060000060066.06606606.006.06.06.06.06.0066.066.06.066.0000600066.06006.066666.06.060006.06666666006666060
Set DSet DSSSSSet DSet DSet DSetSet DSSet DSettSet DSet DDDDSet DSSetSetSet DtDSet DSeSeSet DSet DSet DDSet DSSetSet Deeet DeSettSettSSeeSeetDSetSet DeSet DSSeeSSeSet DSSeSeeet Deeet DDSSet DtDSet DSSSSeetDSeDepth epth epth tteptepthepth epteptepthepthepth epeeeptepppthpthppepththhhhepeeeepeepth pppepthepepepthhheepth epepppeppteptheheeeheepth ppppppteppptthp…………………………
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7,047,047,04707,040700407,040047,047,0477004007,000404700,047,04447040047070,0047,04470470407,0404404470477047,0444744707747,007,0700,,,6.0 36.0 36.0 360666.0 36060 36006.0 303036.0 33036.0 360 36.0 360 36606.0 36.0 36.0 336.0 3666060606.0 36.0 36.0 360 366.0 366.0 33000366.000 3036.0 366.0 336.0 3666.0 336.0 36336066666033600063,734734,734,7,734333734344,734,73473733473733333,7347337344,7343343443477473444733444344337347344747773,73777333,7333,,,,.9 7797797979997777.9 77.9 77977797799999997777977977999797797779779779777979777979997997779779797799979777799797779.21 J2222221 J21 J1121 J.21 JJ2212222221 J221 J211J21 J21 J221J.21 J.21 J11J2222.21 J221 J22222J221 JJ21 JJ22JJJJEET PET PET PET P PET PET PET EET PT PT T ET P P P PET PEET P P P P PET PET P PEE P PE PET P P P P P PEUMP 2UMP 2UMP 2UMP 2MP 2UMP 2UMP 2MP 2MPUMP 22MP 22MP 2UMP 2UMPUMP 2UMPPUMP 2UMP 22UMP 2MUMPUMP 2P2PUMP 2MP 22MP 2PUMP2UMP 22UUMUMP 2MMMM2MMMP 22MMMPPMPPUMP 22MUMP 2MMMM22U2UMMM2UUUU2U.84"8484884884".84"84"84"88488884884"8484"8884"484848484.84"84"""".8488484"""8844"".8488848884844884888888888888 AVA AVA AVA AVA AVA AVA AVA AV VA AVA AVA AVA AV V AVA AVA AVA AVA AVA AVA AVA A VA AVA AVAA AV AVA VVA A A A A AV VAV AVA AVAA AVA V AVA VAAA A AVAA A AV AV VA AVA A A A V AVA V V VAA A A A V V VA NO- NO- N N NO NO NO- O NO NO-O O NO O NO NO- N NO O- NO O O O NO NO N NO O NO NOO NOO N NO NO N OOO N O OOO- N NO N O O O NO NO- N N N NO O OOO N NO OO N O N O OOOGO GO GO GO GO GO GOO OO GO GO GOGO GGGO GOGGOGGO GOGO GOGO GO GO O GO GO OO O O GOGO GOGO GGOGOO O GOO GO GGO O O GGOO O GGGOGO O O GOO GGGOGGO O O
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RC JRC JRC JRC JRC RC JC RC JRC RC C C C RRRC JC JRC JRRRC RC JRC RC C C JRC C RC JRRC RC C C RRC JC CRC RRC RC RC JRC JRC RRRC JRRRC JRC JRC JRC C JC J JC J JRRC J JC C JET PET PET PET PET ET P P PEET PET PET PT T PT ET P P P P PE PET P PET PEEE PEEET P P PE PEUMP UMP UMP UMUMP UMP UUMP P UMP UMP MMP MP MP P P UMP UMMUMP MP UMP UMP UMP UMMP P MP UMUMMMMUMMP P MMUMMP P P P P MMMMMMUUUMMUUUMMUUUUUUU (9-A(9-A(9-A(9-A99(9 A(9-A(9-A(9-A(9-A(9-A(9((9-A(9-A(9-A99(999(9-A(9-A9-A(9-A(9-A99-A999-A(9-A(9-A9(9-A(9-A(9(9-A9(9-A(9-A(9-A((9-AA9AA(999(99 AAA99(9(9(9-(99-A(9-A(9 AAA99999AAA((( R RAT RAT RAT RA R A RAT RAT R RAT AT RAT R RAT RA RA R A RA AT RATT R RA RA A A RAT RAT RAT RA AT A R A RA R A R R R R A A A R A A R R R AT AAA R RA RA AA AT RA R AIO),IO)O)OOIO),OO),OO)IO),I )O)IIO),OO)O)O),O),OOOO)O)IOOO)OO)OOO)OO)OOO)OOOO)O),)O)O))OIOO))OOOOOO),)O)IOO))))) & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & & &
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9A-R9A-R9A-R99A-R9A-R9AA9A-R9A-R9A-R9A-R9A-RA-R9A-R999A-R9A-R9A9A9AAR9A-R9A-R9A-RAR99A9A-RARA-RR9A-RR9A9A-R99A-R9A-RR9A R9A9A-R9A-R9A-R99A9A-RA9999A9A-R999A9AA-R9A-RRR9-R9AAA9A R99A9A9A R99R9Aatioatiooatioatioatiatioatiotiioititioatioatioaatioatiotiotiotiooatioatioaatioaattatioatiooatioaatioatiooatioatioatioaoootioatioaoaaioaaaooaaatooooaaooaaaatoo PH-PH-PH-PPH-HPHPH-PH-PHPHPHPH-PPPPPPPPPPPPHHHPP----
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7,277,277,27277,2727,272722222227,27,277,72727,27272727,277,2777,222,2777,2777,277722777,272772227277722277227,27272777,27,2,27,,,3.0 13.03.0 13.03.033033.0 1000103.0 1101300013.03.0 13303.00003.0 133.0 133.033.0 10003.03.0 113303.00.003.0 103.033333003.33333 0333303.00 1,6711,67,676661,61,67671,671,671,676116,6166761,671,6716766666771,6716767667176667,6767666666,6666716,6776766767671666167,,,,0.0 300 30030.0 30030300.0 30.0 30.0 30.0 33033000 30.0 303030.00000030030.0 330.0 330.0 300.0 300.0 300303300.0 300.0 3330.0 30.0 3.00 30.0 30003300.0 330.00 33003000.0 33000.0 33300,765765,76566,765,766,765,76565,76576576566576566,765,7765767667656576576665,765766567656576565565765765765676566766767665577655766557576566655,5,,,,.3 3,3333333,.3 3.3 3,33,33333,33333,33333333333333333333333333333333333333333.3.3 333333333,3333333,333333333333,33333333,,,,753.75753.753.537533337757537537535353757755537537537537537537755335353553753775353553375755355753553.5353375755353.5757555353375337555333755353 1WS 1WS 1WS 1WS WS 1WS 1WS WS WS WS 1WS WS 1WS 1WS S S WWS WS 11WS WS WS WWS S WS 1WS 1W1WS WS WS S S WS 1WS 1WS 1WS WS WWWWS S WS WWS WS WS WS WS S S 1 WS WS WS W1WWS WS WS WWS WWS WS W1WS D, D, 1D, 1D, 1D, 1D, 1 1DD D D D, D, 1D, D, D D D D D, 1 1 1D D D 1 1, 1D D D, 1D D D, D D D D D D , D, 1D , 1, C-13C-13C-13C-13C-13C13C13CC33C-13C-13C-13C-13C-13133CCCC-133C-13CC-13C-13C13C-1313C-1333CCCCC-13C-1133C-1313C-13CC-13C13C-13C-13333C-133-C-13C3CCCCC3313335125 12/5 12/5 12/5 12/5151251212/22512555 12/12/25125 12/5 12/5 12/511222512512/5 12/5 12/225 12/25 12//5 12/515 12/2/2/25 12/55512/5125125552522/5555122225 12/2555252/5555 2 20/220/220/220220/220/220/220/220/2020/20/2/220/220/220/20/22020/220/222220/0000/20/20/220/220/220/2220/220/2220/200//0/22220/220/20220/00/0/222020/20/220/20/220/2220/220/222//20/220//20/220/222/220/20/0/00 2001 9001 90001 901 9001 9001 90001 9001 91001 901 9001 999001 9001001 901 90101 9001 900001 9001 90001 901 9001 9001 9001 999001 900001 9001 9001 9101 9101 999001 9001 90001 901 999001 909099999009909000000999009.0 S9.0 S9990 S90 S9.0 S9.0 S9000S09.0 S90 S9.0 SS9.0 SS9.0 S90 S99.0 S909.090 S9.0 S9.0 S999.0 S000SS0SS90 S9.0 S90S09.0 SSSS9.0 S90S9.09.0 SS90 S0.0 S00SS00S90 SS9.0 SS9.090 S9SS9090 S9999.0 S9S9.0 S99.00 S00S99.SLOTSLOTSLOTSLOTSOTSOTOTSOLOLOTSLOTSLOTSOTSSSOTSSSOTSLOTSLOTSOOTSOLOTSSSOTSLOTSOOOTSOTSOOTSOOTSSOTSOOTSOTSOSTSSSOTSOSSSLOTSOTSOTSOTSSOSSSSSSLOOOOOOOSOOSSOOOSSSSS PerfPerfPerfPerfPPPerfrferffrfPerferffPerfPPerffPPerPerfPerfPePerfPerfeerfePerfrrrferferfPerfPererfeerfrrfferferfPerPeeerferfPPerferfeerfePPerPerfeerePerfeees s ths th s ths ths ths ths ts ts ths th ts t ts ts th hs s ths ts ths ths s ts t t ts ths ths ths s s ts t t h hs th h hs s s s s s s s s s t ts s s ts s h ru su sru sru s ru sru sru ru sru ru sru s su s sru sru rrru su u u u s su s s sru sru s sru sru u su s su su s s s s s s su s su u s s s su u u u s s su u slottlotlottlottlottlottllottttlottooolotttttttttttooooottottoottttttottlottooottloooottottttooololottoooooottloootttted led led ed led led ed ed led led led ld ed ed led ed eed d d ed ed eeed ed d ed d ed d eed ee d d eeeed ed ed ld d eeed d eeed d ld d d eed d d inerinerineinerineinerineineriiinnnennereerernenneinernennnereenenerrrnenneneeeereereeereereeeeeeeeinr
1C-13C-131C-131C-131C-13CC1C-13C-13CC131C-131C-133C-133-131C-131C-131C-13C1C-13CCC-13CCC13-133C-131C-13CC-13C-1313C-1311C-13C-13CC1331C-13CCC-1313333CC-1333CC33333CCC3335, 125, 125, 125, 125, 125125, 125, 125, 1215, 125, 125, 1225, 1225125125125,, 11125, 1225, 125, 122225125, 125,5, 121115, 125, 155, 12552551255125, 1255225, 12512225552255,/14/214/2/14/2/14/2/14///14/14/24/14/14///14/24/214/2/14/22/14/2//14/214/2/14/244///224/24/2/14/22/14/2/1414/24/244/222/14/2/14/2/14/1144/24/2/21/144/22/14444/4/22/4 2//24422/1 22/022 7022 702022 7022 7022 7002022 7022 7022222 702222722 7022 70200022 70022 722022 70222272722 777022 702022 72 727022022 702202202222 70220227022 7702222 722022 72222222220222202:56:5:56:5:56:5:56:5:56556:556:556:556:56566656:5:56:56:55656 556:566656:556:556:556:556:56566:556::56:5655556:5565656656::555::565556:55656::56:5556:556:56:5666:555:56:5556:56556555::66:56565559 AM9 AM9 AM9 AM99 AM9 AM99 AM9AA9AM9AM9 AM9 AM99A9AM9AM9 AM9 AM9AM9 AM9AM99AMAMM9AM9A9AM99A9AMAM9AMM9AM9AAM9 AMMAM9AMM9AM9AM9999 AMM999AMMAMAMAAA9 AMMMM99AMAA99A
VertiVeVVVertiVertiVVeVertiVertVVeVertitVertiiVertVeVertVrtrtiVertVerVVVertieVerterVerrttVeVVeVertieertererVerrtrtVertVerttiVertVerVVeVertertieVertiertrtertVerteVertVeeiVVeeeVeVtVVerterteVVeeeerrtitcal scal slcal sllcal scal salcal scacal scal scal scal sallscal sccccccal saal saacal slscal scal ssal sccal sccal scaaaaacalssscal scccalscal scal scaal scasssascal sccacccalasccal ssscaalsschemachemahhhemchemahememachemachemachemchemahemachemaemechemachemchemaemaachemachemachemachemachemachemachemhhchemaemahemaeeememmmchemaemaaemaachemacccchhchemaemamchemchemaachemaaaccchhechemaemaaeeeaccheeeeeachemachemaaachecceeacaachehemematic (iitic (c(tic (tii ((tic (tic (tic (itic (tic tic (ticc ((tic (tictttiic (cctic (c (tic (tic (ttictticcccc(tic (ticcc (ticcticticc(cticcccc (cc actuaactuactutactuaactuaactuaactuaactuactuaactuaactuactuaactuaactuaactuactuaactuaaactuactuaaacccaccccactuatuatuauauuuaaauaactuccctactuatactuaactuactuactuaaacuactuaactuaactacccacuactuaaacctuaauactaaactuaactuactuaal)ll)ll)))l)l)))l))))))))l)))))))))ll))))))))
LINERINERLINERLINEELINENERLINERINERLLINLINERLINERINERNELINERNNLINERNERNERRINERINERNNERNERLINERRNRRNERLINERRNINERNERNNERRRNNNRRRLINENNLLNRRRRLLNR 200120012001020012001200200200122002001200122200200020020010012001202002000000200200120012002001000010020002001200120000200120220002001112022002020000000002221; 7,1; 7,1;7; 7,17; 7,77,1;717,177717,17,177;71717; 7,11; 7,77 117; 7,17; 77; 777; 7,;;;7 1;,;,,59.1-59.159.159.15159.1-59.1-59.1-5919959.191.159.5595959595999.1-159.19.159 159.159.1559559 1155955159555919-99 -5559955595999995 11,6711,1,6711,6711,676611,671671,6711,6711,6711,671,6766,67,67611 677671111,671666611 677716666711 671,1 67676711,67111,67166766666777667767666667,66 0.0000.00.00.000.00.00000000.0000.00.00000.0000.0000.000.000000000.000.0000.00.00000000000..000.0..0
FISH;FISH;FISH;FISHFISH;FISFISH;FISH;SH;FISHFISHFISHFISHFISISH;SSSSFISH;ISHSH;FISHFISHFISFISSSFISH;FFISSSH;SSSSSHS;F SFISHSISH;SSH;SSSSSSSHH;11,511,511,5111 51,51,515,55511 5111,511,511 55,511,511,51,55511,511,51115511,5111,5555555555555551,544.044.044.044.04044.044.44.044 04444 044 0040444.044.0444.044 044.044 00440044.000404044 044440000.0440444.044.044444.0444444000044.044000.0.44.
SLOTSSLOTSSLOTSSSSLOTSSLOTSSLOTSOTSLOTSSLOTSSLOTSSLOTSSLOTSSSSLOSLOTSSLOTSSLOSLOTSSLOTSSLOTSOTSSLOOTSSLOTSOSLOTSTSSLOTSTSLOTSTTSSLOTSSSSSLOOTSOOSLOTSTSSSSOSLOTSOOSSLOTSSLOOOOOTSSLOTSSLOTSOTSSSLOTSSSSSSSSSSSSLOTSOSLOTSSSLOTSOSSLOTSSLSLOTSSSSOOSL; 7,2; 77,272; 7,272;7277,2777727,2; 7,2;7,27,277,27,27727222227,2;7,22;7,222,227,27,27; 7,27,227,7 22;7 2227,2222; 7,222; 7,2227,,7,2,2;;;,,73.0-73.0-73.073.073 07373.073 073 0-773.073 03073.0-73 0773.0-73 0-73.0-773737373.03.0-73.03073.0073.0-73.07773 0373.03000073 0730073.073030073.0373 0333373700-7373.0330033.0.0073.03 11,6711,6711,6711,6711 6711,6711,6711 671611,67676711 611,6716111,6711,67661,67611,6611,6711,671,67711 611 6116611 6677111666771111,6677666676776766,671166,,,0.00.00.0000.000.00000.00.0000.000.0000.00.0000.000.0000.000000000000000.0000000.00.0000000000.0.00000
SURFASURFASURSURFSURFASURFASURFARSURFFASURFASURFASURFASURFASSURFASURFASURFASURFASSSURFAURFASURFARFASURSURFASURFAFASURSSURFASSURFASRRRRFAFSURFSURFAASURSURFAFRFASURFASSURFAFAARFAARFASURFASURRASRFASSUURSURRASURFASSSURRFARSURFAASSSURFAUURRASSSRAASRCE; 3CE; 3CE; 3CECE; 3CE; 3E; 3CECE; 333CCCE; 3CCE; 3CECE; 3CE; 3CE; 3EE; 3CE; 3333CCCCE; 3CCE; 3CE; 3CE; 33CE; 3CE; 33; 3CE; 3CE; 3; 33CEC3CEE;3CE; 33CE; 3CCE; 3CE; 3CCCE;CE; 3CCC33CE; 3CCC333C32.7-72.7277222.7-772.7-72.7-77777272272.7-727772.7-77-777-772.7-72222.7-7227-72.7-72.7-7.7-727772.7-77772.7-772772.77 7227277222.77-7-77-727-77-7--722.7 72.2.7222.2 ,285.285,285.285285.22858828552855,285.2285,285285285.2858,285.285,285.8858528555285285.2852285.828285.8285,285.5285.2855822828888588285558888285.52228585225228885555.,,2222222222222222222222222222222222222
SCAB SCABSCABSCABSCACSCABSCABCABSCABSCASSCABSSCACAACABSCABSCABSCABSCSCABSCASCABSCSCABSCASCABSCABBCABSCASCSCSCABSCABSCASCABSCABBSCASCABAASCABBSCASCASCASCABABCSCABBBSSABSSCAAABBSSSCACSCCSCASSCABSCCCBSABSC LINERLINERNRNENLINERNERINERLINELINERRLINENNNENELINERLINELINERINERINERLINERNERLINERELINERRRNNERNERRRLINERNERNERNRNNEERNNENNRNNRRNERRLNERLEERLER 201320201320101301201322201320201320132013220132013202013202013020120130132013201332013320132022022013001120133201322010130000132013201332322202000130030013203303333; 29.29.29.9222992229;29;29299929;2929.229292; 229.99; 29.29992999222;29929.929; 22; 2922929929222999; 29.299;2299.;1-111111-111111-111-1----11
7,1887,1887,18871881887,1887,1888718888771888888888718887,188771888887,1887,1888887,1887,1887,187,18888771188188888888718888878878,18888887888877188778888887,88888888,.0.0.000000.0.000.00000000000000000.00000
SEAL SEAL SEALEALSEALSEAL SEAL SEASSEALSSEALEALSESEALEASEAAALSEALSSEASEASEASESSEASEASSEASSEASESEALSSEASEASEASSASSSSEASEALSSSASEAASSSEAAAALSSSEASEASEAALLSEAE ASSY;ASSYASSYASSYASSYASSY;AAASSSSYASSY;ASSY;SSSSSSSASSY;SASSYSASSY;Y;ASSYAAASSYASSYASSY;SSSSYSSSYSSYSYSY;YASSASSY;SSASSSSYSSASSASSYASSYASSYSYAASSYSSSYYYYAASSSSSSSAAASSASSYYYAAASSASSSSSSSSASSSSASSA;;7,1077107107,10717,100107,107107710771017,100071007,1777,101007,10710100,1071011107,1077771077,1007,107,10000010,,77.97.97797.9999977977.979999779797.997999977977.97.997.97.9997779999979997999..9
LOCATLOCATOLOCACOCALOCATCOCACATLOCALOCATOCOCALOCATLOCATOCAOCOCOCALOCATOCAAATOCATLOCATOCAOOCAOCOCOCCCATOCOCAAOCATCATOOCOCACAAOCATOCLOCACCAOCAAOCCAAOOCAAACCACAOALOOCOOOCCCAALLOCCAOR; 7OOR; 7OR; 7OR; 7ROR; 7OR; 7OROR; 7OR; 7OOOR;RORR; 7; 7OR; 7R; 7OR 7OROR;OR; 7OROR; 7RROR; 77OR; 7OR; 7R; 7OROR; 7OR;7OO;;7OOR; 7OR; 7ROROROR; 7ORRRR; 7ORRR7OOOR7777OOOR;OR;7OOROOORR;;,107.107107.00711070007.071070770707,1077,1071,107000107,1077,101007.7711071000107710077,107.7000000.0107.007,,11111111111111111
GAUGEGAUGGAUGEGAUGEGAUGGAUGEGGGAUGEGAUGGAUGEAUGEGAUGEUGAUGEGGAUGEGEGGAGAUGGAUGEGAUGEGAUGEGAUGEGAUGEAUGEAGAGAUGEGAUGEGAUGEGGAUGGAUGGAUGUGEUGGAUGEGAUGEGAUGEGAGGAAGAGAUGEUGUGGAUGAUGGGAUGEAGGAUGGGAUGGGAUAGGEEGAGAUGGGGAUGAUGGAGGAUGGAUGAUGGGUUGGEAU; 7,07,0; 7,077; 7,0; 7,077,077,0; 7,;7,0;7,0; 7,07,07,07;700; 7,07,0; 770770070000;7,07,07,7,00;707007007707700; 7,00077000;;97.497.4749797.47.497.497.497.4797 477.497997.4997.497 49997 497.49797497 4999997 49797.499797 4997 497.4797 44497.497 497.497.44949747447.499777447444999..4
JET PJET PEJET PTTPJET PJET PJET PJET PJET PEET PET PTPTPPPPJET PJET PJETPPETJET PJET PPPPPPJJJJJJETJJUMP; UMP;UMP;MUMPUMP;MPUUMUMPUMPMUMPUMP;UMP;MPMPUMPUMPPUMMMMPPMMUMP;MMP;UMMPMMMUMPMMPMMMPPMMMMMPPUMP;UMMUUUMP;M ;UM ;;7,0467,046704607,0464704670467,0467,0467,04677,0460704670704646670467,0460460467,046467,04670400460460464467,077000464040467,0467,04670460464646647,04667046466667446004600067,0460006667,046,,.0.0.000000.0.00000000000000.000000000.00000000..00000.0.00
SLEEVSLEEVSLEESSLEEVSLEEVSLEEVLSLEESLEEVESLEEVELEEVLEEEVSLEEVVVSSSLEEVSSLEEVSLSLEEVSSLEEVSLEEVSLEEESLEEVESLEEVSLEEVEEVSLEEVVVSSSLESSVVVSLEEVSLEEVSSVVSLEEVSLEEVSEEVVSLEEVSLSLEESSSVSSSSVVSSSSSLEEVSSVE (OPE (OPE (OPE (OEE (OPEE (OPE(OP(OP(OPE (OPOPPOPE (OPE (OPE(OPE(OPE(OPEE (OP(((OO(OOPOOPE(OPOPPE(OPE (OP(O(OO(OPP(OPOO((OPE(OP(OOEEOOOPOPOOPOOO((O(OOO((((EN 10EN 10EN 10EN 10EN 10EN 10EN 10NEN 10N10EN 10EN 10EN 10EEN 1EN 1EN 10NEN 10EN 100EN 10N100EN 10EN 10ENN11000N100N10EN 10N10NEN111ENNEN 10N1000ENN10N0NNN1000E0EEN10/10/2/10/2/10/21/10/20/2/10/2/10/2/10/2/10/2/1/10/2/10/200/20/210/200/2/10/2/10//10/20/2/2/10/2/10/2/110/210/20/1000/20//22/22/1/10/2/10///10/10//10/2//2220//22/2200022/000/2210/21021); 1);1)1);111))))111);))11););111)););));));;));;1);););));))
7,0467,0467,0467,0467,04607047,0467,0467046700044667,077,047,046046,047,0460460466670467,04667,0467,046004644046704670466046040467,04666770446677,0466667,70440667,66666,,.888.88.888888.88888888888888888888888.88888
SLIP SSLIPSLIPSLIPLIPSLIPSLIPLISLIPPSLIPSSLIPSLIPSSSLIPSLIPSLIPLIPSLIPSLSSSSLIPLSLPPPSLIPSSLIPSPSSSSLIPSLIPPPSSSSSSSLSSSSSSSLLSSLLSSL STOP;STOSTOPSTOPSTOP;STOPSTOP;TSTOPSTOPPTPSTOP;SSTOP;STOP;STOSTOSTOPSTOP;STSTOSTSTOP;STOPSTOPSTOOOSTOOPPSTOPSSSTOTTTOOOSTOOPPPPSTOPSOPSSOSTOOOOPSSOOSTOP;PSTOP;STOP;PSTOPSSSSOSSSSSOP;S OTO ;;7,047,0477,047,047,047,0447,04077047,047,070470407,047,047,04047,77,0047,0707,00400477,07,00704044447,0447,044470747007,7,047,,5.05.05.05.05.05.055055.05.055.05.5.005005.0505005.005505.05.05055055.000005550055.0005.055.05.0555.005..0
NIPPLNIPPLNIPPLNIPPLNIPPNIPPLIPPLPPPNIPPLNIPPLNIPPNNIPNIPPLNIPPPNIPPLNNNNNIPPIPPLPPPPNIPPPPPNIPPLNNIPPPPPPPPNNIPNNIPPPPPPNNNIPPPPPNNNPPNNNNIPPLLLNIPPLNNIIPPLE; 51E; 5E5EE; 5155; 5E; 51E; 5E; 51E; 51E; 5E; 51E; 51E551115551511555111;555515555; 5E; 515E; 55E; 55555;6.4646.466.46.46.46.446.46466466.46646646.4666446.4664446466.4646.4666666446.4446.46.44466646666.4.6 4
CONDUCONDUCONDCONDUCONDCCONCONDCONDCONDUCONDCOCONDUOCONDUNDUNDCONDUCONDUONDONDDUUUCONCONDCOCOCOONDCONDUNONDDCONDUCONDUONOONOCONDNDCONDCCONDUCONDCONUONDUOCONDUNCCCCONDUNCOONNDNCNDUUCONDCONDUCONDUCOCOONDUONNDUDUCCONDUCONDCONDCOOONDUCCONDUUUUCTOR;CTORCCTORCTOR;CTORCTOR;CTOR;CTOR;TTORTCTOROROROORCTOR;RORORRCCTORCTORCTORCTORCTORCCTOCTOCTORTORTOR;OOOORRCCTORCCTOROR;ORCTORCTOR;CTOR;RCCTORCCOCTOR;;CCTORR;;RRRRRRCCTOOOR;C OOOR;ORRCTOCOOORRCCTOO;;35.035.00335 035.033335.35.05.0355035.0035.0335.0335 0353355535.05.05000035.03535 035.035535.05035.0035 0353555.035.3555535.03500535 03335.035.0335.0300335.053335505.03335355.00033300-117.117.1111-117117-11771171117.11117.7777-117.11177-117.111711117117.1117711111177------117.7-117.-11717.1 0000000000000000000000000000000000000000000000000000
HANGEHANGHANGEANGHANGEHANGHANGEANGANGEHANGENGEANGEHANGEHANGHANGEHANGEAHANGANANGNGEHANGGGANGEANGHANGEHANGEANGNGEGGANGANGEEEANGEEGANGNGANGANGAAANGNNNGGHAAGGANGEGHANGHANGEANANGEANGAAANGGANGENANGGGGGANGR; 25; 252R; 25R25R25R; 25R; 25R; 25R; 25R; 25R; 25RR25R; 25R; 2555R; 25R; 25RR; 25R; 25R; 2222; 2555R; 25R; 25R; 22225R; 25;255R;R 222RRRR; 255RR; 2R22555R22R5R;R; 25225555RRR; 252255255.5555.555.5.5555555555555.55555555.555555.55555555
KUKKUKUKKKUKKUUKUKUKKUKUKUKUUKUKKKKKUKKUKUKKKUKKUKKKKKUKUKKKKKUKKKKUKUKKUUKUKKUUKKUUKUKUUKUUUUKUKKUUUKUUUP PPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPP PPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPROROROOOOORORORROROROROROROROOOOROORORORORROROOROOROOROOROROOROOORRROOROOOORORROOOROOOOORROOROORRORROROOOROORRRRORRRORROROOOROROOORRROOOROOOROOOOODDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDD
KB-GrKB-GrKBKB-GrKB-GrKB-GrKKB-GrKB-GB-GB-GBB-GB-KB-GrB-GGrKB-GrKB-GrKB-GrKBKKB-GrKBGGGGKB-GrGKB GrKBGrKB-GGKBKKBGGKB-GBGGKBKGGKB-GrKB-GrGrrrKB-GrKKGGB-GKBGrKBGKBGGKKGGKKKBGrKKKBGd (ftd (ftd (ftd (ftd (ftd ((fffd (ftd(fd (ftd(ftd(ffft(ftd (ftd (ft(ftd (ftd (ftd (ftdddd((d(ffd (ftfttd (dddd (d (fftd (ftd((fftfdddd(ddd (fttddt(((())))))))))))))))))))))))))))
34.934.9434.934.9334.934.934.934.94934.934 9334 934 93334.9434.994.934 934.9499334.9349934 9934.9334 934.934 934.934.9434.9934.9499344934434.99499994449999434.99334444.344333 9939999339399999999999999999999999999999999999999999999999999999
RR DaRR DRR DRR DaRR DRR DaRR DaRRRDRRR DaRR DaDDRR DaRR DaRR DaRRR DRRRR DaRDaRR DaDRR DDaRR DaRRRDDRR DRRR DaRR DaRRRDDRR DaRR DaRR DRRDDRDaRR DaaaR DaRR DaDRDRDaRR DaRRRRR DaRR DaRRRRDaaaRRRR DaRRRDDaaaRRR DaaRRRaatetetttetettettetetteteeeteeteteetteeeeeeeeeeeeeeeteeeeteeee
12/212/212/212/212/22/222/212/212/212/22/22/2122/22/2/2/22/22222/22/2212/22/2222/212/2/22/2212/22/2/212//2/211212/2112/22/2/12/212/222/212/222/2122//2/2/222/22/0/200/200/200/200/20200/200/200/200/2000/200/200/200/200/20/0/2200/202200/20/200/20/2000/2000/20/20/20/202/200/2020002000/20/200/200/200/200/20/00/20/200/2200/20/2/0220/2022202000/0/220/20000222000000/20000000000000000000000000000000000000000000000000000000000
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1C1C1CC1CCCC1C1C1CCCC1CCCC1CCCC1CCC1CCC1C1CCC1C11CCCC11C1CCC1C1C1CCCC1C111CC1CC111CCCCCCCCCCCCCCCCCCCCCCCCCCC1C-1-11-1111-1111111111111111111-11--1135333535353353533535535333535553533535535353335353333535533535353535535333533535335535353553553533555333555355335353555553335535535335355353333
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TDTDDTDTDTTTDTDTTDDDDDDTTTDTDTDTTDTDDDDDTDTDTDDTTTTTTTTDTDTDTDTTTDDDDDDDTTDDDDDTDTDDDDTDDDDDDDDDDDDDDDDDDDDDDDDDDDTDTDTDTDTDDD
Act BAAct BAct BAAct BAct BAct BAct BBBAct BAAct BAct BAAct Bt BtAct BBBAct BAct BAct BBct BAAct BAct BAct BtBActAct Bct BAct BBAAct BAct BctBBBBtBActcccct BtBct BAAccBBAAcAccctBBBAAAAcBBActBBct BActBActcAActActccctBcBtm (ftm (ftm (tm (ftm (fff(ftm (ftm (ft(ftm (fm(f(m (fm (fm(fm(ftm (ftm (ft(tm (f(ftm (fftm (ftm (tm (ftm (ftm (ftmtm (fttmm (fmm (mtm (tm (f((f(ftm (fftm (fmmmmfttm (f(ffffmtm (fm (ttt (fmftKB)tKBtKB)KKBKtKBtKB)BBBB)tKB)tKtKB)tKB)tKBtKBKKBtKBKB)BB)B))tKB)ttKB)ttKBKKKKtKB)tKB)BtKB)B)ttKB)KKBKBBBtKBttKB)tKBtKKtKB)tKKBttB)BBBKBtKB)tKB)BBBBKKKBBtKB)tttKKtKBKKB)))
11,711,7111 77,71,7111,711,71,711711,71711,711,1,711,711 77,711,7111,7,11,7711,71111117711 7111,7,7117777777,,7,777711,,,00.000.00.000.0000.0000000.000.0000.000.000 0000.0000.000.00000.0000000.00000 000.00000.00.000.000.000.00.000000.000.00000000.000 00.00000000.000.000000.00.0000.00 0000.00.000000000000000.0000.00000000.00.0000000000.0
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IIlIIncl InInclnlclIInclInlclclIncInclInclncnncnncnccccnccccncnccncncccncIccccnclcncInccnclnclcl (°)(((°(°)(°(°)(°)°)°)°°)(°))(°)(°(°)(°(°)°°))(((°)°(°)(°)(°)(°)(°)°)°°(°)(((°)°((°(°(°)())))))(())(())
93.693.693.6993.693 693.63693.6993393.63.636663.693 693.693 693.693.69393.33.63.63.66666993999393 63933.6693 66999393.63.693.63.6663.6693.939393 666993393.6693.693.693.9333 6993 66993.699393.6933666933.63.666996663.633333333333333333333333333333333333333333333333333
MDMD (fMD (fMD (fMD (fMD (MD (MDD (fD(DMD (fMD (f(ffMD (MD (fMD (fMMD (MMD (fMD (fMDD(MD (fD(fMD (fMD (fMD (fMMD (fMD (MD (fMD (fMDDMD ((fMD (fMD (fMD (MD (D(fDMDMD (fMDMD (ffMD (ffMDDMD (fMD (fDMD (fff(fMDMMMD (fMMMMDMMDD (MMMD (M ((tKB)tKB)tKBtKB)KB)KBKBtKB)KtKB)BtKBtKB))tKtKB)ttKB)tKKKB)KKB)KBKtKBKB)KB)tKB)))tKB)tKBtKBttKB)tKB)KtKtKBtKB)tKB)KB)KB)KB)BtKBtKttKB)KB)tKB)KKB)BBKB)ttKBtKB)BBB)KtKB)BKBBKKB)KBtBBtKKttKtKKB
8,038,038,038,0388,03,0388808,038,038,038,038,038003038003380338,038038,038,038,0380308,030038,038,038,038,088,0300338038803003338,03800,08,038,8,038,0388,038,038,00338,038808,08,038,03800,03033388,030008,033,003,0388,03803338,,00 7.607.6076777777.607.607.607.606077.607.67.607.66760767.607.606660007.677.60767607.607.666607.660607.6076007.6076060606060760776060.607.60067607.607.667.607.6067.6007.607.60767.607.6070667766607.670766000.6600
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Set DSet DSet DSet DSSSSet DSet DSet DSetSSet DStSetettSet Det DSet DSSetSet DStDet DSSetSet DSet DSet DDDSSet DSSeSeteeSet DDSet DSet DeSetDtet DSet DSet Det DeSeSet Dttet DSet DSSeeet DDSSet DSeSet DeeeSetSeetSSSeeeDDSSSetDSDSeet DDDepth eptepthpthepthteptepthepthtteptheptthepthepthepteeptheptheeeepppptepthepthheptheepepepppepeptheptheeeptepppppthptptptheephheeptepepepteptheepteeepppeepptththhp (ftKB(ftKB(ftKB(ftKBftKB(ftKB(ftKB(ftKB(ftKB(ftKBftKB(ftKB((ftKBfftKB(ftftKtKB(ftKBKKB(ftKBKBtK(ftKBBB(ftKB(ftKBftKBftKB(ftftKtK(ftKB(ftKBKKK(ftKBf(ftKBftK(ftKKB(ftKB(ffftftftftKKBB(ftKBftKKBKBBBBKKKB(ftKBKBttK(ftKBBBffKKB(())))))))))))))))))))))))))))
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Set Detet DeSetSet DSet DSet Det DSetSSeSSet DDSet DSet DSet DSet DSet DSeStDtSet DSet Det DSeSetSet DDSet DDDSSet DetDtDDSeSeSet DetSeSet DSSet DeteSeSeSet DSSeetSet DSeSeSeeSet DSeeeDeeDSSeSeetDDDSeetDSSet Det Dt DtDDDepthepthpthhtepthheptheptpteptepthepthepthptheptheepeptepppthpptepthpthheptheepthepthptpeppttepthheptepeeptheepthpptheeeptepptptpthhpthepteeepeeeeeeeeepeepeteepeeeptheppppptth (TVD)((TVD)(TVDTVD)(TVD)(TVD)TV(TVD)VD(TVD)(TVTVVVVDVVD)VD(TVDVD))((TVD)(TVDTVD)(TV(TVD)(TVD)D(TVDD)VD)(TVD)((TVD)(TVDTTVDTTTV(TVD)(TV(TVD(TVD)(TVVVD)VVVVDD)(TVD(TVD)D))VVD)VD)VV(TVDVVD)DDDDVDTTTVDVVDDDDD))))((() …………………………………
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PRODPRPRODPPRODPPRODRRRORORODPRODPRODDDODDPRODPRORODPRODPRODPRODPROPRODPROPRODPRODPRODRODRRRODPRODODPROOROODDPRODPRODPRPRODPROPPRPRORRODRODDDROROPRODRODPPROROROOPRODODPPPPRRRORODPRODPRODRPRRODRROOPRODDODODDRROOOODUCTIUCTUCUCUCTTCTUCTTUCTTIUCTUUCTIUCTIIUCTICCUCCTCCUCUCCTCTUCTCTCTCCCCTUCTICCUCCTCTIUCUCCCUCCUCUUCCUCCUUCUUUUUCCCCCCUUUUCUUCCUUUCTCCCCTIONONOOOONONOONNOONOONNNOONOOOOONONNNOOOONOOONONOOONONONONOOONNNNOONNNONNNOONONONNNNNOONNONOONNOOONNOON
OD (iOD (iOOD (iOD (iOD DOD (iDD(OD (iOD (iOD (iiOD (OD (iOOD (OOOOOD (OOD (iD(iD(DD (iOD (iOOOODODDDD(D (D(iiOD (DD (OD (ODOD (OD (OD (iOD(iDD (iOD ((OD (iOOOOOOD(OOD (ODDODODOOD (iD(i((((n)n)))n)n)n)n))n)))))n)n)nnnn)n)n)nnn)nn))nn)n)n)nn)n))nn)))))))
7 5/7 7 7 5/7 7 7 7 5/7 5/ 57 5/7 57 57 5/7 5/7 5/7 5/7 5/7 5/ 5 /7 5/7 5/7 5/7 5/7 5/7 5/7 7 5 5/ 5/7 5 /7 5/7 5/7 5/7 5/ 5 5 5 / /7 5/7 7 5/ 57 5 5 / /7 7 5 5 5 5 5 57 5/7 7 5/ 5 5 /7 5/ 5 5 5/ / 5 /7 5 5 5/7 57 7 5/ 5 5/8888888888888888888888888888888888888888888888888888888888888
IIDIID (iDDDDD (D(((i(iiiID (iID (iDD (DD ((D(ID (iD(iDDD (D((iiDDDD(D ((iDDD (i(DD (ID (i(D (D ((D(DDDDDD(DDDIIDDD ((i((n)n)n))))n))n))n)nnnn)n)n)nn)nn))nnnn))n))n)))nnn))))))))
6.876.876.87668786.86.886.8776876.8766.86.876.8768686.8768776.86868686.876866.878876.878886.876.8776686687888877766.886.876688776.866868786.876.88766.86.868887768776.86878686678666..7666887766.8788
TTToT(TTop (Top ((Top (Top (Top (Top (op (op (p(Top (TTTTTop (p ((Topop (oopop (oppppop (op (Toopoop (op (pop (op (op (Top (oTopooooTop (p (pp (pop (o (opoopooop (oppp ((opp (((ftKB)ftKB)ftKBfftKB)ftKBfftKB)tKBKB)KKBKKKBftKKBBBBKB)ftKB)KB)ftKB)ftKB)fftKB)ftKfttKB)tKBtKtKB)ftKBB)ftKBftKBftKBfttKftKB)KB)BBKB)BKBftKB)))fftKftKtKB)tKB)KB)ftKBK)ftKBftKKBBBBKB)BKB)KBKBBBB)ttKB)BtKKBftKBftKKKB))))
27.82727.827 827.827.827.827727.827.87.8727.8827.8827 8227 827.8278827.827222727.827787727.8827.8827 827.827.827 82227.822727.8727 8827.8827 827882227.827.88878827.8727 8227 888227727782822828228
Set DSet DSet DSet DSSet DSetSet DDDDDet DSet DSSet DSSet DSet DSeSStSet DSet Det DSet DSSet DSSetet DSet DSet DSet Det DSet DSet DeeeSettSet et Det DSet DSet DSeteeDSSeteet DeSeSetSetSettet DDSSSSeteSSet DeSet DSSetDet DSSSeSetDSetSSSet Det epth epteptepthpthhepthepththtepthepthpthepthepteeeepptheptpthepthheptheeppthpepthpteptheptheeeepeeppppttepthheptheepepeheepeehepepepthepepteetthhhhp (ftKB(ftKB(ftKB((ftKBftKBftttKB(ftKBKKBKKKBBBftKB(ftKB(ftKB(ftKB(fftK(ftKBfftftKtKB(ftKB(ftKtK(ftKKBKKB(ftKB(ftKBfftKBftKKK(ftKB(ftKB(ftKBB(ftKBftKBf(ftKBtK(ftKB(ftKBBtKBfft(ftKBBBffftKftKKBBBtKBKB(ftKB(ftKBBKBKBB(ftKBKBKtKKBf(ftKB(())))))))))))))))))))))))))))))
6,016,016,016,0606016016,016066,016606,006,0166,06,6606,06,06,006,016060006006016,06606,06,006011160660601116,06606,016,016,016,006,01660606606,06,06,01060606,6,,00,06,066066,01,,,0.0000.00.00.000.00000.00000000.0000000000000.00.00000.0000000000.00.0000.0.00.0.000.00.00.00.0 000000.0000.0000.000000000.00.00.000.000.00.
Set DSet DSet DSet DSetDDtDSSetSet DSeSetSet DSet DDet Det DSet Det DSSet DSet DSetSet DtSet Det DDDSSet DSet DSet DSet DSet DDSet DSSSeet DSet DtDSSet DSSet DetSet DeetDtDSeSeSeSSSet DSeeDSSetDSet DSetSSetSeetDSSeettteptheptheptpthhepthtpthepthepthepepthtepteptheptheptheptheptheptheeepteptheptheptepthppepthptteptepthpthhpthheepppptpthptheeepthpppttepththeeppeepeeepepepteptheeeepptheeppttpp (TVD)(TVD(TVDTVDTTVD)(TVD)VD)VD)(TVD)(TVD(TVD)((T(T(TVD)TVD(TVV(TVVD)VVDDD)(TVD)(TVD)(TVD)(TVD)T(TVD)(TVD)VV(TVD)DD(TVD))(TVD)(TVDTTTTTVVDDVD(TVD)(TVD)VDD(TVD(TVDT)VD)VVD))(TVD)(TVVDVV(TVDVVVD(TVDVD)TTVDD)( ……………………………
3,763,763,763,76737637637673,763,763,7633,7677663,7633,73,763733,763,763,7676373,763773,763,763,763766663763,763,76333,77763,766,7676637637673373,76737633376376637676676666,73,766,763333,6633,763,7,6,,3.43.4343.33.4343343.43433.4433433334334333.433.433.44343.44443.433.434433343.43344344444334443.33.4333..3333333.4
Wt/LeWt/LWt/LeWt/LeWt/LeWWWWt/LeWt/Wt/Wt/LeWt/LeWWt/LeWWt/Let/Let/Wt/L/Wt/LeLWWt/LeWt/LeWt/LWt/LeWt/LettWt/LWt/LeWt/Wt/LeWWWWWt/Wt/LeWt/Le/Wt/LeWWt/LeWt/LeWWttt/Leeeet/LeWt/LeWWt/WWt/Wt/LeeWWt/LeW/Wt/eeWW/eWt/LeWWWt/LeWt/Le/LeeeWWt/Le/eeWteeWttt/ ett/ etn (lbln (lbbn (lbb(n(lbn ((l(lblbbbn(lbn (ln (lbn(lbn (lbbn (lb((nn (lbnn (lbnnbblbnn(lbn (lbnn((((lbbn(n((n(lbn(bbn (lb(bbbbbn (ln(lbbbb(b(b(((…………………………………………
29.729.7229.7229.729.729.77722929.729.79729.72929.7777729 7229 7292222999299.79729.79729222929.729.729.79.797729.722929299729.722299.79.72229.29.72999799292997779.77227722999.729997229.700000000000000000000000000000000000000000000000000000
GradeGradeGradeGradeGradeGraradGradeGGrGradeGrGGradGradeGradeGradeGradGradGradeGradeGradGGGradeGradrradGradaGradGradeeeGradeGradeGGradrradeadadeadGradeGradeeGradraadeadGradeGraddeeeGGGradeGraddeGraradeaGGeGradeGGradGGaeGradeGradeGGGGradeGaadddeGdeGrraae
L-80L-808L-8080-80L80LL-8L-808-800800L-80L-808-80808L-88080L-800080008080L-8088000L-80L-8L-80-800L-88-80L-8088880880-8088080880888800L--808080008880L80LL80
TTTop CTopTTop CpCop Cop CTop Cop CTop Cop Cop CTop CTopCTop CCop CCTTTopTop CTTTop CpCop Cop CCTop CTop Cooop Cop Cppop CCTop Cop CoppCTopopoopop CopTopooopp ooopCoppCCTop CpCCop CCooooCop Cp CCTToConneconneconneconneonneconneconneconneconnecooonneonnecnnonnecnnnonneeeeccoonneconneconneonnecnneonnnonnneececconneonneconneonnecnnnecnnennneececonnecnneconneconneonneeccoonecnooeeeeeeccooooeeccoonnnecntiontiontioioniiontiontiontiontiontiotionitioniontiontttioioniotioononoiononntionooonoonnnnonntttiotonontionootiononnotionotiotoonooon
BTCMBTCMBTCMTCMBTCTCMTCMBTBTCBTCMCBTCMBTCMMBTCMMMBTCMBTCMBTTCMCBTCMBTCMCMBTCMBTCBTBTCMBTCMBTCMBTCMBTCMTCMTTCBTCMBTCMBTCMBTCCCBTCMMMMBTBBTCBTCMTCCMMBCBTCMMBTCMCMCCMBTCMMBTCBCMMMMBTCMMBBTCMBBTCMCBTCBCCMMBTCBBCBCCMBTCC
CasinCasinCasinCasinCasinCasinCasisiCCCasinCaCasisiCCaCasCCasiCCaCasCasinCasinCCCinsinCasCasaasinnCasinCasCasCaCaasinsasinCaCasaaCassssCasisinnnnaCasinssCasCasinCasinCaCaassCasCasCasCCCasassCCassssCaCasaaiCasanng Desg Dg DesDg DesDgDDesg Dg Desg DesDeg DesDDDeDeDesg DgDeDesgDesgDesg Desg DesDesegDesesgDesssgDesgDgDg DesgDesDsssgg Desg DDesDeeeeg DesesssesDeseg DesssDeg Desg DesggDesDDegDesDessgggeeg DesssesgDssgcriptcriptticricriptcriptcripttiptiriptiptcccriptcrcrcripptpppcriptriptcccripccriprrricriptppcriptpcriptcriptcripcripccrrippptttiptccptripcriptcriptccpcripcccpppcpprppptttioniioionioiiionioniionionooonnonnionioooooionnononnioiioionoionnonnonoionooniooooooooooononon
PRODPRODPRODPRODPRODPRODPPRODRPRODRPRODPRODPPRROPRODOPRODPRODPRODPRPPRODPRODPRODRODPRODPROOPRODDPRODPRODPRODPRPPRPRROOODPRODDDDROROODRODRORODDPRODPPRPRORRPPPRODRODDRODROODDRODPROO BAR BAR BAR BAR B BAR B BAR AR A BAR BAR BAR BAR BAR BAR BA BAR BAR A BA BAR ARRAR BAR BAR B BA BAR A AR BAR AR AR BAR B BAR ARR BAR B A A A A BARR A A A AR BA AAR B A BARR BARRR B B B B A AR BARRR AR BARR B A B ARAR B RRRIERRIERRIERRIERRIERRIERIRIERERRRIERRRIERRIERIERRRRRIERRIERRIERRIERRRIERRIERRIERRIERRIERRIERIEERIERRRRIERRRRRRRIERRRRIERRRIERRRRRRRRRRRRRRRIERERRIER CSG CSG C CSG CSG CSG CSG SG CSG CSG C CSG C CSG S CSG SG CS CSG CSG C CSG CSG CS C S CS CSG SGS CSGG CSG CSGG C C CSG CSG C CSG SG S SG SSG SG CSG CSG C SSS SGG SGG S SSGG CSG CS SG SG SGG CSG CSGG SGGG SGG C S C S C SG C C S SG
OD (iODOD (iOD (iOOD (iOD (iDDOD (iOD (i((iD (iiOOD (OD (iODOOD (iDOD (OD (iOOODOODDD (OD (OD (iOOOOD (ODOOD (iOD (OD (iDD(OD (iODOOODOD ((D (iOODD(OD (OD (iOD (iOD (OD (DDOOOD (D(OOOOD ((OD iO(i((n))n))n)n)))n))n))n)))nnnnn)nn)nnn)nn)nn)n)n))n))n))))))
5 1/5 1/5 5 5 5 1/5 1/5 1/5 5 5 5 15 1/ /5 1/5 1/5 1/5 1 1 15 1/5 1/5 1/5 5 5 1/5 1/5 1/5 1/5 1/5 1/ /5 1 1/ / /5 5 5 5 5 5 5 1/5 5 5 /5 /5 1/5 5 1/ /5 5 5 5 5 1 /2222222222222222222222222222222222222222222222
ID (iDDDD(i(D (iIIDDDDD (iD (iID (iID (iDD(D((ID (iDD(iD (D(((iiID (iID (DD ((DD (D (D (D (ID (iDDD(DD (DDIDD i((((n)n)n)))nn)n))n))n))nnnn)nnnn)n)n)nn)nnnn)))n)))nn)))))))
4.954.954.99954.95.95.9554.955955554.954.959954995954.954.94.95954.954.954.95954.954.94.954.9594444.94.95449595444.955494999555544994.955559544.4.94.959555..9955995
T(Top (ToTop ((TT (p (Top (Top (op (Top (TToTT ((Top (Top (op (Toop pTop (pppop (Top (opoopoTop (pppop (((op (oooop (pp (Top p ((op (Top (op (oopppopop (op (oop (opopp (pp ((ftKB)ftKB)ftKB)ftKB)KBtKBftKB)ftKBKBBBB))KB)ftKBftKBfftKKB)KKKftKB)ftKBftKB)ftKBtKBftKBtKB))ftKB)ftKBftKftKB)ftKBBftKB)KB))tKKBftKB)ftKB)KKBKKB))ftKBftKBftKBBBKB)KKtBKKBKBKBKKKB)tttKKBKKftKB)))))
23.523.523.53323.555523 523.523.5223.523232323.523223.5323.533.5323.523.523.523.523 523.523.523.523 5323.52232223.53.523.535223353523.5523.5335355523.5235552232223.532333523.53223355
Set DSet Set DtSet DDet DStDSeSSet DSDDSet DSet DSet DSet DSet DtttDSet DSet DSet DSSet DSet DSet DSetSet DDSetSet DSeteSet DSet Dtet DSet DSet DSet DSSeSetDDDSSSet DeeeetSet DetSet DeSSeeSetSeSSSSSeDSetSeet DDSSetDepth eptthepthhepthpthepthttepthepthepthepthepteptepteepthepthppepthepthepepteeptheppepeptheeeepteppppppepptpteptepthheepepetheppeeeeptpteppeehh (ftKB(ftK(ftKB(ftKB(ftKB(ftKBft(ftKB(ftKftKB(ftKftfKKBKKB(ftKB(ftKB((ftKB(ftKftKBf(ftKBftt(ftKB(ftKB(ftKBKKBB((ftKBftKBftKBftKB(ft(ftKBKftKtKBftKB(ftKBftKfttKBK(ftKBBftKB(f KBKB(ftKBf(ftKKKKBB(KBK(ftK(ftKBKK(ftKBBftKBKBBttB(ftKftK((())))))))))))))))))))))))))
5,8855885,88555885,8885,885,88885,85,855,88885,8885,885,885,885,885,885,888888885,885,885,885,885885,88585,8885,8885,88885,885,8858885,8588885,858,8888888888885,8855,888555888555,8888,888885885,8888,85,885588858888,,,,9.899.89.899.88899.898889.89.899.89.89.8999889.8889.89.99.898988898899.89.8989.89.898888898888899.988899.889.89.89.89889.89888889889.899.9.89999889.
Set DSetSet DSet DSet DSet Dt DDDDDSSet DSSet DSStDet DDSet DSet Det DSSeSet DStDttSet DSet DSSet DSet Det DSet DSSet DSeSeet DtSet DDSSeetSet DtDSSSeteeSetSSeSSeSSSSeSeDSSSSeeDSSSetDSSet DtSeDepthepthepttpthepthhptheptheptepteptepthepthepthepthepthepthepeeptheeptepthppppththeptpthepthhepepteptheptppepttheptheeppptthhheeeeptheptpepthepteppeepetpppppptthp (TVD)(TVD)((TVD)(TVD)TTVDTTVDTVDTVD)V(TVD)VDDD(TVD(TVD)(TTVD)TVDTVDVVTVDTV(TVDD(TVD)(TVD)(TVD)((TVD)(TVD)(TVD)TVD)VVVD(TVD))(TVD)(TVD)TTVTTVDVDD(TVD)(TVD)(TV(TVD)V(TVD)VVDD(TVD)(TVD)((VD(TVDVDV)(TVDVVD))VDVVDVDDDV)D)T )((((( ……………………………
3,753,753,753,7577375375373753,7533,757,73,7533753,73,7533,75373,73,75753,753,75753,7533,753,753,753,753,757,753,7553,753,757,73,37337537573,7575755553,75535733,7,75553,333,753555537,0.505000.50.555555500.50.505050.5050000.50.50005.5.50000.50050.5.50000.5055050.50000.50.550.55550.550.55000000550.50.5555500005
WWt/LeWt/LeWWWt/LeWt/LeWt/LeWt/LeWWt/LeWt/LeWt/LeWt/LeWWWt/LeWt/Let///Wt/LeWt/LLWt/Wt/LeWt/LeWWt/LeWt/LetWtWt/Le/Wt/LeWt/LeWt/WtWt/LeWt/Wt/LeWt/Wt/Wt/LeWt/LeWt/LetWt/LeeeWt/LeWWWt/LeWWt//eetteWt/LeWt/LeWWWtWtWt/Wt/WWt/Le/LeeWWt/LeetteetLeeeWLen (lbn((lblbln (lbb(lb(n((llbln(lbbn (lbn(n (lbn (lbn(ln(lbb((lbn (lbnnnnn (lb(lb(lbn (lbbnn((bbnn(lb(n (bbbb(bbb(bbnn (bbbbbn(lb(((………………………………………
15.515.5.555555.555515 55555515.515.5515.515.55.515 5555.5515.51155.55.55.555.515.115.515155.55.5515.55.55.5555.5555555.5555515.55.551555.555555555500000000000000000000000000000000000000000000
GradeGradeGradGradGGradeGradeGradeGGGradeGradGradeGradGradeGGradeGraGradeGradGGradGradGGradeGradeGraderGrraaGradedGradGradeeeGGradeGGGrrradeaGradeadedeadeGraGraadeaddeadeGradeeeGadaGradedradradGraadeGGaaGGradedeGradeadeGGGaaGraddeadeGGrradeded
L-80LL-8080L-808-80080L-80L-8088L-80808080L-80L-808088088080008000L80-8080888080800LL-8808088-808088-800L-808888088-80808-88080L8000L8L888
Top CTop CTop Cop CTCop Cop Cop CTop CTTTTop CTop CCTop Cop CTop Cop CpCTTToTTopTTop CCCCTop CTop Coop CooppppTop CTop CCop CCTopoopCTop Cpop CppCpop Cop CCToooppCCop CpCCCToooopppCoTppponneonneconneconneconneconneconneconnecoonoonneconnecnnecnnnnnonneeceonnecconneonneonneonnneconneonnnnonneneeonnecconneononneconneconneonneconneconnneneeconneconnecnnecnecnnonneccconecooonneoeecoonnecooeeecoonnnetiontiionitioittitiontiontiontiontiontiontionionitionttoonontionnntionionooonoonntttionttooonnononoonononooottonoooionntiono
BTC-BTBTCBBTC-BTC-TBTBTTBTC-BTC-BTTCCBTC-CBTCBTC-BTCBTCBTC-BBBTBTCTBTCBTCBTCBTCCBTCBBBTCTC-TCCCBTCCBTCCBTCBCCCBTCBTC-BTC-BBTCBBBTCCCBTC--CCCBTCCCCBBCC MMMMMMMMMMMMMMMMMMMMMMMMMMMMMMMMMMMMMMMMMMMMMMMMMMMM
CasinCCasinCasinCasinCasinCasinCasCCasiCaCCasCasCCaCasinCasinCasinCCasinCCinsiCasinCasCasinasinCasinCasinCCasCaasinaCasnnCasasaCasassCasinnasinasasisssnCCasinCasasasCasCCassCasnCCCCssssiCCCCCaasssCasaanCasCassnng Desg Deg DesDesg DesgDgDesgDeg DesDDgDesDesDesDesDg Desg DesDeg DesDesg Desg DeggDgDeg DesesssggDegDgDeg DeseDeseDesDesg Desesgeg DesssDesg Deg DessssssDeessggg DeseggDDeeg Desssg DeDesDeessgggggcriptcriptriptptcriptcripticriptcripttptiriptcriptcripripcrriptcripcccccriptrriprcripriptcriptcripcripcriptiptcripcrippcripcripttripticriptrcriptrricppccripccriptpptcripccriptrpptttioniioniioionionionionionoionionionoooonnonnonoooonoionnnnionionnioooooooooooonoiionooonn
SLOTSLOTSLOSLOTSLOTSLOTSLOTLOTSLOSLOOTLOTSLOTSLOTSLOSLOTSLOTSLOLOTSLOSLOSLOSLOSSSLOOOOSLOOLOTSLOTSLOTTSLOSSLOSLOSLOSSLOOSLOLOOSLOTOTSLOTOTSSLOTOSLOSLOSOSSLOSSSSSSSOSSSOSSLSOSLOSSLSSLOSLOOSLOTTED TED TED TED TETTED ED D ED TED TTED TED TED TED TTED TETED D D ED D ED TED TETETTTED D D D D ED TED ED D EED D ED ED D D D ED D D ED EEED D D D LINELINLILINENENELINLINELINENNNEELINELINEINEENENNEEEEEENNENNNNEENNENNNNENNNEENNNNEEENNNNNLLINELINENELINEINEERRRRRRRRRRRRRRRRRRRRRRRRRRRRRRRRRRRRRRRRRRRRRRR
OD (iOD (OOD (iOD (iOOD (D (iODD(iDD (iOD (iOD (OODOD (iiODOOD (iD (ODD (iOD ((OOOOD (iODOOOD (OD (iD((OOD (iOODD (ODD ((OODD(OD (iOD (D (iD(OOD (OOOD (iOOODOD (OOOODD (ODOOD ((i((n)n)n))n)))n)n))n))n))))nnnn)nnnn)))n)nnn))nnn))n)))))))))
4 1/4 1/4 1/4 1/ /4 1/4 1/ 1/4 1/4 14 1 1/4 1/ 1/4 1 /4 1/ 1/4 4 4 1/ 14 14 1/ /4 14 4 1 1 1 1/ /4 4 4 4 1/4 4 4 1/4 / /4 1/4 / / /4 4 4 4 4 4 4 4 4 / 4 1/ /4 4 1/ 1 / / / 22222222222222222222222222222222222222222222222
ID (ID (iID (iID (D (iD (D(ID (iD(iID (iID (iDD((D(D(iID (iID (iD(((iiDDD (DDD ((DDID (iDID (D (DDDD (iD (((((((((n)))n))n)n))))n))n))nn)nnnn))))n)nnnn)nnnn)))n))n)))))
3.963.963.963.963.963.9639633.963.963963.99693.963.963.93.963.963.99993.969696633.9633.93.96399639996963.963.963.993.9696633.96.969666333.93.96396333.966663.93963969633.9333.993.9666339999669633663.9633.9.963.9666
Top (Top (TopTop (Top (TTopop (Topop (Top (Top (p (op ((op (Top (Top (Top (Top (p(((op (pop (oopop (oTopppop (op (op (op (op (oooppopTTop (pTooopo (ooopppTpopp (((ftKB)ftKB)ftKB)ftKB)f KB)KKBftKBftKBKB)ftKB)ftKB)ftKB)ftKB)tKBKB)fftKB)ftKB)ftKB)tKBtKB)KBKKKftKB))ftKBftKBftKBtKBtKftKB)BBftKBKBBKB)))ftKBKB)ftKBBKB)B))ffttKB)KBBB)BtKB)KftKBtKBBKKBBKKKKB)tKtKB)ftKBKKfttK)))
5,875875,8755,85,85,875875,85,8755,85,875,8758755,875,85,8785,87585,878787587755587587558788888877758755,88755,875,87878887555,5,875,875,878877555875,88788785,887585,85885,85,887585,,8887555855,8,7,,3.9393.93.93.93.993.93.3.93.933.93.93333.93.93.9939393.993.933.9333.93.9993.99339339933.93.9339393.939933993.939999993.93993.9993.9.999
Set DSet DSet DSet DSet DSet DDSet DSDSet DSet DSet DSetttDSet DSet DSetSet DSet DSet DDSSetet DSetSet DSSeSet Deet DSet DDDSet DSet DSeeSet DSet DtSet DSeeetSSet Det DetDSet DSDSeeDSSSettSSett Deptepth eptepthhpthpthepthepepthtepteptheptheptheepteptepeeepepthptheeepthpeptepthpthptheeeepepteppptheptheepeptheeeepeeppeepeeppteptheepthptth (ftKB(ftKB(ftKBftKB(ftKBtKK(ftKBftK(ftKB(fftKBKKBftKB((ftKB(ftKBfftKB(ftKBfttKBKB(ftKBKKB(ftKB(ftKB(ftKB(f(fftKB(ftKBtKB(ftKKKKBKftKBBftKB(ftKB(ftKKKBKB(ftKBB(ftKftKKK(ftKBKB(ftK(ftKBtKBKKKtKBB(ftKB(ftKBKBB(ttKK(((ftKtKBK((()))))))))))))))))))))))))))))
12,212 212,2,22222,2122,2212,222,22212,22222222222212,2112,212,212,2222,22,22112222,2,212,2112 212222122,222222,222222222,22222,2222,,2122,22112,212,2,,19.01919 09.019.019.0019.09.019 0900019119 09.09.09.09909.09909.0019.009.09019.019.019 0119.0999.09.09.09000009019 019919.00019199.0090099.09.09199.0919.0999.00999.0099.019.09.01.0
Set DSet DSetSet DSetSet Det Det DDSet DSSSSet DSeStSet DDet DSet DSSet DStet DDSSSetet DSet Det DSSeet DSet DtSetDSSet DSetSSeeSeSet DDet DSeetttSSSeeetSSSeSet DSDSet DeeDSSSSetSet DSStSepthepthepthhepthpthepthheptepthheptheptheptheptepthepthepthepthepthptheptheepthepppthepthtepthepthhepeeepepphthepeepepepthppttthheeeepepthheeptheepthepepttppttpptp (TVD)(TVD)(((TVD)TVDTVD(TVD)(TV(TVD)(TVDT(TVD)TV(TVD)VV(TVD)VD(TVD(TVD))D)(TVD)(TVD)((TVD)(TVD)(TVD)(TVD)VVD(TVD)(TVTTTTTV(TVD)(TVD)(TVD)(VDDDD)D)((TV(TV(TVVDDD(TVD)(TVVVVDVD)DVD)VVVDVVDD))V(VD(TVDD(( ……………………………
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5,8885,885,88,85,885,88885,885,885,885,888885,885,888885,885,885,8855,88885,885,885,885,885,8888855885,885885885,8858588,885555,88858885885,888885,88,88,88855,8888888888885,8558888554.9 34.9 34.9 39394.9 34.9 34.9 349 349 349393934.9 34.9 33344.9 3494.9 399399334.9 3393499933344999334.9 3499394.9 39349 349393.9 34939949934.9 399344.9 34.94.939399999333,7497499749749,749744499749,74999,749,7497497497499499949774994977494497499747494,74999,74977474,7497497494997497497497499997444774997499,7,74999,9,9.9 82982982982982.9 82982982982989829982829822822298998298998989829828228282982982989828.9 8282982982999229998289888282898282298982889899982229829982.99898982998888..9882.78 P8P.78 P.78 P.78 P78 P.78 P.78 P.78 P878 P88P788P88P78 P.78 P87878 P878 P8PP788PP7P8P778 PP78 P78878 P887888P8P8P87888P7888877888P77787888878887788ACKECKACKEACKACKEACKACKACKACKCACKECACKACKEACKEEACKEAACKEAACKCACKECCKEACKEACKCKKACKEACKEACACACKEKACKAACKEACCCCACCCKAACKECKKEEEACEAAACKCKCKEEKKKACACACKACACCCCKCCCCKAKR BAKRBAR BAKBAR BAKR BAKR BAKRBARBAR BAKRBR BAKBAR BAKR BAKAR BAKR BAKR BAKR BAKRBAR BAKRBAR BAKRBARRBAR BAKRBAR BAKKKRRBABBABAKR BAKR BAKRBAR BAKRBAAAR BAKR BAKBAKKRBBBAKAKR BAKRBBBAAR BAKRBBABAKKKBKARRAKBKBKBAAER ZER ER ZER ZER ZER ZR R R Z Z ZER ZER ERR ZR R Z ER ZR ZER ZR ZR ZR ER ZR Z RR R Z ZR Z Z ZR Z Z Z ZER R ZR ZER R ZR Z Z ZEER Z ZR R ZR ZERR ZR Z ZR R ZR Z Z Z ZXP LXXP LXXP LXXP LXP XP LP LXXXXXP XP XXP LP XP LP P XP LXXXXXP XP P P XXXP XP XP XXXXXP P LXXXP XP XXXXXXXXXXXXP XXXXP INERNEINERINERINNERINERINERERINERRRINERNNNERNERNERNERRNRRRNRNNERNERNERNERERINERNNEREEERRREEEERNERRNERNERNNRRRNNRNRRNNRNNNRR TOP OP O TO TO TOP TOP OP O O TOP TOP O OPPP TOP TOP TOP O O O O O OPPP O O OP OPP T OO OPP O O OO OPPPP O OO OP OPP O O O O O OP O O OP O OO O O O O PAC ACC PAC PAC PAC PA PAC A PAC AC PAC AC PAC PAC P PAC PAC PACC PAC AC AC AC AC P PAC A PAC ACC AC PAC PAC PA A PA ACCC PAC P ACCAC A AC A AC PAC A P P P PA PA A ACCCCC A ACCCCC AACCKER KER KER KER KKER EKER R R KER KER KER KER KKKER KEKER KER KKKEKER R KER KER KER KK R R KEKKKR R KKER KEER R R KER KER EEEER KKK R R R R KKKKER KER KEKKR R K R R w/HR/w/w/HRw/HRw/HRw/HR/Hw/HRRw/w/HRHRw/HRRw/HRRw/HRw/w/HRRRw//HRRw/HRw/w/HRw/HRw/HRw/HRww/w/HRww//HRRRw/w RRRRww/HRw/w/HRw/HRw/HRwwwRRRwwwwwwwR//ww Hww/RRD PRD D PRD PRD D PR PD PD PR PRD PR RD PRD PRD PD PRD PRD PRD PR PD PR R RRD D D PRD PR RRD D PRD PR R PRD PRD D D PRD PR P RR P P R RRR P P R RD PR P PD PRD PRD D D RRD P ROFILOFOOOFILOFOOOOFOFILOFILFILIOFILOOOFILOFOOOOOFILOFOOOOOFOOFOFILOOOOOOOOOOOOOFOFILOOFFFOOOOOOOOOOOOOOOOE4.949E4.9E4.9E494.9E49949E4.9E4.9E4.9E4.9E4.9E4.944.949E4.949E4.9E4.9499E49E4.99499949E4.94494999E49449499E49E4.9499E4.9E4.994.999EEE49994E4.94.999999993030303033303030300030030330303030303000300330330303033003030303033333003333330303333000303
5,89585,8958985,8958985,895,895,895,89,898989895,89995,895,895,5 885,898,8985,8995,8995895895,88995,89589985,85,89585,89585,85,895,898955,85888989895,8988889899985889555,885,899999895,89,,,2.9 32.9 329 322.9 329 32.9 329 392.9 3932.9 329 39332.9 32.9 32.9 322.929932.9 39393332.9 32222.9 32.9 32.9 32929 393299929 3932.9 333229 3293322.9 399292932.9 329 32.9 399329229992299992.999933993393,750,750,750,7507500000750750,750075007500,750750,775055505075007500750755007507,750075750077555555575050755577500,7577,,7 00,,5,75555550,,,.9 8298298298982982.9 82982982988982982982222982999829988298298298222982829829982989989829828298222822988299898292.99882.9 829888288282982998298829889829982.99 882822.96 N996996 N96 N96 N96 N66966N.96 N.96 N96 N.996 N9696 N96 N96 N996 N6696 N669696 N96 N96 N96 N96 N96 N.96 N96N6N966N96666N.96.96 N96 NN96 N96N9696696966N96 N6966N9NN699696 N966N96696IPPIPPLIPPLIPPLIPPLIPPLLIPIPPLPPLPPPPPLPLPPPIPPPPLPPPLPPPPPLPPPPPPPPPPPPPPPPPPPPLERS ERS ERS ERS ERS ERS ERRRS ERS ERS RS RS EE RS RRS S RS ERS S RS S S ERS RS RS RRRS S S S RS S ERS RS S RS S RS RS RS RERRRS S ERS S S RRS RS RS S S RS RS S S NIPPNIPPNIPPNININIPNIPPNIPPPPNIPNIPPNIPPNIPPNNNIPPIPPNIPPPPNIPPNIPPNIPPPPPPNIPIPPPPNIPPNIPPPNNNNIPPPNNPNPPPNIPPNNIPPNNPPPPPPNNNNNPLLE 4.E4.LE 4.LE 4.LE 4E44E4E4E4LE4EEE44E44E4.4444EEE44EE4E4444LE 4.44.LEE 880880888880880880880888088800888808808808888088088888808088080088888088088808800088088888088088088088088888088880880888888088088888888880880888880888888088
5,895,895,895,89585,8958589995,895,895,8989,895,895,895,8989899895,89588898995,895,895,8995,89588585,8995,8989,89589555,89995558,8985,895,895,899895,88895,85,898855,888989588889588899,8,895.8 35.8 35.8 35.8 35.8 3858 385.8 35.8 358 35.8 33358 388838.85.8 35.8 3358 3838358 35.8 35.85.8835.8 358 35.8 338358 333385.8 38858 35.85885.8 33.8 3588355588888833355588835.8 35833538,75175,751,7517511,75,751751751,75,75551751751,7517575757,7517577555555,75557555577775757575,7555,751,,.2 83.2 832283228328328328328383283832833283832822832828328383283283328338328328283883338383282833.2 832.2 83828228383883228382838838328883288283.832838333.02 H02 H.02 H0202 H022222.02 H.02 H.02 H02 H.02 HH02002002 H0.02202022.02 HH0020002222020222202 H02 H200222.02 H02 H2H0220222222.0020 ANGAANGEANGEANGEANGEANGGGEGEANGGEGEGEGANGEANGEANGANGNANGEANGEGANGANGGNGGANGEGEANGANGEANGENGGANGANGGANGANGGANGANGANAANGNNNGANGANGANGANGNAAANANGAANNNNNANGGAANGANGGGGGGAGGGRBAR BAKR BAKR BAKR BAKR BAKRRBAR BAKR BAKKR BAKR BAKRBAR BAKRBARR BAKBABBAKARBAKKRBRRBARBBAKRBAR BAKBBAKR BAKARBABAKR BAKR BAKRBAR BAKR BAKR BAKAKKRBAAAKKAKRRRBBAAAR BAKARAKAKKKRR BAKARRKKRBAKKKRBABBAKAER ER FER FER FEER R ER FR ER ER FER R R ER FER FR R R R R FER R ER FR R FER FR F FR R FR R R F FR R R R R R R R RR R LEX LLEX LELEX EX XX X LEX LEEX X X X EX EEX X X X LEX X X X X X X X X X X EX X X X EX X X X EEEEX EX X X X X X X X EX X X X X LEX LEX EEX L X X X LOCKLOCKLOCKOCKOOOOCKOCKOCOCCCOCKCOCKLOCKLOCKLOCKOCKOOOCOCOCOCKOCCKOCKCCOCOCKCKKLOCKOCOCKOCOLOCCCKOOCOCKOCKOCKOCOCOCOCLOCKOOCKOCKKOCOOOCKKKLOLOOCKOOOOCKOCKOCKKOOCKKOCKKKOCKOOOK HYD HYD HYD H HYD HYDY YD HYD HYD H YD Y YDY YD YD HYD H Y YD Y Y YDDD H Y HYYD Y YYDDD Y Y Y Y YDDDD Y Y Y HYD H Y YDDDDDDDDD H DDRAULRAULRAURAULRAULRRRAUURAURRAUAAURAULRAULULAULRAULRARARARAURAURAAURAULRARAAUAARAARARARAURAURARRAAURARRAARRRAURAURAUURARAAUUAUULRAUAUIC RIC RC C RC IC RC RC RC RIC RC RC RC C RC C RC C RC R R RIC RC C RC C C RC C R R RC RC RC C C R RC C CC C RC RC RC R R R R R RC RC R RC RC C C C C C C C C C ROT. OOTOOOOT OT T. OT. T OOOOTOOOT OOOOOTTT OOOOOOTOOOOOOOOOOOOOOOOOOOOOOOOOOOOO LINLINENLINEELINEELINELILINLINENNENNLINENENENNNNNNNNNLINENENNNNNNNNNNLNNERR HAR HAR HR HAR R R HA HA A HAR HAR HAR HAR HAR HAR HAR HAR HAR R HA AR HAR HAR H A AR HAR HA AR HA AR HA H AR HAR HAR R A AR HAR HA AR HA AR R HAR R R AAR R R A A AANGERNGERNGERNGERNGNGERNGERGERNGERNGERERNGERNGERNGERGERNGERGGNGNGERRRNGERNGERGERNGERGGNGRRRNGERRGERNGRNGENGGNGERNGNGERGGNGNGRGERNNRERNNNGEGERRNGERRNNGRRNNNRRGGERGGGGRR 4.86444.868884.864.8686486644.864.8648488686868.86866664.8648486864.8648864.86868684.86.8686866644.8664.864864864866864.8864.864886448888866644886668868688668000000000000000000000000000000000000000000000
5,905,905,905,905905905,90905,90905,905,95905,905,90595,905,900,905,95,95,90590905,905,9059055,909995,905905,9090905,905,90,9005,905,90555,5,95,90555,5 995995,959000555599955599,,5.1 3515.1 35.1 351 31135.1 3335.1 335.1 35.1 35.1 35.1 315.1 35.1 3335.1 3551 355.1 3335.1 35133351 35.1 3515.155.1 35.1 355555.1 333333533551 3355.1 3535553355.1333,75275,752757525,75227522,7522752752,752,755252752522227527525522,7527522757525752275272,7522752755752755257522555252275527575525277572,777 2255,7522,52,,,,,.3 8338338338338383.3 8338388838383383333833833833833383338338338333338338338833833838383338333.3 8338333833883.3383388833383883388838883388338383333383833338338383838383.22 X22 X2.22 X22 X.22 X.22 X22 X2X22.22 X2X22 X22 X.22 X22 XX22 X22 X2222 X2222X2222 X22 X22 XX22 X22 X22 X2222X22 X22 X22 XX2XX22 X222 X22 X222XX22XX222 X22 X22 XX22 XX222 X2XX2222X2XX2XX22X22.22 X.22..XO BUO BUO O O BUO O BUO BU BUO BUO BU BO BUO BUO O O BUO BOOO BO O O BU BO B BOO BUO BO BO BO BO BO O O O BUO O O BUOO BUO BU BO BO BUOO O UO BUO BO BO O BUO B U U UO BU B USHINSHINSSHISHISSHINSHINSHINSHINSHINSHINSHINSSHINSHINSSNSHINSSHINSSSNSHINSSSNSHINNSSSSHINSHINSNSHINSHINSHINSHNNNSNSSSHINNSSNNNSSHINNSSSSNSSHIGCROGCROGCROGCROGCGGCROGCROGCROCROGCROGCROCGCROCGCROGCROGCROGCROROGCROCROGGCRGCROCROGCRGCCROGCROROOROGCROGCROGCROGCROGGCROCRGCROCRGCROCGCRRORCROOOGGCROGCROGCROCRCGCROROOORCROOGCROOGCROGCRORGCRGROCGGCROGCRGCROCROGCCROOGCGCROCCGGCRRROSSOVSSOVSSOVSSSOSSSOVSSOVSSOVSSSOVSSOSOOSSOVOSOVSSOVSSOVVSSOVVSSOVSOVSSOVSSOVOSSOVSSOVSSSOVSSOSSSSSOVOSSOVVSSOSSOVSSSSOVSSSSSSOVOSSOVSSOVVSSOVSSSOVSSOSSOVSSOVSSOOSSOSOVSSOVSSSOVSOVVSOVSSOSSOVOVSSOVSSSSSOVVSOVSSOSSVSSOSSOVSSSSOOSSOVSSSOSSSOVOSSER BER BERER BER BR R BER BR BR BR BER ER BR R B BR R R ER BR B BERER BR R BR BR B BR BR BER BR R R BR B BR B ER BR R R R R BR R B B BR R BER BER R R R BER B ER BUSHIUSHUSHIUSHIUSHISUSHSSSSHUSHUSHSSHSUSSUSSSSSSSSSUSUSUSSUSUUSHIUSUSSSHIUSHUSSSSSSUSSHUHUUSUSSHUUSSSSUSSHNG 3.NG 3.NG 3NG 3NG 3NG 3.G3GNGG3NG 33G33G3G3GNG 3.NGNG 3GGNGNG 33NG 3NG3GGNG 3NG 3.NGG 333NG 3G3.NGNNGG33G3.NNGNGG 3NNGGNG 333N3NG 3NG 3N3NG 3G3NG 3NNGG3G3G3NGGG33GGGG33910910910991091091019109109109109109109109110099191091009109109991091009109109100099991011910991910909109999909910990910990099100
12,112222,12122,111212,12212,112111221222,112,2212 1112,111122,222 111212,1222222,222222221212,1,,1,,,84.684 684.6884 6884446464684.684 684 684 66684.6884 68884684.66464684.684.684 688848484 684.684 6684.646884 64688484.684.68484.68484.6684.684.668884.4 6668884.6666886668.8 686 3,793,793,3793,793,799933,79377993,793,73,79333,793793,793733,793,7993,7993,793,7933793,7933,793793,793,79933,779793,7979793,79779937793,73373,7997937999933,797799933,797933393,,7,,,,79 8797.9 87.9 87.9 87.9 89997.9 899879 887.9 87.9 889879 8797979 879 8.9 89989879 897.9 879 887.9 8989879 879 87.9 8998887.9 877879898879 8987987.9 89879 8879988997998878887.9 89.4599.459949.45449.459.459.49.4549459.459945999.459.459.4545599459.459459.459.49.459459.459.4549.459949.445944559.4999459.45599994455944595559.45599555 BUSHBUSHBBUSHBBUSHBUSHBUSSBUSSSBUSBUSHHBUSHBUSHBUSHBUSHBUSUSHBUSHBBUSBUSSBUSSHBUSHSSBUSHBUSSBUSBUSHSBUSBUSBBUSBBBUSSSSSBUSBUSSBUSSSSUSBBUSSBSSSBUUUSHUUING BING BNG BING BING BING BNG BING BGGBGBNGING BINNG BNGNG BBNG BNNGGNG BGBGBGBNG BNG BNG BBING BBNG BGBNNG BNG BGGBNGGBBGBNG BNGNGNGNGBGBBGBING BNG BBBBNG BNBBNNGNGGGBGGBGGINGGGBNGGBIGGBAKERAKERAKERAKERAKERAKERERAAKERAKAKKKERRKERKERAAAKERAKAKKAKKERAKERRAKERAKERKERAKERAKERAAKERERRKERAKERAKAKAAAKERKERAKERAKERAKERRERKERAARRAKERAKERAAAKERKKAKERAKAKAKKERRAAKAAARAKERAAAKERAKE PAC PAC PAC PA AC PACCCC AC PAC PAC P P AC PAC PAC A A A PACCCCC PACC P AC ACC AC ACC AC P PA ACC PAC PAC AC A PACCC PAC A A ACCC P PAC AC PA P A A AC PAC ACCCAC A ACC A ACCAKOFKOFFKOFFKOFFKOOOFFOFFKOFFKOFFFFKOFFFFKKOFKOFFOOOKOKOOKOFKOKOFKOFFKOOOOFFOKOFFKKOOOKKOOOKOFKOKOOKKOFFFFFFFFFFKKKOFFKOKOKOKOOOKKOOOOKOKOFFKOOOO BUS BUS BUS BUS BUS BUS BUS BUS USS B BU UUS US BUS BUS B BUS BUS BUS BUS US BUSSS BUSS BUSSS B B BUSS BUSSS BUS BUS BUS BUSSS B SS US B B S B B B B B US US BUS BUS B B S B BU US B UU BUS B U U U US B USSHINGHINGHINGHINGININGINNINHINGINGGGHINGHINGINGNGNNGGNGHINGHINGGGGINGGGNGHINGNNGNNNNNNGNGHINGGNGNNGGNGNNNGNGGHGGNGGGGHININGG 3.953.953.953395393.953.95939533.993.953.953.953.953.953953.95395333.9593.995999553.953.953.9533.9533.959599553953993.953.93.93.9535953953933.993.9939953.9599553.9533.95953.953.3.95999558888888888888888888888888888888888888888888888888888888888888
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ID (iID (iIDD (iDD(iID (i((ID (iID (iD(D (D(DD(D (DD (D (D(iiDD(D (D (DD ((IDD (DDD (D ((iIIDDD(ID ((n)n)n)))n)))n))nn)nnn)nn)nnnnn)nn))))))n)nn))nn)))))))
2.4424422222.444424442442.44242.442.42.4442.442442442224422242.4424424224444442.4442.442.444224442.4424242444244444424224444422
Top (Top (Top (Top (Top (p(op (op (Top (p(op (op (Top (Top (op (Top (p (Toooop (op (Top (p (opop (op (oopoop (popoopop(ppoop (opop (opoppTopoopooppp ((p (ftKB)ftKB)ftKBftKB)fftKB)ftKB)ftKBftKB)tKBftKB)ftKB)ftKB)ftKB)ftKB)tftKB)KB)KB)KftKB)B)KB)ffttKBtKftKBKKBftKB)tKB)ftKB)KKB)ffftffttKB))ftKBB)ftKKKBBtBtKB)KKKBBttKKKB))
23.52223.523.5232233323.523.53.523.523.523.523 523.523 52323.52323.523 523 53.5232323.52323.5223.523232333323 523.53323.523.523.523.523.53323.5523.53333.555535223.523255525533533355
Set DSeSet DSSetSet DSSSet DSet DSet DSet DSSet DSet DSet Det DSet DStSet DSet DSSet DSetSet DSet DtDSet DSSetSSSet DSetetDSet DDSet DSet Det Dttetet DSSeteeSetet DetDSSeteSeet DtSeSSSDeSet DSSSSSSeeetDDSSSSSeeeSet DDSepthtepthhepthepthepthepthepthepttepthepeeppthptpptpeptthhptheeepteeppthephptheeeptppptheptptheptthepthepepepeptpthepteptepeteeeptppptepthpp (ft…(ftfft…ft…(ft…(ft(ftf(fft(ft…t(ft…(ft((ft…(ftft(ft(ft((ftfftftttft…(ft…(ftt(fttfft(t(t…((…((
5,825,825,825,825,85,825825,822225,8285,825,825,825,82885,828288825825,825,825,82255882588,825,822225825,882,825585,85,825,825825828288825,825,82885,8558885,82285,825552555,8,828,,9.099909999.00009.09.09009.09.099.09.09.099.09.0009.099.009.009.0099.09.09.09.0009.0900909.09.0999099990009.099.09.09090
Set DSet DSet DSSetSeSeSSeSetSet DtDSet DSet DDStSet DSet DSet DSet DSetSetSet DSet Det DSet DSeSet DSSSet DSet Det DDet DSet DSetttDSSSetSeteeeSSet DSet DSeteSeettSetDSSSeSSeSSetSSet DSSeeetDSSSSetSetSDepth pthepthepthtepthpteptheptheptheppeptptpeptepthtepthepeeptepptheptptheptheeepteeptppepeptepttepthhepthepeeptheeepteepteppeppp (TVD)((TV(TVD)(TVD)TVVD(TVD)(TVD))(TVD(TVD)(TVD)VD)V(TVD)(TVD)(TVD)(TVD)(TVD)(TVDTVDTVDV(TVD)(TVD)(TVD)TTTVV(TVD)VD(TVD)VD))(((TVD)VVD))(TVD)VD)VVD(V(TVD)VVDVDVVVDDDD)D(VVVD(TVD)())((…((…(((((…((…(((…((((…((…………(((((…(((((((
3,743333,7433,743,743,743,743,7477443,743,743,7433,73,7433,73,743333,74374343743,7333,3743,73,747744443,743,7477744374374,74373,74744437,7434733743,33,7333,7,,,,2.32.222.3232.32.322.33232.32.3232.322.32323223323332322.32.3232.332.333233233232.323222.3323223323
Wt (lWtWt (lWt (lWt (lWt (lWtWt (Wt (((Wt (lWWt (lWt (Wt (t (Wt ((Wt (WWtt(Wt (Wt (lWtWt (Wtt (Wt (WWWWt (WtWt (WtWtWWWWttWWt (t (WWWWWt (lWtWWWt (t ((ll((b/ft)b/ft)b/ft)b/ftb/fb/ft)fb/ft)/ft)ft)b/fb/ft)fb/ftb/ft)t/ft/ft)b/ft)/fb/ft)b/ftftt)b/b/ft)/ft)bbbb/ft)/ftb/fft)ftfftt))b/ft)b//ft/ft)bb/ftb/b/ft)bb t)ft)bb/))/)))))
6.506.506.506.506.506.56.506.506.506.5065006.5065066506.506.506.5066.506506.5066.50556.506.5006.506.506650505000060006006.566.5056.50666.50566600666.505566.505665566.5506.505
GrGradeGrGradeGraGGradeGradeGraderadeGradGGradGGradeGradeGradGradGradeGradeGGGradeGraGGradedGGraGraderadaadadeGradedGradeadeGradeGradeGraGradGrradaGradedeGraddeeGradeeradeadderaGraaeeraaaGradeeedGGaaadeeGderradaaaadeGGaade
L-80L-80L-80L-80-80888000000-80L-808808088-80808080-800008008808800L-8080808088008088888-8888880-888808080L880080
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Top (Top (Top (Top ((op (op (Top (Top (Top (op (Top (p (Top (TTopTTop (p ((oopppop (oop (ooopopppp(opoooop(ooppppooop (ooppoop (opp (pp (op (oopp ((p (((ftKB)ftKB)ftKB)ftKBftKB)ftKB)ftKBftKB)KftKB)ftKB)BtKB)tKB)ftKB)ftKftKtKtKBftKB)ftKB)KKKtKBBKBKB)B)KBftKB)KB))ff KB)KKBftKB)ftKtKBB)BKBtKB)KtBBBttKB)ttKKKBBftKB)KKK ))))))
Top (Top (Top (Top (Top (op (Top (T (op (Top (Top (TTop (Top (TToop (opTopopop (Topp (opTop (op (Top (Toop (Top (pp (opoppop (ooop (popTop (popopop (oTo (T p (TVD)TVD)TVD)TVDTVD) VVDVD)TVD)D)VD)VDVVDTVD)VD)D)VD))TVD)VDVD)TVD)DVDVD)VD)TVDVDTVD)TVVVDVDVVD)VD)))VD)D)VDVVDVV)D))VVD)))
(ftKB(((ftK(ftKf(ftKB(ftKBftKtKKK(ftKBtKB(ftKB(ftKBftKBKB(ftKB(ftK(fftKBftKftKBftftKBftKB(ftKKBtKB(ftK(ftKBK(ftKBBtKBftKB((ftKB(f(ftKttKBftKBKKBKK(ftKB(KB(ftKKKKKKtBKKK((ftKBKKtKB(t(()Top)Top )Top)Top)Top)Top)Top)To)Top)Top)Top)Top)TopTo)To)))TopTT)TopTop)To)Top)To)Topooop)Toop)TopTop )Too)Topoppopopopoo)Topoopo)p))Topoppoopp)p)))))p)InclIncncl nclInclnclInncnInclncnncccnccInnInncncccccnnnnccccccnInclcncccccccnnn (°) It(°) It((°) It(°)(°) It(°) It(°) It)It°) It(°)(°) It(°) It(°) It(°) It(°) It(°°(°°°) It(°) It°))It)Itt((°°°(°(°) It)It)It(°) It(°)tt°°°) It)t°°) It(°))Itt() It()()tt))(())em Deem Deem Deem DemDmDeem Dem Deem DeDeem Demm Dmem Deem Deem Deem DeDem Deeeem Dem Demem DemDemmDem DDeeeem Deem Deem Deemem Deem DmmDemDeeemDemDeeeem DeeDeeeeem DeeDm DeeeeeemDeemem Dem Demesssssssssssssssssssssssssssssssssssssssssssss
NominNominNominNominNominNominNominNominminNomNominNominominNomNoomNomooNomimNommominmNomomNomNominnominminNooomommmNominNominnnnNoNoNominmmnNoNominNominNNNommnNominoomNoomminNmimnal IDlal IDal IDal IDal IDal IDal IDal IDal IDal IDDal IDal IDal IDal IDDal IDal IDal IDal IDDIDaaal Ial IDaDDaaaaal IDaDDaaDDDal IDaaDDDaal IDDaalID
(in)(((in)(in)(in)))(i )((in)(in(in)(in)((in)ii(in)(in(((in)iii(in)nn))nn)nnn)(inn)(in)n(((in))(in))(((in))(())
OD NoOD NoOD NoOOD NoOOD NoOD NOD NoOD NoODNOD NoOD NOD NoOD NoOD NoOODNODD NNOD NoOD NoOD NODNOOD NoOD NoOOD NoDODOD NoOOD NoOD NoND NooODNoDNoOD NoOD NooNoooDNoNoNoNNNOODDOD NODNOOD NoODNDNODD NoNNNOD NNNN minalmiminalminalminainaminalminamminammimmmmminanannannaminaaaamminaminamminammminminannaminaminalminalminamnaminaaaaminaminaaminaminainalaaminamminalinnminna
(in) M((in) M(ini(in)(in) M(in) M(in) M(in) Min) M(in) M(in) M(in) Min) M)Mn) M(in) M)(in)(in) Min)))n) M(in) Miin) Mnnn) M(in) M)(in) Mnnn) MMM((in) Minn)n) M)M(in) M(in) Mn(in) MM)M)M(n()))())ake Moake Moake Moake Moake Mke Moake Moake MoMoke Moake MMoeMakeakeake Mke Mkake Make Moeake Moake MoMMooake Moake Moake Moake Moke Moke Mokke Moke Moeeeake Meake Moake MoMoaaakke MoeeeMake Mooake Mookake Moake Moake Moaakake Moake MoaMMkakeeakeeake Moakkeeoaaake Mk dedeldeldeldeldedeldedededddeedeedededdededeededeeeedeedeeeeeddddeddeeededdeedeeddeeell
23.523.523.522323.23.533323.53.523.5223.52323.23.523.52323223.5232323.523.5323.53.523 5523223.52223323.5552323.533.52335523535523.53352252225335353.553333.535 23.52223.52323.523.523.5333323.523.523.523.523 52323.53.523.5223.523223523.5323 5323.523.535352223.53.523353.55523.523.523 523353.522323553.552335523.555522323223.5255333355333.53555 0.000.000.000.000.000.000.000.0000000.00000000.0000000.00.000.000.000000000.0000.000000000000.00.00000000.000.000.0000000000000000.00000.00000 HANGHANGHANGHANGHANGHANGGHANGGGANGHANGHANGNHANGGANGHANGANGANGANGNGNGANGGANGHANGANGGNGANGANGNGGNGAANGANGHANGGAANANGNANGGAANGANGAHAANANNNGNGANGGANANANNANGAAAGAGGGGGGGGER 2.ER 2ER 2ER 2.ER 2.R2RER 2ER 2ER 2ER 2ER 2R2ERRER 2.2ER 2ER 2ER 2ERRRR2R2R222R2ER 2222RER 2R22R22R2RRRRER 2R2EER2RRRRR2EERRRRRR2R2R2RRR900 1900 1900 1900 1900900 19009000900 109000900900 1900 1900 119900900900 1990900 1900 19909090000019009900900009000900 1900 100 1900 1900 19900900900000099999099909909099009990090.810.80000.810.810.8180880.881100880.810.810.810.810.800.810.80810.80.80.8880.811100008810.8110.8180.80.800880888808881880888188888800888888122222222222222222222222222222222222222222222222
512.512.512.512.5125125122512255125122251255125112225122512255125512512512221511151225125252555222512522225225512.5 25525555 851285128512851285128512858585128518512851251212285128512851288518518512851285128885125851851215128512288551222281228852858512885128512285122855128512851285858851225525882855885.7 1..7 1.7 1.71.7 1117117177771171771.7171177771.77777777.7 .7 39 NI39 N39 NI339339 N39 N99N39 NI39 NI39 NN9NN39 N39 NI393939 NI9N39 NI9NI39339 N3939 N39 N39 N3939 N999N9N339 N39 N93993339 N399NN39 N3939 NN9339 N39 N399N339 N9939999N39 N993399N33 PPLPPLEPPLEPPLEPPLEPPPLEPPLPPLEPPPPPPLEPPLEPLEEPPLEPPPPPPPLEPPLEPPPPPPLEEPPPPPEEEEPPPPPEPLE 2.312.312.312223232332.31312.312.32.312.31332.312232322.32322.32.332.311312232.3132.32.31112332.312232.332.323232.332323322232333233 23.723.723.722223.723.7323323.7323.7722333237237223.72232232323333237232333772223223.33.777237323.723223.777237237323.7232723.737237723.7233.22 3 733333303 Ca03 Ca03 Ca03 C03 Ca03 Ca3Ca33C03 C3C03 Ca03 Ca03 CCC3Ca003 Ca03 C3C03 C03 CaC03 Ca03 Ca03 Ca003 Ca03 Ca303 Ca03 C0303 Ca3C3C333C03 Ca03 C3CaC03 Ca003 Ca0303 C303 Ca3CCaC03Ca33CaC003 Ca3Ca3C03 Caa03 Ca003a03 Ca033C0a3CCa00333a0333Caaaa003Cmco Dmcomco Dmco Dco DDmco DmcomcoDoDmco DDmco Dmco Dco Dmco Dco Dmco DoDmco DDmmco Dmco Dmco Dmmcocco Dmco Dco Dcoco DcoooDmmmmmcommmcoccomcooco Domco Dmmco DcoccocoocccocoDoDoooDDoDoDccoooS NiS NS NS NS NiS NiS NiS NS NiS NiS NiS S NS NS NiS NS S S NiS NiS NS S NS N NS NS NS iS S N N N NiS S S NS S N iS NS NS S S S N N NS S S NS NS N N N NS NS S S S S S S S S pplepplepplepplelepleppleplpplepplepppplepppplepppleppleppplepppleppleppleepplepplepplepppppleppleepplepplepppppleppleppleppleeeepleppppeeppppppplepppeeepepppplepeepp
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5,185,185,185,1815,185,1885,18885,185,18515,1885185,1888855,1515,185,1,185,1885,18,188518,1851888518855,185,1855,5 8518858885,1885,1885,1855,185,1885,18855885, 85,,,3.0 33.0 33.0 330 33033.0 3330 3003.0 33.0 33.0 3330 333.0 33.0 333.0 33.0 330 303.0 3003003033330 330 33.0 33.0 330 333.003030303.0 33.0 333.0 33330330 3303.0 3303.0 3.0 33.0 303.030 333333033333,558,558,558,5585,558,5588558,55888588885558,558585888558558,55858855855855855855558858,558555855,558588,555558,5585588858555555,55885588558,5588885558,,,,.1 6711676.1 67166167166676.1 67.1 671667616766167167167616766767.1 6776771167667777676666676766671677766.6667666 51 S.51 S.51 S51 S1S151 S.51 S51 SSS.51 S.51 S51 S.51 S51 S51 S.51 SSS51 S1SSS.51 S.51 S51 S551 S1SSS51 S51 S551 S51 S1SS.51 SSS51 SS5551 S55SSS55S51 SSSS55S.51 S5555SS55SS5ENSOENSOENSOENSOENSOENENENSOENSOSSOSOSONSOOENSOENSONENSOSOSENSOSOSENSSOOOENSONSONSOSNSSNSONSOOOOSOONSONSONSSNSONSONNENSOONNSSOSOONSOENSOSENSONSSSSONSOSOOSONOSOOONSSOR2.9R2.9R2.9R2.9R2.9R29R2.92R22R299R2.99R2.9R2.9R29R29R2.9R2.9R2.92.9R29R292.9229R2.99R29R29R2.92292929R2999R2.9R2.929292R299R29R29RR2R22RR2.92.99R29999RR2929RR999R9999R992 4.992992 499292229292 4.92 492 492 492 4.92 49292 492 49222492 4929292 4492 4.9929292 492922922924292299992 4.22424249299292 492 4.9922 4499949494442492299292.999 312 Z312 Z333312312 Z312 Z312 Z1312 Z312312 Z2Z2Z31212 Z2Z312 Z12312 Z312 Z3312312 Z331312 Z312 Z3312 Z312 Z23122312 Z312 Z333312 Z312 Z3112 Z3123122312 ZZ33122Z22ZZ3121312Z312 Z2Z312 Z2231232Z3222Z2232312 Z32Z33233iebeiebeiebeiebeiebeiebeiebeiebeiebeiebeiebeiebeeebebebbebeiebeebeebeiebeeebeeebebebeebeeeebeeebeebebebbebeeeeeeebeeeebeeeeeeebeeeeebeeebebeebbbeeeeebebeeeeeeellllllll
5,195,1919,15,19995,191995,19195,1995,19,1995,1995,195,1955,195,19515,19515,199995,199519199995,19555,5,55,195519995519999,1955195,195,19955,95,1995555,,,,2.2 32.2 322.2 322222 32.2 32.2 3222.2 3232.2 322 3232.2 32222 32.222223233332.2 32.2 322 322.2 322 322.2 32222322.2 32323332322.2 3332232.2 32322322 32.2 32232.2 3232.22 322.2 3.22 332333,561,56,56156,561,5656656111,561,566656166561555,561,5616666,561156156166561,55666,555656556666,56565666555661,,,,,.6 67666666667666.6 676667.6 6766676667666766667676666676666666766667666666767667.6 677667666677676666676676.6 67666676666666666667766667666677666667.66 6666 .68 X.68 X66686.68 X.68 X88.68 X.6868 X68 X8XX68 X.686688X68 X68 X68 X68 X.68 X.68 XXX68 X68 X.68 X68 X66868 X88.68 XXX.68 X66868 XX66XX8XX868 X68 X6668 X668 X6.68668 XXXX68 X66868 XX88XXXXX68688XX6886668X8X6XO BUO BUO BUO BO BUO O O BUO BUO BO O BO BUO BO B BOO O BUO BUO BO BUO O BUO BUO BU BO O BU BUOO O BUO BO O BOO BO O O B BO B BU B B B B BOO O O UO UOO O O O U UUOO O B B U U UUO B B U U USHINSHINSHINSSSHINSSHINSHINSHINSHINSHINSHINISSSHINSSSHINSSHINSHINSHINSHINHNSSHINSHINSSNNSSHINSHINSSSHINNSHINSSHINSHISNNSSHINSSSHINSSNNSSSSNSSSSNNSSNG2.9G2.9G2.9G2G2.9G2.9G2GG2.9G2.9G2G2.922229999G2G2G2.9G2G2.9G29G2.9G2.9G292229G29G2.929G2.9GGG2.9G2.9G229G2.999999G2.9229G29299G2.9G292.99G29G2.92929G2.992G2.922222999G2.9999GG999992 3.92 3.92 392 392 392 3929292 392 3.92 3392 3.392 39299292 392 3292 392 32392 3392 392 392 392992 3992223232392292 392 392 39992 3.2 3992 322392992 3299992 399992323392 3.2922992 333.92 3999 50050050000500500000050000500050005000050005005000000500500550550050050000500500500000000055505555555000500000555000055055000000500
5,805,805,805,805,805,85,85,805805,805,800805,85,8808585,80805,80580805,805,805,85,85,8085,85,80,805,808005805,80005,80885805,80858580555585885,800558588,80,,8.3 38.3 3883 383 388.3 38.3 38.3 3338.3 38.3 38.3 388883 383 3838.3 38.3 383 38.3 333333388.3 388.3 38.3 38.38.3 3833838.3 33383 33388333.3 33333388.383 3838.3 338.3 38.3 3838.333.3 338.3 3888.388.3 3338.3 38.3 383333,739,739,739,7397399,739,7399739,7393739339339393939397397393933939997399973973973739,739,739739,739393997739399739,739399377,73977933739997339339399,,,,,.1 80118080.1 80880818018008001801.1 808808808081800000808080188808808018008001808008080180.1 80180808880888880808.888080010.90 S90 S.90 S99990 S00S090 S.90 S.90 S90 SS0S0S.90 S90.90 S.90 S90 S90 S.90 S00S90 S90 S90 S90 SSS.90 S9090 S.90 S909090 S9090 SSS.90 S90 S90 S90 S.90 S90 S99SS0090 S0S990 S0S990990 S900SS900SS90 S900S90S990SEAL EAL EAL EAL EEAEAL AL EAAAL EEEAEAAL AL AL EA AAAL A AEAEEAAAAEAAAAAAAAAAEA AAAAA L ASSYASSYASSYASSYASSASSYSSYASSYSSSASSYASSASSYASSASSASSYASASSYSSYSSSASSSSYSSSYASSYSASSYSSYASSYYYASSSSSASSASSSYASSYASSYSASSYSSYASSYYYASASSSYASSASSYASSYASSAASSSASSYYASSASSYYSSYYSSYASYASSSSSSYYASSASSSSSASASSSSSSSSSSSSASSSSY 3.0033003.003.003000003.003.0003.0033.003.003.003.0003003.003003.0003003.003.003.003.003.00000003.000300300033003000000033333.003003.0003.0000003300000000300003003.703.703.700303037003.703.7330373303.703703.703703.70303303.703.700003003.703303.737033037037373.730377003377037303.70037003.77303.7033.7003000360 Ba60 Ba60 Ba660 B60 Ba60 Ba0Ba0Ba60 Ba60 BaBB0Ba60 B60 B660 B60 Ba6060 Ba60 Ba60 B60 B60 Ba0B60 Ba60 B6660 Ba60 Ba60 Ba0Ba0Ba600Ba60 Ba60 BB6060 B60 B60 Ba66B0Baa60 B0Ba0Ba0Ba66660 B0BaBa60 Ba660 Ba6BBa60 Ba660Baa0aa6060 Ba60a00ker Gker Gker Gker Ger Gker Gker GGGGer Gkeker Ger Ger Gker GGer Ger Gker Ger GGGGer Ger Gker Ger GGker GGrGker Gker GGkerker Gerrker GGGer GkkekeerrGGkeker Geeeker Gkker Gerker GkeeGekkkGGkkekeeeGGGkeeGGGGker GBH-2BH-2BH-2BHBBH-2BH-2HBHBH-2H-2BH-2BH-2BBBBBH-22BH 2BH-2BH-222BH-2BBBH-2BBH-2BH 222BH-2BH2BH 2BH-22-2BBBH-2B2BBH-2H2BH-BBB 2-BH-2BH-222BB2BBB222222222222222222222222222222222222222
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(ftKB(ftKB((ftKBftKBftKBfft(ftKB(ftKBtKBK(ftKK(ftKBBBBB(ftKB((fftKB(ftKBtKBtt(ftKBftKBKKBB(ftKB(ftKB(ftKB(ftKB(ftKB(ftKftKKBKB((ft(ftKBtKBK(ftK(ftKBB(ftKBftKBKKB(KBBKKB(K(KKBBBt(ftKB((())))))))))))))))))))))))))))
TopTopTop TToTopTopTopTopTopToTopoToToopTopoppTopoopooooppppoooopopopppopopppopooppppooopTooppppppp
IncInclIIIncl ncllInIncInclnclInclnclncnclInclnncncncccccnnncnccccInnncccccInclncccIccccIcIccll (°) Ma((°)(°) Ma°) Ma°(°) Ma°) M(°) Ma(°)(°) Ma°) MaMa(°) MM°) Ma(°) Ma((°) Ma(°) Ma(°) Ma°) Ma°°) Ma°)Ma°) MaM)M(°(°(°) Ma)Ma)Ma((°)°°) Ma(°) MaM(°) M)Ma((°°°°)Ma)M(°) Ma(°) M(°) Ma(°) Ma°)(°) MMaaaa()MMa() MaM() Ma)M)MMMaa()()(ke Modke Modke ModkMke ModeModke Modke Modke Modke ModModeModke Mke MoeModeModke MoeMeMoke Moke Modke Modke Modke Mke ModeModeModke ModModMMoeModke ModeMoke Modkke Moke Modkeke Modke MoModke MeMoeMMoooookeooddke Modke MoeMooeeMeMododekkeMdeel OD el ODel ODel ODel OD el ODel OOOOel ODel ODOel ODel ODDDel OD el ODOODel OOODDDOOel ODOel OOODDeeel OOel ODODeODel Oeel OD eleee OeOeOODel OeOeel OeOel OODDDODeelODOO (in) S(in) S(in(in) S(i(in) S(in) S)(in) Sin)in) SS(in) Sin) Sin) SSS(in) S(in) Sn)in) S(in) SSn) SSS(i(in)))SSS(in) S(in) S(in)n) S)n) S(in) SS((in) Si(in)nn) S)(in) SSnn)SSSn) S(in) S(in) Sn)SnSSS(in) SSS(SSSn) SS)())(erververveererverveerervervrvrervvervveeerverververvveeerervrvrrrvvrvvverveervvvevervveeeeervvveeeeeevv
ValveValveValveValveValveValvValvealveValvValveVValveValvValveVValveValveValveValveValveVValveValvavveValveVaVValValvVaValvealveveeValvValvValvVaaalveValveveeValvavValveeVValvVaaVVaaeeVaVaavveeeaaeeeeeve
TTTypeTTTypeTypeTyTypeTypeTypeTypeTypTypeypypepeTypeTyTypeTyyyTypepeypypeypeeeTypeypeeypppypeeeypeypeypeppeeypeyypepeypeypeeepppeepeeeTyypepypeeTpeyyyp
LatchLatchLatchLatcLatchtcatchLataatcaatctcatLatccatchtccLatchhhLatchatcaatchLatcatcatcatcchhaaatcattchLattchccatchaaaaaaatcatctcLataaatccatcLattccaaacLLtch
TypeTypeTTTypeTTypeTypTypeTypeypypeTypeypeyypepepeypeppypeeypeeeTypypeeeTyypTyTyppppeypeypeeTypeyypeTypppeTypeyTypepeyyypypeeypeeyppyppyp
PortPPPort Port PortPortPoPort oort tPPPortPPortooPort PortortrtttPortPooortorooorrtPortoroPortoorPortorPort ortortoortoootoooPt SizeSSizeSSizSSizeSizSizeSizeSiSSSizeSSSizSizeSizeSizSSizeSizeiSiSSizeizeeSizeSSeeSSizeSSizeSizeSizeeSizeSSzzeeSSizeSizeSzSizSizeSSSzzzezSizSSizzzeeeSzSizeeeSizeSiz
(in)(((in(in)in)(in)(in)(in)n)(in)((i )(in)in)n)(in)(in)((in(in)in)n)(in)(inin(inin(innn)nn)((n(in)()((in)n()(()(())()
TRO RTRO RTRO RTRO RTRO RRO RTRO RRO RTRO RTRO RTRO RRTRO RORORRO RTTRO RRRTROROOORO RTROTRO RTROTRRO RORORO RO RORRORO RTRO ROTRO RRO ROOORORRRORORRORRORO RRROORRRRORROOununuuunnununununnunuuunnnunnunnnnnnnnuuuuuuunuuuuuun
(psi)(p(psi)(psi)(psiiipsi))((psi(psi)))(psi)isi)(psi)(psi)((pspsi)psi)psi)(ppppppsssssi(psi)(ppppsi)psi)pspsi)s(ppsi)pssi)sssspsi)ppsi)ssi)ss(psi)pssis(psss )(()((p ))p )Run DRun DRDRun DRRuRun DRun DDDRRun DRDDRun DRuRun DnDRuRun DRun DRunRun DDDDRun DRun Dun DuunnRun DRun DDRRun DRunRnnDnnDuRunnRnRRRRunRun DRun DRDRun DDRun Duun DRuunuate Cotte Coate Coate Coate CoateCCeCate Coate Cote Coate Coate Cotte Cate CoCCoCoCte Coate CoCCCate Coate Coaate Cottte CeCoate Coaate Cotete Cte CoteeeeCoate Coate Cote Coate Cote CoeCeeCoeCoaeCoooaeate CoeeeeCte CoaaeCate Coate Ceeate CCte CeCoaeaaCCmmmmmmmmmmmmmmmmmmmmmmmmmmmmmmm
12,311232,32,312,312,32,3232,3222,312,33312,31212,32,32232222,333312,312,32,32232,32223312,312,32,3222,32,331122222,33232222,322,322,3332333223,,,38.538.538.538 538 538 538.5338.58838.538.5338 538.5338.538 5888838.538.53338.538.538.538.538838.5383855338.53383885388.538.583885888.553858838 55338.5385583883883353855333885538.5 2,182182,182222,18182,182,1882,182182,182,182,1821822212,182,18182,1882181822,2 18,182,182,1882182,182182221818821822,18222182218882,188,1882,1882,18282,182,188882,,7.9 47.9 47.9 47.9 49479 49479 447.9 47.9 47.97.9 499797.9 477.9 4997.997.9 4947.997.9 4997779447.9 47.9 4779494479447.9 47999444799447999.9997.99997.9 48.01888.018888.08.018000018008.0118888.0188008.010.018.08.018.01188.01801808.018.008.018.01188.0180088808888.010080808888808.0880808080088888.0 1GAS11GAS1GAS1GAS1GAS1GAS1GASGGASGGASGASA1GASGASAS1GASGASGGASGGAGASGGGASSSGASGASSS1GAS1GASGGGASGASGAGASSSS1GASGAS1G1GAS1GGASGAAAASSGASGASGASSGGGASSAGASSSSSGSGGSAGAASASSSAGGSSSGGGASASS LIF L F LIF LIF LIF LIF LIF LI F LIFF F F L L FTDMYTDMTDMYTDMYTDMYDMTDMMYYDMYDMYDMDMYDTDMDMYDMDMDMYMYTDMYYTTDDMYDMDMDMYDMYYYMYTDDDMMMMYMDMYDMDMYYDMYYMMMYYYMDMYDMYMMYMDTDMMYMDMMMMDDMY BK 0.BK 0BK 0.BK 0.BKBBK 0K0BK 0K0BK 0.K0BK 0BK 0BBK0.KKBKBK 000K0BK 0K00BK 0BBBK 0BK 0BK0K00BBK 0KBKK0BK 0BKK000BBKKBBKKKBKKKBBK 0BK 0BBKKKKBK 0BB0BBBB 000 0000 0000 0000 0000 0000 0000000 000 00000 0000 0000 000000 00000 0000 0000 0000 00000000 0000 0000 000 000 00000 000 00000 0000 000000 000000 000000 00000000000 000000 000 000000 0000000000 000000000 00000 0000000 0000000000.0 1/.0 1/000001/01/01/.0 1/0101.0 1/01/001/01/0001/1//00001/000001.0 1/1////01001/.0 1//01//01/0 /.0000 /00 12/21212/212/22/2/212/22/2222212/212/22212/222/222/2//212/22/22/2/22/22/212/211222/222/22//2/22/2/22/2212/2122/2/2/221222//2/2/22/2/2/22222222//212 020 8020 8020020 8020020 8020 8020 820 8020 8080008020020 8020 8020 88020 8020020 8020 800220 82020 822020 8020 8020 80020 888808820 8020 802020 8020 8220 820 82220020 88020 8020 8020 82020 802002020 880200020 820 82088228020 82208820 82008880000882800:0000000000:00:00:00000:000:00:00:000000000000000000000000000000000::00000::000000:000000000000000000
25,025,02225,02525,025,025,025,025000025,025,025,0222525,025,025,0225,05,05050005,022252502500025,05,0,025,0250505,0225,0502525,025,02552225225,2525005,0202500,0500,,,69.86969.8669.869.869.869.869.869.869.89.8969.869.8666969.869.869.869.89.869.869.869 869.869.89.8869.869.86669 89869.866969.86699969 869.86969669 869.8869.86969988669.88699.88869.886669.886999966669.88 3,5133,51353,5133,51,513,515113,513,51333,3,53353,53553,51135151333,533,5153,53,513111335353,53,513335553,5335553,53,53,55333355333553,5,,2.8 62.8 62.8 62.8 62.8 62888862.8 6666228 62.82.8 628 62.822.8 628 62.8 62.8 68682.8 6862.8 668628 62.8 622.8 682.8 62.8886666866666622.8 68662.8 62866.8 6628882288886862888868662862.8 686686866885.425.425.425.424245.45425.425.425.4242225.42555.425.4.4225.4225.422544225.4545.44542255424555424422555445.4242422555.425.4252555.55555 1GAS1GAS11GAS1GAS1GAS1GGASGASGGASGASGAS1GASSGASSGAS1GASS1GAS1GAGAS1G1GAGASGASGASGASGASGASAASASGASAS1GASGAS1GAS1GAS1GASGASGASGASSGASGASGAGAGASGGAGGASSSSGAS1GASGASAASGASGASGSGAASSGGASAASASGAGGGAASGAASGGS LIF LIF LIF LIF F F F LIF F F F F LIFF F FF FF L L L T EXPT EXPT EXPT EXPEXT EXPT EXPXXT EXPT EXPT EXPTT EXPEXPEXXXXPXPXPPPTTEXEXEXXPXXPPT EXPXXPXPPEXXXEXXXPXPTEXXPEXXXPPPPXPPXXXXXXXXXXXXXP
DMDMYDMDMYDMYDMYDMYMDMYDDMYDMYDMYDMDMMMDMYMYMYMYYDMYDMDDMDMDDMYMDMYDMYYYYDMYDMDDMYDMYMYDMMYYYDMYMMYDMYYYYMYDMYYYDMYYYMMDMDMDDDDDMMM
BK 0BK 0.BBBK 0.BK 0BKKBKBK 0BK 0BK 0BK 00BK 0BK 0BBK 0BK 0BK 0BK 0BKKK0K0BK 0K00BK 0BK 0BBK 0BK 0BK 0K0000BKBK 0BBK 0KKBK 0.0BKK0BK 0BBBKKKKBK 0BK 0BKBK 0BKKBKKKBK00BBBK0BK 0BK0B 000 0000 0000 00000 000000 000 0000 0000 00000 0000 0000 0000000 0000 000000 00000 0000 0000 0000 00000000 0000 0000 0000 00000 0000 0000 000 00000 0000 00000000 00000 0000 000000 0000 000 0000 0000 0000 00000000000 000000000000000.0 1/01/01/0001/001.0 1/00101/01/10001/0001/01/.0 101/01/01//01/001/00.0 1/1/01/01011/001////01/0 //01//0 /00 /000 /00 12/211212/2222/22/2/12/212/22/212/22212/212/2122/212/21212222/22/22/22/22/2//2/22/2/22212/2122222/22//22/22212/222//2 22/2//2/22/22222/222222///12/22020 1020 10200020 1020 1020 10200202202020 120020020020 1020 1020020120 1020 102002002002002002020 1202020002020 120 10002002220200020 10020 10200020020020 10220020020202020020020020000:300:300:30000:330:300:30:303000:300:300:300:300:3000:30:30000:300:300:30:300:330:330300:30300:300:30030:300:3:3000:30:300:300:30:30000300:30:33303003000:33303000033000330
PerPerPerPerPerPerPPerPerPePerPPerPPerPerPePerPerPerPPPerPerPPPePePePerPPPPPPerPeerererPerPPereeerrerPPePePeerrPPeeerrPPPPPPeeererrrrerPereeePeeePPPerrreeereeeeePereeeeereeeereeereeeeeeeforforforffffforforforffoforforforforforforforforforfforforforfoffforforforffforfoooooforfffofforooooooorrrorffoooorrrrforfforoooooroorrfffoooorrrrforooooroooroffoorroororrorroroooooooroooooooffooorratiatiatiatiatiatittiiatiitattiiitiiatatiiiaaaaaaaaatatitiiataaatiaatatiaaaaatiiatiaaaaaaattiaaatiaaatiaaaaaaiaaaaaaaaaatiattaaaatttaaaaatiaaatataattonsonsonsonsonsoooonsonsnnonsnnsnnssssonsonsooonsonsoonnnonsononssonsoooooonsononsonsnsssssooonsoonsnonnsnnsonssonsonsooononsonssonssssooononsnnonsssssoonsonsnnsnssoononsooossssoonnnssssooonsssssonsoooosonssssooosssssoosoonssss & & &&&&&& &&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&& &&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&SloSloSloSSSloSSSSloloSloSlSSSloSloSSllloloSloSSloSSlolSloSloSloSSloSloloSloSSSSloSSloSSSloSlooSloSloSloSSSloSloSlooSSloSSSoooooSloSSSloSloSooSlooooSSSSlooSlooSSSSlooooSSSloSSoolooSSSlooSlSlooSSloSSooSloSSSloooSSSSloooooSSoooooSloooSooSloSloSStststststttststststtsttststtstststssstststststststssssststttsssttsstsstsststttstssssststsssssssssstsssssssssstssssstsssttttssssstssssststssss
Top (Top (Top (Top (Top ((op (op (Top ((p(op (p(Top (op (Top (Top (Top (op (p(Top (p(Top (op (oop (op (poppop (pp(op (op (opooop (ooppp (((opoooop (pooopppp ((p (((ftKB)ftKB)ftKB)ftKB)ftKB)ftKBftKB)ftKB)ftKB)ftKBtKB)tKB)ftKB)ftKB)ftKB)KBKBftKB)B)ftKB)KB)ftKB)fftKB)fttftKKB)tKftKB)ftKB)ftKBftKB)KB)KBKftKB)KB))ftKftKB)ftKB)tKKKKBBfKB))B)KKftKBKBBftftKtKBB)t BBB))Btm (Btm (Btm (BtmBtm (Btm (Btm (Btm ((Btm (Btm (Btm (Btm (Btm (t (Btm ((Btm (Btm (Btmt (Btm (Btm (BtBtmBtm (t (Btm (Btm (Btmtm (m (mmmm (m(mmm(Btm (m(mmBtmm ((tBtm (mm (mmBBtm (Btmm (Btt (BtB ((((ftKB)ftKB)ftKB)ftKBftKBtKBftKB)ftKB)KB)ftKB)ftKB)ftKB)ftKB)ftKB)tKBtKB)tKftKBtKB)ftKB))ftKftKB)fftKB)fttKBKKBBtKB)ftKB)ftKB)B))ftKB)fftttKKB)tKfftKB)KKKBftKB))KB)KBB)BBfKKKKKBB))tt B)KB)K )ftKB)))
Top (Top (Top (Top (ToTop (op (Top (Top (Topop (((Top (op (Top (Top (Top (Top ((TopTop (op (oopoTopppop (pp (Top (op (opop (ooppop (Toop (Toop (oop (pp (op (Topoop (oooop ((p (TVD) TVD)TVD)VVVTVD)TVDVVDVVDDDVD)VD)VD)TVD)VVD)TVDVDDD)VD)TVD)VD)TVD)DD)DVDVD)TVDVDVVVD)TVD)VD)VVD)VD)D)VVDD)VVDVDDDTD))TV )))
(ftKB(ftKB(ftKB(ftKB(ftKBftKftK(ftKB(ftKBK(ftKBKKBftK(ftKB(ft(ftKBf(ftKBftKtt(ftKBtKtKBKBBftKBB(ftKB(ftKfftKB(ftKB(ftftKBKKB((ftKK(ftKB((((ftftKBBf(ftKB(ftKB(ftKBKBfK(ftKKBK(KtKBKKBBKBK((ftKKB(()))))))))))))))))))))))))))
Btm (Btm (Btm (Btm (Btm ((tm (BBtmBtm (Btttm (tm ((Btm (Btm (BBtm (ttm (Btm (tm (Btm (BtBtmBtm (ttBtmBtmmmmmmtm (BtmBBtm (BBtmmBtm (mBmmBtmm((BBttBBBBtm (tmB (B mmm (t (((((TVD)TVD)TVD)TVD)TVD)VDVD)D)TVD)TVD)VD)VDVD)TVDVDD)VD))VVVD)VD)D)TVD)VD)TVD)DVVDD)TVVD)VD)TVD)VD)TVD)VD)VVDDDDVD)DVVDTVVDD))))
(ftKB(ftKB(ftKBf(ftKBftKB(ftKB(ftKBftKB(ftf(ftKBftKBtt(ftKBftKBKKKKKBBB((ftKB(ftK(f(ftKBftKt(ftK(ftKB(ftKBtKB(ftKBK(ftKBB((fft(ft(ftKKK(ftKB(ftKBfB(BKK(ftKBBBKKBtKtKKBtKB((ftKBKB(t B(B()Link)Link))Link)Link)Link)Lin)Link)Link)Link)Link))LinkLink)Li)Lin))Link)Link)Linkk))Liinknkn)Linknkk)Linnk)Linkkn)LinkLink)nkkkkLinkLL)Link)L)Link)inkk))ed Zoed Zoed Zoed Zoed Zod Zod Zoed Zoed ZodZed Zoed ZodZed Zoed Zoed Zoed Zoeded ZodddZZdZoooeed Zoed Zoed Zded ZZodZooodZoeed Zodoed Zed ZZodZed Zoed ZoZeeddZZd ZdZoeeed ZoeedZooeoeeed Zodd ZZone Datne Datne Datne Datne Datne Datne Datne Datne DatDatatDDne Dne DateDateDatne DateDane DateDatne DatDatDne Dane DateDatne Datne Datne Datnnnne Daene DaeDaDataattattneneneeDeDane DateDaaane DaaeDateDatneDeDaeeDatDDtDaeDatteaDDaeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeee
Shot ShoShoShoShotSShotShothShotShoSShotShoShShototShotSSShotShShotShotShothotSShhhhohoShohottShohohShShotoShoShotShotShohooShooShoShoooSSShooSSShooSSotoShoSShhottShho
Dens nDensDensDensDDensDensDDenDensDensDenDenDDensDenseensDenensDensDensnnnenssDensDensDeeensDeDenDensnsenssenseensensDensnnsssenssesssDeDensensessDenseseensesDeeDDDDeensen
(shot(shot((shot(shot(shothshotshotshot(sho((shot(h t(shot(shot(shothot(sho(shossho(shothhsho(shooots(shohh(shotsho(sho(shoo((sshoth(shoot(shotsshoooshossshosshososhotss(s(shooto(shossssootshoshootos/fts/fts/fs/fts/fs/fts/fts/fts/ftt/fts/fts/s/s/ftftts/ft//fts/fs/fs/fts/fts/ss/s/ftftfs/ftsss/ft/s/fts/fts/s//ftfftssss/ftss/fsts/tsss
)))))))))))))))))))))))))))))))))))Type CType CTypeType CType CType CypeType Cype CCCCype CTCType Cype CCpe Cpe Cpe Cype Cpe CCType CType CCype Cyyppepppe CeeType Cype CeCpe CType Cyypypepe CeCeCeCype Cype CyType Cype CeeCypeyypeyCypeCpypeeCeCCppeeCpeyyypyomomomomomoomomomomommommommomomommmmmomooomomoommmmmommoooooomommmomomoomoooomoommm
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5/195/195/195/195/195/195/195/195/195/1995/19/5/1915/195/195/195/195///115/1995/195/195/195/1995/15/15/195/119195/19/195/1995/195/195/19/19955/19555/19555//95/19595/195//1995/99//9599955/955599955/1 /201/201/20/201222/2000/201/201/201/201/20120/20/201/201/20201202/202/200020/2011201/20/20/2222020011/20200201101201/2202/2/2020/20/202///22//22/20000/20220020/20/2/2/220010NOT0NO0NO00NO0N0NO0NOT0NOTN0NOT0NNONONO0NOTO0NOT0NO0NO0NOT0NOOOO0NOT0N0NO0NO0NO00NONONOOOOO0NOT0NOT0N0NOONOOONOTONONOO0NO0OT0NONO00NNOOOON0NONNO0NON00NOOOONO00OO0OO00NNTE: VE: VE: VE: V V V V VE: VE: V V V: VE: V V V V V: VE E: VE: V V V E: V V V V V: : V V VE : V V V V V V V V V V V V V : E V E: V: V iew iew iew iew iew iew iew iew iiew iew iew ew eew ww w ew w eewew eeew w w w eweew eew ew ew ew ew ew ew ieeewew ew w ew w ieew w w w iew eeew w eiew ieew ScheScheSScheScheScheSchecheScheSSchecheSScheScheScheSScheScheSchScheScheScScScSSScheSScScheSScccSchheeSSchSchecheScheccheSchhScheScheScSchecheheSccSecheeScheSScheScheSSeheeSSScceeSSceeeScccheematimatiatimatimatimatiatimatimatiatimatmatimatmatmmmaamaaatmattatimmamamammatimmmamaatattimmmaaaaaattmamatiaaaaaaaaataaaamammmatmaaatc wc w/ / w/c wc w/c w w/ w/c wc w/c w/c w/ w/ /c c w w/ w/c w/ wc w / w/c c c wc w/c wc w wc w w/ w/c c wc c w wc w/ / /c w/c wc w/ w w wc w/c w/ w w w / w w wc w wc w/c w/c w/ /c c c wc c c w w w Ala Ala Ala Ala Ala Ala Ala Ala Ala Ala Ala Ala A Ala Ala A A Ala Alaa A Ala Ala Ala A aaa Ala Ala A Ala a Ala Alaaa A a aa A Ala a a a Ala A a aa A Ala A a A Ala A A aa A A aska ska ska ska kka ska ska skska sska k ska a skska ska sskskka ska a ka sk sskka a kskka a ska sska skkska sska ska ska ska ska sska ka ska skska ss a a skk a a skkk a a ScheScheScheSScheScScheScheScheScheSchScheScheScheSchScheScheScheSSSScScheSchSScheSchSchecScheScheSchehScheeeSchSchScheSchheeeheScheScheSchecchecheSceeScheeScheSccheeScheeeScScheeeeeScheScheSScheeSceSScScSSSchhmatimatimatimatiimatimatitmatimatimatmatiiamamatmmatmatmatimamamatitimatmmmamatmatimatmatimamamaatttmmmammaaattatimmaaaaaaaamamatiattaammaaatc9.0c9.0c9.0c9 0c9.090909900909.0c9 099c9.099c9.0c9.09.09.090c9 0c9.9.0990c9 0c9.0c9990090c99c9.00c9.0c9 0c9.0cc90cccc9c9.0c9.0ccc9.0c9.00c9c9c9c9.0c9c99090c0c999.0c9.09.00c9.c9.0.
1C-171C-171C 11C 17C-17CCC-11C-17CCC-171C-17C-17C-171C-11C 1CCC-171C-17C-17CC7-1771C-171C1C-1171C 11CCCC1C-1711C1C-1CCC-17C1C-17777C-17C-1777CC-171C7C-17C-17CCCCCCC7C70, 4/0, 4/0, 4/040, 40, 4/0, 4/00, 4/040, 4//4/00, 4/00, 4/0, 440, 4///000, 4/0, 4/40, 4//0044//0, 4/4/0, 4/44404/, 4/040, 4/4/0,, 4/00, 40000,,4/0 /,,5/2025/2025/2025/2025/2025/2025/205/202/5/2022025/202025/205/2025/20222025/2025/205/2025/202/5/220200220202225/20/2025/20205/2025/2055/2025/22200202/2055/20/202202/205/202555/20255/2/2022000/05/2025/2022252025/20255/202555/2020520022 8:42 8:428:42822 8:42 8:428:42 8:42 8:4882 8:482 8:42228:42 8:4288:488288:42 8:48:42828:42 8228:428882 8:428:4:428:42288:4888:28:422844228:442228:482888:222 888 3:00 3:00 3:03:033:003:003:00333:03:0000000003:00:003:00 3:003:003:003:003:0033:000003:000000003:33 0003:::3:003:00003:000033:003:00:03330:003:030033303:00033333:0333:000 AMAMAMAAAMMAMMAMAMAMAMAAMAMMAMMAAAAMMAMMMAMAMAMMMMAAMAAMAMAMMAMAAAAMMMMAAAMAAMAMMMMAMM
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XO BUXO BUXO BUXOBUXO BUOBXO BXXO BUXO BUXOOOBBUUXXXO BUXXO BUXOXOXO BUXO BUO BUXO BXO BUOO BUXO BUO BUBO BUXO BUXXXO BUOOBOBUOOXO BBO BBXXO BXOXXO BXOOBXOOOBBXO BXO BUXO BUOBUXXOOOBUXOXOO BUXUXOOBBXXXXOBSHINGSHINGSHINGSHINGNGSSSHINGSHINGSHINGSSHINIGGSHINGSSHSHINGSHINGSHINGSHINGSHINSHINGSHINGSHINGSHINGNGSHINGSHINGGGGGSHINGSHINSSSHINGGNGSHINGSSHINGSSSHINSHINGSHINGGSSHINGGGSSHINHNGNGSSSHINGNSSNGNGGGGSSNGSGSHINGSSSGGSHNN; 5,1; 555 155; 5,1; 5,5,1;515,5,115,15;5,15,11551115;55555555,55;55555,1;5555;;5,5; 5;,92.292.22292.292 2292.292 2992.2229229992.292.292.292222.292.2292.2292.222.292.292 292 292.2999929222292.2229292292.292.2292299922292992.292292222992992
SENSOSSSSENSENSOENSOSENSENSOSENSOSENSOSENSSENSOSENSOSENSOSSENSOSENSOSENSOENSOEENSSENSNNSOSENSSSENSOSOSOSSENSOSENSOSENSSENSOSENSSSENSOESENSONSOSSENSOSSENSONSOOSENSOSENSOSSENSSENSSSENSOSOSSNSENSONSNSOSOSSNNSOOSOSENSONSOSSSEENSSSNSONSSSSNOSSSENSOOSNOEER; 5,R; 5,R; 5,RR; 5R; 5,R; 5,R; 5R; 5R; 5RR; 5R; 5R; 5R; 55R; 5R; 5R; 5,RR; 5,RR; 55;5RRR; 5R;R; 5,55R; 5RR; 5R; 5,55R; 5R; 5555RR55RRRR555RR55R; 5555;;;;183.0183.0183 01183.083 0183.083083.00183 0183183.083 0883183.03033083.0183.000183 0183.0883.0838383303183 083.083 083.083.08183.3.083183.03.083 01818830183.083 0018383 08838808833333000830030
XO BUXO BUXO BUXO BUO BXO BUO BUOBXXXO BUXO BUXXOOXO BOOOBUXO BBUUXXXO BXOOOBXO BUXOXO BUXO BUBBOBUXO BXXO BXOOXO BXOXO BXO BUXXOXO BXXOOOBXO BXXO BUOBBOOOBUXXXOBUOBUUBUUXO BUOXO BOOOUXSHINGSHINGSSHINSHINGSHINGNGSHINGGSHINGSSHINGSHINGSHINSSHINGHHNHINGSHINGNGSHINGSHINGGSHINGSSSHINGSHINGSSHINGSHINGNNGGNGNGSHINGGGSHINGSSSSSSHINNGSHINGGGGSHINHGSHINGGSSSHINGHSHINSHINGSNSNSSSGGSSHINGGGSGG; 5,15,; 5,1;5;551155,1;5; 5 15,151555,111151;5 115,5555,155555555,555,5; 5;;;73.3373 373.373.373 373773 3333.3373 3333373.37333333373.373 3773 3773.373.33373.33373 333733.3733333337333733.3373333337373.33333333
WireWire WireWireWireWireWWWireWireWireWireWiWireWWireWWireWWireWiWireWWWireWWirWWirWireWireWireWeWWWireWWWireeWireeWWireWWireWWWireWirererWireeeWWWWWWWreeWWireeWWeee ProterotePProPrProtePPPrProtePrProteProProtProteProteProotetProteProteProteProteProteroroteeeeProPProteroroteooteeProtProterooteooteteoteeoteePPoteoootePPeeeoteoteoteroteterotterttctor;tttor;tctoctoctctctoccttoorrctorcctocctorctoctor;ctor;ctooor;orooorctorrctorccctor;cctor;tor;toctoororccctoctooctoootccctooocctctoorttoo;ctor;cctocto ;;5,165,165,165,165,165,1615,165,1651655165,165,1655,1655,165115,1651666555,1115,165,1665165,16665515,16115,166555,1516566665,165,165,165,16565,16655,16565655,16655,16666112.7272.72772.72222.722.722.72.777.72222222777227272.7727222277272722227722.72.72722.7.7..7
JET PJET PETET PJET JET PJET PTJET PJET PEPPJET PJET PET PET PET PET PJET PTPJET PPETPPPJET PPPPET PPPPPJJJJJJJJEJEPUMPMP;UMP; UMP;UMP;MPUMPPUMUMPPUMP;UMPUMP;UMP;UMPMPUMPUMPUMPUMPUMMMPMPPPPMMUMP;MUMPMPMMMM;MPPMMPMUMUMP;MUMUUUUMUU ;UU ;;5,1575,1575,1575,1575,157157151575,1575,15775,1575515715775,1575155,155155,157511575,15751575751575,1575751575555,15715,1151575151157575555515575,15515555,15555515551157775,157575,55,15755555555575.000.00.000000.000000000000.000000000000.000..000.0
SLEEVSSSLEEVSLEEVSLEEVSLEEVSLEEVSLEVVEEVSSLESLESLEEVSSSSLEEVSLEEVSLEEVEEVSLEEVEEEVVVSLEEVVSSLEEVSEESLEEVSLEEVSLEEVSSSLEEVVSSEVVVVSLLEESLEEVVSSLEEVSSSSSVVSLEEVSSSEEEVSSSEEVSSSSEEVEEE-C; E-C;E-CEEE-CCECECECCCE-CEE-C;E-CECE-C-C;E-CE-C;CCE-CEECCCCE-C;C;CCCE-C;E-CCCE-C;E-CE-C;EE ;CCCCCCCCCCEECCC;E ;5,158,1585,1585,1585,1585,1585,1585,1585,1585,158515,15855,1585,1585115155,15885158585,15885,15855,1585,1585,151585,1585,15885,158851515,1585855,15851585558158885,1585555,1585,1558585588555555,15855885,1,1588.8.8.8.888.8.88888.888888888888.888888888.88...88.
WWireWire WireWireWireWireWireWWireWireWireWWWWireWWWireireireWWirWirWWireWWireWireWWirereeWireWWWrereWireWireeWWreWireeWWWiWireWWireWWeWireWWirereeWWeeeeWWire ProteroteProteroteProteProtePProPProteProteProtProteProPProteProteottProteProtePPPPProterroteoteroteProroteroooeoteeeProteProtePrrProoteoProteProteeeProteoteooteoteteooooeeeeottetertector;tttctor;ctoctctor;cctotor;ctor;ctoctorctorctorcctoctoctorcttctor;ctoorooctoctor;ctorcctorctor;tcttctor;oorooor;cctoootoooctor;occcccccttttto ;cto ;;5,155,155,155,15,1555,155,155,1555,155,1551155555,1515,155511551155,15,155155551555,1555,1555,155515,155,155,1555555555,1155555555,551557.77777.77.77777.77777777.77777777777.77.777.7777777777.77777.777777.77777.777..
SLIP SLIPSLIPLIPSLIPSLIPPSLIPSSSLIPSLIPSLIPSLIPSLLLIPSLIPSLIPSSSSLIPSLIPSLPSLIPSSSLPSLIPPSLSSSLIPPSSSPSLSSSSSSSSLSSLLSLS STOP;SSTOPSSTSTOPSTOP;STOPTOOSTOP;TOPSTOPSSSTOPSTOSTOPSTOSTOPSTOPTSTOPOSTOOOSTOP;OPSTOPSSTOP;STOTOSTOPTOOSTOSTOSTOSTOPSTOPSTOPSTOP;SSTOSTOSTOOPSS;SSTOPOOOSSSPSPOP;STOSPPSOSSSTOP;STOSOOO ;5,155,155,155,1511551555,155515155,15,155155,15551515155,155,15,155,1551115,155,1555,1555155555555555555555,155,15555,1555,155115,6.060660606.00.06.06.06.066060606.0060060660606.06.06.0666.06.06006.00066.000060060666606606000000666.006..00
GAS LGAS LGAS LGASASASGASGAS LS LAS LGAGASGAS LGAS LGAGASGAGASSSGAS LLSLGAS LGASGAGGAS LASSSGASGASSGASGGAGAASASGASGASAGASSAS LGASGAGASGGAAASSGAGAGASGASSLAGAGASSSGGGGASSSSSLGGALAASLIFT;IFTFTIFTIFTIFT;IFT;FTFTFT;FT;T;IFIFTTTTT;FT;FTT;;;5,0695,0695,0695,05,0695,069065,0695,0695,06955,0695,0695065,0695,0695,065,06065,0065,0695069069955,06900695,0695,066060695,0699069060690606069950695,069550506069069,069,069506950655060695,069955,06606699,069069950955069555609,,.8.8.88.88888888888.88.8888888888888888.88888888.88
GAS LGASGAS LGASGASGAS LGAS LGAS LGAGAS LSGASLGAS LGGASGASGASGAS LGAS LGGASGASASSSGASGASASSGAS LLGGGAS LGASGASGGASGAGASAAGASASSGASGAS LGAS LGASASSGAS LAASGASSGGAGAAAAGASSSSGAS LGAS LAGASSSSGSSGASGGSSLGASSLGASGASIFT;FTIFTIFTFTIFTIFTTFTIFIFFT;FT;FFT;TTTTTTFTTTIF;;FT;;;;;2,3382,3382,32,3382,338382,3382,33823382,3382,33822,332,3388222,3382,3382,3382,338232332,3382,338,3383382,3382,338338382,3382,33822,3382,3382,3232,33383383382,3382,338382,33833333838823388333383832,338883333882,3382822233332333382332338,,.555.5555555.5555.555.5.5.555555555555555555.5555555
NIPPLNIPPLIPPLINIPPLNIPPLNIPNIPPLNIPPLNIPPLNIPPLNNNIPPNIPPLNIPPIINIPIPPNIPPLNIPPPPPPPPLLNNIPPLNNIPPNIPPPPPNINNNIPPNIPPPPNNNNNNIPPPPPPPPPNIPNNNPPPPNNNLNNNE; 51E; 5E; 551551E5EE; 51E51E55551E; 51E; 51E; 51; 55511E; 555;5551115155555155555;51E; 51555555;;;;2.82.82.8282.82828282.88882882.822822.82888282.8222288288228882.8282.88288222288228.82.8828822.2.88
CONDUCONDUCONDUCONDONDCONDUCONDUNDDCONDUCCOCCONDCONDUCONDUCCONOCONDUONDUCONONDUNCONDUDUCONDUUCCCONDUCONDUCONDUCCONDUCOCOONDUONDOCONDDONDUDCCOCCOCONDNDCONDUCONCONNNDCONDCONDUOONDUCONCCONDUCONDDNNCONDUDCONDONDUOCONDUCONDDUONUUONUCTOR;CCTOR;CTOR;TCTOR;OR;ORCTORCCTORCTORCTOR;CTORCTOR;CTOR;TTCTOOOTORCTOCTORRTORCTOR;RCCTORCTORCTOCTORCCCTORTOOOOOCTOCTORCTORRRCTORCCRRCCCOOORORCTOR;CTOR;OOROCTORRORRCTORROCCCOOORCOOORR;R;;;29.0229.29.029.0929.029.029229 029 0229 09.0929 090929.00229 02922929 09.090929 0029.02999029 09.022229.00029.0029.029.029.09299990229.0929.022992290299.092202900-110.110-110.-110.110.11111000-1100110.11-111110.00110-1101001010110.110111100.01-110.111011011011-110.-110.1 0000000000 000000000000000000000000000000000000000000000000
HHANGEHANGEHANHANGANANGANGEHANGGANGEGEHANGEEGEEHANGEHANGEHANGEHANGEANGHANGANGANGEHANGENGEGHANGEANGEANGENNGANGNGGNGANGEANGEHANGEHANGEAAANGGGANGAAANGANGEHAHANGEANGGGEHANGNGNNAANGEANGAANGEANNGENGGEGANNHANGAAAAGGGHAAAGGGR; 23RR2R; 23R; 2R; 23;2R; 233R; 23R; 23RRR; 233R; 23RR23R; 2R; 232R; 2; 22R; 23R; 23R; 23333R; 23RR; 232R; 23323223RR;;R; 2323R; 23R; 23R; 23R22R; 2RR; 23R; 22233RR2R; 232R;233R333R; 23RR22333;3;3;.555555.5555555.555.555555555.55.5555555.5555.55555555
KUKKUKUKKKUKKUUKUKUKKUKUKUKUUKUKKKKKUKKUKUKKKUKKUKKKKKUKUKKKKKUKKKKUKUKKUUKUKKUUKKUUKUKUUKUUUUKUKKUUUKUUUP PPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPP PPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPPROROROOOOORORORROROROROROROROOOOROORORORORROROOROOROOROOROROOROOORRROOROOOORORROOOROOOOORROOROORRORROROOOROORRRRORRRORROROOOROROOORRROOOROOOROOOOODDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDD
KB-GrKB-GrKBKB-GrKB-GrKB-GrKKB-GrKB-GB-GB-GBB-GB-KB-GrB-GGrKB-GrKB-GrKB-GrKBKKB-GrKBGGGGKB-GrGKB GrKBGrKB-GGKBKKBGGKB-GBGGKBKGGKB-GrKB-GrGrrrKB-GrKKGGB-GKBGrKBGKBGGKKGGKKKBGrKKKBGd (ftd (ftd (ftd (ftd (ftd ((fffd (ftd(fd (ftd(ftd(ffft(ftd (ftd (ft(ftd (ftd (ftd (ftdddd((d(ffd (ftfttd (dddd (d (fftd (ftd((fftfdddd(ddd (fttddt(((())))))))))))))))))))))))))))
34.134.1434.113334.134 134.1434.14.134.333434.1334.4344.1334 133434.1134 13334.134113344.13434.134434344413444434.1334.1444.144333333.13331111111111111111111111
RR DaRR DRR DRR DaRR DRR DaRR DaRRRDRRR DaRR DaDDRR DaRR DaRR DaRRR DRRRR DaRDaRR DaDRR DDaRR DaRRRDDRR DRRR DaRR DaRRRDDRR DaRR DaRR DRRDDRDaRR DaaaR DaRR DaDRDRDaRR DaRRRRR DaRR DaRRRRDaaaRRRR DaRRRDDaaaRRR DaaRRRaatetetttetettettetetteteeeteeteteetteeeeeeeeeeeeeeeteeeeteeee
5/275/275/275/2725/25/275/275/275/275/27//2225/27275/275/275/275/275/275/27/5/27/272/25/225/27275/2/27/272775/27//2775/5/2755525/275/275/2755/5//275/275/2275522555522555/227555/22275/27/20/200/200//200/200/200/20000020000/200/200/200/200/200200/2200/200/20000000/2/200/2002002220200/20000/20200000/200/200/200/20/200/200/20/2000/2///2002/2000002/20/200//22200220/200/200200220000002200000000000033333333333333333333333333333333333333333333
OtherOtheOOtherOtherOtherOtherOthOtherOOtheOtheOtheOtheOthOthetOtheOtherhOtherOOtherOtOthOtherOtheOtheOOtheOherOOtheOtttthehOtheerherrOOOheeOtherrrOthetOtOtheOtheeOtheeteerrhherOtherOtheOOOO ElevEleElevElElElevElevElevElevEEleEElevElevEleveveeevevevElevElevevevevevvvvEEeeeveveveEEElevevvevveveelevevvvveeeeeeeeeElleeev……………………………………………
1C1C1CC1CCCC1C1C1CCCC1CCCC1CCCC1CCC1CCC1C1CCC1C11CCCC11C1CCC1C1C1CCCC1C111CC1CC111CCCCCCCCCCCCCCCCCCCCCCCCCCC1C-1-11-1111-1111111111111111111-11--117070707070000707007070707070070707000070707007007770770707070707070770700077070700707700707707007700700070700
..................................
TDTDDTDTDTTTDTDTTDDDDDDTTTDTDTDTTDTDDDDDTDTDTDDTTTTTTTTDTDTDTDTTTDDDDDDDTTDDDDDTDTDDDDTDDDDDDDDDDDDDDDDDDDDDDDDDDDTDTDTDTDTDDD
Act BAAct BAct BAAct BAct BAct BAct BBBAct BAAct BAct BAAct Bt BtAct BBBAct BAct BAct BBct BAAct BAct BAct BtBActAct Bct BAct BBAAct BAct BctBBBBtBActcccct BtBct BAAccBBAAcAccctBBBAAAAcBBActBBct BActBActcAActActccctBcBtm (ftm (ftm (tm (ftm (fff(ftm (ftm (ft(ftm (fm(f(m (fm (fm(fm(ftm (ftm (ft(tm (f(ftm (fftm (ftm (tm (ftm (ftm (ftmtm (fttmm (fmm (mtm (tm (f((f(ftm (fftm (fmmmmfttm (f(ffffmtm (fm (ttt (fmftKB)tKBtKB)KKBKtKBtKB)BBBB)tKB)tKtKB)tKB)tKBtKBKKBtKBKB)BB)B))tKB)ttKB)ttKBKKKKtKB)tKB)BtKB)B)ttKB)KKBKBBBtKBttKB)tKBtKKtKB)tKKBttB)BBBKBtKB)tKB)BBBBKKKBBtKB)tttKKtKBKKB)))
12,212,212 2222,212,212,212,2222222,22222212,222112,212,2222222,22,2222,222221122,212,212,2212,21121122,2121122,12 2222,22222222222,,2222,,22212,22,222222,,,,30.030.030.030.0000030.0003330.030.03030 0330.030030.0300030 030.030.0330.030 030.0330.0000.030.00.000.000.00.030 030030 00.030.0330 0000030.030.0000030.30.3030.03330 0330 030.00033030.00000030.003330000.0..0303300030.0.0
WeWeeWeWeWeWWWWWeWWWWWWelWeWeWWWWlllWWeWelWWWWelWeWelWWelWWeWWWWeWWWWelWelWWWeWWWWeWWWWWeWelWWWeWeWWeeeWeWeWeWeWWWeWeeeWeWWelWWWWWeeWeeWeWWWWWWWeWeeeeWeeWWWeWeWeWeeeWWWWWeeeWeeeeWelWWWWWeWWeeeWelWWWWeeellWWWWeeeWeWWWeeeeWWWeWWWeeeeleeeeel AAl AlAl AlllAAAAAl AllAlAAAllAAllAAAAAAAAAAAAAAAAAAAAAAAAl AAAAAAAAl AAAAAAAAAAAAAAAAAAAAAAAAAAAAllAAAAAttrttrttrttrtrttrttrtttrttrttrtttttrtttrttrttttrttttrttrttttrttrtttttrttrtttttrrrrrttrttrttrrtrttrttrtttrttrtrrrttrrtrttrtttrttrrrttrrttrrrrttttrrttttttttrtttttttttttrrttttttttttibuibuibubibuiibiiibuibubbbbibuibuiibubibubibuiiiiibibuibbubbuibiiibbbbbibbbuuubuuuuibuibiibbbbbuibuibuibbbubububbbbbuuibubbbubbbbbbbbbubibbbubbuuuibbbuuuubbbububuubbbubbuuuuibuibubbbbbuuuuuibubbbbbuuuutesetestestetestestesttttestesttesttestesestesestesesestttesttesesesestesstesstessestesteetestestesstesessteteesteseesesessstestestteeeeeeesstessetesssessseesssesesseeeesssstessseesesestteeeeeesssstttteeeesstteeesesssteeestttetesessssttettteeeesssss
FFieFieFieldFFieldiiFielddFi ldFi ldFieFieFiildieldleldFieldFFieldielFielieldFiieldFieieiieeeeelFieldFieldFieldeldFielieFieldeddeldeldFFFieFeldeeelddielddedFFFeelddedeldededielldFieilddddNameNNNNamNNameNNNaNameNameNNameNNamNameNameNamNamNameNamNameNamNameaamaaameNamNamemeNameameNamNameeameNamNNNameaaNamNamemNameeeNaaNamemeeeeeNNmameeNameNameeNaeNNameameNameeaeeNNaeeeNameNamamm
WESTWESTWWESTWESTWESTWWESTWESWESEEESTESTWESTWESWESWESWESWESTWWESTWESTWWESWESWESTEESTWESTWESWESTSSWESWWEWWESWESTWEESTWESTESSSWESESWESSWESTTSTWESWEWESTWWESWESWESSWWWWESTWESSSWWESWSSWEWEESESSSWSWSSWSWWWWWSSSEEESSSWSWESTWESTWSSSS SAK SAK SAK SAK SAK AK A A AK AKK SAK S S SAK SAK SAK SA SAK AK SAK AK SAK S SAK SAK S SAK SAK SAK SAK SA SAK SAK SAK SAK A SA A SAKK SAK SA AK SAKKK SAK S S A A A SA S A S SAK S SA AKK S AK SAK AK SAK SA AK A AK S SAAK S SAK AKK S SAK A AKKK S S S AK S A SAK S S AKK
WellbWWlWellbWellbWWllWelbbWlWWWellbWellbWeWllWellbWellbWelWelllWellbWellbWellbWellbWellbWWellbWellbWellbWellbWellbbWellbWWWeeellbbellbWellbWeWWeWellbWeeWellbWellbbWellbeWellbebWWWeWWWellbWeWellbWeeWWellbbebWeWeebWWWeebbbWWWWellllbbore Aore AAAore Aore Aore AeAAore Aore Aore Aore Aore AAore Aore Aoreooore Arrereoreeore Aore AAore Aoore Aoreoore Aorerere Are AAeAoorereeeeore Aore Arore AAAre AAAAeooooeeAAore AooeeAooereAore AAPI/UWPI/UWPI/UWPI/UWII/UUPI/UWUI/UWWUWPI/UPI/UWPI/UPI/UWPI/UWPI/UWI/UW/U//UWWWPI/UWPI/UWPI/UWPI/UWPI/UWPPPI/UWPI/UW/UW/UPI/UWPI/UWUWUWWPI/UWPI/PPPPI/UWPI/UW/UPI/UWWPI/UWUWWPI/UPI/UWPI/UWUWWWPI/UWPI/UPWWPI/UWPP/UWWWUW/UWW/UWUWUUUWUWWUWPI/UIUWWIIIIIIIIIIIIIIIIIII
500255505005555002500250025005005002500250025005002500250050000050050025005002500225002500002500500200200200500200205002500250025002500500000250025000002250025000505500250025002250025000500222550002500202025250025500050022500500022225500025500923192392319232392319239239231992923923123239232331231923923192319292312223923239239239233392311929239292312311923923923123923113192392319233199923339239299939929992232929232391233399222323222231254005555454005400400005540054005400400540040000054004054004005400540054554054005400540000054005400005405400540054005400540000000054004404005400454000555400540055400540540555400404004540044540000545400005440450000000005054000500050
WellbWWlWllWellbWellbWllWWelWellbWellbWellbWWellbWellbWWellbWellblWelllWellbbWelWellbWellbWelWlWellbWellbWellbWelWWellbWellbWWWeleeellbWellbWellbellbWeWeWWellbWeWellbWeeWellbWWWeellbeWeWeWelWellbWellbWellbWellbWellbWeeWeellbbWeebWWelbbbWWeelbbore Sore Sore SSore SeSore SSore Sore SSSeSore Sore Sre SSre SSore Sore Sore SSoreoreore Sore Sore Sre SrreeSSSore SSooreeeSore Sore Sore Sore Sororeore SSoreooreroree Se Soreoreorere SSorre SoeSooeeSeSSeeSoreeeeSSoreore SSStatustatustatutatustatutatutatustustatuttatusatusattatustatutatutatatustatustatusataattatusatustusttatusssustatustatustatustatutatussustatustatusaatusatustatusatusaaatusatusatuasssatusaatustatatuatustusustattusttaatuss
PPRODPRODPROPRPPRODPRODRPROOPRODRODDPPRODPRODPRODPROPROPRODRORROODROPRODPRODODPRODPRODPRODPROPROPRODPRODPRODPRORPROORODDODPRPROPRORRPRODOPRODDPRORRROROOODDPRODODDRRODROODDPPRODPPROPROORPRORODRRORDOODOOOODDODDDRORPRODROOO
MaxMaxMaxMaxMaxMMMMMMaxMaxMaxMMMMMMMMaxMaxMaxMMMMaMaxMaMaxMMaxMaxMMMMMMMaxMMaaaxMMMMaxMaxaaMaxxxxxMaxxxxMMMaxMMaxaMaxxxMaMaxMaxMaaxaxaxxaxxMMMMMaaaaaMaxaxMaxxMMaMaxaaaaaMaMaxxMaxMMaxMaaaxxMaMMaMMaaaMMMMaaaxMaxMaaaaxMaaxMaaaxxaaMaaxxMMaaaxaxxxMMaxxxxMMaaaxxMMaxMMMaaaaxxxxaaaa AnAnAnAnAnAAAAAAnAnAAAAnAAnAAnAnAAAnAnAAAnnnnAnnAnnAnAAnAAAnnnnAnnAAAAAAnnnnnAnnAnAAAAnnAnAnAAAAAAnnnnnAAAAnnnAAAAAAAnAAnAAAAAnAAAAAAnAAAAAnnnnAAnAAAnglegleglelllglglegleglegleglgleglglelgleglegleglegleglegleglegleglegleglglegggleggeegleegglglegggleeglegleggleglegglgleeeegggleggeeeeegggleeeeggeeegleeglegeeeeeeeggeleeggegleggeeeegggleggggeegleeeeegggegleegleggeeggggleeeeeegggeegggggggggggggg & & &&&&&&&&&&&&&&& &&&&&& &&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&&MDMDMDMDMDMDMMMMMMMMMMMMMMMDDDDDDDDDMMDMDMMMDMDDDDMMMDDMMMDDDDDMDMDDMDMMMMDMMDMDDMDDDMMMDMDDDMMMMDDDMDMMDMMDDMMMMDMMMMMDMMMMMMMDMDMMDMMDMMMDDDDDDDDDDDDMMDMMDDMMDMMMDMDMMMDDDDD
IIlIIncl InInclnlclIInclInlclclIncInclInclncnncnncnccccnccccncnccncncccncIccccnclcncInccnclnclcl (°)(((°(°)(°(°)(°)°)°)°°)(°))(°)(°(°)(°(°)°°))(((°)°(°)(°)(°)(°)(°)°)°°(°)(((°)°((°(°(°)())))))(())(())
92.392.392 3992.39292.392 392.3992.392.32292.392.3392.392.392 392 3992.392.3922323232.32239292.339992.32.32.3339929992.3233392 39339293922.32.323992922.392.33393399222292.3232.3922.3.392.33999222..333392.33333222..35555555555555555555555555555555555555555555555555555555555
MDMD (fMD (fMD (fMD (fMD (MD (MDD (fD(DMD (fMD (f(ffMD (MD (fMD (fMMD (MMD (fMD (fMDD(MD (fD(fMD (fMD (fMD (fMMD (fMD (MD (fMD (fMDDMD ((fMD (fMD (fMD (MD (D(fDMDMD (fMDMD (ffMD (ffMDDMD (fMD (fDMD (fff(fMDMMMD (fMMMMDMMDD (MMMD (M ((tKB)tKB)tKBtKB)KKBKBtKB)KtKB)BtKBtKB))tKtKB)ttKB)tKKKB)KKB)KBKtKBKB)KB)tKB)))tKB)tKBtKBttKB)tKB)KtKtKBtKB)tKB)KB)KB)KB)BtKBtKttKB)KB)tKB)KKB)BBKB)ttKB)tKB)BBB)KtKB)BKBBKKKBtBBtKKttKtKKB
6,946,946,946946946,94666,96,946,94694696,9996949466,946,946946966,9949696,949494946,9466,99946,946,946,96,9466,94666,994,9469446,94469969946,66 96969466,9466,94994446,9469946996,946,94999,946,9,94446,,99966966,999,9.649.649.649.649696969.6969.6969.64969.649.649.64999964969669.66649.649.69649.649.649.6649.649.649.6499.669.6496449.6496646464964969.649.64696969.64999.649.644969.64664464449.64.6449.644466996999969.6664
WELWELWEWEWEWELWELWWWELWELWWEWEWWELLWELWEWELWWWELWWELLWELWELWELWWWEWELWEWWEWEWEWELWEWELWWEWWELWWWWEWWELWWWELWWWWELWWWWWEWEWWWEWWLWWWEWELWEWWWELWLLLNALNALNALNALNNAALNALNALNALNANNALNAAANALNALNANNANNANAALNNALNANAANANANAAANAALNANNANANAANAANNNNAAALNANANANAAAAANANALNALLNANAAALNALNANANAAAAALLNALLNNNNNNAAAAME WME WME WME WME WME WME WME WEWME WME WME WME WME WME WME WME WME WMWME WME WME WME WME WME WWME WME WME WWWWWMEEWME WME WME WWWME WME WWME WMEEEWEWME WME WME WMEWWME WWME WME WMEME WMEWME WME WEME WME WME WME WMEWWMME WME WWMMEWWMWWEEWME WWMWWME WEMMMMME WEWELLELLELLELLELLEELLELELLELELLLLELLLELLELLELLLLLEEELLEELLEELEEEEELLEELLELLELLLELELLLEELLEELLLLLLBOROBORORBORBORBORBBORBORBORBORBORORORBOROBORBOROOBORRBORBORORRBORBORBORBORBORORORORRORBOROORRORBORBORBORBORBORBOBORBOBORBORBORBOROOORBBOROBOROROBOORBORBBORRRBBOBORRORBORROORBOOOORORBBOBOROOORRRRE1C1CE1CE1CCCCECE1CECE1CE1CECE1CE1CE1CE1CE1CECE1CE1CEC1CE1CCCEC1CCE1CCCCCCE1C1CCE1CCECCECECECCCEE1CE1CECEC1CCE1C1CECEE1CCCECE1CE1CC1CECECC1CCECECCCCCEECEE1CEE-17-171717117-17-17-1717-177-171711-1717777717177-1717177171711771171177717777--7-17-7-777777171177000000000000000000000000000000000000000000000000000000000
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6/236/236/236/23/236/23/236/236/266/236/2366/23/2223226/2336/236/236/236/23666/236/2/6/6/236/23/2226/236/23333/2366/23336/236/236/23/36/23/23/336/236266/236/2366/2336666266/6/23/236/236/232326/26/23626/236622233/266633/201/20/201/201/20/201/201//2220/201/220/20120/2020201/201/2//22/20/22/2020/2000/20/20/201120120120120102001101/2020/20/201//20/2201/20120/20//220/00222/2202000000 00000000000000000000000000000000000000000000000000000000
H2SH2H2H2SH2S (H2S (HH2S2S (2SSSH2S (S2SH2S (S (H2SHHH2S (H2S (22S (2S2S (SSH2SH2S (S2S2S ((H2S (2SH2S (2S2 (22SSS (22H2SSSS(2S2SS (S(222S (H2H2S (S22SSS2SSS2SSSSS (SSSS ((ppm)mpm)ppm)ppm)ppm)ppm)ppm)pm)pm)ppm)m))ppmpmppm)pppmpppppmppppmppppm)mmppmm)mmm)pm)ppppm)ppmpmppmpppm)ppmppmmpm)ppm))ppm)mppmpmppmppppppppm)ppppm)pm)ppppp )))
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8/128/128/128/128/18/128/128/128/128/128/1288/128//8/1218/128/128/12288/128/128/8/12/8/8/8/118/1228/128888/11228/128/128//128/18/12888/8/1212288/12/88/88 222/222888/128/8/12822822228/12/128/122888/28/12/88 /201/201/201201/20/201201/201/20//2202201/20120120/200001/201/201//2220202/2022001/201/2020/2/20/20011/20200/201/2/2012000/2010/22//2/22200/2/0002200000 6666666666666666666666666666666666666666666666666666666666666666
CommeCCCommeCommeCCCCommeCommeCommeCoCommeCoComCCommeCoCommeCCCommeCComCCommeommeommeommemmemmComCommCommComommeommeommoComommemmCommommmmmommemmemeCommemeeCoCommmeooommmmmeeommeCommemommCommemeCommCCommeCCooeCCoeCComCContntttttntntntntntntntnnnnnnntnttttntntnntttntntntttt
SSSVSSSSSSVSSSVSSSVSSSVSSSSVSSSSSVSSSVSSVSSSVSSSSSSVSSSVSSSVSSSSSVSSVSSSVSSSSSVSSVVSSSSSSSSSVSSSVSSSSSSSSSSSSSSSSVSSSSSVSSSVSSSVSSSSVSSSSSSSSVSSSSSVSSSVSSSVSSSVSSSSSSVSSSSVSSSVSVSSSSSSVSSSSSSSSSSSVSSSSVSVSSSSVSSVSSSSSSVSSSSSSSSSSSSSSSS: NI: N N N N N I: NI: N: NI N: N N N: N I N N: N N N N N N N N N N N N N N: N: N N: N N N N N: N N: N N N PPLEPPLEPPLEPPLEPLEPLEPPLEPPPLEPPLEPPLEPPPPLEPPLEPPLEPPPLEPPLEPPLEPPPPLEPPLEPPPPPPPPPPPPLEPPPPPPPPPPPPPPPPPPEPPPPPPLPPLLP
Last Tag
Annotation Depth (ftKB) End Date Wellbore Last Mod By
Last Tag RKB TOC 10,895.0 8/9/2020 2L-330 fergusp
Last Rev Reason
Annotation End Date Wellbore Last Mod By
Rev Reason: Replace Jet Pump...again 8/12/2020 2L-330 fergusp
Casing Strings
Casing Description
CONDUCTOR
OD (in)
16
ID (in)
15.25
Top (ftKB)
40.0
Set Depth (ftKB)
110.0
Set Depth (TVD) …
110.0
Wt/Len (l…
65.00
Grade
H-40
Top Thread
WELDED
Casing Description
SURFACE
OD (in)
9 5/8
ID (in)
8.83
Top (ftKB)
31.1
Set Depth (ftKB)
3,318.6
Set Depth (TVD) …
2,398.1
Wt/Len (l…
40.00
Grade
L-80
Top Thread
BTC
Casing Description
PRODUCTION
OD (in)
7
ID (in)
6.28
Top (ftKB)
28.5
Set Depth (ftKB)
10,307.4
Set Depth (TVD) …
5,236.7
Wt/Len (l…
25.69
Grade
L-80
Top Thread
BTC-Mod
Casing Description
LINER
OD (in)
4 1/2
ID (in)
3.96
Top (ftKB)
10,108.5
Set Depth (ftKB)
11,198.0
Set Depth (TVD) …
5,932.2
Wt/Len (l…
12.60
Grade
L-80
Top Thread
IBT-Mod
SCC
Liner Details
Top (ftKB) Top (TVD) (ftKB) Top Incl (°) Item Des Com
Nominal ID
(in)
10,108.5 5,103.0 50.02 PACKER "HR" ZXP LINER TOP PACKER 5.250
10,123.9 5,112.9 49.79 NIPPLE "RS" PACKOFF SEAL NIPPLE 4.270
10,127.6 5,115.4 49.73 HANGER FLEX LOCK LINER HANGER 4.390
10,137.5 5,121.7 49.57 SBE 190-47 SEAL BORE EXTENSION 4.000
Tubing Strings
Tubing Description
TUBING
String Ma…
3 1/2
ID (in)
2.99
Top (ftKB)
26.3
Set Depth (ft…
10,165.4
Set Depth (TVD) (…
5,139.9
Wt (lb/ft)
9.30
Grade
L-80
Top Connection
EUEMOD
Completion Details
Top (ftKB)
Top (TVD)
(ftKB)
Top Incl
(°) Item Des Com
Nominal
ID (in)
26.3 26.3 0.00 HANGER FMC TUBING HANGER w/ 2.60' pin X pin pup 2.992
519.0 518.5 5.70 NIPPLE CAMCO 'DS' NIPPLE w/ 2.875" profile( 2.875
10,013.9 5,043.4 52.74 Sliding Sleeve -
Open
BAKER CMU SLIDING SLEEVE w/ 2.812" DS profile (OPENED
10/4/2016)
2.812
10,086.5 5,089.0 50.36 NIPPLE 3-1/2" X 2.75" Camco 'D' Nipple (OD 4.520" ID 2.750") no-go 2.750
10,125.0 5,113.6 49.77 LOCATOR BAKER NO GO LOCATOR 3.000
10,151.4 5,130.8 49.23 SEAL SSY BAKER 80-40 BONDED SEAL ASSEMBLY 3.000
10,165.1 5,139.8 48.89 WLEG BAKER WLEG w/HALF MULE SHOE 3.000
Other In Hole (Wireline retrievable plugs, valves, pumps, fish, etc.)
Top
(ftKB)
Top
(TVD)
(ftKB)
Top Incl
(°) Des Com Run Date ID (in) SN
10,013.
0
5,042.9 52.79 Jet Pump 3" JET PUMP (PUMP SN # PH-1053)
(RATIO: 8C) (8 Nozzle) (10 Throat) (SN# PH
-1110) OAL 54"
8/12/2020 0.000
10,895.
0
5,681.0 35.73 Cement Plug Dump bailed Cement 8/8/2020 0.000
10,924.
0
5,704.6 35.59 Sand Dump bailed 15' of Sand 8/6/2020 0.000
Perforations & Slots
Top (ftKB) Btm (ftKB)
Top (TVD)
(ftKB)
Btm (TVD)
(ftKB) Linked Zone Date
Shot
Dens
(shots/ft
)Type Com
10,540.0 10,555.0 5,403.5 5,414.5 BERMUDA, 2L-
330
4/19/2008 6.0 APERF 2.5" HJ GUN, 60 DEG
RANDOM
11,020.0 11,040.0 5,782.8 5,799.3 ESKER, 2L-330 12/30/2007 6.0 IPERF HYPERJET, EH-0,43, PENT
-13.1"
Frac Summary
Start Date
1/6/2008
Proppant Designed (lb) Proppant In Formation (lb)
Stg #
1
Start Date
1/6/2008
Top Depth (ftKB)
11,020.0
Btm (ftKB)
11,040.0
Link to Fluid System Vol Clean (bbl) Vol Slurry (bbl)
Start Date
4/20/2008
Proppant Designed (lb) Proppant In Formation (lb)
Stg # Start Date
4/20/2008
Top Depth (ftKB)
10,540.0
Btm (ftKB)
10,555.0
Link to Fluid System Vol Clean (bbl) Vol Slurry (bbl)
Mandrel Inserts
St
ati
on
N
o/Top (ftKB)
Top (TVD)
(ftKB) Make Model OD (in) Serv
Valve
Type
Latch
Type
Port Size
(in)
TRO Run
(psi) Run Date Com
1 3,595.8 2,506.7 CAMCO KBMG 1 Gas Lift DMY BK-5 0.000 0.0 5/13/2008
2 6,668.5 3,708.8 CAMCO KBMG 1 Gas Lift DMY BK-5 0.000 0.0 12/2/2007
3 7,309.1 3,958.3 CAMCO KBMG-
LTS
CIM
1 GAS LIFT DMY BK 0.000 0.0 1/12/2016
4 8,698.9 4,493.9 CAMCO KBMG 1 Gas Lift DMY BK-5 0.000 0.0 12/2/2007
5 9,932.5 4,996.9 CAMCO KBMG 1 Gas Lift DMY BK 0.000 0.0 10/2/2016
Notes: General & Safety
End Date Annotation
8/12/2011 NOTE: CIV MANDREL @ 7309 - MODEL CM-40R, 1400 PSI
8/24/2008 NOTE: VIEW SCHEMATIC w/Alaska Schematic9.0
DEVIATED, 2L-330, 8/13/2020 7:23:11 AM
Vertical schematic (actual)
LINER; 10,108.5-11,198.0
FRAC; 11,020.0
IPERF; 11,020.0-11,040.0
Sand; 10,924.0
Cement Plug; 10,895.0
FRAC; 10,540.0
APERF; 10,540.0-10,555.0
PRODUCTION; 28.5-10,307.4
WLEG; 10,165.1
SEAL SSY; 10,151.4
LOCATOR; 10,125.0
NIPPLE; 10,086.5
Sliding Sleeve - Open; 10,013.9
Jet Pump; 10,013.0
GAS LIFT; 9,932.5
GAS LIFT; 8,698.9
CHEMICAL; 7,309.1
GAS LIFT; 6,668.4
GAS LIFT; 3,595.8
SURFACE; 31.1-3,318.6
NIPPLE; 519.0
CONDUCTOR; 40.0-110.0
HANGER; 26.3
KUP PROD
KB-Grd (ft)
35.60
Rig Release Date
12/4/2007
2L-330
...
TD
Act Btm (ftKB)
11,201.0
Well Attributes
Field Name
TARN PARTICIPATING AREA
Wellbore API/UWI
501032055400
Wellbore Status
PROD
Max Angle & MD
Incl (°)
68.94
MD (ftKB)
4,648.25
WELLNAME WELLBORE2L-330
Annotation
Last WO:
End DateH2S (ppm)
50
Date
11/23/2015
Comment
SSSV: NIPPLE
Last Tag
Annotation Depth (ftKB) Wellbore End Date Last Mod By
Last Tag: RKB (Est. 120' of Rathole) 8,006.0 2N-339 7/29/2019 zembaej
Last Rev Reason
Annotation Wellbore End Date Last Mod By
Rev Reason: Replaced Jet Pump 2N-339 5/22/2023 fergusp
Notes: General & Safety
Annotation End Date Last Mod By
NOTE: CAUTION: Plastic Coated Tubing - Max RIH / POOH Speed=100 FPM rmoore22
NOTE: Well has a 14" conductor extension 5/29/2022 bsgreen
General Notes: Last 3 entries
Com Date Last Mod By
Plastic Coated Tubing 6/17/2022 rmoore22
SUSPECT LOOSE FISHING NECK ON CS LOCK 12/20/2002 Admin
Casing Strings
Csg Des OD (in) ID (in) Top (ftKB)
Set Depth
(ftKB)
Set Depth
(TVD) (ftKB) Wt/Len (lb/ft) Grade Top Thread
CONDUCTOR 16 15.06 30.7 109.2 109.2 62.58 H-40 WELDED
SURFACE 7 5/8 6.87 29.5 2,963.3 2,306.2 29.70 L-80 BTC-MOD
PRODUCTION
5.5"x3.5" @ 7575'
5 1/2 4.95 26.6 8,227.6 5,541.6 15.50 L-80 LTC
Tubing Strings: string max indicates LONGEST segment of string
Top (ftKB)
24.4
Set Depth …
7,453.0
Set Depth …
4,994.2
String Ma…
2 7/8
Tubing Description
Tubing – Production
Wt (lb/ft)
6.50
Grade
L-80
Top Connection
MITI
ID (in)
2.44
Completion Details: excludes tubing, pup, space out, thread, RKB...
Top (ftKB)
Top (TVD)
(ftKB)
Top Incl
(°) Item Des
OD
Nominal
(in)Com Make Model
Nominal
ID (in)
24.4 24.3 0.18 HANGER 11.000 FMC Gen V Tubing Hanger, 11" X
31/2" EUEM B X P
FMC Gen V 2.960
7,345.7 4,918.4 45.71 SLIDING
SLEEVE
3.220 Weatherford 3.220" x 2.313L BSSD
Sliding Sleeve BTS8 BxP (SHIFT
DOWN TO OPEN) Open Sliding
Sleeve 6/10/2019
Wetherf
ord
BSSD
Standar
d
2.313
7,394.4 4,952.6 45.23 NIPPLE 3.703 Camco 2 7/8 (2.25" D Nipple) STL
BxP
CAMCO D Nipple 2.250
7,438.7 4,984.0 44.46 SEAL ASSY 2.880 Baker 30-26 Locator Seal Assembly
STL Box
Baker 30-26
Seals
1.940
Top (ftKB)
1,475.0
Set Depth …
7,496.0
Set Depth …
5,025.0
String Ma…
4 1/2
Tubing Description
Tubing – Production
Wt (lb/ft)
12.60
Grade
L-80
Top Connection
MITI
ID (in)
3.96
Completion Details: excludes tubing, pup, space out, thread, RKB...
Top (ftKB)
Top (TVD)
(ftKB)
Top Incl
(°) Item Des
OD
Nominal
(in)Com Make Model
Nominal
ID (in)
1,475.0 1,378.3 36.69 HANGER 4.950 Weatherford 4" x 5 1/2" NTP Liner
Top Packer W/ TYE PBR, TKC
FJ150 Pin
Weather
ford
NTD
Packer,
TYE
PBR
3.350
7,440.7 4,985.4 44.42 SBE 4.500 Baker 30-26 Seal Bore Extension
Assembly
Baker 30-26 2.680
7,477.2 5,011.5 44.35 SEAL ASSY 4.000 Baker 80-40 Locator Seal Assembly
EUE Box
Baker 80-40 3.030
Other In Hole (Wireline retrievable plugs, valves, pumps, fish, etc.)
Top (ftKB)
Top (TVD)
(ftKB)Top Incl (°)Des Com Make Model SN Run Date ID (in)
7,345.0 4,917.9 45.75 JET PUMP 2.313 X-Lock w/ 2.5" RC Jet
Pump(SN: CP 1000) (10A
Ratio), Soft Set, & Single
Sparek Gauge (92"OAL)
5/22/2023 0.000
7,800.0 5,243.0 44.90 FISH Anchor arm from the HEX plug
that was pulled on 6/09/2019
5/24/2019
Perforations & Slots
Top (ftKB) Btm (ftKB)
Top (TVD)
(ftKB)
Btm (TVD)
(ftKB) Linked Zone Date
Shot
Dens
(shots/ft)Type Com
7,846.0 7,886.0 5,275.5 5,303.8 S-3, 2N-339 7/26/1998 4.0 IPERF 2.5" HC, BH, 180 deg
phasing, 90 deg orient
7,846.0 7,866.0 5,275.5 5,289.7 S-3, 2N-339 11/8/2005 4.0 APERF 2.5" HP, 60 deg. phase
7,846.0 7,886.0 5,275.5 5,303.8 S-3, 2N-339 5/1/2019 6.0 RPERF 2", 6 spf, 60 deg phasing,
MAXFORCE HSD guns.
Stimulation Intervals
Top (ftKB) Btm (ftKB)
Inter
val
Num
ber Type Subtype Start Date
Proppant
Designed (lb)
Proppant
Total (lb)
Vol Clean
Total (bbl)
Vol Slurry
Total (bbl)
7,846.0 7,866.0 1 FRAC 11/11/2005 0.0 0.00 0.00
2N-339, 5/23/2023 7:48:15 AM
Vertical schematic (actual)
PRODUCTION 5.5"x3.5" @
7575'; 26.6-8,227.6
IPERF; 7,846.0-7,886.0
RPERF; 7,846.0-7,886.0
APERF; 7,846.0-7,866.0
FRAC; 7,846.0
FISH; 7,800.0
NIPPLE; 7,394.3
JET PUMP; 7,345.0
SLIDING SLEEVE; 7,345.7
SURFACE; 29.5-2,963.3
HANGER; 1,474.9
CONDUCTOR; 30.7-109.2
HANGER; 24.3
KUP PROD
KB-Grd (ft)
34.50
RR Date
5/30/1998
Other Elev…
2N-339
...
TD
Act Btm (ftKB)
8,239.0
Well Attributes
Field Name
TARN PARTICIPATING AREA
Wellbore API/UWI
501032026100
Wellbore Status
PROD
Max Angle & MD
Incl (°)
55.25
MD (ftKB)
6,250.00
WELLNAME WELLBORE2N-339
Annotation
Last WO:
End Date
5/5/2019
H2S (ppm) DateComment
SSSV: NIPPLE
Completed
1,216' MD / 1,199' TVD
2,780' MD / 2,300' TVD
6,758' MD / 4,944' TVD
7,345' MD / 5,532' TVD
2N 345
Baker 5½” Csg Seal Receptacle (CSR) Size 80-40
5½” 15.5 ppf Mod BTC box up
X 3½” 9.3 ppf 8rd EUE pin down
3½” 9.3 ppf L-80
8rd EUE (tubing) Csg
Baker CMU Sliding Sleeve, Size
2.813” w/3½” 8rd EUE Box x Pin
w/2.813” Camco DS profile
Camco 3½” x 1”
side pocket GLM
FMC Prudhoe Gen V
9-5/8 x 5½ x 3½
7-5/8” 29.7 ppf L-80 BTC Surf. Csg.
9-7/8” Hole
2.875” CAMCO DS
nipple for SCSSV
at 500’ + MD
Base of permafrost at
3½” 9.3 ppf L-80 8rd EUE tubing
6¾” Hole
CAMCO 2.75”
D nipple
Weatherford Gemoco
7-5/8” Stage Collar
Standard Grade, BTC threads
3-1/2” Slimhole Monobore Completion 7/18/2023
10
CAUTION: This email originated from outside the State of Alaska mail system.
Do not click links or open attachments unless you recognize the sender and know
the content is safe.
From:Rixse, Melvin G (OGC)
To:Hobbs, Greg S
Subject:RE: CO-23-004 Extension Request
Date:Tuesday, July 11, 2023 2:24:00 PM
Greg,
CPAI is approved for an extension to July 21, 2023.
Mel Rixse
Senior Petroleum Engineer (PE)
Alaska Oil and Gas Conservation Commission
907-793-1231 Office
907-297-8474 Cell
CONFIDENTIALITY NOTICE: This e-mail message, including any attachments, contains information from the Alaska Oil and Gas
Conservation Commission (AOGCC), State of Alaska and is for the sole use of the intended recipient(s). It may contain confidential and/or
privileged information. The unauthorized review, use or disclosure of such information may violate state or federal law. If you are an
unintended recipient of this e-mail, please delete it, without first saving or forwarding it, and, so that the AOGCC is aware of the mistake
in sending it to you, contact Mel Rixse at (907-793-1231 ) or (Melvin.Rixse@alaska.gov).
From: Hobbs, Greg S <Greg.S.Hobbs@conocophillips.com>
Sent: Monday, July 10, 2023 3:09 PM
To: Rixse, Melvin G (OGC) <melvin.rixse@alaska.gov>
Subject: CO-23-004 Extension Request
Good Afternoon Mel,
The team handling the RFI for information related to the use of jet pump completions in all wells
operated by ConocoPhllips Alaska Inc. is requesting a one-week extension for the data delivery.
The letter arrived the morning of June 29th, was distributed but then was followed by the July 4th
week when many of the staff were on vacation. An extension to July 21, 2023 would allow the staff
to deliver the requested data more effectively.
Thank-you for the consideration.
Greg
Greg Hobbs, P.E.
Regulatory Engineer | Wells Team
ConocoPhillips Alaska Inc.
Office: 907-263-4749
Cell: 907-231-0515
9
333 West Seventh Avenue
Anchorage, Alaska 99501-3572
Main: 907.279.1433
Fax: 907.276.7542
www.aogcc.alaska.gov
June 26, 2023
CERTIFIED MAIL –
RETURN RECEIPT REQUESTED
7018 0680 0002 9631
Mr. Greg Hobbs, P.E.
Regulatory Engineer, Wells Team
ConocoPhillips Alaska, Inc.
PO Box 100360
Anchorage, AK 995010
Re: Docket Number: CO-23-004
Request for Information 20 AAC 25.300
Dear Mr. Hobbs:
Pursuant to 20 AAC 25.300, the Alaska Oil and Gas Conservation Commission (AOGCC)
requests information related to the use of jet pump completions in wells operated by
ConocoPhillips Alaska, Inc. (CPAI). As noted in CPAI’s 2023-2024 Plan of Development for the
Kuparuk River Unit Tarn Participating Area (Tarn), most Tarn wells have been converted to gas
lift completions due to well integrity concerns caused by jet pump power fluids. CPAI is
requested to provide to the AOGCC information about well integrity in jet pump completions in
all wells operated by CPAI, including Tarn, to include the following:
1. Tubing and/or casing failures
a. Known or suspected failure mechanism (corrosion, erosion, etc.)
2. Wellbore schematics of wells currently completed with jet pump completions
a. Include Tarn wells at the time they had a jet pump completion
3. Jet pump power fluid header pressure
Please submit this information to the AOGCC by close of business on July 14, 2023.
Should you have any questions about the information request, please contact Mel Rixse
(melvin.rixse@alaska.gov; 907-793-1231).
Sincerely,
Jessie L. Chmielowski
Commissioner
Jessie L.
Chmielowski
Digitally signed by
Jessie L. Chmielowski
Date: 2023.06.26
14:12:44 -08'00'
8
CAUTION: This email originated from outside the State of Alaska mail system.
Do not click links or open attachments unless you recognize the sender and know
the content is safe.
From:Rixse, Melvin G (OGC)
To:Carlisle, Samantha J (OGC)
Cc:Chmielowski, Jessie L C (OGC)
Subject:FW: CO-23-004 Questions from Hearing
Date:Wednesday, June 21, 2023 10:31:06 AM
Sam,
For the docket.
Mel
From: Rixse, Melvin G (OGC)
Sent: Wednesday, June 21, 2023 10:30 AM
To: Taylor Wellman <twellman@hilcorp.com>
Subject: RE: CO-23-004 Questions from Hearing
Taylor,
Not at this time.
Mel Rixse
Senior Petroleum Engineer (PE)
Alaska Oil and Gas Conservation Commission
907-793-1231 Office
907-297-8474 Cell
CONFIDENTIALITY NOTICE: This e-mail message, including any attachments, contains information from the Alaska Oil and Gas
Conservation Commission (AOGCC), State of Alaska and is for the sole use of the intended recipient(s). It may contain confidential and/or
privileged information. The unauthorized review, use or disclosure of such information may violate state or federal law. If you are an
unintended recipient of this e-mail, please delete it, without first saving or forwarding it, and, so that the AOGCC is aware of the mistake
in sending it to you, contact Mel Rixse at (907-793-1231 ) or (Melvin.Rixse@alaska.gov).
From: Taylor Wellman <twellman@hilcorp.com>
Sent: Wednesday, June 21, 2023 10:29 AM
To: Rixse, Melvin G (OGC) <melvin.rixse@alaska.gov>
Subject: CO-23-004 Questions from Hearing
Mel,
Hope your day is going well. Just wanted to check in to see if there was any additional information
that is needed or anything I can clarify with respect to the follow up questions from the MPU Jet
Pump Completions hearing.
Thanks,
Taylor
Taylor Wellman
Hilcorp Alaska, LLC: Wells Manager – Milne Point
Office: (907) 777-8449
Cell: (907) 947-9533
Email: twellman@hilcorp.com
The information contained in this email message is confidential and may be legally privileged and is intended only for the use of theindividual or entity named above. If you are not an intended recipient or if you have received this message in error, you are herebynotified that any dissemination, distribution, or copy of this email is strictly prohibited. If you have received this email in error, pleaseimmediately notify us by return email or telephone if the sender's phone number is listed above, then promptly and permanently deletethis message.
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7
Docket Number: CO-23-004
June 6, 2023
Page 1 of 12
Hilcorp Alaska, LLC
Taylor Wellman
Wells Manager —Milne Point
Hilcorp Alaska, LLC
3800 Centerpoint Dr., Suite 1400
Anchorage, Alaska 99503
June 6, 2023
Chairman Brett W. Huber, Sr.
Alaska Oil and Gas Conservation Commission
333 West 71h Avenue
Anchorage, Alaska 99501
VIA EMAIL AND CERTIFIED MAIL
Subject: Docket Number: CO-23-004
Completion and operation of wells with jet pumps in the Milne Point Unit
Questions for Hilcorp
Dear Chairman Huber,
n
nilco,p Al.ku, LLC
Reference is made to that certain letter dated May 19, 2023 from the Alaska Oil and Gas Conservation
Commission ("AOGCC") to Hilcorp Alaska, LLC ("Hilcorp"), which was submitted in further response to that
certain public hearing on May 9, 2023 regarding the completion and operation by Hilcorp of wells with jet
pumps in the Milne Point Unit ("MPU") on the North Slope. This letter and attachments are being
provided by Hilcorp in response to the follow-up questions outline in the AOGCC's May 19 letter.
Additional questions posed during the May 9, 2023 hearing were confirmed, clarified and provided
separately as directed from the AOGCC to the AOGCC Staff Engineers, as requested during such hearing.
1. Please Provide the well names and associated permit to drill numbers with jet pumps at Milne
Point Unit (MPU) that have inner casing logs after utilizing a jet pump.
Well Name
PTO#
MPU 1-27
221-013
MPU 5-08
203-123
MPU 5-25
202-103
MPU 5-28
203-094
MPU 5-35
203-143
2. Please provide your proposed design and wellbore schematic for the subsurface safety valve (SSSV)
to be implemented at MPU F-Pad.
Docket Number: UU-1.i-UU4
June 6, 2023
Page 2 of 12
See Appendix A• Proposed wellbore schematic for inclusion of a subsurface safetyvalve (SSV)
to be implemented at MPU F-Pad for wells with a reservoir pressure below 8.55
For wells at MPU F-Pad with a reservoir pressure above 8.55 ppg, Hilcorp proposed qualification
of a 2nd barrier on a well by well basis would apply.
3. What steps will Hilcorp implement to maintain MPU Kuparuk pool reservoir pressure below 8.55
ppg?
Hilcorp has implemented the use of a trending tool to be able to monitor the instantaneous
Voidage Replacement Ratio's (VRR) in the hydraulic fault blocks that exist in the Kuparuk pool.
The VRR is a way to measure the volume of fluids being injected for pressure support divided by
the volume of fluid being produced from that fault block. An instantaneous VRR above 1.0
indicates that more fluid is being injected than withdrawn. Thus the VRR can give a general
trend if the reservoir pressure is going to increase/decrease/remain the same. In order to
ensure accuracy, Hilcorp will be internally reviewing the overall VRR's and associated injection
targets no less than annually.
4. Hilcorp presented a brief discussion of the utilization of scale and corrosion inhibitors on jet pump
wells. Specifically, how does Hilcorp assure proper inhibitor concentrations for varying production
conditions, Le, higher water cut, higher gas cut lower and higher oil production as offset injection
fluids enter the inner casing on forward circulating jet pumps?
At an organizational level, Hilcorp has a dedicated Integrity department which is responsible for
ensuring corrosion and scale are mitigated and monitored.
As part of the Integrity department's methodology, the powerfluid (water) forjet pumps is treated
to prevent corrosion using the same strategy as other corrosive fluids (such as produced oil,
produced water and wet gas). The strategy begins with an assessment of the fluid's corrosivity to
determine if chemical inhibition is needed. If so, injection points are determined, a chemical is
selected, and an initial dosage is set. The effectiveness of this strategy is determined by
monitoring corrosion in a variety of ways —primarily with coupons, probes, and
inspection. However, other tests are also helpful, including ATP to estimate microbial activity and
methyl orange to estimate inhibitor consumption. When this feedback indicates a problem, the
corrosion prevention plan is adjusted. Injection points may be added. Different chemicals may
be selected. Chemical rates may be adjusted.
There are currently 4 operating forward circulating jet pump wells at Milne Point. The powerfluid
for these wells is supplied by 3 different sources:
- MPU 1-11: Treated produced water separated out through partial on pad separation.
- MPU L-20: Source water wells from the Prince Creek formation.
- MPU S-25 & MPU S-90: Treated produced water separated out through partial on pad
separation.
Hilcorp has concentration targets for corrosion and scale inhibitors for total fluids leaving a pad
through pipelines to Central Facility Processing ("UP"). This ensures that the pipelines going back
to the CFP are protected. The powerfluid is treated in concentrations to account for the total
volume of the fluid coming from these pads plus a safety factor. Thus the powerfluid is
Docket Number: C O-23-UU4
June 6, 2023
Page 3 of 12
overtreated until it is mixed with the varvine production fluids. This overtreatment is under any
threshold for causing scale or corrosion to due to the inhibitors but ensures the varying
production characteristics between wells are still adequately protected.
For the wells utilizing powerfluid from CFP or from partial on pad separation (I -Pad and S-Pad),
reverse and forward circulatingjet pump wells are treated with the same fluid. The overall system
fluids coming off the pad are monitored to maintain the targeted ppm's. On both pads, there are
reverse circulating jet pump wells that have similar production conditions as the forward
circulating jet pumps and provide a good analog for the effectiveness of the program. The
program methodology for S-Pad has been developed and refined since 2009 and has been the
basis for other targeted treating rates.
For MPU L-20 the targeted concentration for the treatment is based on the combined
production plus powerfluid rates specific to this well. The powerfluid is the same as water used
in injection wells for Enhanced Oil Recovery. MPU L-20 is treated via batch treatments of
corrosion inhibition that are pumped 1 time per 2 weeks. The batch treatments are pumped into
the powerfluid so that the tubing and IA are both treated.
5. Hilcorp stated two surface safety valves (SSVs) exceeds 20 AAC 25.265 well safety system
requirements. How does a SSV on both the tubing and inner annulus function equivalently to a
SSSV in the event of catastrophic surface failure at MPU F-Pad?
Hilcorp's statement was intended to address 20 AAC 25.265.e which provides: "(e) If o well being
produced by artificial lift, the capability must exist to shut down artificial lift to the well." Two
SSVs provide a fail-safe mechanism to not only shut down artificial lift to the well, but also shut
in the well without the need for personnel intervention to shut in.
6. In the worst -case event of a blowout and fire on a jet pump well, or on a nearby wellhead at MPU
F-Pad where the SSVs are exposed, would the SSVs shut in the jet pump well if their SSVs are
subjected to intense heat?
Yes. Hilcorp has hydraulic -pressure opening, fail -close spring -loaded SSVs on F-pad wells. Intense
heat from fire would compromise the exposed Y4" control lines before it could heat up and
compromise the much larger SSV barrels that contain the heavy spring that closes the valve. Once
the hydraulic lines are compromised, the hydraulic pressure keeping the valve open would dump
and the spring would close the SSV.
7. Hilcorp has submitted at least 1 sundry for a jet pump conversion with a fully cemented outer
annulus (OA). How does a fully cemented OA comply with Conservation Order(CO)390A regarding
the finding in that CO an OA is monitorable.
For wells with a fully cemented OA Hilcorp would rely on Administrative Action under CO
390A Rule 4 with the reasoning that though CO 390A Rule 2 for a monitorable annulus is not
met Hilcorp is providing an alternatively more robust well design than CO 390A Rule 2 is
stating. A well with a cemented production casing by surface casing annulus is not a monobore
completion as CO 390A Rule #2 is referencing. The cement annulus and surface casing provide
additional structural integrity and additional barriers to flow in the event of a shallow
production casing leak. Due to the cemented annulus, the intent of a monitorable annulus in CO
Docket Number: CO-23-004
June 6, 2023
Page 4 of 12
390A Rule #2 is not met, though the presence of the cemented annulus and surface casing are
inarguably beneficial to the integrity of the well. Hilcorp has no intent to newly construct
single casing (monobore) completions.
Hilcor 's approach to utilize both a cement annulus and surface casing with respect to ESP
Completions is consistent with CO390A Rule 4 in that it provides a more robust integrity design.
Although the presence of a fully cemented OA in conjunction with surface casing results in a well
that is not monitorable under CO 390A, Hilcorp's approach is preferrable from an integrity
perspective because it provides additional structural support and additional barriers to flow in the
event of a shallow production casing leak.
B. What would be the sudden rate of flow of reservoir fluids across the jet pump minimum restriction
'/."orifice from the tubing tail to the annulus if the IA was suddenly damaged or an IA surface valve
was impacted and broken off on the casing spool at surface? Assume a typical over pressure of
the Kuparuk reservoir routinely observed of 11.0 PPGE at MPU. Provide two modeled cases:
a. For the case of typical mixture of power fluid, gas, and oil for a reverse circulating pump
in the IA.
Thp tvniral kiinnnik nmr irrpr has heen modeled with the followlne assumatlons:
Formation
Reservoir Pressure (PSIG)
Datum Depth (TVD) Water Cut (30)
GOR (SCF/BBL)
Kuparuk
4,004
1 7,000 90
2,000
The conditions above have resulted in the following maximum flow rates through a''/<" orifice.
Gas (MSCF/D)
Oil (BBL/D)
Water (BBL/D)
1,046
523
5,128
These rates represent the theoretical calculated modeling for fluid flow through an orifice. These
calculated rates also assume that the reservoir is capable of providing this amount of produced
fluid and gas for the given drawdown rates. The current Kuparuk reservoir production wells at
MPU are not capable of providing such rates for this amount of drawdown and are
unrepresentative of what is capable. Hilcorp recognizes that even the adjusted rates for reservoir
deliverability would not be choked back by the''/." orifice and would not count this as a measure
of protection or barrier.
b. For the case of atypical mixture of power fluid and gas for a reverse circulating pump in
the IA during flow of a slug of injection gas from offset gas injector well.
For the case in which a slug of complete gas would be produced from the reservoir with no fluids
the modeled flow rate would be: 9,670 MSCF[D.
The scenario in which a slug of complete gas production with zero fluids is not a credible scenario.
Review of the production history of the wells that have jet pumps and are supported by gas flood
show no indication of a time where pure gas is ever encountered. For the Kuparuk formation,
veryfew blocks are gas flooded. When gas production rates are monitored for Gas Oil Ratio (GOR)
trends and when seen on an increasing trend, the associated injection wells are swapped to water
injection.
Docket Number: CO-23-UU4
June 6, 2023
Page 5 of 12
9. Hilcorp presented an informative BHP plot for a jet pump well in the public hearing. Provide
additional BHP plots for:
a. A case of failed inner casing
See Appendix D for the C-40 example for a well without BHP gauges. Hilcorp has no other
examples of a production casing leak from a flowing jet pump well.
b. A case of leaking tubing
See Appendix B: BHP Plotfor, case of leaking tubin
c. A case of offset gas injection slugging
See Appendix C for a plot of Milne Point L-06A, which is the highest GOR producer with
downhole gauges. Hilcorp has measured a peak GOR of approximately 3,500 scf/bbl due to
an offset gas injection swing.
d. A case of increasing BHP induced by offset injection
This would be extremely difficult to diagnose. Injection support to affectively change BHP
can take months to see a response in an offset production well. While in operation, the BHP
of the production well is a key monitoring factor for the health or condition of the jet pump.
When the BHP begins to increase the more likely factor is wear of the jet pump and the jet
pump is changed out. When combining the more frequent jet pump change outs and the
targeted goal of not over pressuring fault blocks, there are no clear examples to provide for
this scenario.
e. For the well MPU C-40, provide the wellhead and downhole pressure data plotted to show
the moment of casing failure. Provide a description how a similar failure would be
identified using pressure trend data.
See Appendix D: MPU C-40 Wellhead and BHP data during casing failure
10. Provide MPU C-40 sudden casing leak information including cause of failure, type of failure, and
suspected damage to the overburden, if any.
The production casing leak was identified and confirmed with a Leak Detect Log on 08/12/2021.
Since that time the well has remained shut in and the tubing has not been removed during a rig
workover. The casing cannot be inspected until the tubing has been removed. The exact cause
and tVpe of the failure cannot be confirmed until a workover is performed. The leak depth
identified is at ±8 300' MD I ±5 485' TVD placing the leak depth in the Colville. No damaize to
the Colville is anticipated.
11. Please provide domestic and international standards that address jet pump well integrity.
See Appendix E: Domestic and International standards that address jet pump well integrity for
relevant jet pump specific standards for well integrity that were found after searching the
Docket Number: CO-23-004
June 6, 2023
Page 6 of 12
following but not limited to: NORSOK D-010: 2021+AC2: Well Integrity in drilling and well
operations, API RP 90-2: Annular Casing Pressure Management for Onshore wells, and ISO 16530-
1: Petroleum and natural gas industries—WellIntegrity. Note that while these documents contain
some generic references for 'artificial lift' there was only a single reference specifically to jet
pumps.
Sincerely,
Taylor Wellman
Wells Manager— Milne Point
Hilcorp Alaska, LLC
(907)777-8449
Cc: Mel Rixse
Docket Number: CO-23-004
June 6, 2023
Page 7 of 12
Appendix A: Proposed wellbore schematic for inclusion of a subsurface safety valve (SSSV) to be
implemented at MPU F-Pad for wells with a reservoir pressure below 8.55 ppg.
Milne Point Unit
H9eo.a ,u.r., u.c
1D-1147X(A0/TD=7AW W)
PUTD=14401119O111`13N=7,M"
PROPOSED Well: MPUF-79
Last Completed: 2/1/2018
PTD:197-180
TREE & WELLHEAD
Tree
a,nQan 2-9/1r sM
Ir.7-1116"SM FMCOen SA a/2-7/a' IWCTha. Hnp., 3'W
We0head
Acneon Tapand2-7/r EUE3MonaonxH J'S"tl WVW.HTl
OPEN HOLE / CEMENT DETAIL
21r
I 150sa AnE a—1 A m me24-%k
9-S/8'
1,720aPF 2'.UP nClme'r'ine12-f14'Hok
7•
495apas L'ina 8-1R'Hak
r-771-jr--T
1.050ssCks Wine 6'Hak
CASING DETAIL
Size
Type
Wt/Grade/Conn
ID
Top
Rt.
BPF
M'
Lmducbw
911/H
NIA
Se(ece
112'
0.0155
93R'
Su.lace
40114015M
8835
Safe¢
7.340'
0.0]59
7"
Praducdsr
,:k_
aT JIrmsss
PSe4
Suefece
21A9'
OA3]I
T
Peaduman
I 291L-00/11ri-11
8275
2149'
0.246'
0.0371
7
Pnodumw�
2P/L-PP/6TC
fi.27fi
1 13,266'
1 13A10'
0.03P3
41/z-
U.
12.P / L,0 /EUE and
PASS
1 23,247
1 18,645'
O.M2
TUBING DETAIL
i-vr T 9Z/L-W/EUE AN 2992 Surf eeI 113.2W I M92
WELL INCLINATION DETAIL
KOP P 350
NI4MXokA "5-opm
Hale Anpe tbmuPh Pad i nteeuel = W t0 93•
JEWELRY DETAIL
No
Dep[h
hem
1
±L20o'
SSSV
2
±12.7W I
SPdi Sieex
3
1215d
1T'1 e
4
211-1W
T e 41 Padv
5
±12A50'
%N NipplelMi�ID=2250'Noae)
6
±13173•
WLEG-5o 0W.1]5•
7
13,24T
MFerUncr Heneerendpedw
PERFORATION DETAIL
Sands
Top (MO)
Btm(MD)
Top(TVD)
Btm{TVD}
FT
size
Date
StaLu
s
ss,eem
ssy6e•
7,116•
71xa•
ae
2-7/r
1L29197
0 en
]fi3Oa0'
16,4d0'
7,138'
]14G
320
2-71r
IE/29ry]
OF
KV-ASnds
16A99'
Ifi,ffi0'
].144'
714T
311
2-7/r
12/29/9J
17.09R
17,E00'
7.ISa'
717a
]f0
2-]/r
I1R9N]
0 en
S7,e50'
IS.170'
I 7.173
719T
320
2-71r
1 11/29/97
0 an
ael :deed
oN Meaeuled —SW5 S41 Cee peeeeeein C l EH0=.029'/TYP-SO.S7'Plrsi
fi0-/1w
GENERAL WELL INFO
AN:50-029-22a13-004 0
Orilkd and pleed by Wbare 27E-17/4/1997
ESPS . b xaban4ES-4/9/1292
ESPS .p by Nabors 4ES-I2/13/2003
Canrertte Dee 131t by Nebert 35 - 5l1912009
ESP Swp by A5E01-211R038
1)OCket NUMber: GV Z3-UU4
June 6, 2023
Page 8 of 12
Appendix B: BHP Plot for case of leaking tubing
5000
4500
4000
m
.Q 3500
a
3 3000
a
c 2500
c
m
0 2600
a
m
1500
m
r 65
500
9/20/210:00 9/20/2112:00 9/21/210:00 9/21/2112:00 9/22/210:00
—Power Fluid Rate —Power Fluid Pressure —BHP Suction Pressure —BHP Discharge Pressure
1) Discharge pressure increases, indicative of a change typical of water -cut increase.
2) Discharge pressure gauge acts erratically. It was later determined that leak point was at the discharge
pressure gauge. The discharge pressure indication is downhole in the tubing. Pressure indications show
pressures in communication with the IA.
3) Power fluid rate increases, indicating possibilities of jet pump failure, tubing, or casing leak.
4) Power fluid pressure decreases, indicative of a tubing or casing leak.
5) Well is shut in.
A combination of high water -cut shakeouts and internal tubing discharge pressure indication were key in
indication that this was a tubing leak before slickline diagnostics confirmed.
Docket Number: CO-23-004
June 6,2023
Page 9 of 12
Appendix C: BHP Plot for case of offset gas injection slugging
,M
'm
3000
a
d
N 2500
N
d
L
2000
C
Al
1000
C
500
2 3
0 - -
12/14/2022 0:00 12/14/2022 12:00 12/15/2022 0:00 12/15/2022 12:00 12/16/2022 0:00
—Power Fluid Rate —Power Fluid Pressure —BHP Suction Pressure —BHP Discharge Pressure
1) Power fluid pressure is on choke. Pressure on L-pad can be variable due to polymer unit tank fill.
2) Well is put in test. Additional backpressure on well shows on discharge pressure gauge.
3) Well is taken out of test.
Docket Number: CO-23-004
June 6,2023
Page 10 of 12
Appendix D: MPU C-40 Wellhead and BHP data during casing failure
C-40 T/IA/PF Plot
soon
4500 1 - -
3500
3000
2500
2000
1500
1000
500
6/21/2021 6/26/2021 7/1/2021 7/6/2021 7/11/2021 7/16/2021 7/21/2021
--*—Tubing Pressure --a— Power Fluid Rate ♦Power Fluid Pressure (IA)
• On 5/21/21, a new jet pump was installed.
• From 6/28/21 to 7/3/21, the well was shut in due to water handling constraints at the
facility.
• From 7/13 to 7/14, the producer was shut in due to water handling constraints at the
facility.
• The power fluid rate began to slowly climb beginning on 7/14/21.
• On 7/19/21, the field operator began to troubleshoot the high -power fluid rate by shutting
in the well and bringing back online. The power fluid rate made a stepped increase.
• On 7/19/21, the producer was shut in due to high power fluid rate.
• On 7/21/21, the jet pump was pulled with slickline. The pump was found to be packed off
with sand and seal bore packing on top stack damaged/missing. The packing damage
would have been a probable cause for power fluid rate increase.
• On 8/5/21, the sliding sleeve was closed. A MIT -IA was performed and failed with a leak
rate of 350 BWPD at 2650 psi.
• On 8/7/21, a tubing tail XXN plug was set in the nipple at 10,821' MD with a passing
MITT performed.
• On 8/12/21, a leak detect log was run on the well confirm at production casing leak at
8,300' MD. The well remains secure to date.
Docket Number: CO-23-004
June 6, 2023
Page 11 of 12
Appendix E: Domestic and International standards that address jet pump well integrity
INTERNATIONAL ISO
STANDARD 16S30-1
First edition
2017-03
Petroleum and natural gas
industries — Well integrity —
Part 1:
Life cycle governance
Petrole et industries du gaz natures— Integrite du putts —
Partie I: Governance du cycle de We
4.6A Componenttestingmethods
The types of tests that may be performed as part of the maintenance programme Rod ip a ordance
with the performance standards as defined by the well operator are outlined in 5,_Q. rovides
an example ora well integrity performance standard.
Docket Number: CO-23-004
June 6, 2023
Page 12 of 12
'fable 6.1(cmm6med)
ISO 16530.1:2017(E)
Descriptions
Performance
Verifi-
Acceptance
monitoring
cation
criteria
requirement
method
example
Hanger neck seal cmdrolline feed through, electrical feed
Acceptable test
Pressure
xx MPa
through and drilling spool adaptor flange(DASF)/adaptor
operates on
teat
spout sea]areas: The component pressures text is to be within
demand
the wells operatfag limit as specified by the operator.
Shutdowns ofarti0clal lift pumps electrical submersible
Aecepmbletrst
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6
From:Rixse, Melvin G (OGC)
To:Carlisle, Samantha J (OGC)
Subject:For the dockett: RE: CO-23-004 MPU Jet Pump Hearing Data Request
Date:Tuesday, June 6, 2023 4:57:03 PM
Attachments:MPI-27 Schematic 8-24-21 with Requested Information.pdf
Samantha,
I received this. It should probably go into the docket. I did not reply to Hilcorp on this.
Mel Rixse
Senior Petroleum Engineer (PE)
Alaska Oil and Gas Conservation Commission
907-793-1231 Office
907-297-8474 Cell
CONFIDENTIALITY NOTICE: This e-mail message, including any attachments, contains information from the Alaska Oil and Gas
Conservation Commission (AOGCC), State of Alaska and is for the sole use of the intended recipient(s). It may contain confidential and/or
privileged information. The unauthorized review, use or disclosure of such information may violate state or federal law. If you are an
unintended recipient of this e-mail, please delete it, without first saving or forwarding it, and, so that the AOGCC is aware of the mistake
in sending it to you, contact Mel Rixse at (907-793-1231 ) or (Melvin.Rixse@alaska.gov).
From: Taylor Wellman <twellman@hilcorp.com>
Sent: Friday, June 2, 2023 1:14 PM
To: Rixse, Melvin G (OGC) <melvin.rixse@alaska.gov>; McLellan, Bryan J (OGC)
<bryan.mclellan@alaska.gov>
Cc: Aras Worthington <Aras.Worthington@hilcorp.com>
Subject: RE: [EXTERNAL] RE: CO-23-004 MPU Jet Pump Hearing Data Request
Mel and Bryan,
We are finalizing the data collection and responses to the 11 questions in the formal request from
the hearing follow-up. In addition to that, here is the additional data for Item 5 from below.
5. Provide explanation of I-27 IAxOA leak including:
a. What is LOT/FIT at the shoe? 12.0 ppg FIT.
Also including a schematic for what I was attempting to verbally state in the hearing.
The failed connection in the 7” tieback and allowing for the OA to see powerfluid
pressure is still has another barrier before being applied to the formation that the FIT
was tested against.
Please let me know if you would like additional information.
Thank you,
Taylor
CAUTION: External sender. DO NOT open links or attachments from UNKNOWN senders.
Taylor Wellman
Hilcorp Alaska, LLC: Wells Manager – Milne Point
Office: (907) 777-8449
Cell: (907) 947-9533
Email: twellman@hilcorp.com
From: Rixse, Melvin G (OGC) <melvin.rixse@alaska.gov>
Sent: Monday, May 22, 2023 2:34 PM
To: Taylor Wellman <twellman@hilcorp.com>
Subject: RE: [EXTERNAL] RE: CO-23-004 MPU Jet Pump Hearing Data Request
Taylor,
Focus on the questions in the letter. Hilcorp’s response by June 6, 2023 is approved on the letter.
I would ask you to also answer the fifth question you mention regarding well MPU I-27 (PTD221-
013).
Correspondence can go through me or Bryan McLellan.
Mel Rixse
Senior Petroleum Engineer (PE)
Alaska Oil and Gas Conservation Commission
907-793-1231 Office
907-297-8474 Cell
CONFIDENTIALITY NOTICE: This e-mail message, including any attachments, contains information from the Alaska Oil and Gas
Conservation Commission (AOGCC), State of Alaska and is for the sole use of the intended recipient(s). It may contain confidential and/or
privileged information. The unauthorized review, use or disclosure of such information may violate state or federal law. If you are an
unintended recipient of this e-mail, please delete it, without first saving or forwarding it, and, so that the AOGCC is aware of the mistake
in sending it to you, contact Mel Rixse at (907-793-1231 ) or (Melvin.Rixse@alaska.gov).
From: Taylor Wellman <twellman@hilcorp.com>
Sent: Monday, May 22, 2023 9:36 AM
To: Rixse, Melvin G (OGC) <melvin.rixse@alaska.gov>
Subject: RE: [EXTERNAL] RE: CO-23-004 MPU Jet Pump Hearing Data Request
Mel,
I saw that come across. Thank you for the reply. The letter helps as some of the pieces we were
preparing a response for were different than in the letter. To confirm, we will focus the efforts to
the questions/data request from the letter and not what I had written down in the hearing (below in
email) correct?
CAUTION: This email originated from outside the State of Alaska mail system.
Do not click links or open attachments unless you recognize the sender and know
the content is safe.
CAUTION: External sender. DO NOT open links or attachments from UNKNOWN senders.
Thank you,
Taylor
Taylor Wellman
Hilcorp Alaska, LLC – Ops Engineer: Milne Point
Office: (907) 777-8449
Cell: (907) 947-9533
Email: twellman@hilcorp.com
From: Rixse, Melvin G (OGC) <melvin.rixse@alaska.gov>
Sent: Monday, May 22, 2023 8:57 AM
To: Taylor Wellman <twellman@hilcorp.com>
Subject: [EXTERNAL] RE: CO-23-004 MPU Jet Pump Hearing Data Request
Taylor,
We sent a letter Friday detailing the specifics. I think we are expecting an extension but I better
check with commissioners. I will let you know later today.
Mel Rixse
Senior Petroleum Engineer (PE)
Alaska Oil and Gas Conservation Commission
907-793-1231 Office
907-297-8474 Cell
CONFIDENTIALITY NOTICE: This e-mail message, including any attachments, contains information from the Alaska Oil and Gas
Conservation Commission (AOGCC), State of Alaska and is for the sole use of the intended recipient(s). It may contain confidential and/or
privileged information. The unauthorized review, use or disclosure of such information may violate state or federal law. If you are an
unintended recipient of this e-mail, please delete it, without first saving or forwarding it, and, so that the AOGCC is aware of the mistake
in sending it to you, contact Mel Rixse at (907-793-1231 ) or (Melvin.Rixse@alaska.gov).
From: Taylor Wellman <twellman@hilcorp.com>
Sent: Friday, May 19, 2023 10:04 AM
To: Rixse, Melvin G (OGC) <melvin.rixse@alaska.gov>
Cc: Aras Worthington <Aras.Worthington@hilcorp.com>
Subject: CO-23-004 MPU Jet Pump Hearing Data Request
Mr. Rixse,
In the CO-23-004 MPU Jet Pump Hearing on May 9, 2023 there were some requests for additional
data and information. I wanted to send a list of the requests to ensure we are working to supply the
accurate information from the request. I also wanted to give an update on the status of each item.
From the hearing, I believe we were directed to funnel communications on this data through the
staff engineers. If that is incorrect, also please let me know and I will provide to whomever.
Additional Data/Information Requested from Hearing:
1. Demonstrate compliance to 8.55 ppg injection management per CO 390A
2. Submit all of the production casing caliper data we have on JP wells since 2001.
3. Model flow rate of a worst-case well (11ppg MWE or other realistic) through the biggest JP
nozzle we run (a #13 is 0.235” ID).
4. MPU C-40 data on the PC leak:
a. Provide the data used to diagnose the PC leak
5. Provide explanation of I-27 IAxOA leak including:
a. What is LOT/FIT at the shoe?
Updates/Status:
Item #1 This is the most difficult to provide a concise set of data for without a lengthy
explanation. I would request an extension of 2 weeks to provide this data to you if that
is acceptable.
Item #3-5 These can be provided by 5/23/23.
Question:
Would you like the data submitted at the same time or would you like item by item?
Clarification points Hilcorp would like to state from the hearing:
1. We intend to operate forward circulating jet pump wells with one barrier under an 8.55 ppge
gradient.
2. We do inject corrosion inhibitor into our gas lift stream as well. Jet pump and gas lift artificial
lift streams are inhibited.
Please let me know if these are the correct or call me to discuss. I want to make sure that we are
focusing our efforts on providing what was asked for.
Thank you,
Taylor
Taylor Wellman
Hilcorp Alaska, LLC – Ops Engineer: Milne Point
Office: (907) 777-8449
Cell: (907) 947-9533
Email: twellman@hilcorp.com
The information contained in this email message is confidential and may be legally privileged and is intended only for the use of the
individual or entity named above. If you are not an intended recipient or if you have received this message in error, you are hereby
notified that any dissemination, distribution, or copy of this email is strictly prohibited. If you have received this email in error, pleaseimmediately notify us by return email or telephone if the sender's phone number is listed above, then promptly and permanently deletethis message.
While all reasonable care has been taken to avoid the transmission of viruses, it is the responsibility of the recipient to ensure that theonward transmission, opening, or use of this message and any attachments will not adversely affect its systems or data. No responsibilityis accepted by the company in this regard and the recipient should carry out such virus and other checks as it considers appropriate.
The information contained in this email message is confidential and may be legally privileged and is intended only for the use of theindividual or entity named above. If you are not an intended recipient or if you have received this message in error, you are herebynotified that any dissemination, distribution, or copy of this email is strictly prohibited. If you have received this email in error, please
immediately notify us by return email or telephone if the sender's phone number is listed above, then promptly and permanently delete
this message.
While all reasonable care has been taken to avoid the transmission of viruses, it is the responsibility of the recipient to ensure that theonward transmission, opening, or use of this message and any attachments will not adversely affect its systems or data. No responsibilityis accepted by the company in this regard and the recipient should carry out such virus and other checks as it considers appropriate.
The information contained in this email message is confidential and may be legally privileged and is intended only for the use of theindividual or entity named above. If you are not an intended recipient or if you have received this message in error, you are herebynotified that any dissemination, distribution, or copy of this email is strictly prohibited. If you have received this email in error, pleaseimmediately notify us by return email or telephone if the sender's phone number is listed above, then promptly and permanently deletethis message.
While all reasonable care has been taken to avoid the transmission of viruses, it is the responsibility of the recipient to ensure that the
onward transmission, opening, or use of this message and any attachments will not adversely affect its systems or data. No responsibility
is accepted by the company in this regard and the recipient should carry out such virus and other checks as it considers appropriate.
_____________________________________________________________________________________
Edited By: NLW 8/252021
SCHEMATIC
Milne Point Unit
Well: MPU I-27
Last Completed: 4/29/2021
PTD: 221-013
TD =14,497’(MD) / TD =4,140’(TVD)
4
20”
Orig. KB Elev.: 60.25’ / GL Elev.: 33.80’
7”
6
9
4
7
9-5/8”8
1
2
3
See
Screen/
Solid
Liner
Detail
PBTD =14,495’(MD) / PBTD =4,140’(TVD)
9-5/8”‘ES’
Cementer @
1,967’ MD
5
4-1/2”
Shoe @
14,497’
CASING DETAIL
Size Type Wt/ Grade/ Conn ID Top Btm BPF
20"Conductor 129.5 / X52 / Weld N/A Surface 147’N/A
9-5/8"Surface 47 / L-80 / TXP 8.681 Surface 1,949’0.0732
9-5/8”Surface 40 / L-80 / TXP 8.835 1,949’4,959’0.0758
7”Tieback 26 / L-80 / TXP 6.875 Surface 4,789’0.0459
4-1/2”Liner 250µ Screens 13.5 / L-80 / Hyd 625 3.920 4,782’14,497’.0149
TUBING DETAIL
4-1/2"Tubing 12.6 / L-80 / TXP 3.958” Surface 4,796’0.0152
OPEN HOLE / CEMENT DETAIL
Conductor Driven 20”
12-1/4"Stg 1 Lead – 350 sx / Tail – 400 sx
Stg 2 Lead – 114 sx / Tail 270 sx
8-1/2”Cementless Screened Liner
WELL INCLINATION DETAIL
KOP @ 180’
Max Hole Angle = 94° @ 9,407’ MD
TREE & WELLHEAD
Tree Cameron 3-1/8" 5M w/ 3-1/8” 5M Cameron Wing
Wellhead Cameron 11” 5K w/ 4-1/2” Atlas Bradford TC-II 12.6# top & bottom Tbg Hanger
GENERAL WELL INFO
API: 50-029-23692-00-00
Completion Date: 4/29/2021
JEWELRY DETAIL
No.Top MD Item ID
1 4,089’Baker Gauge Carrier 3.890”
2 4,096’Haliburton X-Line Sliding Sleeve (13A Jet Pump set 8-4-21)3.790”
3 4,102’Baker Ported Sub 3.950”
4 4,164’Baker Premier Packer 3.890”
5 4,234’XN Nipple, 2.75” ID 3.725”
6 4,766’WLEG – Bottom @ 4,796’3.958”
7 4,782’SLZXP Liner Top Packer (3,944’ TVD)6.160”
8 4,803’7” H563 x 4.5” TSH 625 XO 3.840”
9 14,495’Shoe 3.950”
4-1/2”SCREENS LINER DETAIL
Jts Top
(MD)
Top
(TVD)
Btm
(MD)
Btm
(TVD)
67 4971’ 3954’ 7717’3995’
31 8073’ 4035’ 9322’4042’
118 9638’ 4027’ 14464’ 4138’
5
333 West Seventh Avenue
Anchorage, Alaska 99501-3572
Main: 907.279.1433
Fax: 907.276.7542
www.aogcc.alaska.gov
May 19, 2023
Aras Worthington
Well Integrity Manager
Hilcorp Alaska, LLC
3800 Centerpoint Drive, Suite 1400
Anchorage, AK 99503
Re: Docket Number: CO-23-004
Completion and operation of wells with jet pumps in the Milne Point Unit
Questions for Hilcorp
Dear Mr. Worthington:
The Alaska Oil and Gas Conservation Commission (AOGCC) on its own motion, held a public
hearing on May 9, 2023, to evaluate the completion and operation of wells with jet pumps in the
Milne Point Unit (MPU) on the North Slope. Hilcorp Alaska, LLC (Hilcorp) plans to increase the
use of jet pumps in the MPU, and AOGCC anticipates that the creation of a new Conservation
Order will be necessary to outline the rules for design and operation of jet pump completions.
During the hearing, the AOGCC asked several questions of Hilcorp that require follow-up and it
was decided to keep the record open until May 23, 2023. Upon further review of the matter, the
AOGCC submits the following additional questions to Hilcorp. The AOGCC proposes to extend
the time that the record will remain open by two weeks until June 6, 2023, to allow sufficient time
for Hilcorp to respond. Hilcorp may request additional time if needed.
1. Please provide the well names and associated permit to drill numbers with jet pumps at
Milne Point Unit (MPU) that have inner casing logs after utilizing a jet pump.
2. Please provide your proposed design and wellbore schematic for the subsurface safety
valve (SSSV) to be implemented at MPU F-Pad.
3. What steps will Hilcorp implement to maintain MPU Kuparuk Pool reservoir pressure
below 8.55 ppg?
4. Hilcorp presented a brief discussion of the utilization of scale and corrosion inhibitors
on jet pump wells. Specifically, how does Hilcorp assure proper inhibitor
concentrations for varying production conditions, i.e., higher water cut, higher gas cut,
low and higher oil production as offset injection fluids enter the inner casing on forward
circulating jet pumps?
5. Hilcorp stated two surface safety valves (SSVs) exceeds 20 AAC 25.265 well safety
system requirements. How does a SSV on both the tubing and inner annulus function
equivalently to a SSSV in the event of a catastrophic surface failure at MPU F-Pad?
Docket Number: CO-23-004
May 19, 2023
Page 2 of 2
6. In the worst-case event of a blow out and fire on a jet pump well, or on a nearby
wellhead at MPU F-Pad where the SSVs are exposed, would the SSVs shut in the jet
pump well if their SSVs are subjected to intense heat?
7. Hilcorp has submitted at least 1 sundry for a jet pump conversion with a fully cemented
outer annulus (OA). How does a fully cemented OA comply with Conservation Order
(CO) 390A regarding the finding in that CO that an OA is monitorable?
8. What would be the sudden rate of flow of reservoir fluids across the jet pump minimum
restriction ¼” orifice from the tubing tail to the annulus if the IA was suddenly damaged
or an IA surface valve was impacted and broken off on the casing spool at surface?
Assume a typical over pressure of the Kuparuk reservoir routinely observed of 11.0
PPGE at MPU. Provide two modeled cases:
a. For the case of a typical mixture of power fluid, gas, and oil for a reverse
circulating pump in the IA.
b. For the case of a typical mixture of power fluid, and gas for a reverse circulating
pump in the IA during flow of a slug of injection gas from offset gas injector
well.
9. Hilcorp presented an informative BHP plot for a jet pump well in the public hearing.
Provide additional BHP plots for:
a. A case of failed inner casing
b. A case of leaking tubing
c. A case of offset gas injection slugging
d. A case of increasing BHP induced by offset injection
e. For the well MPU C-40, provide the wellhead and downhole pressure data
plotted to show the moment of casing failure. Provide a description how a
similar failure would be identified using pressure trend data.
10. Provide MPU C-40 sudden casing leak information including cause of failure, type of
failure, and suspected damage to the overburden, if any.
11. Please provide domestic and international standards that address jet pump well
integrity.
Sincerely,
Brett W. Huber, Sr.
Chair, Commissioner
Brett W. Huber,
Sr.
Digitally signed by Brett W.
Huber, Sr.
Date: 2023.05.19 12:56:29
-08'00'
4
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
Computer Matrix, LLC Phone: 907-227-5312
ALASKA OIL AND GAS CONSERVATION COMMISSION
In the Matter of Jet Pump Use in the )
Milne Point Unit. )
__________________________________________)
Docket No.: CO 23-004
PUBLIC HEARING
May 9, 2023
10:00 o'clock a.m.
BEFORE: Brett Huber, Sr., Chairman
Jessie Chmielowski, Commissioner
Greg Wilson, Commissioner
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
Computer Matrix, LLC Phone: 907-227-5312
Page 2
1 TABLE OF CONTENTS
2 Comments by Mr. Rixse 03
3 Comments by Mr. Worthington 08
4 Comments by Mr. Haakinson 23
5 Comments by Mr. Edwards 72
6 Comments by Mr. Wellman 81
7 Comments by Mr. Walters 99
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
Computer Matrix, LLC Phone: 907-227-5312
Page 3
1 P R O C E E D I N G S
2 (On record - Microphones not on, transcript
3 starts when microphones are turned on)
4 MR. RIXSE: .....sliding sleeve that is opened
5 with separate intervention and then the jet pump
6 creates a lower bottomhole pressure which draws in the
7 reservoir fluids and reduce. It's a simple design,
8 economical -- anyway. So the regulations specific to
9 jet pumps and the conservation order that's relevant to
10 packerless ESP completions and -- or packerless
11 completions and specific to Milne Point all play into
12 this hearing today. The regulation is 25.200(d) which
13 describes production equipment. I'm just going to read
14 through it quickly. All producing wells capable of
15 unassisted flow must be completed with downhole
16 production tubing equipment consisting of suitable
17 tubing and a packer that effectively isolates the
18 tubing casing annulus from fluids being produced unless
19 the Commission specifically approves production through
20 the annulus to increase flow rate without jeopardizing
21 ultimate recovery from the well.
22 In 2015 Hilcorp and AOGCC came to an agreement
23 with a conservation order on how to manage ESP
24 completions at Milne Point. And it also relates to
25 packerless completions which has relevance to jet pumps
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
Computer Matrix, LLC Phone: 907-227-5312
Page 4
1 because we see that the packer may have been bypassed.
2 So CO390 relevant as it provides alternate guidelines
3 to the regulation 200(d). This conservation order is
4 specific to Milne Point unit for ESPs. Packerless
5 completions allows ESP packerless completions for
6 bottomhole pressure less than 8.55 pounds per gallon
7 equivalent to a gradient. In that conservation order
8 finding number 8 is relevant, packer ESP completions
9 for the Kuparuk oil pool have multiple casing strings
10 with monitorable annulus at the surface shoe OA.
11 Finding number 12 also relevant. Hilcorp voluntarily
12 agreed by letter to manage reservoir pressures to
13 seawater gradient equivalent of 8.55 pounds per gallon.
14 CO390(a) requires packers on ESP completions where
15 bottomhole pressure is greater than 8.55 pounds per
16 gallon equivalent fluid gradient. And then specific to
17 Milne Point F pad which is on a coastal location. In
18 Alaska offshore locations and locations on the coast
19 and near dwellings and public roads require a
20 subsurface safety valve and we would like to see some
21 sort of compliance to or system that complies to that
22 requirement for Milne Point F pad only.
23 And then finally so specifically as our issues
24 or concerns with the jet -- the conventional jet pumps.
25 For reverse circulation conventional jet pump
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
Computer Matrix, LLC Phone: 907-227-5312
Page 5
1 containment of a 300 -- 3,000 PSI power fluid relies on
2 a single barrier inner casing to overburden below the
3 surface case issue. It's difficult to monitor for
4 inner casing leak to formation without a tieback or
5 that concentric design that I talked about on the first
6 slide. And in support of this there was a recent
7 incident on Milne Point I27 where we had an
8 overpressurization on monitorable outer annulus which
9 was sealed. We saw 3,200 PSI or the power fluid
10 pressure and because of that monitorable annulus we
11 were able to shutdown and we knew right away that we
12 had an inner casing leak.
13 Reverse circulation jet pumps. There's a open
14 sliding sleeve, it requires a rig-up with pressure
15 control equipment, et cetera, that's separate from the
16 production operation so it's a separate rig-up. It
17 compromises -- we viewed the -- the sliding sleeve
18 open, it compromises the bypass packer barrier
19 function.
20 Forward circulation jet pumps. They utilize
21 the inner casing as a flow pass for possible corrosive
22 and scale laden fluids with no ability to measure
23 degradation without a rig workover.
24 Inner casing is a single barrier to the
25 overburden. Industry commonly suggests inner casing
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
Computer Matrix, LLC Phone: 907-227-5312
Page 6
1 should be utilized as a secondary barrier for produced
2 fluids.
3 Open sliding sleeve also via a slickline rig up
4 compromises packer barrier function.
5 Wells that flow to surface that bypass the
6 packer through jet orifice and open sliding sleeve
7 conflict with 20 AAC 25.200(d) and CO390(a). So how
8 does Hilcorp assure with this -- with high bottomhole
9 pressure swings on some of the wells at Milne induced
10 by injection stay below 8.55 as the conversation order
11 of 2015 suggests. Let's see. Additionally Milne Point
12 F pad wells are capable of unassisted flow of
13 hydrocarbons to surface must have a functioning
14 subsurface safety valve.
15 And just in closing we routinely receive
16 Hilcorp MPU sundry requests with bottomhole pressures
17 greater than 8.55 for installing jet pump completions
18 and how do we rectify that.
19 And that's really all I have.
20 CHAIRMAN HUBER: Thank you, Mr. Rixse.
21 Questions by the Commissioners.
22 COMMISSIONER CHMIELOWSKI: I have none. Thank
23 you.
24 MR. WILSON: I have none.
25 CHAIRMAN HUBER: Thank you. Mr. Rixse, thank
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
Computer Matrix, LLC Phone: 907-227-5312
Page 7
1 you. That completely your presentation. We appreciate
2 it.
3 We'll now turn to the representatives from
4 Hilcorp for your opportunity to present on the issue.
5 Are you ready to begin that process now?
6 (No audible response)
7 CHAIRMAN HUBER: Thank you. So let's start by
8 swearing in the witnesses. If you all raise your right
9 -- we'll just do it all together. If you all raise
10 your right hand and respond, please.
11 (Oath administered)
12 (No audible response)
13 CHAIRMAN HUBER: Let the record reflect that
14 the witnesses all responded in the affirmative.
15 And do any of you presenting today wish to be
16 recognized as experts?
17 (No audible response)
18 CHAIRMAN HUBER: Excellent. Could you please
19 identify your field of expertise and your credentials
20 briefly for us and beginning with whoever you'd like.
21 MR. WORTHINGTON: (Indiscernible - away from
22 microphone)
23 CHAIRMAN HUBER: Yeah, we got to make sure we
24 catch you for the record.
25 MR. WORTHINGTON: I got a green light.
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
Computer Matrix, LLC Phone: 907-227-5312
Page 8
1 CHAIRMAN HUBER: Good deal.
2 MR. WORTHINGTON: Aras Worthington, Hilcorp.
3 We were going to introduce ourselves in our individual
4 testimony and see if we could be recognized as an
5 expert witness at that time or we can do it all now,
6 but the way we organized it I would go first, introduce
7 myself, give my credentials, see if I qualify and so
8 forth.
9 CHAIRMAN HUBER: That's fine. If that's how
10 you're ready to go that will take care of the same
11 purposes.
12 Thank you.
13 MR. WORTHINGTON: Okay. Good morning, Mr.
14 Chairman, Commissioners and AOGCC Staff. I'm Aras
15 Worthington, I'm the well integrity manager for Hilcorp
16 Alaska. I'm here to testify with David Haakinson,
17 operations manager for the Milne Point asset for
18 Hilcorp Alaska, Reid Edwards, reservoir engineer for
19 Hilcorp Alaska, Taylor Wellman, wells manager for the
20 Milne Point asset of Hilcorp Alaska and Martin Walters,
21 an independent oil industry consultant and well control
22 certification instructor. We thank you for the
23 opportunity to present testimony today in support of
24 Hilcorp's desire to continue to install jet pump
25 completions in Milne Point field wells.
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 I'm a nearly lifelong Alaskan with a bachelor
2 of science in mechanical engineering from Purdue
3 University in West Lafayette, Indiana, I'm a licensed
4 petroleum engineer in the state of Alaska, I have 29
5 years of engineering oil field experience within a wide
6 variety of oil field companies in the fields of
7 interventions, rig workovers, well integrity and plug
8 and abandonment. I respectfully request that the
9 Commission recognize me as an expert witness in this
10 matter.
11 COMMISSIONER CHMIELOWSKI: I have no
12 objections.
13 COMMISSIONER WILSON: No objections.
14 CHAIRMAN HUBER: Without objection, Mr.
15 Worthington, you'll be recognized an expert in your
16 field.
17 MR. WORTHINGTON: Okay. Aras Worthington.....
18 CHAIRMAN HUBER: Before you continue I should
19 just cover just a couple things. As you transition
20 from speaker to speaker please make sure that you state
21 your name for the record so both the public can follow
22 along and that we make sure that we have an accurate
23 and complete record. Also if you're referring to
24 slides today if you could refer to the number of the
25 slide or name the slide so as we are reviewing the
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Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 record after the fact or people are following along
2 they can do so appropriately.
3 Thank you.
4 ARAS WORTHINGTON
5 previously sworn, called as a witness on behalf of
6 Hilcorp, Alaska stated as follows:
7 MR. WORTHINGTON: Okay. Aras Worthington
8 speaking again. Hilcorp has a proven track record of
9 acquiring ground field assets, ground field meaning old
10 oil and gas fields and stabilizing or increasing
11 production from them by reworking them in ways previous
12 operators did not. That is a business model proven up
13 from the lower 48 assets and perpetuated in Alaskan
14 assets which Hilcorp started operating about a dozen
15 years ago. The Milne Point asset was producing less
16 than 20,000 barrels of oil per day when we acquired it
17 in 2014. We have doubled production from Milne Point
18 field and now make around 40,000 barrels of oil a day
19 with plans to increase production another 20,000
20 barrels per day in the next five years.
21 Hilcorp achieves production gains or
22 stabilization in Alaskan operated fields through a
23 variety of methods including new drilling, recompleting
24 old wells and facility improvements in installations.
25 Jet pumps figure into this plan in all three
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 categories, the new drill completions, the
2 recompletions of workovers of old wells and facility
3 modifications and installations to power the jet pumps.
4 It takes significant investment in all three categories
5 to make material gains in production. The Milne Point
6 unit has a long history of using jet pumps for
7 artificial lift which Mr. Haakinson will detail later
8 in our testimony.
9 We would like to begin with a review of basic
10 well construction and then artificial lift mechanisms
11 used by Hilcorp Alaska in an effort to establish a
12 basis for the hearing on jet pump artificial lift.
13 Slide number 3 shows the generic well design
14 including a conductor, surface casing, production
15 casing and a completion that includes tubing and a
16 packer. In Alaska the typical sizes of these tubulars
17 would be 20 inch outer diameter conductor, nine and
18 five-eights of an inch to 13 and three-eights of an
19 inch in outer diameter surface casing that is cemented
20 to surface, production casing or production liner is
21 anywhere from two and three-eights of an inch to nine
22 and five-eights of an inch in outer diameter. This
23 casing is also cemented in place, but usually not to
24 surface, it is primarily cemented across the reservoir
25 rock to isolate the reservoir from the other zones
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 drilled above and below it. The production tubing that
2 is run in the well is usually the main conduit for
3 produced fluids that include gas, oil and water. In
4 Alaska the typical sizes of production tubing are
5 anywhere from two and three-eights of an inch to seven
6 inch -- inches in outer diameter. A packer also
7 typically -- is also typically run to isolate the
8 produced fluids from the production casing.
9 Slide number 4 shows the reservoir rock
10 perforated and produced fluids, oil, water and gas, out
11 of the reservoir rock and up the production tubing.
12 Slide number 5 summarizes the functions of
13 tubing and packer in the completion. As the slide
14 states the production tubing protects the production
15 casing from produced fluids, helps the well flow and is
16 more replaceable than the production casing because the
17 casing is not cemented into the wellbore whereas the
18 production casing is at least partially cemented in the
19 wellbore. Once a string of pipes in the wellbore has
20 been cemented generally it can only be cut above the
21 top of cement and retrieved to that depth.
22 Slide number 6 shows the typical production
23 packer with a set of slips that bite into the
24 production casing to anchor the packer in place and in
25 the last chimeric element that provides a field against
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329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 a production casing.
2 Slide number 7 titled artificial lift. Many
3 oil wells -- many wells flow -- will flow oil, gas and
4 water to surface without assistance, but most wells
5 employ some type of artificial lift to either get the
6 well flowing or enhance the flow rate from the well and
7 increase productivity. This also extends the well's
8 flowing lifespan therefore increasing recoverable
9 reserves from the well because the well would otherwise
10 stop flowing continues to flow with artificial lift.
11 The types of artificial lift Hilcorp uses in Alaska are
12 rod pump, gas lift, electric submersible pumps or ESPs
13 and jet pumps. We'll briefly review the mechanics of
14 these lifting mechanisms and the pros and cons of each.
15 For almost all North Slope wells the volumes
16 that a rod pump can deliver do not meet the needs for
17 flow rate that the wells can deliver and there are cold
18 weather issues with rod pumps as well. So we don't
19 have any rod pumped wells on the North Slope and we do
20 not intend to discuss them in this hearing unless the
21 Commission desires to do so.
22 Slide number 8 depicts gas lift. Gas lift
23 injects compressed natural gas down the production
24 casing by tubing annulus and injects it into the inside
25 of the tubing through a series of valves. In laymen's
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 terms we're blowing bubbles into the produced fluid,
2 the bubbles float and percolate to the surface lifting
3 produced fluid with them. Gas lift is mechanically
4 very simple, has very few moving parts in the wellbore,
5 it can move high volumes of liquid or gas, and is solid
6 tolerant and corrosive fluids tolerant. Limitations of
7 gas lift are that you need a lot of natural gas for the
8 system to operate. That is the main reason Prudhoe Bay
9 is almost all gas lifted, we have lots of gas there.
10 And there is a limitation to how low you can draw the
11 reservoir pressure with gas lift. The Milne Point
12 field does not produce enough gas for a field wide gas
13 lift system so there are only a few gas lifted wells at
14 Milne.
15 Slide number 9 shows an electric submersible
16 pump or ESP. ESPs are the same technology that is used
17 in domestic waterwells with an electric motor driving a
18 series of centrifugal pump sections. ESPs move high
19 volume of fluid, don't need a natural gas source and
20 can pull the reservoir pressure down very low. The
21 downside to ESPs is that they are expensive to install
22 and operate due to the cost of the motor and the pump
23 and the need for a rig to install a replacement because
24 you need to pull the entire tubing string and the
25 packer if it is installed to get the ESP and change it
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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Page 15
1 out. So they are overall very expensive and you need
2 electrical power and a lot of it, 250 to 500 kilowatts
3 per well is typical. ESPs are also sand and solids
4 intolerant due to the pump stage turbo machinery which
5 will wear out quickly or plug off with sand or solids
6 production. Milne has a lot of ESPs, but the expense
7 and downtime that the wells suffer when the ESPs fail
8 is a major consideration.
9 Slide number 10 is a very basic schematic of a
10 jet pump to show how it works. High pressured power
11 fluid, water in our case, at about 3,500 pounds per
12 square inch is forced through a very small nozzle which
13 is less than a quarter inch in inner diameter. The
14 nozzle accelerates the power fluid to a high velocity,
15 for reference between 500 and a thousand feet per
16 second, in the range of the muscle -- muzzle velocity
17 of a pistol bullet and into the throat of the jet pump.
18 The throat draws in produced fluid due to the Venturi
19 effect of the high velocity power fluid. This is also
20 known as Bernoulli's principle, the higher the velocity
21 of the fluid, the lower the pressure of the fluid. So
22 in laymen's terms the jet pump draws the reservoir
23 fluid into the throat of the pump and then up the
24 production tubing with the power fluid.
25 So that describes the basic mechanics of how a
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 jet pump works, now we'll explain how the jet pump is
2 arranged in a wellbore.
3 Slide number 11 has two schematics that show
4 the most typical flow paths of power fluids and
5 produced fluids for jet pumps. The red arrow is
6 depicting power fluid, the pink arrow is the produced
7 fluid and the blue arrow is produced fluid mixed with
8 power fluid.
9 Slide number 12 is a reverse circulating.....
10 COMMISSIONER CHMIELOWSKI: Oh, Mr. Worthington,
11 may I ask a couple questions quick?
12 MR. WORTHINGTON: Yeah.
13 COMMISSIONER CHMIELOWSKI: As you're going over
14 the basics of the well design and artificial lift could
15 you go back to slide five and just identify for us and
16 for everyone what you consider to be the inner annulus
17 and the outer annulus for pressure monitoring?
18 MR. WORTHINGTON: Yeah. Thank you. So Mr.
19 Haakinson is pointing to the inner annulus right now
20 which is the tubing by production casing annulus. And
21 sorry, what -- what else?
22 COMMISSIONER CHMIELOWSKI: An outer annulus.
23 MR. WORTHINGTON: Outer annulus is the surface
24 casing by production casing annulus.
25 COMMISSIONER CHMIELOWSKI: Great. And this
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 schematic you're showing as an example they're both
2 monitorable annuli?
3 MR. WORTHINGTON: Yes.
4 COMMISSIONER CHMIELOWSKI: Yes. Okay. And
5 could you go back to slide 11, please. Are you done
6 with slide 11, I had a question?
7 MR. WORTHINGTON: Yes.
8 COMMISSIONER CHMIELOWSKI: Okay. So in this
9 example -- well, you talked about the small nozzle size
10 and the jet pump being what, less than or equal to a
11 quarter inch?
12 MR. WORTHINGTON: Yes.
13 COMMISSIONER CHMIELOWSKI: Has Hilcorp
14 calculated how much flow could potentially pass through
15 that nozzle for example if there was a loss of
16 containment at surface?
17 MR. WORTHINGTON: We have not.
18 COMMISSIONER CHMIELOWSKI: Okay. Do you have
19 an estimated range or -- I know it depends on the
20 reservoir pressure and the hydrostatic column, but.....
21 MR. WORTHINGTON: Yeah. Sorry, Aras
22 Worthington speaking. I'm not -- I don't know that we
23 have calculated that.....
24 COMMISSIONER CHMIELOWSKI: Okay.
25 MR. WORTHINGTON: .....perhaps one of my
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 colleagues can speak to that, but my answer for now
2 would be I don't know.....
3 COMMISSIONER CHMIELOWSKI: Okay.
4 MR. WORTHINGTON: .....but I could get back to
5 you.
6 COMMISSIONER CHMIELOWSKI: Okay. And then I
7 had another question about jet pump completions. So in
8 this -- you know, in the forward or say the reverse
9 circulating which is I guess what the -- still the most
10 common setup; is that right?
11 (No audible response)
12 COMMISSIONER CHMIELOWSKI: So you have high
13 pressure power fluid going down the IA and then the
14 combined fluids going up the tubing. In this situation
15 -- it looks like in this drawing at least there's no
16 monitorable annulus outside of the production casing.
17 So how would a leak in the production casing be
18 noticed?
19 MR. WORTHINGTON: Yeah. This is not meant to
20 be a representative.....
21 COMMISSIONER CHMIELOWSKI: Okay.
22 MR. WORTHINGTON: .....schematic of our wells,
23 this is something I pulled off the internet just.....
24 COMMISSIONER CHMIELOWSKI: Okay. That's what I
25 thought, but I just thought I'd.....
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 MR. WORTHINGTON: .....just to show the flow
2 path.
3 COMMISSIONER CHMIELOWSKI: Right.
4 MR. WORTHINGTON: So.....
5 COMMISSIONER CHMIELOWSKI: But just to mention
6 I guess that, you know, in slide five as you mentioned
7 that one of the goals of well completion is to protect
8 the casing from fluids and pressure, but that sometimes
9 the casing is exposed to fluids and pressure in the
10 case of the jet pumps, correct, fluid.....
11 MR. WORTHINGTON: Correct.
12 COMMISSIONER CHMIELOWSKI: .....fluid
13 completion sites? Has Hilcorp -- Hilcorp proposed
14 these completions without a monitorable annulus; is
15 that correct?
16 MR. WORTHINGTON: I am unaware.....
17 COMMISSIONER CHMIELOWSKI: Okay.
18 MR. WORTHINGTON: .....if we have proposed one
19 with an unmonitorable annulus. Perhaps one of my
20 colleagues can.....
21 COMMISSIONER CHMIELOWSKI: Oh, we can save it
22 for later if that's part of the.....
23 MR. WORTHINGTON: Okay.
24 COMMISSIONER CHMIELOWSKI: .....presentation.
25 I was just curious to know how if a well were set up
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 without a monitorable annulus how would Hilcorp or any
2 operator determine that there was a leak or a failure
3 of that inner casing string?
4 MR. WORTHINGTON: Yes, that -- that would be
5 challenging.....
6 COMMISSIONER CHMIELOWSKI: Right.
7 MR. WORTHINGTON: .....yes.
8 COMMISSIONER CHMIELOWSKI: Okay.
9 MR. WORTHINGTON: Agreed.
10 COMMISSIONER CHMIELOWSKI: Is that something
11 that will come up later in the presentation or we can
12 talk to then?
13 MR. HAAKINSON: Yes.
14 COMMISSIONER CHMIELOWSKI: Okay.
15 MR. HAAKINSON: David Haakinson speaking. Yes,
16 details of that will come up later.
17 COMMISSIONER CHMIELOWSKI: Okay. Great. Thank
18 you. Go ahead.
19 MR. WORTHINGTON: Okay. I may ask some of the
20 questions you just asked, but I'm going to carry on
21 with what I -- so we're on slide 12.
22 CHAIRMAN HUBER: Mr. Worthington, just so you
23 know, we will occasionally interrupt with questions
24 through that.
25 MR. WORTHINGTON: Yes.
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329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 CHAIRMAN HUBER: It's a fairly large slide
2 deck, we don't mean to redirect your order of
3 presentation. Please proceed as you would, just know
4 that we're going to interrupt you here and there.
5 Thank you.
6 MR. WORTHINGTON: Aras Worthington. That
7 sounds just fine so please do interrupt as you desire.
8
9 Slide number 12 is a reverse circulating jet
10 pump. This is the most common design for Milne jet
11 pumps. Power fluid is orange on the slide and pumped
12 down the production casing by tubing annulus. It is
13 then ducted into the nozzle and into the throat where
14 produced fluid in blue is drawn in and produced up the
15 production tubing. The mixture of power fluid and
16 produced fluid as produced up the tubing is in purple
17 on the slide.
18 Slide number 13 is a forward circulating jet
19 pump. They are common worldwide, but more seldom used
20 at Milne Point. Power fluid is pumped down the
21 production tubing, orange in color on the slide, then
22 through the nozzle and throat where the produced fluid,
23 blue on the slide, is drawn in and then sent up the
24 production casing by tubing annulus. The mixture of
25 power fluid and produced fluid is in purple on the
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 schematic, it also incorporates a check valve or
2 standing valve that closes when fluid flow is reversed
3 and pumped down the production casing by tubing annulus
4 allowing the pump to be pumped out of the well and up
5 the production tubing so it can be replaced when the
6 nozzle wears out. This allows very low cost and
7 expedient replacement of the jet pump nozzle when it
8 wears out.
9 Jet pumps can move high volumes of fluid, have
10 no moving parts downhole whatsoever, can pull the
11 reservoir pressure down very low, can run on any energy
12 source that can pump power fluid, they are also
13 inexpensive to replace when the nozzle wears out. And
14 you don't need a rig to do it, just a pump, a slickline
15 unit or sometimes a coiled tubing unit. So when a jet
16 pump wears out it takes only a few days to get it
17 repaired and back online. On the down side the
18 facility's equipment is expensive, the power fluid must
19 be pumped at a very high pressure, typically, 3,500
20 pounds per square inch and sand or salt -- solids or
21 sand production can plug or cut out the nozzle.
22 I'm open to any questions on this basic
23 presentation at this time and will remain open for
24 questions throughout our testimony.
25 CHAIRMAN HUBER: Yeah, I do have a question. I
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 guess in either configuration, forward or reverse
2 circulating, you're introducing warmer fluids nearer to
3 the formation and I'm just curious if you've considered
4 any incremental affects to thawing permafrost or
5 substance issues that could be associated with this?
6 MR. HAAKINSON: David Haakinson speaking.
7 UNIENTIFIED VOICE: You need a green light on.
8 MR. HAAKINSON: There we go. David Haakinson
9 speaking. Yes, with that we consider a lot of our
10 power fluid temperatures that we have around the field.
11 What we find is a lot of our old clark producers, a lot
12 of other producers of different formations can flow at
13 130 to 140 degrees on surface. Most of our power fluid
14 temperatures throughout the field are actually lower
15 than that, they typically range from the range of 80
16 degrees fahrenheit. Our warmest temperature at -- on
17 one pad Moose pad, our power fluid temperature gets up
18 to 130 degrees. We take lots of knowledge coming in
19 from well spacing, you know, our wellbore designs, what
20 kind of casing strings we run, nine and five-eights
21 casing have dual, nine and five-eights by seven inch
22 casing, but for the most part we find that a lot of
23 high water Kuparuk producers, that's four in there,
24 actually flow with higher flowing temperatures than
25 many of our jet pump producers do because the power
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Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 fluid temperature is lower in those wells.
2 CHAIRMAN HUBER: Thank you.
3 COMMISSIONER CHMIELOWSKI: I have a follow-up
4 question. I know, Mr. Worthington, that you're
5 knowledgeable about subsidence issues as they relate to
6 well integrity especially at Milne in the west end of
7 Prudhoe, until recently I think jet pumps were only at
8 Milne Point S pad. But your -- your plan -- you have a
9 new plan to expand jet pumps across all the Milne Point
10 Pads, correct, and where you already have subsidence
11 issues say at I pad or J pad or H pad, do you think
12 introducing jet pumps to those, the additional heat,
13 will exacerbate problems?
14 MR. HAAKINSON: David Haakinson speaking again.
15 Yes, we do take that into consideration. You'll see
16 here in a little bit a Milne Point overview. We've
17 actually had jet pump installations around the field
18 since 2001. S pad was the first drill site that was
19 actually developed fully on the principal of jet pump
20 power fluid system. With that though however like on I
21 pad we take into consideration our power fluid
22 temperatures. For instance like on I pad or the track
23 14 drillsites where we have potential -- let's just say
24 potential for subsidence due to the, you know,
25 overburden of the geology there, we purposefully do not
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Docket No. CO 23-004
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1 heat our power fluid on those drillsites. We also have
2 -- when we're designing those wells our new
3 installations are typically nine and five-eights and
4 seven inch casing or nine and five-eights and seven and
5 five-eights inch casing on those specific designs.
6 COMMISSIONER CHMIELOWSKI: Okay. Thank you.
7 MR. WORTHINGTON: Yeah, if I -- Aras
8 Worthington speaking. Just a suggestion that Mr.
9 Haakinson's going to testify and Taylor, all of us
10 will, we all have something prepared, so we'll welcome
11 the questions as we go, but your -- a lot of your
12 questions might get answered along the way. So with
13 that unless you want to ask questions about my specific
14 testimony I'll hand over to Mr. Haakinson to discuss
15 Milne Point jet pump history and facility constraints.
16 COMMISSIONER CHMIELOWSKI: I do have a question
17 though for you then, Mr. Worthington. A lot of times
18 the production casing is what, a L80 or similar steel;
19 is that right?
20 (No audible response)
21 COMMISSIONER CHMIELOWSKI: And so does Hilcorp
22 have remediation plans in place to deal with long term
23 corrosion or erosion of the production casing?
24 MR. WORTHINGTON: Yes. Hilcorp does corrosion
25 inhibit all of our power fluids in the Milne Point
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329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 wells at this time and we plan to continue that.
2 COMMISSIONER CHMIELOWSKI: Okay. How about
3 erosion issues, is there sand carried through the power
4 fluid ever, solids?
5 MR. WORTHINGTON: There are. There is sand,
6 but the -- to say that the flow rates up the casing
7 when you're flowing up it are so much less than up the
8 tubing, it's not as much of a concern.
9 COMMISSIONER CHMIELOWSKI: Then the reverse
10 flow, is it the same where the power fluid is going
11 down the casing?
12 MR. WORTHINGTON: Yes.
13 COMMISSIONER CHMIELOWSKI: Yeah.
14 MR. HAAKINSON: Yeah, David Haakinson. I can
15 again speak to that. So typically in the design of a
16 reverse circulating jet pump your power fluid enters
17 the wellhead from each side. On surface we typically
18 have a -- some sort of glass joint, like a higher
19 strength tubular to basically redirect that flow
20 because you're coming in at basically a 90 degree
21 angle, hit that glass joint and then the power fluid
22 goes down the annulus. At that point in time you're
23 getting pretty close to laminar flow all the way down
24 the annulus. When it gets to the sliding sleeve or
25 when you start getting into the intake of the jet pump
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329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 that's where your erosional potential is actually not
2 on your casing, but it's on your -- call it your
3 sliding sleeve, it's on the ports of your jet pump. So
4 what we do is we see erosional say on our jet pump,
5 basically the part -- mechanical part that can be
6 pulled and in and out of the ground with slickline.
7 Obviously during workovers when we see those types of
8 things we go and we pressure test our casing, we're
9 going in and reviewing those. In a few cases there may
10 -- to my knowledge may be some calipers out there, but
11 to date we haven't seen any annula -- any annuli
12 erosional concerns on any of our -- any of our wells.
13 More specifically on our power fluid separations you'll
14 see on the drillsite typically our power fluid is a lot
15 cleaner than it is coming out of the main facility and
16 that's actually the direction that we're going on a lot
17 of our drillsites.
18 COMMISSIONER CHMIELOWSKI: The partial
19 separation you mean on pad?
20 MR. HAAKINSON: Correct.
21 COMMISSIONER CHMIELOWSKI: Yeah. Okay. So how
22 deep does that additional thick -- I forget what you
23 called it, casing (indiscernible - simultaneous
24 speech).....
25 MR. HAAKINSON: Glass joint.
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1 COMMISSIONER CHMIELOWSKI: Glass joint.
2 MR. HAAKINSON: It's short. It's basically
3 where the -- basically it just aligns within the tubing
4 hanger where it comes in and your -- your flow comes
5 in. So I -- to the best of my knowledge six feet
6 maybe.
7 COMMISSIONER CHMIELOWSKI: Oh, okay.
8 MR. HAAKINSON: Yeah.
9 COMMISSIONER CHMIELOWSKI: Okay. Thank you.
10 That's all for me.
11 CHAIRMAN HUBER: We're moving now to your
12 section of the testimony, Mr. Haakinson.
13 MR. HAAKINSON: Okay. Great.
14 MR. WORTHINGTON: I think you have a question.
15 COMMISSIONER WILSON: I was just -- yeah. You
16 said that you haven't seen the erosion I guess on the
17 casing. What's the means of monitoring that?
18 MR. HAAKINSON: David Haakinson speaking again.
19 So on the monitoring time, you're not going to be able
20 to monitor erosional concerns while the well's in
21 operation, right, it's behind another tubing. From
22 that unless we have some sort of reason to go look for
23 that we're not necessarily advising that. When we have
24 workovers we -- our typical means is to go pressure
25 test the casing, make sure that we have a sound well
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1 envelope, but that point on it's -- without running a
2 caliper, some sort of downhole camera to evaluate where
3 there could be erosion, there's really no reason on a
4 reverse circulating jet pump to have erosion either.
5 Your fluids are basically hitting that and then going
6 down in -- and flowing into your tubing, there's no
7 forceful direction of the fluid against your casing.
8 CHAIRMAN HUBER: Would you briefly outline --
9 you want to be recognized an expert and so
10 (indiscernible - simultaneous speech).....
11 MR. HAAKINSON: Yeah, sure. I'll go ahead and
12 (indiscernible - simultaneous speech).....
13 CHAIRMAN HUBER: .....that introduction.
14 MR. HAAKINSON: .....(indiscernible -
15 simultaneous speech) I'll start.
16 CHAIRMAN HUBER: Awesome. Thank you so much.
17 MR. HAAKINSON: Good morning. My name is David
18 Haakinson. I'm currently the Hilcorp operations
19 manager for the Milne Point asset. I've held that role
20 for about a year now. I'm third generation oil field
21 employee, I grew up operating wells mainly, cleaning
22 rigs back down in Wyoming. Progressed to become a
23 petroleum engineer. From that time I have a bachelor's
24 of science in petroleum engineering from the University
25 of Wyoming. From that I've worked in seven different
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1 states, across multiple basins in the lower 48. I came
2 up to work in Alaska for ConocoPhillips originally.
3 I'm a licensed petroleum engineer, state of Alaska, and
4 I'm proud to call Alaska home for the last 13 years. I
5 have many years of experience in a wide variety of
6 roles such as reservoir engineering, production
7 engineering, as well as wells engineering, progressed
8 to operations supervision and that's the role I hold
9 today. I respectfully request that the Commission
10 recognize me as an expert in artificial lift and
11 production optimization.
12 CHAIRMAN HUBER: Commissioners, any objection.
13 COMMISSIONER CHMIELOWSKI: No objections.
14 COMMISSIONER WILSON: No objection.
15 CHAIRMAN HUBER: Without objection you're
16 recognized as an expert, Mr. Haakinson.
17 Thank you. Please proceed.
18 MR. HAAKINSON: Thank you.
19 DAVID HAAKINSON
20 previously sworn, called as a witness on behalf of
21 Hilcorp Alaska, stated as follows:
22 MR. HAAKINSON: All right. So today I'm going
23 to go over a background of the Milne Point asset, give
24 a little bit of a history on Milne Point itself, the
25 production history, our facility constraints we have
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1 both at the facility as well as out on the drillsite
2 level. And then I'll begin to dive into artificial
3 lift selection, how we choose artificial lift at Milne
4 Point and more specifically in jet pump operations.
5 And then I'll summarize with just an overview of where
6 Milne Point's headed.
7 On slide 16 is a map of the North Slope. Milne
8 Point is encircled in red, located between the Kuparuk
9 River unit to the west and the Prudhoe Bay asset to the
10 east. It was originally discovered in 1969 by Conoco.
11 From there delineation wells were drilled from 1980 to
12 1984, first production came online in 1985. What's
13 interesting about Milne Point is actually it was first
14 developed as a test facility so a really small facility
15 and that really kind of hampers us today on how we
16 developed our facility over time.
17 From that marginal economics in the mid '80s,
18 Milne Point to our knowledge is one of the few fields
19 that actually was shut in for a two year period of time
20 in the late '80s. Conoco continued to operate it until
21 1994 in which BP took over operatorship. BP operated
22 the unit for approximately 20 years when Hilcorp took
23 over operatorship and 50 percent of the working
24 interest in 2014. At that point in time Hilcorp has
25 stabilized production and grown production as you'll
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1 see here on the next slide, but we purchased the
2 remaining 50 percent working interest from BP in 2020
3 and as of today Milne Point is the fourth largest field
4 on the North Slope.
5 On slide 17 is a geologic cross section of the
6 four main producing intervals and reservoirs beneath
7 Milne Point asset. Starting from the bottom is the Sag
8 River formation. It's a lower permeable formation,
9 really good oil content or quality, 38 to 40 degree API
10 gravity oil. Very little production at Milne Point,
11 it's not as prolific as it is over in Prudhoe, however
12 it's our deepest formation at approximation 8.800 feet
13 TVD.
14 Moving up in the cross section, the Kuparuk
15 formation which is located at approximately 7,000 feet
16 TVD. This comprises the three primary producing sands,
17 the C sand, the B sand as well as the A sand. The
18 Kuparuk formation is highly faulted, similar to what
19 Conoco sees over on the greater Kuparuk area.
20 Typically tougher to develop, but it was the main
21 development and it was where Milne Point started its
22 production history back in the '80s. From that you'll
23 see a production plot of where we are with Kuparuk here
24 on the next slide.
25 The Schrader Bluff formation above that at
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1 approximately 4,000 feet TVD. Highly permeable sands
2 that primarily produce through the O and N sands.
3 Despite the high permeability though we have to deal
4 with lower API gravity oil with a high viscosity count,
5 like a honey like consistency. It's also a
6 nonconsolidated formation that can produce quite a bit
7 of solids. Our completion mechanisms do prevent those
8 solids, we installed now a lot of new drills, we
9 actually installed downhole screens to prevent --
10 rather than a solid paneling on surface we try to
11 prevent solids from producing up for multiple reasons.
12 It's -- you previously mentioned artificial lift as
13 well as to improve our well quality leaning on the
14 sales meter.
15 And then above that is -- the last formation is
16 the Ugnu formation. It actually is the largest
17 resource based on the North Slope. I'll talk about the
18 Ugnu a little bit later, but again a very highly
19 permeable asset or a reservoir rather and but the oil
20 quality is poor. We can get ranges -- I've seen down
21 to eight API gravity. We actually have one well
22 producing in Ugnu today at Milne Point which I'll speak
23 to you on jet pumps later, but there's definitely some
24 potential with that reservoir and I believe that
25 artificial lift is a good way to go about that.
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1 On that note I'll progress into the production
2 profile. So on slide 18 is a production profile of
3 Milne Point asset from 1989 to current. On the left Y
4 axis is the oil rate in barrels of oil per day which
5 correlates to the stacked bark or stacked plot. The
6 Kuparuk production is in green and the Schrader Bluff
7 which is our second most prolific and now our highest
8 production reservoir, producing reservoir is in yellow.
9 It also produced a little bit of Sag and a little bit
10 of Ugnu, but for intents and purposes of this
11 conversation those are just minor.
12 The next plot that I wanted to really look at
13 is the viscosity so that trend line is in black. And
14 what that is is that's a calculated oil viscosity that
15 is entering our facility at Milne Point. That axis is
16 actually on the Y axis on the right-hand side. The
17 point I want to make with that is as we develop the
18 Schrader Bluff Ugnu formation the oil viscosity that's
19 coming into our plant is much higher and much more
20 difficult to deal with. And with that I'll get into
21 why the, you know, power fluid separation on pad we can
22 reduce, you know, our -- the water coming into the
23 facility increase the resonance time of the oil to help
24 separation and get the oil down the sales meter.
25 As previously mentioned the Milne Point asset
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1 was developed as a test facility. Its initial capacity
2 in the late '80s, early '90s, was 30,000 barrels of oil
3 per day, 30,000 barrels of water per day and 30 million
4 standard cubic feet of gas per day. And that gas
5 constraint is a significance difference in most other
6 assets on the North Slope, right, so Kuparuk, Alpine,
7 Prudhoe Bay that can handle, you know, over hundreds of
8 million, even billions of standard cubic feet of gas
9 per day, Milne Point processing piping within the
10 facility as well as all the cross-country lines of
11 constraints were designed for that -- those low rates
12 and that really affects us in how we develop our field
13 today.
14 When BP took over operatorship in 1994 they saw
15 great potential in the Kuparuk formation and they went
16 in with what was called the MPX-1 expansion. They
17 increased the water handling capacity up to 100,000
18 barrels of water per day and increased the gas handling
19 capacity to approximately 35 million standard cubic
20 feet of gas per day which is still quite limited, yes.
21 So what BP did is they developed a lot of their drill
22 wells on the north side of the field and I'll show an
23 aerial map on the next slide to kind of give you more
24 of a broader scope, high level scope of where those
25 drillsites are, but they drilled a lot of wells off of
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1 the north side in the S and L regions and expanded the
2 Kuparuk production in green and saw significant growth
3 in the late '90s. At that time they primarily
4 installed the ESP artificial lift on those wells
5 because they realized they had a significant strain on
6 their gas handling capacity. They couldn't gas at
7 these Kuparuk wells like they could to the west or to
8 the east in the other assets and with that it was
9 actually a good successful means, high oil cuts, very
10 low water handling and the ESPs were a really good lift
11 mechanism for that point in time.
12 Milne Point's production peaked at a little
13 over 60,000 barrels a day in 1998. At that point in
14 time you can see on that, the green production, the
15 Kuparuk, starts decreasing. That's really just an
16 effect of the wells starting to water out. The water
17 cut's increasing, you know, the oil cuts are
18 decreasing. In 2001 we previously mentioned that, but
19 the first power fluid separation facility was installed
20 by BP at S pad. At that point in time also the first
21 jet pumps were installed at F pad and C pad in the
22 Kuparuk formation. I believe there was four to five
23 Kuparuk producers that were installed with jet pump
24 completions in 2001. So from that point in time, since
25 2001, we've been operating jet pumps around the field
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1 at Milne Point.
2 As time's gone on or as time went on the
3 production of the Schrader Bluff increased, further
4 development of the tract 14 drillsites which are
5 drillsites G, H, I and J were developed on the west
6 side, increasing that Schrader Bluff production.
7 However as wells began to water out ESPs became more
8 difficult, more uneconomic to produce and production in
9 the Kuparuk formation primarily declined.
10 When Hilcorp took over operatorship in 2014
11 really focusing on optimizing our ESP workover costs
12 and really stabilized production at approximately
13 20,000 barrels per day for five years. In 2019 Hilcorp
14 installed their second power fluid separation facility
15 at M pad and that's where production really starts to
16 climb from 2019 to current. At that time a full two
17 vessels through the pumps was installed at that
18 drillsite and every producer at M pad, also known as
19 Moose pad, is lifted with artificial lift of jet pump.
20 At that time since then we've installed two additional
21 power fluid separation facilities, one at Milne Point I
22 pad and a second one at the Milne Point F pad that was
23 just brought online earlier this year. The goals with
24 that are to expand our jet pump artificial lift and
25 then reduce the constraints on the facility from the
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1 cross-country lines into the facility.
2 Today's production is approximately 40,000
3 barrels of oil per day and we are installing a third
4 oil train at the end of this year to increase our
5 capacity back up to 60,000 barrels a day with a sales
6 oil gravity of approximately 18 API gravity.
7 CHAIRMAN HUBER: Let me interrupt for one quick
8 question, please. You talked about some gas lifts not
9 used here and I'm wondering you talked about resource
10 and you talked about facility so is that limitation
11 resource based or facility based or both?
12 MR. HAAKINSON: Facility based. Primarily
13 facility based for two -- two main reasons. One is the
14 first amount of gas. Basically all the vessels and all
15 the interconnected piping within the facility are sized
16 only to handle that, you know, 35. It's actually --
17 we've expanded our gas capacity to the most that we can
18 so now we can handle approximately 40 million standard
19 cubic feet of gas per day. So the piping size and
20 diameters as well as the cross-country lines which I'll
21 show in a later slide, but to answer your question it's
22 facility based.
23 CHAIRMAN HUBER: Thank you.
24 MR. HAAKINSON: So on this slide maybe get to a
25 little bit of your question, on slide 19 is an aerial
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1 map of the Milne Point asset. I'll speak to the key in
2 a little bit, but the main processing facility is
3 located in the center right marked with a red star. On
4 that note most of the other drillsites on the north to
5 the south east end. The first point I want to point
6 out on the key is the green pumps. So the green pumps
7 are installations of either a power fluid separation
8 facility or a power fluid booster pump across the
9 drillsite. And what we can see is that we have a wide
10 variety of these pumps that are installed all across
11 the -- all across the field. The pumps that are
12 surrounded in red or outlined in red are indications of
13 future plans to install additional on pad power fluid
14 separation facilities or booster pumps. Again the
15 power fluid separation not only helps with our
16 artificial lift of keeping it on pad, but also improves
17 our water handling capacity because we can separate out
18 that water and not send it down the line and restrict
19 those lines to the facility.
20 The next on the key is the red lines are
21 hydraulic constraints and to that point the north side
22 of the field coming in from F and L into C pad as well
23 as on the tract 14 drillsites really from I pad into
24 CFP are restricted from original development. Out in
25 the tract 14 drillsites we're seeing production levels
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1 10 times what we originally found development from BP
2 20 years ago. So with those fluid rates the oil rates
3 that are increasing we really have to focus in on
4 separating out the oil or -- I'm sorry, the water and
5 the gas from the oil to open up free space in those
6 lines.
7 What's also interesting about Milne Point is
8 the gas lift systems as well as the water injection
9 systems aren't really tied to all the drillsites,
10 that's kind of common in many other fields. So the
11 orange line here is just our gas lift distribution
12 network and it's really constrained to only three pads,
13 C pad, E pad and then B pad here on the northeast side
14 of the field. And that limits us because we can't, you
15 know, on facility of handling the gas, but we also
16 can't get gas lift, you know, out to those other
17 drillsites and there's no gas lift line that goes out
18 to the west side of the tract, there's no gas lift line
19 that goes out to S pad or K pad in the southeast so gas
20 lift really is not even an option for us to develop
21 those artificial lifts in that field.
22 Also on this is the water injection lines. I
23 want to point out that they're on the northwest side of
24 the field, the F, L and N as well as on the southeast
25 side of the field at K pad. They're effectively
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1 operating on an island. We support our water injection
2 through source water wells, but on that we've also
3 noticed over time is these Kuparuk wells primarily
4 water out, we have to do something with the water. Our
5 facilities are constrained, well, there's no better
6 solution than to put on pad separation where we can
7 increase our water injection on the pad and ultimately
8 increase the resource, you know, recoverable resource
9 by separating out that water early.
10 On slide 20, this is a process flow diagram of
11 our typical on pad separation design. I'll start --
12 it's a busy slide, I'll walk through it as best I can.
13 On the bottom left is an indication of a typical
14 producer. So production will come up out of the tubing
15 or in this case on the -- go through a surface safety
16 valve through a choke, a check valve and into a
17 production header. At that point in time all the wells
18 come in into a single production header and versus many
19 other drillsites, many other developments across the
20 North Slope, at that point in time you just go on to
21 the processing facility. In this case the production
22 header ties into the power fluid separator and the
23 water and gas are separated out. The gas is in yellow
24 here, the water is in blue and then oil and some water
25 carryover because you don't get a 100 percent
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1 separation, but -- a 100 percent separation goes on to
2 the processing facility, the means to the sales line.
3 A couple synergies of this is if you're
4 separating out the water for it you can separate out
5 water for power fluid as well as for injection.
6 Additional things that improve it is that we can
7 actually separate out the gas, the supply fuel gas for
8 either heaters to heat the process oil going on or any
9 other means that may be necessary on the drillsite.
10 The power fluid separator itself then separates
11 out the water and from there goes through a power fluid
12 booster pump or injection pump, typically they're
13 separate, separate pumps, that then can supply power
14 fluid to a substantial amount of wells on the pad. The
15 power fluid then goes through a choke, a check valve
16 and then we install surface safety valves on all of our
17 power fluid lines going into our wells which is quite
18 different than any other artificial lift on the North
19 Slope.
20 A couple points with this. Other than the
21 synergies of allowing us to separate out the water for
22 injection and power fluid is that we have many
23 critical, you know, shut downs that we can have with
24 these systems. So we have high and low level shut
25 downs on our power fluid separators, we have high and
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1 low flow, as well as high and low pressure shut downs
2 on our power fluid pumps up and -- above and beyond all
3 the shut downs that we have on our wells. So with that
4 we have basically layers of protection on the facility
5 that can protect our wells, you know, separate out
6 those fluids early.
7 The last point I wanted to make is on the oil
8 and water leaving the pipeline. We actually have a lot
9 more metering on pad which is something that I'm very
10 proud of that Hilcorp is -- we've been able to add
11 these meterings and it's helped us on our production
12 optimization, we can put meters on the pad level to
13 help with our allocations and so forth by having these
14 separators which ultimately helps us with our rate and
15 ultimate recovery.
16 COMMISSIONER CHMIELOWSKI: Mr. Haakinson, can
17 you go back to that slide.
18 MR. HAAKINSON: Yes.
19 COMMISSIONER CHMIELOWSKI: So you're saying
20 that the power fluid separator feeds the power fluid
21 pump and an injector, water injector pump, separately?
22 MR. HAAKINSON: Yeah, there's different
23 designs.
24 COMMISSIONER CHMIELOWSKI: Okay.
25 MR. HAAKINSON: David Haakinson speaking. Yes,
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1 there's some designs we use two stages of pumps so at M
2 pad for example we have a low stage that we use for
3 water injection and then we send it to a second stage
4 of pumps for power fluid. Some drillsites say like on
5 F pad for example is a single stage pump that supplies
6 water to both injection or power fluid.
7 COMMISSIONER CHMIELOWSKI: And I'm assuming
8 that -- of course you don't have it on here, you have
9 production -- well production -- a well testing system
10 too that you can tie into?
11 MR. HAAKINSON: Correct.
12 COMMISSIONER CHMIELOWSKI: Yeah.
13 MR. HAAKINSON: On a different line, yes.
14 COMMISSIONER CHMIELOWSKI: Right.
15 MR. HAAKINSON: We -- we have -- something
16 that's actually very interesting about Milne Point is
17 we have auto -- all automatic production, test divert,
18 so every pad can be done with automatic and
19 (indiscernible) systems whereas typically at many other
20 facilities across the North Slope you actually have to
21 do that manually.
22 COMMISSIONER CHMIELOWSKI: Right. An operator
23 does it. Yeah.
24 MR. HAAKINSON: Yeah.
25 COMMISSIONER CHMIELOWSKI: And so what you're
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1 saying is for your well allocation and your
2 optimization is you have the well -- well by well test
3 and then you have this more -- what you feel is more
4 accurate pad measurement too?
5 MR. HAAKINSON: Yes. So just.....
6 COMMISSIONER CHMIELOWSKI: Yeah.
7 MR. HAAKINSON: .....an additional layer.
8 Basically you have instantaneous trending so if
9 production's decreasing, if we see changes in our, you
10 know, water cuts or something going through the pad we
11 can have that additional knowledge to go and diagnose
12 any potential problems.
13 COMMISSIONER CHMIELOWSKI: Thank you.
14 CHAIRMAN HUBER: I have a question that in part
15 relates back to slide 19. Just curious is your voidage
16 replacement substantially different between where you
17 have the water lines versus not and do you have a
18 target voidage replacement?
19 MR. HAAKINSON: I can't speak to the first
20 question, I don't know that. Our voidage target is an
21 IW of one. We -- well, we monitor both our continuous
22 IW as well as our cumulative IW. Our cumulative IW is
23 typically one. There's sometimes where we become under
24 voided and we try to catch up on our injection
25 withdrawal ratio to basically bring that reservoir
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1 pressure up, you know, to our original, right, keep it
2 above bubble point is our main target. To speak
3 whether it's better or -- in one area versus the other,
4 I'd say potentially. In one area in particular on F
5 pad where we installed the power fluid separator it was
6 actually to increase our voidage out there. For that
7 reason, you know, with these being on an island we have
8 forced water and as we've developed the Milne field we
9 have only so much source water that we can get to the
10 wells per day. Meanwhile we had 20,000 barrels of
11 water that were leaving that pad and so we were finding
12 that we were basically injecting on a pad level, you
13 know, on the pattern, each pattern's different, but
14 that we were -- you know, it's called a point nine,
15 right, we needed more water. And so from that reason
16 and that specific example we found that with power
17 fluid separation we could actually improve and get more
18 back to our target.
19 CHAIRMAN HUBER: I'm sorry. I'm good, thanks.
20 MR. HAAKINSON: You're fine. Okay. I just
21 wanted to make sure. All right. I'll continue on. So
22 now I'll step into artificial lift at Milne Point.
23 Really it's artificial lift previously spoke to, you
24 know, where the ESPs were given a star, we since moved
25 on, moving into our artificial lift, moving into jump
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 pumps primarily through water handling and so forth
2 throughout the years.
3 On slide 21 really the jet pumps I want to
4 start with is Hilcorp's really built off the best
5 practices that ARCO and BP have developed with jet
6 pumps. Jet pump installations are -- you know, have
7 been installed I believe since the 1940s. I've had
8 experience with jet pumps for over 20 years in, you
9 know, different states, different assets, that not only
10 use water for power fluid, some methods use oil for
11 power fluid, forward and reverse circulating jet pumps,
12 but from that time ARCO began experimenting with jet
13 pumps in 1990 on the North Slope. As I previously
14 mentioned Milne Point began installing jet pumps in
15 2001 and since then as you'll see here in a later
16 slide, we have over 55 installations of jet pumps at
17 Milne Point. And with that Milne Point's not the only
18 asset on the North Slope that has jet pumps, right,
19 greater Kuparuk area over time we've -- you know, both
20 fields have installed over 20 jet pumps through those
21 fields, in many different formations. And to that note
22 as I've spoke to that the Schrader Bluff in particular,
23 you know, a little bit warmer power fluid versus the
24 cold flowing, high viscosity oil. We can actually
25 reduce the viscosity in the tubing, reduce frictional
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 and increase drawdown. And we've seen great success
2 primarily in the Schrader Bluff as well as the Ugnu, in
3 our one Ugnu producer, where we've seen, you know, a
4 better rate in ultimate recovery that we're going to
5 see with the jet pump artificial lift versus say in
6 ESP.
7 CHAIRMAN HUBER: You say better rate, can you
8 put any kind of parameters around better?
9 MR. HAAKINSON: Yeah. We monitor ours
10 obviously with well testing as well as drawdown so
11 there's specific examples that we have from let's just
12 say 12 to 13 API gravity wells where the ESP requires
13 much more horsepower. We're limited on surface with
14 our electrical infrastructure, but let's take a 500
15 horsepower drive. We can put a 500 horsepower
16 equivalent jet pump and we'll see maybe an extra two to
17 300 psi of drawdown. With a productivity index of, you
18 know, one barrel per psi, that can relate to a hundred
19 to 200 barrels a day. We've seen uplifts on certain
20 cases where we've seen three to 400 barrels a day
21 improved production on jet pump versus ESP.
22 CHAIRMAN HUBER: Thank you.
23 MR. HAAKINSON: So, you know, with that said we
24 also use the jet pump artificial lift in other
25 formations. One of the benefits as, you know, Aras
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
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1 briefly spoke to you, is we inhibit our power fluid
2 through the corrosion inhibitors which helps not only
3 on our annulus, but also on our tubing which, you know,
4 is other than our capillary strings that have been
5 following our ESP, you know, it's different than most
6 gas wells, we also can inhibit with scale inhibitors as
7 well as some -- even some paraffin inhibitors. So, you
8 know, formations such as the Sag, you know, a great oil
9 quality, but you might have a more, you know, higher
10 wax appearance temperature, you can have more fluids
11 than you can prevent, you know, paraffin that -- you
12 know, build up on the tubular walls with those
13 inhibitors. Despite that though and, you know, all the
14 work that we're doing on the artificial lift, we're
15 still trying to drive and be innovative and drive, you
16 know, better success on all our artificial lifts.
17 So for ESP for instance, we still have to have
18 ESPs. ESPs are still an important part of Milne Point
19 and with that note, you know, we're -- we're driving
20 innovation in particular on the through tubing system.
21 After a few years ago a lot of the vendors have just
22 kind of left all of the operators up on the North Slope
23 high and dry on some of the through tubing equipment.
24 And in particular on the conventionally run motors so
25 the tubing run motors that, you know, restrict access
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 down below, there's really no vendor today that
2 supplies the through tubing, you know, pumps. They
3 used to have gear box reducers, there's new
4 technologies with permanent magnet motors that can slow
5 the speed down and the real benefit of that is we can
6 pull up a pump brake, you can pull that in and out of
7 the tubing. And so we're really pushing on our
8 vendors, you know, working, you know, in coordination
9 with those to bring that technology back to help, you
10 know, these wells where we need ESPs.
11 And likewise on the progressive cavity pumps,
12 the PCP installations, a lot of those, you know, you're
13 in competition with say the hotter kind of wells on the
14 Schrader and Ugnu, you know, those PCPs that can
15 actually handle the solids and get more of a positive
16 displacement pump to lift those heavier viscosities.
17 We're trying to drive innovation and we're working
18 towards the hope we're having to install a PCP for the
19 first time in many years, if not decades at Milne Point
20 later this year.
21 We've also installed prototype gas separators
22 in Milne Point. So, you know, one of the drawbacks of
23 an ESP is you can only handle such -- so much gas in
24 your pump before it starts gas locking and you lose
25 rate. We actually installed a prototype back in 2021 I
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
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1 believe where we were able to increase our gas/oil QR
2 capacity by over three to four times. And with that
3 installation it was a very successful test and many
4 other operators, you know, here on the North Slope as
5 well as, you know, everywhere are, you know, learning
6 off of some of those things that were trying. So I
7 just want to give that point of, you know, we're
8 expanding our artificial lift and trying to go on a
9 case by case basis of really optimizing our artificial
10 lift.
11 COMMISSIONER CHMIELOWSKI: Thanks. A quick
12 question about the TTC pumps. I know sometimes ESPs
13 fail because of the cable failures, that they short
14 out. Does that -- that doesn't really help you with
15 the TTC, does it?
16 MR. HAAKINSON: Correct.
17 COMMISSIONER CHMIELOWSKI: Yeah.
18 MR. HAAKINSON: Yeah, that -- that is one of
19 the main drawbacks. We -- most of our failures on ESP
20 systems are electrical. And unfortunately with those
21 being in the annuli, you know, your motor lead
22 extension down where it ties into your motor, sometimes
23 your pothead at surface, your surface penetrator are
24 your weaknesses. Yes, that -- that is the risk, right.
25 COMMISSIONER CHMIELOWSKI: That's the main
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
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1 drawback then with that type of.....
2 MR. HAAKINSON: Correct.
3 COMMISSIONER CHMIELOWSKI: .....lift, right?
4 Okay.
5 MR. HAAKINSON: Yeah.
6 COMMISSIONER CHMIELOWSKI: Thank you.
7 MR. HAAKINSON: One of the things that I'll
8 note here on this slide actually is on -- on slide 22.
9 Just speaking more to the artificial lift selection and
10 how we, you know, come to grasps with this. And we
11 really spent the last nine years optimizing, you know,
12 taking the best practices, working with, you know, our
13 cohorts that specifically on the North Slope was what
14 is the best artificial lift. As it seems to me the
15 facility constraints, you know, Milne Point doesn't
16 have as many say options as many of the other fields,
17 but for ESPs we still believe that that's actually a
18 good and optimum artificial lift for new Kuparuk wells
19 that are over 1,500 barrels a day of oil. Very low
20 water cut wells, you get higher efficiencies, we get --
21 you can actually produce those wells without much
22 issue. However jet pumps are the preferred lift
23 mechanism for all Ugnu, Schrader Bluff as well as Sag
24 wells. And beyond that Kuparuk wells that are greater
25 than a 90 percent water cut, you know, so very low oil
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 rate, say wells that are, you know, reaching their kind
2 of end of economic life. You know, we find that we can
3 actually improve and ultimately extend the longevity of
4 those wells by moving those over to jet pump artificial
5 lift. Later in the discussion you'll hear Mr. Reid
6 Edwards speak to that in more detail.
7 You also have upside with jet pump completions
8 where we can expand our WAG, so water alternating gas,
9 our gas injection at Milne Point. The Kuparuk
10 formation, there's certain areas that seem highly
11 faultive or hasn't seen gas injection. And with a jet
12 pump completion versus a ESP completion we can handle
13 an expanded range even more than that prototype I spoke
14 towards, of handling higher GOR condition which can
15 allow us actually to expand our gas injection through
16 the reservoir. And from that we can see, you know,
17 approximately up to 3 percent additional recovery
18 through gas injection which is a great deal for
19 recovery on the Kuparuk formation. And furthermore on
20 that.....
21 COMMISSIONER CHMIELOWSKI: Are you saying that
22 MI injection was limited by ESPs?
23 MR. HAAKINSON: The -- it's actually gas
24 injection. So Milne Point doesn't have any MI
25 unfortunately.
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 COMMISSIONER CHMIELOWSKI: Oh, okay. Okay.
2 Gas injection was limited by?
3 MR. HAAKINSON: So gas injection.....
4 COMMISSIONER CHMIELOWSKI: ESPs, yeah.
5 MR. HAAKINSON: .....yes, and so often ESPs.
6 So and that's where I'll get into a little bit of
7 discussion here of, you know, an injection well may
8 support two different producers, right, or a producer
9 may be supported by four or five different gas or let's
10 just say injectors rather. But we've been limited
11 because if we put a well that supports an ESP producer
12 on gas injection once that gas flood hits the producer
13 we'll see extreme GOR spikes. The motor temperature
14 will basically over temp and shut down the ESP. And
15 then we get into this bind where we can't produce the
16 ESP because we can't actually run because of high motor
17 temperatures. And so through like best practice BP,
18 you know, really the gas flood in particular
19 historically at Milne Point has really only been
20 targeted primarily in the gas upped area on the
21 northeast part of the field. There was some gas
22 injection that was years ago put out a F&L, but for the
23 most part is very limited spots where, you know, they
24 didn't have to worry about that, those ESP problems.
25 And then the second part really of the
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 completion is because the jet pump similar to a gas
2 completion have full bore access you can actually go
3 through the tubing for diagnostic work so coil tubing,
4 you can diagnose any fill within your perforations and
5 it sets up those wellbores for coil tubing drilling. I
6 previously mentioned the Kuparuk formation is really,
7 you know, highly faulted, there's still pockets of oil,
8 you know, resource out there that we would like to go
9 out and target. And bringing in the coil tubing
10 drilling rig, but having these completions set up what
11 it does is it prevents having to go and, you know,
12 increase exposure by doing a workover to put tubing in
13 the ground, go drill and then move that completion back
14 to an ESP which is not only costly, but increases our
15 exposure.
16 The jet pumps in particular offer additional
17 benefits in the fact that they really do reduce both
18 our, you know, personnel as well as environmental
19 exposure because in the event of a jet pump failure,
20 let's just say a jet pump washes out or, you know, we
21 need to change an increase rate, we can shut the well
22 in and within half a day we can run a slickline
23 operation and have that well back up to nearly full
24 productivity. If an ESP fails best case scenario we
25 have the ESP on location, a critical spare, the exact
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
Computer Matrix, LLC Phone: 907-227-5312
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1 one that we need, and it can be -- a realistic time
2 frame is a month, you know. For real, real high rate
3 oil wells where, you know, we might lose 5 percent of
4 our production from the field, it's still going to take
5 a minimum of two to three weeks to get that well back
6 online. And on that note that involves killing a well,
7 you know, removing the tree, put them on BOPs, a
8 workover operation which is, you know, a lot more I'd
9 say critical to our operation and involves a lot more
10 exposure to our personnel.
11 Two points that I want to bring up with the jet
12 pumps at Milne Point and Hilcorp we're quite proud of.
13 The first is the Milne Point S203 well, that is our
14 Ugnu producer. And since that was drilled three and a
15 half years ago it actually has a greater than a 99
16 percent uptime from that well. The cumulate production
17 is over 273,000 barrels and to my knowledge it may --
18 is one of if not the highest Ugnu producer on the North
19 Slope. You know, what was previously thought is you
20 either had to produce the, you know, solids out on the
21 Ugnu through such as, you know, a solid paneling system
22 or install downhole heaters. Hilcorp and Milne Point
23 are actually proving that we can produce the Ugnu
24 economically with a jet pump artificial lift.
25 The second well that I want to point out is MPU
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
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1 I11, the forward circulating jet pump meaning that we
2 inject power fluid down the tubing and production and
3 power fluid coming up the annuli. That well was
4 originally drilled in 2001. Many attempts were made to
5 operate that well on ESP, it's got a very, very high
6 viscosity, low API gravity in the, you know, 12 range.
7 And from 2001 to 2014 that well only produced 55,000
8 barrels of oil. We tried -- I tried myself, put ESPs
9 in it unsuccessfully. We converted that well over to a
10 forward circulating jet pump earlier this year and
11 thank you for support on that. And today we're
12 producing close to 8,000 barrels per month out of that
13 well which is an extreme success of a well that is
14 producing little to no water cut today because that
15 pattern has never been produced.
16 On slide 23 is again the same aerial map that
17 you saw previously. And it just signifies what type of
18 artificial lift that we have on each of the drillsites.
19 This slide I really want to make two points. The first
20 is that of all the artificial lift mechanisms across
21 the field the jet pump is the most prolific, it's on
22 every single one of our drill sites. So any change,
23 you know, that would maybe disallow jet pump
24 installations, we've built a significant amount of our
25 infrastructure around jet pumps that we've been
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
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1 operating for the last 20 years and we've expanded upon
2 that. And the largest part of our facilities, our
3 cross-country lines, the main way that we're dealing
4 with the facility today and the main processing to get
5 our oil to sales meter is to round it upon that premise
6 that we have jet pumps on all of our pads. As you saw
7 on a much earlier slide we also anticipate and plan to
8 install an additional three to four power fluid
9 separation facilities, you know, over the coming years.
10 The second point that I want to make is on this
11 key on the bottom left and it's really our artificial
12 lift uptime of our wells that we have in the field. Of
13 the ESPs, of our 85 ESPs that we have in the field only
14 56 percent of those ESPs are online today. Of our gas
15 lift wells only 50 percent of those 20 wells are online
16 today. And of the 56 jet pump producers that we have
17 in the field over 91 percent of those wells are online
18 today. So what we see out of our jet pumps not only as
19 we talked about when a jet pump goes down typically we
20 see a much greater uptime than any other artificial
21 lift that we have in the field.
22 I'll now move on to slide 24 to briefly
23 discuss, you know, our safety valve systems. And
24 Hilcorp does specifically at the Milne Point asset we
25 install both surface safety valves on the production
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 tubing as well as on the power fluid. On that note it
2 was really a BP driven practice and it's something that
3 we've carried through and we've evaluated on all of our
4 facilities. This exceeds the 20 AAC 25.265 only --
5 basically states the requirement that you have to have
6 a means to shut down the artificial lift. We choose to
7 put the surface safety valves on both the production
8 tubing as required and also on the artificial lift in
9 the case of the jet pumps to do two things. One,
10 protect our facilities and then two, is to try to
11 prevent or minimize any injection in the case of a jet
12 pump failure or something downhole where it can have an
13 automatic shut in.
14 We've consistently set our surface safety valve
15 set points, they handle high and low pressure shut
16 downs, you know, some of those have flow rate meters
17 for flow rate shut downs. But consistency --
18 consistently we have high and low pressure shut downs
19 and we've been doing that since 2001. From that point
20 they're shut to -- the power fluid surface safety
21 valves are designed to shut in upon production surface
22 safety valve closure. In the event that we're having
23 some sort of blocked pressure, you know, from the power
24 fluid system, we want to leave the production SSV open
25 to basically allow that pressure to bleed off to
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
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1 production as opposed to shutting both at once. And I
2 just want to, you know, make that case for that.
3 That's why we've set those systems up that way.
4 CHAIRMAN HUBER: Would you care to comment I
5 guess on 265(d) for S pad where you're in close
6 proximity to, you know, the ocean water?
7 MR. HAAKINSON: Yeah, I -- David Haakinson
8 speaking. I'd have to review the exact -- I don't know
9 the exact reference, the (d) off the top of my head,
10 but.....
11 CHAIRMAN HUBER: The requirement for a
12 subsurface safety valve.
13 MR. HAAKINSON: So on the subsurface safety
14 valve in this case I'm speaking only to the surface
15 safety valve on that and we have a proposal as you'll
16 see in a later slide to kind of how we would handle
17 wells that basically are above and below an 8.55 pound
18 per gallon gradient. We have conditions that we would
19 like to propose.
20 On slide 25 is a plot of a jet pump operation.
21 And what this slide is basically of three different
22 trend lines. The first is in blue, that's our downhole
23 pressure gauge so a gauge that we install within our
24 tubing downhole. This gauge is real live data that
25 both our engineers as well as our operations can see.
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
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1 That can give us indication when the well's flowing of
2 any sort of production upset, any kind of potential
3 leak downhole. It also gives us indication of pressure
4 build up whenever the wall is shut in. And orange is
5 the power fluid rate which is just a meter that's on
6 the surface of where our power fluid is going --
7 entering our well. And then purple is our IA pressure,
8 in this case a reverse circulating jet pump where we
9 monitor it with real time instantaneous data about both
10 our power fluid rate and our power fluid pressure.
11 This is the example, we have cases on every single one
12 of our wells where we have instantaneous and
13 monitorable gauges and data on both our power fluid
14 separation as well as our power fluid pressures. In
15 this specific case this is an example of a well
16 drawdown so going from left, you know, to right on the
17 time scale, a period of two weeks of drawing a typical
18 jet pump producer down. So as you see the blue line is
19 decreasing over time as the power fluid pressure and
20 rate is being opened up in steps.
21 The point that I want to make with this is once
22 the power fluid pressure and temperature opened up or
23 -- and rate, sorry, are opened up and running to where
24 we're running at our maximum potential, we're getting
25 to our drawdown target, alarm set points trending can
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
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1 be then set to basically notify us of any potential
2 casing leaks, any potential jet pump washouts or
3 potential problems. So once that's full open you have
4 a specific nozzle size, you have an incompressible
5 water fluid and typically the power fluid rate and
6 pressure are operating in very tight bands. So in this
7 specific case high pressure running approximately 3,300
8 psi, it's operating within an instantaneous 1 percent
9 band which is easy able to set alarms around. Similar
10 the power fluid rate which we can compare against our
11 design for our nozzle similar to some sort of orifice
12 calculation, that bounces within a little bit of a 2
13 percent band on that. And then operations can see
14 that. So not only on the daily well walks where
15 they're monitoring their tubing, inner annulus as well
16 as their OA pressures, we have the instantaneous data
17 where both the engineers in town as well as our
18 operations on the Slope can see a potential issue.
19 CHAIRMAN HUBER: Do you have examples or have
20 you seen potential issues where it shows up in the
21 trends?
22 MR. HAAKINSON: Yeah. Yeah, so I can give a
23 few examples. So the first one I can start with is,
24 you know, let's just say we have an example where your
25 bottom pressure starts climbing, right, so these are
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
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1 actually -- these little bumps are tests. So when the
2 well's put in test you have a little bit more back
3 pressure and so it kind of hampers the well. But if
4 the bottomhole pressure begins to increase we typically
5 have, you know, one of few options. So you could have
6 a jet pump that is wearing out, you have a jet pump
7 that washes out. If you start to see that trend go
8 with -- so with bottomhole pressure increase with a
9 power fluid rate increase that can indicate one of two
10 things, a casing leak -- a tubing or casing leak or it
11 could indicate basically a washout. When we see that
12 we see production decreasing, we know I have a problem,
13 shut the well in, we move slickline operations on. At
14 that point in time we can choose to shut the sleeve and
15 do some sort of pressure test case -- on the casing to
16 determine if we have a tubing or casing leak. More
17 often than not though our jet pumps will wear out and
18 we'll replace the jet pump and we'll get back to this
19 trend line here. If we see the bottomhole pressure is
20 continuing on this normal trend and we see an increase
21 in our power fluid rate, a drop in our power fluid
22 pressure rate, that would be a good indication
23 typically of a casing leak. If it was a tubing leak,
24 some sort of eye of the tubing, you typically see an
25 increase in your discharge pressure, you'd see
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
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1 production drop off. Typically monitoring like no
2 different than we monitor any of our gas lift or ESP
3 wells, right, so we're monitoring production through
4 tests and we're monitoring each one of those pressures
5 and in flow rates daily.
6 COMMISSIONER CHMIELOWSKI: Does this assume a
7 monitorable outer annulus?
8 MR. HAAKINSON: In this specific case, you
9 know, the term of like monitorable it can be
10 interesting stuff because on this case here I consider
11 that IA, we're monitoring this inner annulus and on the
12 external casing on that, yes, we take basically OA
13 pressure measurements, we record that on our daily well
14 walks, it's one or not twice a day.
15 COMMISSIONER CHMIELOWSKI: I'm just -- you
16 know, if you did a conventional jet pump say and there
17 was no monitorable outer annulus just say you had a 30
18 barrel a day fraction casing leak is 1 percent of your
19 rate how would you detect that?
20 MR. HAAKINSON: Probably over time it would be
21 like an instantaneous. In my say experience typically
22 if you have some sort of leak with it being fluid, that
23 leak typically increases over time so similar to like a
24 gas -- maybe you have a gas thread leak, something that
25 -- whenever you have -- we see something like a fluid
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1 on a jet pump or we have say a tubing or casing leak,
2 typically the instantaneously, you may not notice that,
3 you know, instantaneous small barrel, maybe it's a
4 thread leak or something over time, but typically that
5 power fluid or pressure whether it's production fluids
6 or power fluid on any case of a producer whether it's a
7 gas or a power fluid, in this case power fluid,
8 typically over time so through actual monitoring and
9 seeing the actual trending we'll take an instantaneous
10 as well as a cumulative over time, right, that we do
11 with any other well such as an injector, right, they'll
12 be bleeding the annual or bleeding the OA, is our power
13 fluid pressure holding constant, but our power fluid
14 rate is slowly starting to increase, right. There's --
15 there's different things, we can look at the trending
16 over time, you know, is production dropping off because
17 we're getting less efficient, right. So on multiple
18 fronts because if we aren't getting as much water, if
19 we see say a water drop off, we see a change in our
20 water on the production side, we see a change in our
21 tests, combined with it, it's taking data from multiple
22 different periods and trying to compress into what is
23 exactly going on.
24 COMMISSIONER CHMIELOWSKI: How much time are
25 you talking about when you say over time that you'd
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1 notice it?
2 MR. HAAKINSON: The latest production casing
3 leak that I can recall over time was probably C40 a few
4 years ago. And we noticed that basically the power
5 fluid rate was increasing pretty much instantaneously.
6 Our first base working through that was whether it was
7 a jet pump failure of some sort. The well was shut in
8 within the next day, right, because there was notice on
9 that stuff. Because the casing was (indiscernible) I
10 don't believe that that one was specifically noticed on
11 the OA pressurization, right, artificial lift was shut
12 in, the well was shut in, dead. We shut the sleeve,
13 the MITIA realized that there was a production casing
14 leak. So it depends obviously on the size of the leak
15 potential to go upon that.
16 COMMISSIONER CHMIELOWSKI: So you're saying
17 it's mostly instantaneous, but you're also saying it
18 can happen slowly over time, but.....
19 MR. HAAKINSON: It depends, right.
20 COMMISSIONER CHMIELOWSKI: Right.
21 MR. HAAKINSON: To your example, no matter the
22 way, let's just say you have a small like a thread leak
23 of some sort, right. No matter what it is the
24 production -- whether it's a power fluid, gas well,
25 ESP, you're more than likely not going to notice that
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1 instantaneously. Jet pump is no different than any
2 other type of artificial lift in that case. Over time
3 my experience is that we find that with power fluid a
4 typical say thread leak or a leak like -- more often
5 than not we might see a leak in our jet pump and over
6 time that power fluid will cut away at that jet pump,
7 we'll see some erosion on that jet pump and that leak
8 will grow over time. It's not typically a five barrel
9 leak and it just holds at five barrels, it increases
10 over time. And so we'll typically notice it once it
11 gets to -- once we get a power fluid rate that may be a
12 hundred barrels a day more than our design rate we
13 start asking questions, right.
14 COMMISSIONER CHMIELOWSKI: Okay. You.....
15 MR. HAAKINSON: So in summary I'll move on to
16 slide 26 which is the last slide for myself, really
17 talking more on the production outlook. Hilcorp again
18 as we see in the production increase, we also see and
19 we have plans to grow another 50 to 100 percent over --
20 you know, in the future. But with that jet pumps are
21 critical to that plan. On pad power fluid separation
22 and injection is also critical to that plan of growth.
23 You know, other fields and operators are also very
24 interested in what we're doing, you know, we take --
25 frequently take visitors out to our power fluid
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1 separation, artificial lift. I think jet pumps has or
2 I know jet pump has other applications, right, for oils
3 that have high wax appearance temperatures, wells that
4 have low API gravity. There's other applications in
5 other fields, you know, where it's been used.
6 And with that said, you know, on the safety
7 side of things, you know, Milne Point and Hilcorp and
8 our predecessors have proven that we can and will
9 operate jet pump artificial lift safely, we've done so
10 for over 20 years. We do believe that the jet pump
11 operation significantly reduces our exposure
12 specifically on our personnel side by reducing our
13 workovers and opening up those wells. And with that 20
14 years experience, you know, with the ultimate goal that
15 we've, you know, proven that we can also increase our
16 rate and, you know, ultimate recovery with that
17 artificial lift.
18 If there's any further questions, I'll.....
19 CHAIRMAN HUBER: Yeah, I guess I'll ask this
20 one now. I just -- thinking about -- I think it's back
21 on slide 21, you're talking about both Milne and
22 Kuparuk jet pumps in both, let's see, the -- yeah.
23 Yeah, that's the slide. I guess how do they -- how
24 does Milne compare to Kuparuk as far as tiebacks in the
25 well design to give you a monitorable annulus?
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1 MR. HAAKINSON: I don't necessarily want to
2 speak for Conoco or on behalf of Kuparuk. For our
3 wells we have a variety of different designs, right, so
4 historically are typically our designs. Our Kuparuk
5 producers typically have, you know, our nine and five-
6 eights casing, typically ran down, you know, 2,500 to
7 4,000 feet deep, it varies across the field, those
8 installations. And then there's a seven inch or seven
9 and five-eights casing that's run down too from that.
10 Again the monitorable I think is a maybe -- the way I
11 consider monitorable is I can monitor that inner
12 annulus as well as the outer annulus pressures, right,
13 we are monitoring every one of those casings daily.
14 Again I don't want to speak for Kuparuk and their
15 wells, however we have various designs where we have,
16 you know, nine and five-eights casing that can be run
17 deeper. There's many different designs, but in all of
18 our cases we have, you know, a 10 and three-quarter
19 inch or nine and five-eights inch surface casing, we
20 typically have a -- or we have a seven or seven and
21 five-eights inch production casing. The depths of
22 those are typically different, but we monitor the
23 pressure of all of those annuli.
24 COMMISSIONER CHMIELOWSKI: Are the grassroots
25 wells Hilcorp is drilling now sized for a potential
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1 tieback string to be installed for all -- for all your
2 jet pump plans?
3 MR. HAAKINSON: Again David Haakinson speaking.
4 So specifically on our Schrader wells we do. We have
5 potential to add tieback strings for those. The
6 designs of those are vastly different, right. In the
7 instance of a Kuparuk well though, that would be, you
8 know, philosophically different than any other like
9 producers that you drill in any other field whether
10 it's on the North Slope of Alaska or in the United
11 States. Rarely do you see operators or have those
12 operators put, you know, two strings of casing all the
13 way down the reservoir depth. We wanted -- you know,
14 not say realistic from a casing size. When you do
15 wellbore design and you're running your, you know, well
16 analysis and doing all the things, it's not fathomable
17 or economic in the case of either way from a safety
18 side to basically size your production hole to handle,
19 you know, multiple strings of casing down -- all the
20 way down your depth. So to answer your question short,
21 yes, for Schrader wells we design our wells different
22 for various different reasons.....
23 COMMISSIONER CHMIELOWSKI: Uh-huh.
24 MR. HAAKINSON: .....Kuparuk wells are designed
25 differently, right, it's not really feasible to run a
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1 second string of casing 20,000 feet because of the
2 formation.
3 COMMISSIONER CHMIELOWSKI: So just because it's
4 a recent example of a jet pump well that had a
5 production casing failure was I27. And so it was
6 pretty clear that the OA pressure went up to the power
7 fluid pressure, 4,200 pounds. Do you -- can you tell
8 me what was the pressure at the surface casing shoe and
9 how near was that to the burst pressure of that casing,
10 outer casing?
11 MR. HAAKINSON: I would have to do the
12 calculations to know exactly what that pressure
13 (indiscernible - simultaneous speech).....
14 COMMISSIONER CHMIELOWSKI: Okay.
15 MR. HAAKINSON: .....however our nine and five-
16 eights casing speak to the burst casing so we typically
17 run 40 pounds casing on that since our burst pressures,
18 57 and 50, we -- I can't say without -- but the fact is
19 that pressure was below our burst -- burst pressure.
20 And we've gone back and through that event as well
21 other previous review, we do review that and there's a
22 reason that we run the specific weight of casing in
23 those completions. I believe the burst casing pressure
24 is 50 -- 57.50 for the 40 pounds.
25 COMMISSIONER CHMIELOWSKI: Okay. Thank you.
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1 MR. HAAKINSON: Okay. Thank you. And for now
2 I'll turn it over to Mr. Reid Edwards.
3 CHAIRMAN HUBER: Thank you. Mr. Edwards, if
4 you'd like to introduce yourself and go over your
5 credentials that would be great.
6 MR. EDWARDS: So Reid Edwards speaking. Good
7 morning, Mr. Chairman, Commissioners, AOGCC Staff. My
8 name is Reid Edwards, I currently work as a reservoir
9 engineer with Hilcorp Alaska. I've a bachelor's degree
10 in chemical engineering from the University of Wyoming.
11 I've worked as a reservoir engineer for the past 17
12 years here in Alaska across multiple fields on the
13 North Slope and the Cook Inlet. My work has included,
14 but not limited to artificial lift design,
15 optimization, reserves forecasting, development of
16 drilling location, identification of reserves,
17 quantification, identification and justification of
18 wells requiring rig workovers, enhance every design
19 implementation in management. I respectfully request
20 that the Commission recognize me as an expert in the
21 area of reservoir engineering.
22 CHAIRMAN HUBER: Commissioner.
23 COMMISSIONER CHMIELOWSKI: I have no objection.
24 COMMISSIONER WILSON: No objection.
25 CHAIRMAN HUBER: Without objection you're
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1 recognized as an expert in those areas.
2 MR. EDWARDS: Thank you.
3 REID EDWARDS
4 previously sworn, called as a witness on behalf of
5 Hilcorp Alaska, stated as follows:
6 MR. EDWARDS: So we'll start here on slide 28.
7 So as you've heard from, you know, prior testimony from
8 both David and Aras, jet pumps are a significant
9 artificial lift mechanism, it's employed in the Milne
10 Point field. Today I'm going to be discussing how jet
11 pump completions can increase ultimate recovery from a
12 well when compared to other major lift mechanisms or
13 the other major lift mechanism employed at Milne Point
14 field which is ESPs.
15 So starting on slide 28 we'll define the term
16 abandonment rate. The well's abandonment rate when
17 completed with jet pumps or ESPs is a rate at which it
18 would no longer be economic to change out a failed pump
19 and would therefore lose the ability to produce oil.
20 The term economic refers to when the future discounted
21 cash flow over the oil rate stream including the cost
22 of the new pump does not mean the return on investment
23 that is set by the operator. So a significant
24 advantage of jet pumps over ESPs is the cost of
25 replacement of the pumps can be an order of magnitude
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1 different. So as we see here the cost of replacing ESP
2 pump can range between half a million and a million and
3 a half dollars and it's changed out on average every
4 three to four years. So the high cost is due to having
5 to utilize the workover rig or drilling rig to pull the
6 entire completion which includes the tubing string, the
7 pump and sometimes a packer. And jet pumps on the
8 other hand do not require a rig and can either be
9 pumped out of the well or retrieved via wireline and
10 are much less costly, around five to $10,000 and occur
11 on average about every three to four months. The high
12 cost of the ESP replacement along with the inherently
13 increased risk of pulling the entire completion drives
14 the abandonment rate higher compared to the lower cost
15 and lower risk associated with jet pump replacements.
16 So as indicated here on the plot of oil rate
17 versus time, the lower the abandonment rate, the longer
18 the well can produce and therefore yield a higher
19 recovery. In the case of Milne Point we estimate that
20 an average producing well that an incremental 65,000
21 barrels of oil could be produced by utilizing a jet
22 pump as opposed to an ESP due to that lower abandonment
23 rate associated with the jet pump well.
24 Next slide. So here shown on slide 29 we just
25 have a plot of the cumulative incremental reserves
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1 associated with utilizing jet pumps versus ESP just
2 plotted against a producing well count. So the
3 cumulative incremental recovery is simply just the
4 65,000 barrels a day as stated associated for the
5 average Milne Well just multiplied by the total number
6 of wells. So today we have approximately 60 active
7 producing jet pump wells which would yield an
8 associated 4 million barrels of incremental recovery
9 over an ESP completion. And as David noted earlier we
10 have significant number of future development that we
11 plan to implement and so that number of locations that
12 we have specified currently for that ranges from 50 on
13 up to 200 locations. So that would yield three and a
14 half to 13 million barrels of additional recovery. So
15 in total that would be seven and a half to 17 million
16 barrels of incremental recovery from using jet pumps
17 compared to ESPs. So as you can see that's a
18 significant amount of oil that would be left in the
19 ground that would not be produced if we were not able
20 to utilize jet pumps.
21 If there are no further questions I will turn
22 it over to Mr. Aras Worthington who will review
23 regulation and proposed path forward.
24 CHAIRMAN HUBER: Any questions, Commissioners.
25 COMMISSIONER CHMIELOWSKI: We'll save them to
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1 the end. Thanks.
2 COMMISSIONER WILSON: Nothing from me.
3 CHAIRMAN HUBER: Thank you, Mr. Reid. I'm
4 sorry, Mr. Edwards.
5 MR. WORTHINGTON: Aras Worthington again. So
6 we're on slide 31 and Mr. Rixse presented this earlier,
7 we've all seen it. This is 20 Alaska Administrative
8 Code 25.200(d) regulating production -- producing
9 wells. I'm just going to read it again. Quote, all
10 producing wells capable of unassisted flow must be
11 completed with downhole production equipment consisting
12 of suitable tubing and a packer that effectively
13 isolates the tubing casing annulus from fluids being
14 produced unless the Commission specifically approves
15 production through the annulus to increase flow rate
16 without jeopardizing ultimate recover from the well,
17 unquote.
18 We've done our best to research industry
19 definitions of tubing and packer that are prescribed in
20 25.200(d). The American Petroleum Institute or API
21 specification 19(a)(c) entitled quote, Specification
22 for Completion Accessory, unquote. This is the first
23 edition of that document issued in September, 2016,
24 reaffirmed in February of 2022, defines tubing under
25 3.76 as quote, high places within a well to serve as a
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1 production or injection conduit, unquote.
2 For reverse circulating jet pump completion,
3 reference slide 32, tubing is the only conduit for
4 produced fluids. So we believe we are in compliance
5 with the part of the regulation that requires quote,
6 suitable tubing and a packer. Packer is defined in the
7 same API document I previously referenced under 3.46
8 quote, mechanical device with a packing element not
9 installed in a designed receptacle used for blocking
10 fluid, liquid or gas, communication through the annular
11 space between the conduits by sealing off the spaces
12 between them, unquote.
13 The packer in reverse circulating jet pump,
14 again reference slide number 32, functions as described
15 in the API definition and forces power fluid through
16 the jet pump nozzle so that the jet pump can function.
17 If there were no packer the jet pump would not function
18 since the power fluid must be forced into the jet pump
19 nozzle.
20 So we believe that we are in compliance with
21 the entire verbiage of the regulation quote, suitable
22 tubing and a packer, unquote.
23 Hilcorp believes that the API defined purposes
24 of both tubing and packer are duly satisfied in reverse
25 circulating jet pump completion. The tubing is the
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1 production conduit and the packer isolates the power
2 fluid pumped down the annulus from the produced fluid
3 so that the jet pump can operate. Production tubing is
4 the only conduit for produced fluid on reverse
5 circulating jet pump. The effective isolation of the
6 tubing casing annulus from fluids being produced is
7 achieved by the constant purging of the tubing casing
8 annulus with power fluid. This keeps produced fluids
9 from contacting the production casing.
10 We believe that covers regulatory compliance of
11 reverse circulating jet pump completion so we would
12 like to move on forward -- move forward to forward
13 circulating jet pump. These are depicted again on
14 slide 33.
15 Forward circulating jet pumps deliberately
16 produce fluid up the tubing by casing annulus. These
17 types of completions have been historically approved on
18 a case by case basis. It is proposed to continue this
19 same practice with approval for 20 AAC 25.200(d) which
20 states quote, unless the Commission specifically
21 approves production through the annulus to increase
22 flow rate without jeopardizing ultimate recovery from
23 the well.
24 Hilcorp's well integrity policy allows for jet
25 pump completions where the tubing is not hydraulically
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1 isolated from the inner annulus or IA on the condition
2 that the production casing integrity is checked
3 periodically. Mechanical integrity tests or MITs or a
4 standard pressure test for casing and tubulars and must
5 be performed during rig interventions or periodically
6 for jet pump completion. Another consideration from a
7 well integrity standpoint is corrosion. As I stated
8 earlier Hilcorp currently adds corrosion inhibitor to
9 all power fluid used for jet pump completion. We
10 intend to continue that practice as an added mitigation
11 to well integrity risks.
12 If there are no questions on that, if there are
13 please proceed otherwise I'll hand over.
14 COMMISSIONER CHMIELOWSKI: I have a question.
15 On slide 31 you state, you know, regulation 200(d) and
16 at the end, you know, it talks about Commission
17 approving production through the annulus to increase
18 flow rate without jeopardizing ultimate recovery from
19 the well. Does Hilcorp interpret this as negating the
20 requirement for two barriers?
21 MR. WORTHINGTON: I would say yes. We read
22 that regulation not to mean that you need two barriers,
23 but the regulation to our reading is to limit or maybe
24 I'd use the word discourage production up the
25 production casing annulus because specifically calls
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1 out producing up the casing on a must be approved by
2 the Commission on a case by case basis.
3 COMMISSIONER CHMIELOWSKI: So just to be clear
4 Hilcorp produced producing up the annulus without a
5 second barrier to flow, to -- a better fitting barrier?
6 MR. WORTHINGTON: That question will be
7 answered by Mr. Taylor Wellman in the next section, but
8 no, the answer's no to that.
9 COMMISSIONER CHMIELOWSKI: Does Hil.....
10 MR. WORTHINGTON: I'm sorry (indiscernible) let
11 me clarify. Taylor will go over that, but we have a
12 proposal we'd like to share with you in his testimony.
13 COMMISSIONER CHMIELOWSKI: Does -- when you
14 have a jet pump well and there's -- the sliding sleeve
15 was open and the jet pump is in place with an orifice.
16 Does Hilcorp consider that bypassing the packer?
17 MR. WORTHINGTON: If you're talking about
18 barriers then yes, we would agree with that. We don't
19 think the regulation was written with the intent to
20 require two barriers. The regulation was written with
21 the intent to limit production up the production casing
22 annulus and keep produced fluids away from it except on
23 a case by case basis. Again the regulation says must
24 be completed with a suitable tubing and packer, these
25 completions have to have tubing and packer in order for
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1 them to work. They're both there, they both satisfy
2 the API definitions. Do they -- do they isolate
3 hydraulically tubing from annulus completely, no, they
4 do not. Dynamically yes, because we're pumping power
5 fluid on a reverse circulating jet pump down the
6 casing.
7 COMMISSIONER CHMIELOWSKI: Right. The question
8 I asked earlier was if there was a loss of containment
9 at surface and you had a well that could flow to
10 surface what would the rate be through that orifice or
11 that nozzle?
12 MR. WORTHINGTON: Yes, that's a good question
13 and if you would stay tuned for Taylor's testimony and
14 what we're proposing. I think it'll answer at least
15 part of that question.
16 COMMISSIONER CHMIELOWSKI: Okay.
17 COMMISSIONER WILSON: I'm good, thanks.
18 CHAIRMAN HUBER: Thank you, Mr. Worthington.
19 We'll move on.
20 MR. WELLMAN: All right. Good afternoon, Mr.
21 Chairman, Commissioners and AOGCC Staff. My name is
22 Taylor Wellman, I'm the wells manager for Milne Point
23 with Hilcorp Alaska. I'm a third generation Alaskan
24 with almost 19 years experience in the oil and gas
25 industry. I received my bachelor of science in
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1 mechanical engineering from Colorado School of Mines in
2 2004 and began work for BP shortly thereafter here in
3 Alaska. In 2014 I transitioned over to Hilcorp. I've
4 held many positions ranging from production engineer,
5 well integrity engineer, interventions engineer,
6 operations engineer and operations manager. The
7 majority of my career has been working the North Slope
8 fields of Alaska in addition to -- with additional time
9 working Cook Inlet onshore as well overseas. I have an
10 extensive background in rig workovers, well
11 interventions, well integrity and completions. I
12 respectfully ask the Commission to be recognized as an
13 expert in these areas.
14 COMMISSIONER CHMIELOWSKI: I have no objection.
15 COMMISSIONER WILSON: No objection.
16 CHAIRMAN HUBER: Without any objection you're
17 recognized for your expertise in those areas.
18 MR. WELLMAN: Thank you.
19 TAYLOR WELLMAN
20 previously sworn, called as a witness on behalf of
21 Hilcorp Alaska, stated as follows:
22 MR. WELLMAN: Please reference slide 34. First
23 we'll talk about the wells completed with a jet pump,
24 with all wells completed with a jet pump, forward and
25 reverse circulating and the well safety valve systems.
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1 Please note that these proposals either meet or exceed
2 the current regulations in 20 AAC 25.265. The proposal
3 is for each well to be equipped with the three
4 following. A surface safety valve or SSV, installed on
5 the power fluid and the production sides. Two, both of
6 the SSVs in the above mentioned will have high and low
7 pressure shut downs. And three, the power fluid SSV
8 will be configured to trip closed upon the actuation of
9 the production side SSV for the reasons that Mr.
10 Haakinson previously stated.
11 Moving on to slide 35. Slide 35 covers
12 additional proposals to.....
13 CHAIRMAN HUBER: Excuse me, before we move on.
14 MR. WELLMAN: Yes.
15 CHAIRMAN HUBER: So I heard that you believe
16 that that complies with 265 which you have for these
17 surface safety valves. Does that take in the F pad
18 circumstance?
19 MR. WELLMAN: So subsection (d) of 265, that is
20 one that we've proposed actually very recently to
21 comply with that and that is for the subsurface safety
22 valves on the tubing sides of that in a recent sundry
23 submission on Milne Point F79. We are looking to
24 install a tubing subsurface safety valve in that well.
25 The reservoir pressure on that is below an 8.55
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1 gradient as well, a well which I will cover as to some
2 of the reasons why and the additional proposals.
3 CHAIRMAN HUBER: So then there is a recognition
4 that F pad is different because of its location?
5 MR. WELLMAN: That is correct.
6 CHAIRMAN HUBER: Excellent. Thank you.
7 MR. WELLMAN: So we do look to comply with that
8 for F pad specifically.
9 CHAIRMAN HUBER: Thank you.
10 MR. WELLMAN: On slide 35 covers the additional
11 proposals specifically applied to reverse and forward
12 circulating jet pumps separately. For reverse
13 circulating jet pump wells all reverse circulating jet
14 pumps will have a mechanical integrity test of the
15 production casing to the maximum power fluid pressure
16 performed quadrennially or once every four years.
17 Additional to this reverse circulating jet pump wells
18 with a bottomhole pressure gradient that exceeds the
19 equivalent to a seawater pressure gradient which is
20 8.55 pounds per gallon or 0.442 psi per foot. Either
21 of the following statements must be satisfied. There
22 will be a three month period in which to reduce the
23 bottomhole pressure below 8.55 pounds per gallon by
24 means of adjusting the injection withdrawal from that
25 reservoir area. Additional time beyond three months
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1 will be at the full discretion of the AOGCC Staff and
2 Hilcorp will need to show adequate justification of a
3 declining pressure trend to reach below 8.55 pounds per
4 gallon. Or -- either/or, qualification of a second
5 barrier that is tested upon installation. Some
6 examples of second barriers include mechanical
7 integrity test of another casing, a check valve or some
8 other means that we will need to determine or develop
9 an industry.
10 For wells completed with a forward circulating
11 jet pump the following is proposed. All forward
12 circulating jet pumps will have a mechanical integrity
13 test of the production casing to the maximum power
14 fluid pressure run biennially or once every two years.
15 And as well the wells that have a bottomhole pressure
16 gradient that exceeds the equivalent to seawater
17 pressure gradient of 8.55 pounds per gallon, it will
18 also require qualification of a second barrier tested
19 upon installation.
20 Note that the seawater pressure gradient of
21 8.55 pounds per gallon was selected to provide
22 consistency and alignment with conservation order
23 390(a) for determining wells that utilize and ESP as an
24 artificial lift that will be completed with a packer at
25 the Milne Point field.
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1 Are there any questions?
2 CHAIRMAN HUBER: Questions, Commissioners.
3 COMMISSIONER CHMIELOWSKI: Yes. So just to
4 give a little big of background my understanding is
5 390(a) was written for ESPs at Milne so that Hilcorp as
6 the operator have the option to install packerless
7 completions and there were requirements set up to meet
8 those -- to meet those conditions, right?
9 MR. WELLMAN: That's correct.
10 COMMISSIONER CHMIELOWSKI: So the 8.55 pound
11 per gallon reservoir pressure comes out of that order,
12 correct?
13 MR. WELLMAN: Yes.
14 COMMISSIONER CHMIELOWSKI: So and it's really
15 based on well integrity or mechanical conditions of the
16 well, right, not a -- so my question is that an ideal
17 reservoir pressure for the field, I mean, is there
18 going to be potential loss of ultimate recovery by
19 managing wells to that reservoir pressure?
20 MR. WELLMAN: Where we try to go with that is
21 we try to actually have as David previous or Mr.
22 Haakinson previously stated, we try to average that
23 voidage ratio of one, 1.0. So as we move into
24 different portions of the reservoir we are trying to
25 match our voidage and offtake to that same degree.
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1 As traditionally has been out in F pad, it is
2 very faulted and compartmentalized so we are trying to
3 play catch up in some of those regions or as some of
4 the complexities that can happen with it if one
5 producer was to go down, but an injector supports three
6 other wells. If that well is uneconomic to fix at that
7 time it can remain shut in for a few years under ESP as
8 something that partial separation is instituted in
9 those pads as you can have those wells come back into
10 an economic status to be worked over at that point in
11 time. That's where we've seen some of those wells come
12 at a higher pressure than 8.55.
13 CHAIRMAN HUBER: And speaking.....
14 COMMISSIONER CHMIELOWSKI: Okay.
15 CHAIRMAN HUBER: .....was Mr. Wellman.
16 MR. WELLMAN: I'm.....
17 COMMISSIONER CHMIELOWSKI: Yeah. So this -- I
18 just want to rephrase that one more time. So just say
19 all the wells had packers and CO390 didn't exist and
20 you didn't have any sort of downhole reservoir pressure
21 requirement from the AOGCC. What would you manage your
22 reservoir pressure to for ultimate recover -- best
23 ultimate recovery?
24 MR. EDWARDS: Yeah, this is Reid Edwards
25 speaking. I would still say a one, I don't see a added
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1 benefit from an ultimate recovery standpoint of
2 increasing the pressure above.....
3 COMMISSIONER CHMIELOWSKI: When you said one
4 you're saying a voidage replacement of one, but I'm
5 saying reservoir pressure is what we're talking about,
6 right?
7 MR. EDWARDS: Oh, what the reservoir pressure
8 would be.
9 COMMISSIONER CHMIELOWSKI: Yeah, we're talking
10 about 8.55 pound per gallon.....
11 MR. EDWARDS: Well.....
12 COMMISSIONER CHMIELOWSKI: .....reservoir
13 pressure for this conservation order. If that
14 requirement was not there how would Hilcorp manage its
15 reservoir to achieve the greatest ultimate recovery,
16 would it be an 8.55 pound per gallon reservoir
17 pressure.....
18 MR. EDWARDS: Yes.
19 COMMISSIONER CHMIELOWSKI: .....or something
20 else?
21 MR. EDWARDS: Yes. Because your -- if your
22 reservoir pressure's initially normally pressured which
23 is close to an 8.55 then if you keep an IW of one then
24 that means your -- yeah, your reservoir pressure is the
25 same as what your initial pressure was starting out.
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1 COMMISSIONER CHMIELOWSKI: Okay. Well, I was
2 just looking through some numbers and it looked like
3 Kuparuk voidage was close to .85 and reservoir pressure
4 was initially what 3,500 pounds, and now it's somewhere
5 between 2,150 and 3,330 pounds. So I guess I'm
6 confused about this VRR of one. You're talking about
7 the Schrader Bluff maybe?
8 MR. EDWARDS: No, I mean, I think that's a --
9 I'd say waterflood 101 is to, you know, try to match
10 voidage, you know, at a one. Your -- say from your
11 initial pressure down to your bubble point there's --
12 I guess I -- I guess I should rephrase my answer from
13 it. It can be anywhere -- a pressure of -- initial
14 pressure down to your bubble point. There won't really
15 be any I would say loss of recovery. Ultimate recovery
16 might be maybe, you know, lower rates for longer,
17 higher rates for, you know, a short amount of time. So
18 it's -- I wouldn't say it's necessarily, you know, bad
19 or mismanagement to have accumulative IW, you know,
20 point day five compared to a one, it's just where does
21 your pressure sit compared to maybe your -- to your
22 bubble point pressure.
23 COMMISSIONER CHMIELOWSKI: Right. I just --
24 I'm trying to understand if managing to a pressure of
25 8.55 is good for Milne just because it's good for, you
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1 know, mechanical rig workovers or is that a separate
2 issue. You're saying you're fine with it, you're fine
3 and Hilcorp is fine with an 8.55 reservoir pressure on
4 its wells?
5 MR. HAAKINSON: Yes. David Haakinson speaking.
6 I mean, all of our reservoirs are normally pressured.
7 They're all again initial development at roughly an 8.4
8 gradient. Our goal is to try to maintain as close to
9 that. It's the one/one ratio we would maintain right
10 there at that 8.4. If the pressure falls of low you'll
11 reduce basically the productivity of those wells. Your
12 resource recovery may happen a little bit slower, but
13 we do want to maintain voidage. Going back to the, you
14 know, observation of our lower IW, that's primarily
15 listed, kind of -- some of our hydraulic constraints,
16 right. K pad had a, you know, major shut down, you
17 know, over a decade, two decades ago where we lost
18 water injection out there for a long period of time
19 during those points in time. That's why we're actually
20 going with the power fluid separation, those islands
21 like out at F pad. We haven't had enough water to
22 maintain a one to one and now with the power fluid
23 separation we can actually increase and offer an
24 instantaneous IW to try to get up from that .85, you
25 know, up. It's going to take a long time obviously,
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1 but to try -- to try to bring that cumulative IW to one
2 to one to maintain that .84 to maximize recovery.
3 CHAIRMAN HUBER: This is going to get to the
4 point of beating a dead horse I think, but just to make
5 absolutely certain because we're not asking you to
6 defend, you know, AOGCC regulations or conservation
7 orders or anything. We just want to make sure that
8 those regulations and the conservation orders are not
9 in conflict with the other mission in conservation of
10 resource and ultimate recovery.
11 MR. HAAKINSON: And that is -- David Haakinson
12 speaking. That is the top, right. We want to
13 basically push as close to that normal pressure as
14 possible, right, and with that you have a tighter band
15 to where if you have, you know, something where, you
16 know, as -- as all of you know, central injection
17 across a fault that is interpreted ceiling, it's
18 complex, particularly in the Kuparuk. When you shut in
19 a well you don't have instantaneous gauges in a lot of
20 our older wells. You go back in, you realize oh, no,
21 this is at an 8.7, right, it's a major financial and
22 apple to us so we're really on the -- specifically in
23 the packers, not really financial incentives, but we're
24 also potention -- potentially we should have put that
25 water elsewhere, right. And as we learn those things
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1 we iterate and now -- okay, now that fault that we
2 thought was the ceiling, is now a transmissible fault,
3 right, so then we change our patterns. But our goal is
4 to -- we believe to maintain right there at that 8.5
5 gradient.
6 COMMISSIONER CHMIELOWSKI: Thank you. He could
7 say it better than me, that's all right.
8 So going back to CO390(a) just because that's
9 what a lot of your proposal is based off, right,
10 managing well pressure at 8.55. So what is Hilcorp's
11 method to monitor those bottomhole pressures over time.
12 So for example just say you worked over a well and you
13 put in a packerless ESP because the reservoir pressure
14 was 8.5, it met the criteria. How does -- how does
15 Hilcorp monitor that pressure over time to make sure
16 it's not going above. And a second example would be
17 Hilcorp proposes to be allowed to produce wells for a
18 period of time above that pressure to get it down into
19 the accessible pressure range how does Hilcorp know
20 it's not going to go right back up again after it meets
21 its target.
22 MR. HAAKINSON: Yeah, maybe -- David Haakinson
23 speaking. We could probably speak to that and maybe
24 three can add in a little bit here. But from that
25 point of time as I previously mentioned typically where
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1 we run into the issues on that is once we have a
2 pressure, we have typically a tank, we call it a tank,
3 so we do material balance to try to figure out how big
4 that tank is. We're -- what typically and where we
5 find that we have basically reservoir pressure that's
6 above that 8.55, are we in trouble, it's typically a
7 long term shut in. And so when I talked about how --
8 the complexity or complexities of it, a centered
9 injector might support four different producers and one
10 producer may be supported by four or five offset
11 injectors, right. And when a producer goes down we
12 can't shut off those five injectors because they
13 support other producers. And so from that time we
14 typically elect depending on what we know today to shut
15 in those injectors to manage our instantaneous IW to
16 maintain those pressures. When a well is producing
17 we're typically -- we're -- we were monitoring our
18 basically reservoir pressure through a pseudo well
19 test, right. So if the well test and the fluid rates
20 that are coming out of the well are dropping over time
21 and we are not seeing an increase of sand or some other
22 factor on the flow, we know that the reservoir pressure
23 is probably dropping, right, and so the reservoir
24 engineers are monitoring that data. Likewise if the
25 res -- if a reservoir rate is increasing for some
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1 reason whether it's we -- you know, evaluate and we
2 have, you know, maybe a matrix, bypasses amber, looking
3 at that. Is the water code increasing, no. It seems
4 standard in a waterhole/oil ratio trend building the
5 production rates are increasing. Okay. We may be
6 seeing more injection from somewhere else. Look at the
7 surrounding injectors, do we need to pinchback
8 injection, send it elsewhere. Through that we can
9 typically while the well's online we can monitor that.
10 When the well is shut in most of our wells have
11 downhole pressure gauges, so a lot of these
12 (indiscernible) ESTs. We can't always rely on those
13 full stop because, you know, like any of electrical
14 equipment those can fail over time. But when we have
15 shut in events, you know, when we shut in drillsites
16 for maintenance, when we have, you know, facility
17 maintenance events, we do go monitor those. We take
18 bottomhole pressures on certain wells that we, you
19 know, maybe don't fully understand the complexities of
20 what's supporting. When we drill new producers or new
21 injectors, we drill coiled tube when drilling into a
22 new fault block. Sometimes, you know, how we
23 interpreted those faults previously can change over
24 time and so we're more probably diligent on those wells
25 to try to understand whereas other wells, producers and
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1 injectors, we have a 30 year history through, you know,
2 monitoring maybe gas spikes through WAG injections,
3 monitoring, you know, previous pressure increases.
4 Typically where, you know, the -- where it becomes
5 problematic is where you may not have a bottom pressure
6 gauge, you shut in an ESP that may have failed
7 electrically. The well may not be economical to bring
8 online right away and it remains shut in for four or
9 five years, right. And the -- during that point in
10 time, you know, the offset injectors, we need to bring
11 them back online at some point to support the other
12 producers otherwise we're going to see a massive loss
13 of resource. And then we'll come back, you know, maybe
14 two years later, we want to revisit the well. From
15 that point in time we say oh, well the actual -- you
16 know, we're seeing a little bit of bleed through that
17 fault block, right, why did the pressure increase. And
18 that's the tough part right there where we see wells
19 that actually get above the 8.55 gradient.
20 COMMISSIONER CHMIELOWSKI: So unless the
21 Commission considers Hilcorp's proposal, you know, to
22 use this 8.55 reservoir pressure again for jet pump
23 completions as well as ESPs I'd like to see some data
24 that supports or demonstrates Hilcorp's monitoring of
25 that downhole pressure and packerless ESPs. Could you
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1 provide that to the Commission, we can leave the record
2 open. So for example wells that were approved for a
3 packerless ESP at 8.55 or lower, what has the pressure
4 been over time, what have you monitored, what is it in
5 those wells. Does that make sense, I want to
6 understand Hilcorp's compliance with the 8.55 reservoir
7 pressure in wells that were approved based on that
8 requirement. Does that make sense?
9 CHAIRMAN HUBER: And I would echo that as CO390
10 and the entire discussion about packerless or not
11 packerless was really based upon that seawater
12 gradient, that 8.55. So and we know that it hasn't
13 been consistent over time all of the time. So if we
14 could better understand how well we're meeting that
15 target and what that means?
16 COMMISSIONER CHMIELOWSKI: And I had a question
17 again about F pad and I know we're picking on it a bit,
18 but you talked about in your proposal how you're going
19 to comply with subsurface safety valve requirements,
20 but I didn't see anything there. Those -- to go
21 without a subsurface safety valve requires passing a no
22 flow test. So is that Hilcorp's plan for F pad is to
23 get wells to pass a no flow test?
24 MR. WELLMAN: So the ones that -- I'm sorry,
25 this is Taylor Wellman. So for the wells that will
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1 pass a no flow test we would propose that as being the
2 option. But as I stated on the Milne Point F79, we are
3 -- we did submit to put a subsurface safety valve in
4 the tubing on that well.
5 COMMISSIONER CHMIELOWSKI: Okay. So there's
6 really no change to what the regulations require?
7 MR. WELLMAN: That is correct.
8 COMMISSIONER CHMIELOWSKI: Okay. Great. Thank
9 you. And just another question. You know, you talked
10 about and on both of your, you know, reverse and
11 forward circulating jet pump -- jet pumps, for wells
12 that are over 8.55, qualification of a second barrier.
13 So could you tell me again what would qualify as a
14 second barrier in Hilcorp's understanding of that?
15 MR. WELLMAN: Again Taylor Wellman. So yes,
16 there's different ways that you can. So with one of
17 the designs that we talked about in there where we do
18 have that extra tieback string that comes all the way
19 down. Qualification of that nine and five-eights
20 casing and those Schrader new design completions that
21 we run would be that second barrier that's in place.
22 Another one would be potentially a check valve that we
23 are currently trying to develop in industry to have it
24 reliable in there. It would be much like checking a
25 gas valve, that would be something in there, but it is
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1 still under development. And then there's also into
2 other realms of we haven't figured out exactly what it
3 would be in there. So it depends on the kind of the
4 completion of the well between historical or new
5 completion being run on the ground for what that second
6 qualifying barrier would be.
7 COMMISSIONER CHMIELOWSKI: The check valve
8 would be in the tubing?
9 MR. WELLMAN: In -- within the jet pump itself.
10 COMMISSIONER CHMIELOWSKI: Within the jet pump
11 itself. Oh. Okay.
12 MR. WELLMAN: So again it's one we're trying to
13 develop, but it's not currently available.
14 COMMISSIONER CHMIELOWSKI: It's not ready for
15 -- to put in below. Yeah. Okay.
16 Thank you. I have no further questions at this
17 time, but you guys go ahead if you had anything.
18 CHAIRMAN HUBER: Commissioners, I think at -- I
19 don't see anybody in the room signed up to testify
20 other than the presenters. I think we'll take a look
21 online, this is a relatively technical issue so I don't
22 know how much participation we're going to have, but I
23 would suggest that we start down the path of public
24 testimony and then look at taking a short recess so we
25 can confer.....
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1 COMMISSIONER CHMIELOWSKI: Uh-huh.
2 CHAIRMAN HUBER: .....and then come back on the
3 record.
4 MR. WELLMAN: Commissioners, this is Taylor
5 Wellman. I'm sorry, we did have our expert witness
6 Martin Walters, here.
7 COMMISSIONER CHMIELOWSKI: Oh, okay.
8 CHAIRMAN HUBER: Oh, I'm sorry. Hear his
9 testimony if that's okay.
10 COMMISSIONER CHMIELOWSKI: Yeah, absolutely.
11 CHAIRMAN HUBER: Absolutely. We ran out of
12 slides.....
13 MR. WELLMAN: Nope.
14 CHAIRMAN HUBER: .....so I assume that it was
15 complete, but absolutely.
16 MR. WALTERS: Good morning, Commissioners and
17 Staff. My name is Martin Walters. I'm an independent
18 oil industry consultant and I currently specialize in
19 International Association of Drilling Contractors or
20 IADC well control certification training. I've been an
21 Alaska resident for 19 years and have a bachelor of
22 science in petroleum engineering from Louisiana State
23 University in Baton Rouge, Louisiana. I have over 35
24 years of oil industry experience in a wide variety of
25 roles including production operations, production
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1 engineering, reservoir engineering, project
2 coordination, well intervention and well integrity. So
3 I respectfully request the Commission recognize me as
4 an expert witness in this matter.
5 COMMISSIONER CHMIELOWSKI: No objection.
6 COMMISSIONER WILSON: No objection.
7 CHAIRMAN HUBER: Without objection you'll be
8 recognized as an expert in these matters.
9 MARTIN WALTERS
10 previously sworn, called as a witness on behalf of
11 Hilcorp Alaska, stated as follows:
12 MR. WALTERS: I was asked by Hilcorp Alaska to
13 provide some objective scrutiny of their philosophy and
14 their testimony and the exhibits regarding the subject
15 of hydraulic jet pump design and operation in Milne
16 Point wells. All of my questions that I've asked
17 related to barriers, casing integrity, corrosion,
18 reservoir management, risk assessment were answered to
19 my satisfaction. So my review of the materials related
20 to this case have let me to conclude that Hilcorp's
21 plan to install and operate hydraulic jet pumps in
22 Milne Point field is being executed in a safe,
23 efficient and economic manner.
24 So if you have any questions I'll take those
25 otherwise I'll turn it back over to Taylor Wellman for
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1 a summary and conclusion.
2 COMMISSIONER CHMIELOWSKI: Well, as you know,
3 Mr. Walters, there's been a lot of discussion about two
4 barriers and, you know, the jet pump maybe bypassing
5 the packer and that sort of thing. What is -- what are
6 your thoughts about the two barriers as they relate to
7 jet pumps and high pressure power fluid?
8 MR. WALTERS: I -- typically in the industry,
9 you know, the two barriers from a well control
10 standpoint applies to when we're moving -- removing
11 primary pressure control equipment and not necessarily
12 in a artificial lift situation. There are many wells
13 in industry that have a single barrier between
14 artificial lift mechanism and atmosphere. The two
15 barrier policy from a well control standpoint has to do
16 with removing the wellhead, installing BOPs or removing
17 BOPs and installing the wellhead after a workover or
18 drilling operation.
19 COMMISSIONER CHMIELOWSKI: So would you
20 consider a shut in jet pump well -- would you consider
21 that nozzle being a bypass of the packer and is that
22 just -- still just one barrier, that's just one
23 barrier, right?
24 MR. WALTERS: Yes.
25 COMMISSIONER CHMIELOWSKI: Yeah. But that's
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1 not -- that's from production, not from artificial lift
2 at that point, is that your interpretation?
3 MR. WALTERS: Correct. Depending on the
4 reservoir pressure and the density of the power fluid.
5 COMMISSIONER CHMIELOWSKI: Okay. So your
6 support would hinge upon the 8.55 reservoir management
7 principle?
8 MR. WALTERS: Correct.
9 COMMISSIONER CHMIELOWSKI: If it was above that
10 would you support it?
11 MR. WALTERS: I would not support it as a -- as
12 an adequate barrier.
13 COMMISSIONER CHMIELOWSKI: Okay. Thank you.
14 COMMISSIONER WILSON: I have nothing
15 additional.
16 CHAIRMAN HUBER: Thank you, Mr. Walters. And
17 you wanted to turn it back over to -- excellent. Mr.
18 Wellman.
19 MR. WELLMAN: Taylor Wellman again. Hilcorp
20 and previous operators at Milne Point have roughly a 20
21 year history of operating and utilizing jet pump
22 completions to increase production and enhance ultimate
23 recovery. In this 20 year period there have been zero
24 instances of well control releases from jet pump
25 completions. Hilcorp believes that jet pump
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1 completions comply with regulations as written with the
2 stipulation that forward circulating jet pump
3 completions would need to be approved on a case by case
4 basis per regulation and precedent. Hilcorp believes
5 that well integrity can be safety assured. Mitigations
6 we are proposing for both forward and circulating jet
7 pumps will provide consistency and clarity for
8 conditions to operate as well as a path forward to
9 operate with a reservoir pressure exceeding 8.55 pounds
10 per gallon. These mitigations include corrosion
11 inhibition of all jet pump power fluids, production
12 casing, mechanical integrity tests quadrennially for
13 reverse circulating completions and biennially for
14 forward circulating completions. Qualification of a
15 second barrier for jet pump completions run in wells
16 that are above the reservoir pressure gradient of 8.55
17 pounds per gallon if the bottomhole pressure cannot be
18 reduced below this threshold. In addition the above
19 and beyond surface safety valve systems on both
20 producing side and power fluid side.
21 Hilcorp would like to thank the Commission and
22 their Staff for allowing us to present the current and
23 historical state of artificial lift mechanisms as well
24 as the proposed path forward for continued operation of
25 jet pumps at Milne Point. Hilcorp respectfully
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1 requests that today's testimony be taken into
2 consideration with respect to jet pump completions
3 moving forward so that Hilcorp can continue to pursue
4 increased production and ultimate recovery from the
5 Milne Point field for the state of Alaska.
6 COMMISSIONER CHMIELOWSKI: Thank you. That was
7 an excellent presentation. I just want to commend
8 Hilcorp for doing such a great job increasing
9 production at Milne, it's really incredible.
10 MR. WORTHINGTON: Thank you. Aras Worthington
11 says thank you for all of us.
12 CHAIRMAN HUBER: Absolutely. And I'm certain
13 Commissioner Wilson and I concur with that.
14 COMMISSIONER WILSON: Same for me.
15 CHAIRMAN HUBER: And thank you for your
16 presentation. Any additional questions right now,
17 Commissioners.
18 (No comments)
19 CHAIRMAN HUBER: We after our break may come
20 back and have additional questions for you. We'll also
21 circle back to any additional information that we
22 requested or may want to request and how long we'll
23 leave the record open to accomplish that when we come
24 back on the record.
25 But now that brings us to an important part of
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1 the Commission's work and that's hearing from the
2 public. Some issues illicit more public involvement
3 than others, but it's always important than the public
4 has an opportunity. We serve the public, that's what
5 we're here for that the public has an opportunity to
6 participate.
7 So in the room today the current sign up sheet
8 I have doesn't show anybody in the room that has an
9 interest to testify other than the presenters. Let me
10 make sure of that. Is there anybody in the room that
11 wishes to testify today.
12 (No comments)
13 CHAIRMAN HUBER: Seeing none, we will go online
14 and talk a little bit about that testimony. But first
15 let's -- on Teams the code to unmute is star six, again
16 star six. So if you're listening on Teams you'll need
17 to hit star six to unmute and let us know if you wish
18 to testify. If anybody has technical difficulties with
19 that, again you can call our main line or call Samantha
20 at 793-1223.
21 We're going to take a fair amount of pause
22 because sometimes just that technical aspect and people
23 it takes a while to unmute and understand the system.
24 So again if there's anybody on line currently that
25 would like to testify the code to unmute your phone is
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1 star six and we'll wait now to hear if we have anybody
2 who wishes to participate.
3 (No comments)
4 CHAIRMAN HUBER: Thanks everybody for their
5 patience. Sixty seconds when you're doing nothing but
6 watching a clock tick and listen can seem like quite a
7 span of time. Again we've asked for people online that
8 wish to testify, we've heard nobody so far. If that
9 changes we will come back to public testimony because
10 we don't want to exclude anybody that would like the
11 opportunity.
12 But hearing none currently, Commissioners, I
13 suggest we take a brief -- it's 12:20 now, maybe come
14 back on the record at 12:30.
15 COMMISSIONER CHMIELOWSKI: Yes, is it
16 12:10.....
17 CHAIRMAN HUBER: 12:10, I'm sorry.
18 COMMISSIONER CHMIELOWSKI: .....yeah, 12:30
19 sounds good.
20 CHAIRMAN HUBER: Twenty minutes, We'll come
21 back.....
22 COMMISSIONER CHMIELOWSKI: Yeah.
23 CHAIRMAN HUBER: .....on the record at 12:30.
24 So we'll do that. We're going to come back on the
25 record at 12:30. Please remain if you would, if we
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1 have additional questions and follow-up. Thanks for
2 your presentation and your participation to this point.
3 We'll be back on the record in 20 minutes.
4 (Off record)
5 (On record)
6 CHAIRMAN HUBER: .....1:30 and we're back on
7 the record. We still have all the members of Hilcorp
8 present. Staff appreciated everybody's break. Hope
9 you had a chance to grab some lunch and we will now
10 unless you have anything to add to your presentation
11 we'll now look for questions from Commissioners,
12 additional questions from Commissioners. Before we do
13 that let's go and ask one more time if we have anybody
14 in the public that is interested to testify.
15 (No comments)
16 CHAIRMAN HUBER: Okay. We have no one online
17 so we will not do our 60 second countdown again
18 thankfully.
19 Commissioners, additional questions.
20 COMMISSIONER CHMIELOWSKI: Yeah, if you don't
21 mind that I start. I wanted to ask some questions
22 about the corrosion inhibition program. So, you know,
23 it's my -- I'm not an expert in this area, but I know
24 that on surface pipelines, you know, there are coupons
25 put out, you know, the monitor and the effectiveness of
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1 the corrosion inhibitor and if it needs to be
2 adjusted. So my question is or several questions about
3 how do you guys know if there's corrosion, pitting
4 scale in the tubing. How are you monitoring the tubing
5 in jet pump completions to know if at least inside the
6 tubing it's effective and maybe that'll give you an
7 idea about the production casing, is it being
8 effectively inhibited?
9 MR. HAAKINSON: So David Haakinson speaking.
10 I'll specifically speak to the corrosion inhibition
11 program and I'll probably turn it over to Taylor
12 Wellman to talk about the wells themselves. We kind
13 of.....
14 COMMISSIONER CHMIELOWSKI: (Indiscernible -
15 away from microphone).....
16 MR. HAAKINSON: I believe so. Can you hear me?
17 COMMISSIONER CHMIELOWSKI: Yes.
18 MR. HAAKINSON: That close. How's that? All
19 right. Sorry about that. David Haakinson speaking.
20 So I will speak to the corrosion inhibition plan, what
21 we have on the production side of things. Taylor
22 Wellman also has some great experience on our downhole
23 corrosion inhibition plan. So on the surface of it we
24 do inject corrosion inhibitor on all of produced as
25 well as power fluids on both our production side as
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1 well as our water injection and power fluid sides. We
2 maintain those based on specific set point targets or
3 on parts per million targets for our water system.
4 They are consistent -- typically consistent across the
5 fields on that system. So on the produced water
6 injection as well as the power fluid header systems, on
7 those we have additional coupons on those systems as
8 well that we monitor kind of on a routine basis, our
9 corrosion team does. So that data's being consistently
10 analyzed, if there's any changes within that we
11 typically will take quick action on that to change our
12 corrosion inhibition rates, you know, up that by, you
13 know, five to 10 parts per million.
14 On the surface side beyond that we also do some
15 work on the downhole side wherever we, you know, run
16 into potential, you know, issues where we think that we
17 may see an increase or a spike in corrosion that we
18 want to investigate.
19 And I'll turn that over to Taylor.
20 MR. WELLMAN: Taylor Wellman. So speaking to
21 some -- sorry. It depends on which area of the field
22 that you're in for the exact type of corrosion
23 inhibition that we're putting into the field. So say
24 like at S pad where you have a whole system where it's
25 a power fluid system and goes back through partial
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1 separation and circle -- circle -- circulates around,
2 gets separated back out and reused for the power fluid.
3 Those -- that fluid is tested to see if it's got the
4 right concentrations continuously back in there. The
5 previous operator had continuously just spiked in a
6 certain concentration thinking that that was going to
7 be, but they ended up over treating that water. So
8 we've continued on that same practice of monitoring
9 that to make sure that the overall fluid is kept to the
10 same parts per million.
11 If you go to some of the other areas of the
12 field such as the northwest end of the field, that is F
13 and L pads, where it is -- the power fluid is off of
14 source water that is brought up and through on there.
15 Specifically speaking to two wells we had I believe at
16 the end of 2021 we had these on source water injection
17 and with a strange corrosion mechanism that happened of
18 power fluid going down the annulus, mixing with Kuparuk
19 fluids at higher pressure and that combined fluid
20 actually caused corrosion or CO2 corrosion of the
21 internals of the tubing. So how we ended up solving
22 and working through that issue is we spike in corrosion
23 inhibition into the power fluids directly at the
24 wellheads on those specific wells. The reason why it
25 hadn't been identified previously as an issue is
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1 because all of our -- in the 20 plus years of using
2 power -- I'm sorry, source water wells at that end of
3 our field on all of our objection wells hadn't seen
4 this type of corrosion. Similar power fluid pressures
5 or injection pressures and rates from the same fluid,
6 we hadn't seen that issue on the tubing side.
7 So what we do is we like to learn from
8 ourselves and try and get better and come up with ways
9 that we can try and make sure on that. But speaking to
10 that, we've got different methods and then what we have
11 for making sure that corrosion inhibition is included
12 in all of our jet pump wells. And then we have done
13 some spot checks through time on those wells since we
14 have worked those ones over that we had previously
15 identified on the north F pad to those to make sure
16 that we run some caliper surveys to make sure that that
17 has been effective.
18 MR. HAAKINSON: And to follow-up David
19 Haakinson speaking on that. When we pull jet pump
20 completions we obviously review the tubulars that come
21 out of the hole. So recently we've pulled a jet pump
22 producer, I believe it is S34 off the top of my head,
23 that we pulled off, reviewed the external of that
24 piping at that point in time, right, and found no
25 corrosion after 20 years of operation on the basically
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1 exterior of the tubulars. We completed pressure
2 testing, but we did not run a specific caliper for that
3 well based on our findings of the external of the
4 tubing. And where we find or where we review jet pump
5 workovers if we see anything odd we send those to a
6 third party, you know, Metallurgical Services, to
7 review to try to determine if we have some sort of odd
8 corrosion going on.
9 Fortunately I will say that, you know, Milne
10 Point is very fortunate in that we not injected
11 seawater. So from a, you know, comparative analysis we
12 have very little, you know, I'd say barium sulfate
13 scaling and we have very little or low H2S compared to
14 many other fields on the North Slope.
15 MR. WELLMAN: So to clarify on the two wells
16 that I was speaking of at F pad -- I'm sorry, this is
17 Taylor Wellman, we did see the corrosion on the
18 internal of the tubing for the reverse circulating jet
19 pump. So the power fluid didn't affect the casing on
20 those as when we pulled that tubing out of there, that
21 external of the tubing looked brand new, but the
22 internal was severely pitted.
23 The other one is K pad. That well, source
24 water well, those ones are treated directly at the ESP
25 from the source water well so it inhibits everything
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1 through the whole system.
2 COMMISSIONER CHMIELOWSKI: Thank you. Does
3 Hilcorp have any records or data that shows pitting or
4 scale or corrosion in tubing in jet pump completions?
5 MR. HAAKINSON: David Haakinson speaking. I'm
6 not certain of a specific repository if you pull well
7 by well records there are mention of potential wells
8 that we've had known scale problems. So one specific
9 well is a well at S pad that we have known. We
10 actually inhibit that with scale inhibitor as well.
11 But beyond that there's no specific data base that says
12 that that exact, you know, where we can pull from that
13 without pulling individual well records.
14 COMMISSIONER CHMIELOWSKI: Okay. So with the
15 exception of the two wells that Mr. Wellman mentioned
16 you're primarily relying on this parts per million and
17 some coupons; is that right?
18 MR. HAAKINSON: Correct. Coupons, we also pull
19 water, produced water.....
20 COMMISSIONER CHMIELOWSKI: Uh-huh.
21 MR. HAAKINSON: .....for this well data, so we
22 actually pull water data and then that's sent off to a
23 lab, a third party lab, also to review the inhibitor
24 residuals. So that's also done. One of the things as
25 Taylor mentioned was a past learning from, you know, BP
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1 from 15 years ago is they actually inhibited --
2 corrosion inhibitor can be corrosive if you inhibit it
3 too much. And when the power fluid circulates through
4 there's, you know, again a complex system, but, you
5 know, solids, corrosion inhibitor, you know, can absorb
6 to solids and become, you know, less and so forth. And
7 so if you're continuously recycling that fluid without
8 taking a sample or that data on the coupons or
9 everything like that, you otherwise, you know, don't
10 have information of what the true inhibition. So
11 gathering the produced water samples, the corrosion
12 team on the coupons as well and then whenever we're
13 working over wells, reviewing the tubulars upon that
14 data. Thus to date we have very few wells that we've
15 scale in our wells, typically Schrader in particular
16 with our source water and our water compatibility we're
17 not really prone to scale. We do have some old Kuparuk
18 production that has some scaling tendencies, but with
19 our inhibition that we, you know, inject both corrosion
20 and scale inhibitors into our production steams then we
21 haven't seen many issues.
22 COMMISSIONER CHMIELOWSKI: Okay. And it sounds
23 like you or Hilcorp hasn't really performed casing
24 calipers on jet pump wells to verify casing integrity,
25 mostly relying on the outside of the tubing to
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1 determine whether there has been corrosion.....
2 MR. HAAKINSON: Yeah.
3 COMMISSIONER CHMIELOWSKI: .....of the inside
4 of the casing?
5 MR. HAAKINSON: David Haakinson. I know
6 there's been a lot of data that was done at S pad, I'm
7 not certain to the extent of that. BP actually
8 completed a lot of studies on this S pad with specific
9 logs as well. I can't say that specifically to the jet
10 pumps. We do and have run casing calipers before, but
11 to the amount of them that we've ran I cannot speak to.
12 COMMISSIONER CHMIELOWSKI: Okay.
13 CHAIRMAN HUBER: So did I understand that
14 answer to say that some have been performed, you just
15 don't know how many and don't have the complete picture
16 of that?
17 MR. HAAKINSON: Correct. Another log such as
18 basically wall thickness scans, I can't give you the
19 exact logs off the top of my mind, but there was a
20 substantial amount of data that was collected off of S
21 pad.
22 CHAIRMAN HUBER: Thanks.
23 COMMISSIONER CHMIELOWSKI: Okay. I'd like to
24 ask Hilcorp to provide any caliper tubing or casing
25 caliper data that you have for jet pump wells. What
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1 would be the appropriate time period from when Hilcorp
2 started operations, what 2014, 2015 or farther back?
3 MR. WELLMAN: We began operations in -- well,
4 November 14th, 2014.
5 COMMISSIONER CHMIELOWSKI: Right.
6 MR. WELLMAN: So do you want to take it back to
7 that date?
8 COMMISSIONER CHMIELOWSKI: If that seems like a
9 reasonable sample size that would give us some data,
10 whatever data you might have.
11 MR. HAAKINSON: Yeah, David Haakinson. We'll
12 pull that data together. You know, with that said our
13 jet pump wells typically operate for more than 20 years
14 so that sample data should be small, right, because
15 we're not working over the wells very frequently.
16 COMMISSIONER CHMIELOWSKI: Then would it be a
17 better value to go back further in time, 2001?
18 MR. HAAKINSON: We will try to pull the jet
19 pump data that we can.....
20 COMMISSIONER CHMIELOWSKI: Okay.
21 MR. HAAKINSON: .....see what we have, yes.
22 COMMISSIONER CHMIELOWSKI: All right.
23 MR. WORTHINGTON: Aras Worthington. Just one
24 comment on that and just reiterate what I think
25 Haakinson said earlier in the testimony. We rely on
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1 pressure test of the casing as the final fit for
2 service integrity test. Calipers, we do run them
3 primarily, you can correct me if I'm wrong, David, but
4 when we have -- when we see subsidence because we want
5 to understand the subsidence effects on the wellbore,
6 but calipers for corrosion, if it passes a pressure
7 test that's the final test for us.
8 COMMISSIONER CHMIELOWSKI: Yeah, that -- that's
9 true. Except, you know, a well could pass an MIT and
10 meet the 10 percent criteria for pressure loss over
11 time and still have only -- because we've seen that on
12 injectors where they'll pass a pressure test, but still
13 have communication. So that's, you know, my thought
14 there. If you can see that caliper data that would be
15 great.
16 Question about that Milne Point well. Mr.
17 Wellman mentioned Charlie 40 or no, it was Mr.
18 Haakinson, that had a sudden leak you said of the power
19 fluid; is that right?
20 MR. HAAKINSON: David Haakinson speaking.
21 Yes.....
22 COMMISSIONER CHMIELOWSKI: Yeah.
23 MR. HAAKINSON: .....it was a production casing
24 leak.
25 COMMISSIONER CHMIELOWSKI: And what -- do you
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1 know what the cause of that failure was?
2 MR. HAAKINSON: I do not. No, I do not know
3 that. We have not worked that well over.
4 COMMISSIONER CHMIELOWSKI: Okay. So it's an
5 unknown failure, the cause of failure's unknown. Okay.
6 Have there been other wells that have failed in a
7 similar way to that well as far as a sudden pressure
8 communication besides the Guy 27?
9 MR. HAAKINSON: Not to my knowledge in the four
10 years that I've been working for Hilcorp.
11 COMMISSIONER CHMIELOWSKI: Another piece of
12 data I would like Hilcorp to provide is the question
13 asked about flow through -- not flow, if there was a
14 loss of containment at surface and you have a well
15 that's above seawater gradient so let's just say 11
16 pounds per gallon. You probably have some wells that
17 are 11 pounds per gallon reservoir pressure. Give us
18 some calculations on how much fluid could flow through
19 the nozzle or orifice.
20 MR. WELLMAN: Taylor Wellman. What we can do
21 on that is it's going to take quite a bit to be able to
22 calculate that through and we'd like to provide that
23 later. Some of the conditions based on permeability,
24 water cut, GORs, will also affect those calculations of
25 what that makeup of that fluid passing through the
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1 orifice would be. So we do have some very talented
2 engineers who can calculate this for us and go through
3 that, but for me to go off the cuff and be able to
4 supply that I.....
5 COMMISSIONER CHMIELOWSKI: Absolutely. My
6 intent was that we'll keep the record open.....
7 MR. WELLMAN: Okay.
8 COMMISSIONER CHMIELOWSKI: .....to provide data
9 and as long as you need really.
10 MR. WELLMAN: Will do. Thank you.
11 COMMISSIONER CHMIELOWSKI: Yeah.
12 MR. WORTHINGTON: And, Jessie, just to clarify,
13 you're looking.....
14 COMMISSIONER CHMIELOWSKI: Are you on?
15 MR. WORTHINGTON: I believe so.
16 COMMISSIONER CHMIELOWSKI: Okay.
17 MR. WORTHINGTON: Oh, now I am. Okay. You're
18 looking for the worse case, knock the wellhead off and
19 what are you going to get with the.....
20 COMMISSIONER CHMIELOWSKI: Yeah. The other,
21 yes. Let's see, I'm just going through my notes here
22 real quick. So could we got to that slide that has the
23 chart of the -- looks like a SCADA plot, looks like the
24 wellhead -- you know, the injection pressures and the
25 power fluid rate.
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1 MR. HAAKINSON: Slide 26.
2 COMMISSIONER CHMIELOWSKI: Slide 25.
3 MR. HAAKINSON: Yeah, you're right.
4 COMMISSIONER CHMIELOWSKI: So we know you
5 talked a little bit earlier about how you would detect
6 an issue via what, the power fluid rate or pressure.
7 And, Mr. Haakinson, you mentioned stuff about, you
8 know, issues with the jet pumps. But, you know, with a
9 minor change in say pressure or rate there's many --
10 seems like to me that there would be many things that
11 could cause that. It could be, you know, an issue with
12 the casing, it could be an issue with the pump, it
13 could be -- what if it's a gas breakthrough from your
14 gas injection, what if there's some reservoir issue, an
15 injector gets shut off or turned back on. So if you
16 see changes in these graphs what is Hilcorp's protocol
17 to diagnose it or understand what it is, is it a
18 reservoir issue, is it mechanical issue.
19 MR. HAAKINSON: Yeah, David Haakinson speaking.
20 So the example showing, we use it with any consistency
21 of any producer whether it was jet pump, gas lift, ESP,
22 right, we use a combination of data through trending,
23 well tests, as well as what we're seeing on the
24 operational level from our daily well walks and that's
25 consistent for all wells that we use to determine what
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
Computer Matrix, LLC Phone: 907-227-5312
Page 121
1 the potential issue may be.
2 COMMISSIONER CHMIELOWSKI: So I guess walking
3 down the well's not going to tell you if you have a
4 production casing leak, right, so how are you using
5 this data, what does Hil -- how does Hilcorp use it to
6 understand what's happening with the well, is it.....
7 MR. HAAKINSON: Yeah, again David Haakinson
8 speaking.
9 COMMISSIONER CHMIELOWSKI: Yeah.
10 MR. HAAKINSON: So it's a combination, right,
11 again it's well testing, right, is the GOR going up or
12 down, is your water production increasing or
13 decreasing, are you getting production at surface.
14 Daily well walks could indicate a potential leak,
15 that's how we found I27. Beyond that it's daily
16 trending like no other well, whether ESP or gas lift,
17 we use the trending to determine a potential problem,
18 whether it's a gas lift valve leaking, potential casing
19 leak, tubing leak, anything like that. A large part of
20 that uses the combination of data, you have to use
21 trends plus well test data, what you're seeing at
22 surface, wellhead temperatures, there's a lot of data
23 involved to try to figure out, you know, when there's
24 an issue or change in trend line you don't
25 instantaneously know what the problem is, it takes the
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
Computer Matrix, LLC Phone: 907-227-5312
Page 122
1 combination of that data to determine and use our
2 engineering judgment to figure that out.
3 COMMISSIONER CHMIELOWSKI: So I'm just trying
4 to understand how if you had a leak that was limited
5 within the error band of your chart how you would know,
6 say 50 barrels a day is going out of your production
7 casing. It would be difficult to know?
8 MR. HAAKINSON: David Haakinson. Potentially,
9 a small enough leak. It's no different than an ESP or
10 gas lift flow.
11 COMMISSIONER CHMIELOWSKI: Do you have -- do
12 you have any examples of where Hilcorp has identified a
13 leak using data such as this?
14 MR. HAAKINSON: Yes, C40.
15 COMMISSIONER CHMIELOWSKI: C40. Okay. So
16 maybe along with -- you could provide that data to us
17 so we could see what it looked like and an example of a
18 failure. That was a rapid failure though, not a slow
19 failure.
20 MR. HAAKINSON: David Haakinson speaking. I
21 can't speak to the exact terms.....
22 COMMISSIONER CHMIELOWSKI: Okay.
23 MR. HAAKINSON: .....of that.....
24 COMMISSIONER CHMIELOWSKI: Yeah.
25 MR. HAAKINSON: .....but I do know that it was
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
Computer Matrix, LLC Phone: 907-227-5312
Page 123
1 a production casing leak and we can find that data.
2 COMMISSIONER CHMIELOWSKI: Okay. Great. Thank
3 you. A couple questions about -- and I'll just use I27
4 as an example because it had pressure on the OA, power
5 fluid pressure. So what was -- do you guys know what
6 the leak off test or the formation integrity test was
7 for that well. I'm wondering if 3,200 PSI on the OA
8 would have cracked the shoe or, you know, caused fluids
9 to go out of the well -- out of the shoe?
10 MR. WELLMAN: Taylor Wellman speaking on this.
11 I'd have to go back and double check to see if it was
12 either 12 pound or 12.5 pound for our typical Schrader
13 wells on these ones. In these style of completions as
14 well the liner top pack or liner hanger system
15 encompasses that, is rated to at a minimum of a burst
16 of that is 80 -- I believe 8,200 psi. So the
17 combination of that would have presented that from --
18 it would not exceed the burst and failure rate of that
19 liner top packer.
20 COMMISSIONER CHMIELOWSKI: Right. Okay. If
21 there was a -- like in that well for example if there
22 was a production casing leak below the surface casing
23 shoe, would that power fluid in the annulus exceed the
24 frack pressure of the shoe. I guess we'd want to know
25 that LOTFIT pressure.
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
Computer Matrix, LLC Phone: 907-227-5312
Page 124
1 MR. WELLMAN: Sorry, could you repeat that one?
2 This is Taylor, sorry.
3 COMMISSIONER CHMIELOWSKI: I guess what we'd
4 want you to provide is if you could provide the LOTFIT
5 for I27 on that surface casing shoe.
6 Does Hilcorp have bottomhole pressure gauges in
7 all of its jet pump wells other than.....
8 MR. HAAKINSON: David Haakinson speaking. All
9 of our new installations we do install bottomhole
10 pressure gauges. Prior to that typically we install
11 bottomhole pressure gauges, but actively working, as
12 I've mentioned previously as -- they fail, you know,
13 which is why we don't run ESPs for that matter, but we
14 lose, you know, connection to our gauges over time. So
15 in essence the answer is we do not have bottomhole
16 pressure gauges actively working in all of our wells.
17 COMMISSIONER CHMIELOWSKI: Okay. But if you
18 were to work one over you would place it?
19 MR. HAAKINSON: Yes, it is our standard to put
20 bottomhole pressure gauges in.....
21 COMMISSIONER CHMIELOWSKI: Okay.
22 MR. HAAKINSON: .....for multiple reasons.
23 COMMISSIONER CHMIELOWSKI: Thank you. And then
24 I had a question, you know, you had talked about using
25 jet pumps extend field life because you can keep those
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
Computer Matrix, LLC Phone: 907-227-5312
Page 125
1 on longer and you recover more oil, right, so is -- has
2 there been any thought to or is -- you know, is there
3 any idea that you'd be increasing fluid flow through
4 the annulus and among the tubing and casing will
5 increase maybe corrosion long term and could that
6 shorten the well life because there's really no way to
7 work it over once that casing corroded at some point.
8 I mean, maybe you're saying that will never happen, but
9 just a consideration. Is there -- is there a scenario
10 where having so many jet pumps could shorten the field
11 life because the wells are not repairable?
12 MR. HAAKINSON: David Haakinson speaking.
13 Conversely I would say that jet pump power fluid is the
14 only artificial lift mechanism that has corrosion
15 inhibition on the annulus.
16 COMMISSIONER CHMIELOWSKI: So you think there's
17 no -- you're not seeing a scenario where it would
18 shorten field life?
19 MR. HAAKINSON: Not versus any other artificial
20 lift, no.
21 COMMISSIONER CHMIELOWSKI: Okay. And then the
22 final question I had -- well, just as a reminder is
23 information on wells that relate to CO390(a) and any
24 wells that were approved -- were their specific
25 completion approved in accordance with 390(a) and a
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
Computer Matrix, LLC Phone: 907-227-5312
Page 126
1 8.55 pound per gallon reservoir pressure and how those
2 pressures have been monitored over time.
3 And if there's any questions that you need more
4 clarification please contact our Staff if you need to
5 clarify or simplify something here.
6 MR. WELLMAN: Perfect. Thank you.
7 COMMISSIONER CHMIELOWSKI: Okay. Thank you.
8 That's all I have for now.
9 CHAIRMAN HUBER: Commissioner Wilson.
10 COMMISSIONER WILSON: Yeah, I have nothing
11 additional to what Commissioner Chmielowski had.
12 CHAIRMAN HUBER: Thank you. So I believe we've
13 exhausted our questions for the time being. We have
14 provided or have informed you of a couple additional
15 data needs, information needs, that we'd like you to
16 fulfill. I'm considering holding the record open for
17 two weeks. Does that sound like a reasonable time for
18 you to respond or from the data that you've heard now?
19 MR. WORTHINGTON: Aras Worthington. We tend to
20 agree, yes.
21 CHAIRMAN HUBER: Okay. So we will do that.
22 Today is the 9th. Two weeks from today would be
23 Tuesday the 26th; is that right?
24 COMMISSIONER CHMIELOWSKI: 23rd.
25 CHAIRMAN HUBER: 23rd, sorry. Tuesday the
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
Computer Matrix, LLC Phone: 907-227-5312
Page 127
1 23rd.
2 COMMISSIONER CHMIELOWSKI: And we'd just close
3 it at 5:00 p.m.
4 CHAIRMAN HUBER: We'll close at close of
5 business that day. If you run into something that's
6 become difficult for you to provide we still have or if
7 we have additional information requests that might take
8 more time then we still have the ability to move that
9 record closing data.
10 MR. WORTHINGTON: Yeah, Aras Worthington. Just
11 a question there. Can we just respond to your Staff in
12 email or -- okay.
13 COMMISSIONER CHMIELOWSKI: Yes. And you can
14 really have as much time as you want. So if you want
15 to change that date now we can do that otherwise we'll
16 keep it as stated.
17 CHAIRMAN HUBER: Any closing comments that
18 you'd like to offer, gentlemen?
19 MR. WORTHINGTON: Aras Worthington. No, we
20 don't.
21 CHAIRMAN HUBER: Excellent. Yeah, don't feel
22 compelled, I just wanted to make sure that you had the
23 opportunity.....
24 (Laughter)
25 CHAIRMAN HUBER: .....had the opportunity if
AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
Computer Matrix, LLC Phone: 907-227-5312
Page 128
1 you wanted to put something else on the record today.
2 And I believe we've completed our questions.
3 Thank you all for your attention and participation
4 today. Thanks to Staff and all of your Staff as well
5 that make all of these discussions and information
6 requests, et cetera, possible. We appreciate it.
7 It is about 1:56 this afternoon and with that
8 this hearing is adjourned.
9 (Hearing adjourned - 1:56 p.m.)
10 (END OF PROCEEDINGS)
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AOGCC 5/9/2023 ITMO: JET PUMP USE IN THE MILNE POINT UNIT
Docket No. CO 23-004
329 F Street, Ste. 222., Anch. AK 99501 Fax: 907-243-1473 Email: sahile@gci.net
Computer Matrix, LLC Phone: 907-227-5312
1 TRANSCRIBER'S CERTIFICATE
2 I, Salena A. Hile, hereby certify that the
3 foregoing pages numbered 02 through 129 are a true,
4 accurate, and complete transcript of proceedings in
5 Docket No.: CO 23-004, transcribed under my direction
6 from a copy of an electronic sound recording to the
7 best of our knowledge and ability.
8
9
_______________ _______________________________
10 DATE SALENA A. HILE, (Transcriber)
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Jet Pumps at Milne Point Unit
Public Hearing to Develop or Modify a Conservation Order to Assure Integrity of
Wells at MPU Configured With Conventional Jet Pump Completions
Jet Pumps Completions
3 General Configurations
Forward
or ‘Reverse’
produce up
tubing, power
fluid down IA
Relevant Regulations & Conservation Order for MPU
•20 AAC 25.200 (d) Production Equipment
•(d) All producing wells capable of unassisted flow must be completed with downhole production equipment consisting of suitable tubing and a packer that effectively isolate the tubing-casing annulus from fluids being produced, unless the commission specifically approves production through the annulus to increase flow rate without jeopardizing ultimate recovery from the well.
•CO390A (2015 –Hilcorp MPU) relevant as it provides alternate guidelines to the regulation 200 (d). This Conservation Order (CO) is specific to Milne Point Unit for Electric Submersible Pump (ESP) packerless completions.
•Allows ESP packerless completions for BHP less than 8.55 ppg equivalent fluid gradient
•#8 Findings: Packerless ESP completions (Kuparuk Oil Pool) have multiple casing strings w/ monitorableannulusat the surface shoe OA
•#12 Findings: Hilcorp voluntarily agreed by letter to manage reservoir pressures to seawater gradient equivalent of 8.55 ppg
•CO390A requires packers on ESP completions where BHP > 8.55 ppg equivalent fluid gradient
•20 AAC 25.265(d) Relates to the MPU F pad well safety valve systems. Requires (F-pad) wells capable of unassisted flow to surface to have a functioning sub surface safety valve (SSSV)
•(d) In addition to meeting the other requirements of this section, the following wells must be equipped with a fail-safe automatic surface controlled subsurface safety valve capable of preventing an uncontrolled flow of fluid from the well's tubing:
•(2) a well that is capable of unassisted flow of hydrocarbons to surface and that has an onshore surface location that is 660 feet or less of: (F)a coast line measured at mean high water
Conventional JPs –Forward & Reverse
•Reverse circulation conventional jet pump
•Containment of 3000+ psi power fluid relies on single barrier (IC) to overburden below the surface casing shoe.
•Difficult to monitor for IC leak to formation w/o a tieback (i.e., monitorable annulus)
•MPU I-27 pressurization demonstrated the value of monitorable OA
•An IC leak below surface casing could cause fractures in the overburden
•Opened sliding sleeve (via slickline) compromises/bypasses packer barrier function
•Forward circulation conventional jet pump
•Utilization of the IC as a flow path for possible corrosive and scale laden fluids with no ability to measure degradation without a RWO.
•IC is a single barrier to the overburden. Industry commonly suggests IC should be utilized as a secondary barrier for produced fluids.
•Opened sliding sleeve (via slickline) compromises packer barrier function
•Wells that flow to surface and that bypass the packer through jet orifice and open sliding sleeve conflict with:
•20 AAC 25.200(d) and CO 390A
•How does Hilcorp assure wells with high BHP swings induced by injection stay below 8.55 ppg?
•20 AAC 25.265 (d) MPU F pad wells capable of unassisted flow of hydrocarbons to surface must have a functioning sub surface safety valve.
•AOGCC routinely receives Hilcorp MPU sundry requests with BHP > 8.55 ppg. CO390A #12 describes a Hilcorp commitment to manage BHP to a water gradient.
•Drill and install conductor
•Drill Surface hole
•Install and cement surface casing
•Drill production hole
•Install and cement production
casing
•Install tubing and packer
Conductor
Surface Casing
Production Casing
Reservoir Rock
Well Construction
3
•Perforate the reservoir rock
•Produce fluids up the tubingConductor
Surface Casing
Production Casing
Reservoir Rock
Well Completion
4
Tubing and Packer Completion
•Tubing and packer protect
casing from produced
fluid and high pressures
•Tubing helps the well flow
and isolates produced
fluids from the casing
•Tubing is replaceable with
a rig workover, casing is
patchable and can be
“scabbed” but generally
not replaced
Conductor
Surface Casing
Production Casing
Reservoir Rock
5
Schematic credit Slideshare
Production Packer
6
•Artificial lift used to increase production rates and/or increase recoverable reserves by extending the well’s flowing lifespan
•Types of artificial lift used by Hilcorp in Ak
–Rod Pump/Pumping units
–Gas Lift
–Electric Submersible Pumps (ESP)
–Jet Pump (Hydraulic Lift)
Artificial Lift
7
PROS:
•Very few moving parts down hole
•Moves lots of fluid
•High gas volume tolerant
•Sand/solids tolerant
•Corrosive fluids tolerant
CONS:
•Need natural gas
•Unable to pull reservoir pressure
very low
Gas Lift
8Schematic credit Sonoecho
PUMP
Motor
PROS
•Moves high volumes of fluid (rate)
•No need for natural gas source
•Ability to pull the reservoir pressure down
low
CONS
•Expensive to install and operate
•Failures are expensive to fix
•Failures require a workover rig
•Failures typically take weeks or months
to fix
•Need electrical power or a generator
•Not sand/solids/gas tolerant
Schematic Credit SLB
Electric Submersible Pump (ESP)
9
Schematic credit: Cranfield University
Power
Fluid
Produced Fluid
Nozzle Power Fluid and
Produced Fluid Mix
Throat Diffuser
Produced Fluid +
Power Fluid
Jet Pump
10
PROS
•Moves high volumes of fluid (rate)
•Ability to pull reservoir pressure down low
•No moving parts downhole
•Power fluid pump can run on electricity or natural gas
•Nozzle is easy and inexpensive to replace
•Nozzle can be replaced with in days
CONS
•Facility equipment is expensive
•High pressure liquids in the system (3,500+ psi)
•Solids can plug up or cut out nozzle
Schematic credit “Large Scale Jet Pump Performance Optimization in a Viscous Oil Field”
Jet Pump Completions
11
Schematic credit Production
Technology
Jet Pump –Reverse Circulating
12
Schematic credit Production
Technology
Jet Pump –Forward Circulating
13
•MPU Overview
•Production History
•Facility Constraints
•Artificial Lift Selection
•Jet Pump Operation
•Outlook
15
Topics
Milne Point History
–Discovered in 1969 by Conoco
–Delineation from 1980-1984
–Initial production in 1985
–BP Acquired the field in 1994
–Hilcorp acquired 50% and Operatorship in 2014
–Hilcorp acquired full 100% in 2020
–4th largest producing field on North Slope
Milne Point Location
16
Geology Overview
17
MPU Production Profile
18
Facility Setup
19
KEY
Power Fluid
Booster Pump
Future Power Fluid
Separation
Hydraulic Constraints
Gas Lift Lines
Water Injection Lines
On Pad Separation Design
20
Artificial Lift at MPU
•Hilcorp has built off Arco and BP best practices to
maximize rate and resource recovery
–Arco began experimenting with jet pumps in 1990
–First jet pump install at MPU was in 2001
–MPU and GKA have many jet pump completions installed in each
field for over the last twenty years
•ESPs
–Driving innovation of TTC pump equipment.
–Driving PCP innovation installs in Alaska
–Installed vendor’s trial gas separator for gas breakout test
21
Artificial Lift at MPU
•Artificial Lift Selection
–ESPs for new Kuparuk wells >1500 BOPD
–Jet pumps preferred for all Schrader, Ugnu, Sag wells
–Jet pumps preferred for all Kuparuk wells >90% WC
–Jet pumps have upside for WAG injection and CTD setups
•Jet Pumps
–MPU S-203 (Ugnu Producer) has >99% uptime on jet pump
•Cumulative production: 273 MBO in 3.5 years
–MPU I-11 FWD Circulating JP produces 8 MBO per month
•Cumulative production from 2001-2014: 55 MBO
22
JP: 15 / 0
ESP: 23 / 6
JP: 2 / 0
ESP: 13 / 11
JP: 2 / 0
ESP: 2 / 3
JP: 1 / 0
ESP: 3 / 1
JP: 3 / 3
GL: 6 / 2
ESP: 2 / 3
JP: 2 / 0
ESP: 3 / 1
JP: 7 / 0
ESP: 5 / 6
JP: 5 / 0
GL: 1 / 0
JP: 10 / 1
JP: 5 / 0
GL: 3 / 8
ESP: 2 / 8
JP: 0 / 1
ESP: 0 / 4
JP: 4 / 0
Artificial Lift
Artificial Lift Uptime
–ESP: 56% of 85 wells
–Gas Lift: 50% of 20 wells
–Jet Pump: 91% of 56 wells 23
Safety Valve Systems
•Two SSVs are installed on all jet pumps at MPU
–BP driven and carried through all of our installs
–Only artificial lift other than ESPs with surface jumpers to have IA
shut down system
–Exceeds 20 AAC 25.265 well safety system requirements
•We install to protect our facilities and to prevent/reduce
injection
–Power fluid SSVs are setup to shut-down upon production SSV
closure
–Power fluid has high and low pressure shutdowns
24
Jet Pump Operation
25
IA Pressure
<1% Band
PF Rate
2% Band
BHP Gauge
3500
3000
5000
0400
900
MPU Outlook
•Production Outlook
–Hilcorp plans to grow MPU oil production by another 50-100%
–Jet pumps and on pad power fluid separation are integral to that
plan.
–Other fields and operators are interested in our artificial lift and on-
pad separation learnings.
•Safety
–MPU has proven that they can and will operate jet pump
producers safely.
–Jet pumps reduce our well-work and personnel safety exposure.
–Over twenty years of experience without a well control incident.
–All while increasing rate and EUR.
26
ESP Abandonment Rate
JP Abandonment Rate
Incremental Recovery
Type Well Decline Curve
Image from: http://www.pandai.com/faq/Decline_Curve_Analysis.Fekete.pdf
•Abandonment Rate (Qab)
•(Discounted future cashflow / pump replacement cost) < ROI multiple target
•Pump Replacement Costs
•ESP : ~$500 -$1500M every 3 -4 years
•Jet Pump (JP) : ~$5 -$10M every 3 -4 months
•Incremental Recovery = Cumulative Oil at ESP Qab –Cumulative Oil at JP Qab
•MPU average estimated incremental recovery per well = 65 MBO
Incremental Recovery –JP vs ESP
28
Incremental Recovery –JP vs ESP
Milne Point Unit
•~60 Active Jet Pump wells –4 MMBO
•Estimate 50 –200+ future development wells –3.5 to 13 MMBO
•Total estimated 7.5 –17 MMBO of additional recovery
Future Development Wells
Active Jet Pump Wells
29
20 AAC 25.200 (d)
“All producing wells capable of unassisted flow must be completed
with downhole production equipment consisting of suitable tubing and
a packer that effectively isolate the tubing-casing annulus from fluids
being produced,unless the commission specifically approves
production through the annulus to increase flow rate without
jeopardizing ultimate recovery from the well.”
31
Jet Pump –Reverse Circulating
Schematic credit Production
Technology
32
Jet Pump –Forward Circulating
Schematic credit Production
Technology
33
Proposal
All Jet Pump Completions
•All jet pump wells will have the following:
1.Surface Safety Valves (SSV’s)installed on the power-fluid and
production sides.
2.Both SSV’s will have high and low pressure shut-downs.
3.Power-fluid SSV to trip closed on the actuation of the production
SSV shutdown.
34
Proposal
Reverse Circulating Jet Pumps
•For all wells:
•Mechanical Integrity Test of the production casing quadrennially to the
power fluid pressure.
•For wells with a reservoir pressure exceeding 8.55ppg either/or of the following
conditions are to be met:
•3 months to adjust injection/withdrawal to reduce the reservoir pressure
below 8.55ppg.Additional time to reduce reservoir pressure to be at
discretion of AOGCC staff based on observed pressure decline.
•Qualification of a 2nd barrier that is tested upon installation.
Forward Circulating Jet Pumps
•For all wells:
•Mechanical Integrity Test of the production casing biennially to the power
fluid pressure.
•For wells with a reservoir pressure exceeding 8.55ppg:
•Qualification of a 2nd barrier that is tested upon installation.35
MARTIN N. WALTERS
(907) 854-9949 | martinwalters@gci.net
SUMMARY
A Petroleum Engineer with over thirty years of broad experience in production operations, well operations,
reservoir engineering, and production engineering. I have also coordinated drilling and workover programs and
have extensive experience corresponding and working with regulatory agencies such as AOGCC, BOEM, Texas RRC,
and EPA.
PROFESSIONAL EXPERIENCE
MNW Consulting, Anchorage, AK
SOLE PROPRIETOR 2017 - Present
Provide upstream operations and engineering support to the Alaska oil and gas industry.
§ Specialize in IADC Wellsharp well control instruction and certification
ConocoPhillips, Anchorage, AK
WELL INTEGRITY SUPERVISOR 2007 - 2015
Accountable for managing the well integrity program for the company’s Alaska assets including Kuparuk, Alpine,
Tyonek, and Beluga Fields.
§ Provided daily work direction to and oversight of crew performance on downhole/wellhead integrity
diagnostic surveys, well excavations to repair surface casings, and P&A’s.
§ Evaluated survey and test data, made recommendations, developed procedures, and submitted permits
accordingly.
§ Drafted or participated in the development of Alaska Oil And Gas Conservation Commission documents
such as Injection and Conservation Orders, Sundries, and Administrative Approvals.
STAFF DRILLSITE ENGINEER 2004 - 2007
Accountable for managing daily engineering duties for three drill sites in the Kuparuk Field plus the Tabasco and
Tarn satellites on the North Slope of Alaska.
§ Planned and coordinated projects, well performance analysis and monitoring, ESP and gaslift optimization,
and waterflood and reservoir maintenance.
§ Served as project coordinator on a 7 well drilling program in Tarn Field that included oversight of drilling,
completion, and infrastructure engineers to ensure proper design and timely and efficient project
execution.
ConocoPhillips, Houston, TX
SENIOR PRODUCTION FOREMAN/ENGINEER 2002 - 2004
Accountable for managing a $17 MM annual budget and directing daily operations for four offshore producing
fields.
§ Led a multi-disciplined work force comprised of systems, maintenance, operations, construction, and well
servicing through use of field teamwork, office collaboration, computerized maintenance management and
continuous budget scrutiny.
§ Performed engineering, planning and execution of multi-well optimization and recompletion programs in
two fields to improve economics and disposition potential.
Conoco, Lafayette, LA
PRODUCTION ENGINEER 2001 - 2002
Responsible for field production management and optimization for GC52/184 fields in deepwater Gulf of Mexico.
Monitored new and existing well performance and optimized same.
§ Designed pressure surveys that included pressure transient, inflow, and nodal analysis to recommend rate
increases through choke increases, gaslift installations, and acid stimulations.
§ Justified installation of a reciprocating gas compressor and automatic paraffin cutting systems to improve
field economics
§ Evaluated well workovers to improve field depletion economics
PRODUCTION ENGINEER 1999 - 2000
Responsible for new completion designs, recompletions, remedial workovers, P&A’s, field production management
and optimization for Rincon Field near McAllen, TX. Assisted in performing multiple offshore completions for
EW305 field in the Gulf of Mexico. Demonstrated skills include well inflow and nodal analysis, tubing conveyed
underbalanced perforating design, gravel pack design, and artificial lift design (gaslift, ESP, beam pump, jet pump).
§ Served as project coordinator on eight well drilling programs in Rincon Field that included oversight of
drilling, completion, and infrastructure engineers to ensure proper design and timely and efficient project
execution.
RESERVOIR ENGINEER 1998 - 1999
Responsible for drilling and recompletion prospect generation and evaluation for GI43 field in the Gulf of Mexico.
Demonstrated skills include reservoir simulation, material balance, volumetrics, pressure transient analysis, nodal
analysis, open- and cased-hole log interpretation, economics, and decision and risk analysis.
PREVIOUS PROFESSIONAL EXPERIENCE
Conoco, Inc., Lafayette, LA
RESERVOIR ENGINEERING TECHNICIAN
Responsible for database maintenance, decline curve analysis, and development of field reservoir depletion plans
for GI41/43/47 fields in the Gulf of Mexico.
PRODUCTION SPECIALIST
Responsible for supervision of slickline, electric line, coiled tubing, P&A’s, wellhead repair, and miscellaneous
workover, completion, well servicing and pumping projects for GI41/43/47 fields in the Gulf of Mexico.
HSE SPECIALIST
Responsible for MMS, USCG, EPA, DOT and other assorted regulatory correspondence and compliance for
MP/SP/EW field in the Gulf of Mexico.
PRODUCTION OPERATOR
Accountable for operation, maintenance, and optimization of oil and gas production facilities in VR119, VR22, and
WC66 fields in the Gulf of Mexico.
EDUCATION and PROFESSIONAL CERTIFICATIONS
Bachelor of Science in Petroleum Engineering, Louisiana State University, Baton Rouge, LA
Registered Engineer-In-Training
IADC Certified Well Control Supervisor
Formerly Held Certifications:
USCG Offshore Installation Manager
USCG Ballast Control Operator
PSS T-2 Certified
PROFESSIONAL AFFILIATIONS
Society of Petroleum Engineers
3
Revised Notice of Public Hearing
STATE OF ALASKA
ALASKA OIL AND GAS CONSERVATION COMMISSION
Re: Docket Number: CO-23-004
Completion and operation of wells with jet pumps in the Milne Point Unit
The Alaska Oil and Gas Conservation Commission (AOGCC) on its own motion, pursuant
to 20 AAC 25.540, calls a public hearing to evaluate the completion and operation of wells
with jet pumps1 in the Milne Point Unit on the North Slope. Hilcorp Alaska, LLC plans to
increase the use of jet pumps in the Milne Point Unit, and AOGCC anticipates that
the creation of a new Conservation Order will be necessary to outline the rules for design
and operation of jet pump completions.
The AOGCC is rescheduling the public hearing on this matter from May 11, 2023, to May
9, 2023 at 10:00 a.m. The hearing, which may be changed to fully virtual, if necessary,
will be held in the AOGCC hearing room located at 333 West 7th Avenue, Anchorage, AK
99501. The audio call in information is (907) 202 7104 Conference ID: 754 503 377#.
Anyone who wishes to participate remotely using MS Teams video conference should
contact Ms. Carlisle at least two business days before the scheduled public hearing
to request an invitation for MS Teams.
In addition, written comments may be submitted to the AOGCC at 333 West 7th Avenue,
Anchorage, AK 99501 or samantha.carlisle@alaska.gov. Comments must be received no
later than the conclusion of the May 9, 2023, hearing.
If, because of a disability, special accommodations may be needed to comment or attend
the hearing, contact Samantha Carlisle, at (907) 793-1223, no later than May 4, 2023.
Brett W. Huber, Sr.
Chair, Commissioner
1 A jet pump is a pump that operates on the principle of a high-pressure fluid jet and the venturi effect.
Brett W. Huber,
Sr.
Digitally signed by Brett W.
Huber, Sr.
Date: 2023.03.09 12:04:00 -09'00'
From:Carlisle, Samantha J (OGC)
To:AOGCC_Public_Notices
Subject:[AOGCC_Public_Notices] Revised Public Hearing Notice, CO-23-004 (MPU)
Date:Thursday, March 9, 2023 12:15:20 PM
Attachments:CO-23-004 Public Hearing Notice MPU Jet Pumps revised.pdf
Docket Number: CO-23-004
Completion and operation of wells with jet pumps in the Milne Point Unit
Samantha Carlisle
AOGCC Special Assistant
Alaska Oil and Gas Conservation Commission
333 West 7th Avenue
Anchorage, AK 99501
(907) 793-1223
__________________________________
List Name: AOGCC_Public_Notices@list.state.ak.us
You subscribed as: samantha.carlisle@alaska.gov
Unsubscribe at:
https://list.state.ak.us/mailman/options/aogcc_public_notices/samantha.carlisle%40alaska.gov
Bernie Karl
K&K Recycling Inc.
P.O. Box 58055
Fairbanks, AK 99711
mailed 3/9/23
Adam Garrigus being first duly sworn on oath
deposes and says that she is a representative of
the Anchorage Daily News, a daily newspaper.
That said newspaper has been approved by the
Third Judicial Court, Anchorage, Alaska, and
it now and has been published in the English
language continually as a daily newspaper in
Anchorage, Alaska, and it is now and during all
said time was printed in an office maintained at
the aforesaid place of publication of said news-
paper. That the annexed is a copy of an adver-
tisement as it was published in regular issues
(and not in supplemental form) of said news-
paper on
AFFIDAVIT OF PUBLICATION
______________________________________
Notary Public in and for
The State of Alaska.
Third Division
Anchorage, Alaska
MY COMMISSION EXPIRES
______________________________________
03/12/2023
and that such newspaper was regularly distrib-
uted to its subscribers during all of said period.
That the full amount of the fee charged for the
foregoing publication is not in excess of the rate
charged private individuals.
Signed________________________________
Subscribed and sworn to before me
this 13th day of March 2023.
Account #: 100869 ST OF AK/AK OIL AND GAS CONSERVATION COMMISSION333 W. 7TH AVE STE 100, ANCHORAGE, AK 99501
Order #: W0036619 Cost: $219.1
Revised Notice of Public HearingSTATE OF ALASKAALASKA OIL AND GAS CONSERVATION COMMISSION
Re: Docket Number: CO-23-004Completion and operation of wells with jet pumps in the Milne
Point Unit
The Alaska Oil and Gas Conservation Commission (AOGCC) on its own motion, pursuant to 20 AAC 25.540, calls a public hearing to
evaluate the completion and operation of wells with jet pumps[1]
in the Milne Point Unit on the North Slope. Hilcorp Alaska, LLC plans to increase the use of jet pumps in the Milne Point Unit, and AOGCC anticipates that the creation of a new Conservation Order
will be necessary to outline the rules for design and operation of
jet pump completions.
The AOGCC is rescheduling the public hearing on this matter from May 11, 2023, to May 9, 2023 at 10:00 a.m. The hearing, which may
be changed to fully virtual, if necessary, will be held in the AOGCC
hearing room located at 333 West 7th Avenue, Anchorage, AK 99501. The audio call in information is (907) 202 7104 Conference ID: 754 503 377#. Anyone who wishes to participate remotely
using MS Teams video conference should contact Ms. Carlisle at
least two business days before the scheduled public hearing to request an invitation for MS Teams.
In addition, written comments may be submitted to the AOGCC
at 333 West 7th Avenue, Anchorage, AK 99501 or samantha.
carlisle@alaska.gov. Comments must be received no later than the conclusion of the May 9, 2023, hearing.
If, because of a disability, special accommodations may be needed
to comment or attend the hearing, contact Samantha Carlisle, at (907) 793-1223, no later than May 4, 2023.
Brett W. Huber, Sr.Chair, Commissioner
Pub: Mar. 12, 2023
STATE OF ALASKA
THIRD JUDICIAL DISTRICT
2024-07-14
Document Ref: SSXOO-A8VTG-QG7H4-SZZU3 Page 35 of 44
2
Notice of Public Hearing
STATE OF ALASKA
ALASKA OIL AND GAS CONSERVATION COMMISSION
Brett W. Huber, Sr.
Chair, Commissioner
1 A jet pump is a pump that operates on the principle of a high-pressure fluid jet and the venturi effect.
Re: Docket Number: CO-23-004
Completion and operation of wells with jet pumps in the Milne Point Unit
The Alaska Oil and Gas Conservation Commission (AOGCC) on its own motion, pursuant
to 20 AAC 25.540, calls a public hearing to evaluate the completion and operation of wells
with jet pumps 1 in the Milne Point Unit on the North Slope. Hilcorp Alaska, LLC plans to
increase the use of jet pumps in the Milne Point Unit, and AOGCC anticipates that the
creation of a new Conservation Order will be necessary to outline the rules for design and
operation of jet pump completions.
The AOGCC has scheduled a public hearing on this matter for May 11, 2023, at 10:00 a.m.
The hearing, which may be changed to fully virtual, if necessary, will be held in the
AOGCC hearing room located at 333 West 7th Avenue, Anchorage, AK 99501. The audio
call in information is (907) 202 7104 Conference ID: 754 503 377#. Anyone who wishes
to participate remotely using MS Teams video conference should contact Ms. Carlisle at
least two business days before the scheduled public hearing to request an invitation for MS
Teams.
In addition, written comments may be submitted to the AOGCC at 333 West 7th Avenue,
Anchorage, AK 99501 or samantha.carlisle@alaska.gov. Comments must be received no
later than the conclusion of the May 11, 2023, hearing.
If, because of a disability, special accommodations may be needed to comment or attend
the hearing, contact Samantha Carlisle, at (907) 793-1223, no later than May 8, 2023.
Brett W. Huber, Sr. Digitally signed by Brett W.
Huber, Sr.
Date: 2023.03.08 12:33:45 -09'00'
From:Carlisle, Samantha J (OGC)
To:AOGCC_Public_Notices
Subject:[AOGCC_Public_Notices] Public Hearing Notice, OTH-23-006 (MPU)
Date:Wednesday, March 8, 2023 12:38:23 PM
Attachments:OTH-23-006 Public Hearing Notice MPU Jet Pumps.pdf
Docket Number: CO-23-006
Completion and operation of wells with jet pumps in the Milne Point Unit
Samantha Carlisle
AOGCC Special Assistant
Alaska Oil and Gas Conservation Commission
333 West 7th Avenue
Anchorage, AK 99501
(907) 793-1223
__________________________________
List Name: AOGCC_Public_Notices@list.state.ak.us
You subscribed as: samantha.carlisle@alaska.gov
Unsubscribe at:
https://list.state.ak.us/mailman/options/aogcc_public_notices/samantha.carlisle%40alaska.gov
Bernie Karl
K&K Recycling Inc.
P.O. Box 58055
Fairbanks, AK 99711
mailed 3/9/23
1
Jet Pumps at MPU
Regulatory Concerns
Design
•3000 + psi power fluid. (Produced water)
•Forward Circulating
•Hilcorp wants to use IC as flow path for return power fluid and produced fluids
•SSV required on both tubing and A annulus
•Hilcorp claims this style could utilize the power fluid pressure to shift/hold open a sleeve to allow production (Steelhead legacy with poor performance. Currently not utilized at MPU.)
•Reverse circulating
•Hilcorp want to use IC as flow path for 3000+ psi power fluid
•SSV required on both tubing and A annulus
•Currently both designs negate the production packer as sliding sleeve above packer is open and in communication with reservoir
Relevant Regulations
•20 AAC 25.200 Requires a packer for a well failing a ‘no-flow’ test
•20 AAC 25.265(d) Requires MPU F pad well that fail a ‘no-flow’ test
to have an SSSV
•MPU F pad has a history of pressure build up above a water gradient.
•Hilcorp suggests development wells only need to pass an initial ‘no-
flow’ test.
Current Concerns
•3000+ psi power fluid relies on single barrier (IC) to environment.
•A leak below surface casing shoe would fracture formations and possible leak to surface.•Precedent set with gas lift wells that would do the same. 1000’s of gas lift wells on north slope.
•Utilization of the IC as a path for possibly corrosive and scale laden fluids. IC is a single barrier and industry standards suggest it should be utilized as a secondary barrier for produced fluids.
•Will Hilcorp assure that MPU F pad wells that pass an initial ‘no-flow’ test continue to pass a ‘no-flow’ test over well life?
•If MPU F pad has a surface failure and the well is capable of flow, there will be no downhole shut off.
•MPU F pad wells that fail a ‘no-flow’ test.
•How to allow flow with no SSSV?
Hilcorp proposing
•Claims they can detect leaks
•Many wells have tie-backs which have a monitorable annulus, but
claim tie-backs do not fit with their ‘operating guidelines’
•Want to discard their downhole pressure monitor. Claim it is
unnecessary.
•Quadrennial MITs
Compliance issues resolved
•SSVs with pilot trip pressures generally resolved.
•Reverse circulating jet pumps (excluding MPU F pad) generally follow industry guidelines with the exception of a single barrier on high pressure power fluid below surface casing shoe that could fracture formation.
•No issues with tie-backs, except SSSV at MPU F pad.
Unresolved:
•Forward circulating jet pumps approved, but significant concerns about corrosion of produced fluids on IC secondary barrier.
•Are corrosion inhibitors needed for power fluids?