Department of Commerce, Community, and Economic Development
Alaska Oil and Gas Conservation Commission
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HomeMy WebLinkAbout221-081
Post Office Box 244027
Anchorage, AK 99524-4027
3800 Centerpoint Drive
Suite 1400
Anchorage, AK 99503
Phone: (907) 564-4891
06/01/2023
Mr. Mel Rixse
Alaska Oil and Gas Conservation Commission
333 West 7th Avenue, Suite 100
Anchorage, Alaska 99501
Re: Prudhoe Bay Surface Casing by Conductor Annulus Top-offs of Cement, Corrosion Inhibitor
through 6/1/2023.
Dear Mr. Rixse,
Enclosed please find a copy of a spreadsheet with a list of Prudhoe Bay wells that were topped-off
with cement, corrosion inhibitor in the surface casing by conductor annulus through 6/1/2023.
Cement top-offs are executed as needed to mitigate the void space left at surface by minor cement
fallback during the primary surface casing by conductor cement job. The remaining void space
between the top of the cement and the top of the conductor is filled with a heavier than water
corrosion inhibitor to reduce the risk of external surface casing corrosion. The attached
spreadsheets include the well names, API and PTD numbers, treatment dates and volumes.
As per previous agreement with the AOGCC, this letter and spreadsheet serve as notification that
the treatments took place and meet the requirements of form 10-404 Report of Sundry Operations.
If you have any additional questions, please contact me at 564-4891 or
oliver.sternicki@hilcorp.com.
Sincerely,
Oliver Sternicki
Well Integrity Supervisor
Hilcorp North Slope, LLC
Hilcorp North Slope LLC.Surface Casing by Conductor Annulus Cement, Corrosion Inhibitor Top-offReport of Sundry Operations (10-404)06/01/2023Well NamePTD #API #Initial top of cement (ft)Vol. of cement pumped (gal)Final top of cement (ft)Cement top off date Corrosion inhibitor (gal)Corrosion inhibitor/ sealant dateL-2072210815002923702003.371.31/23/2023123/1/2023L-2312230105002923746003.003.0-393/27/2023M-111810575002920589002.602.6-105/29/2023M-311920325002922256001.501.5-165/29/2023M-331941165002922504001.301.3-145/29/2023N-171830095002920898001.201.2-115/30/2023N-18A2081755002920906010.500.5-65/30/2023N-21A1961965002921342011.001.0-85/30/2023N-272071045002923365000.500.5-45/30/2023N-292141105002923521002.302.3-245/30/2023N-31215175500292356000-0--205/30/2023V-2342220045002923707006.3210.91/23/2023243/1/2023W-2412221545002923741002.502.5-263/1/2023Z-121891025002921977000.700.7-45/23/2023Z-34212061500292346900-0--155/27/2023Z-402111735002923462000.700.7-65/27/2023Z-46A2052035002923280010.500.5-35/23/2023Z-502120015002923463000.500.5-35/27/2023Z-662121955002923482000.700.7-85/27/2023Z-116211124500292345500-0--175/27/2023Z-210204181500292322600-0--125/27/2023Z-2292221045002923726003.8361.23/5/2023363/27/2023L-2072210815002923702003.371.31/23/2023123/1/2023
Kyle Wiseman Hilcorp Alaska, LLC
Geotechnician 3800 Centerpoint Drive, Suite 1400
Anchorage, AK 99503
Tele: (907) 777-8337
E-mail: Kyle.Wiseman@hilcorp.com
Please acknowledge receipt by signing and returning one copy of this transmittal.
Received By: Date:
Date: 11/29/2022
To: Alaska Oil & Gas Conservation Commission
Natural Resource Technician
333 W 7th Ave Suite 100
Anchorage, AK 99501
SFTP DATA TRANSMITTAL T#20221129
Well API #PTD #Log Date Log
Company Log Type AOGCC
Eset#
PBU L-207 50029237020000 221081 10/30/2022 Halliburton PPROF
PBU L-218 50029232720000 205119 11/2/2022 Halliburton IPROF
PBU V-137 50029235820000 217134 10/30/2022 Halliburton IPROF
PBU D-31B 50029226720200 212168 7/5/2022 Baker SPN-PNC3D
Please include current contact information if different from above.
By Meredith Guhl at 11:38 am, Nov 29, 2022
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PBU L-207 50029237020000 221081 10/30/2022 Halliburton PPROF
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Date: 2022.11.29 11:42:50 -09'00'
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DATA SUBMITTAL COMPLIANCE REPORTAPI No.50-029-23702-00-00Well Name/No.PRUDHOE BAY UN ORIN L-207Completion Status1-OILCompletion Date12/15/2021Permit to Drill2210810OperatorHilcorp North Slope, LLCMD14720TVD4229Current Status1-OIL2/25/2022UICNoWell Log Information:DigitalMed/FrmtReceivedStart StopOH /CHCommentsLogMediaRunNoElectr DatasetNumberNameIntervalList of Logs Obtained:ROP, AGR, DGR, ABG, EWR, ADR MD & TVDNoNoYesMud Log Samples Directional SurveyREQUIRED INFORMATION(from Master Well Data/Logs)DATA INFORMATIONLog/DataTypeLogScaleDF12/16/20217139 14682 Electronic Data Set, Filename: PBU L-207 ADR Quadrants All Curves.las36085EDDigital DataDF12/16/2021 Electronic File: PBU L-207 Geosteering EOW Plot.emf36085EDDigital DataDF12/16/2021 Electronic File: PBU_L-207_Geosteering.dlis36085EDDigital DataDF12/16/2021 Electronic File: PBU_L-207_Geosteering.ver36085EDDigital DataDF12/16/2021 Electronic File: PBU L-207 Geosteering EOW Plot.pdf36085EDDigital DataDF12/16/2021 Electronic File: PBU L-207 Geosteering End of Well Report.pdf36085EDDigital DataDF12/16/2021 Electronic File: PBU L-207 Post-Well Geosteering X-Section Summary.pdf36085EDDigital DataDF12/16/2021 Electronic File: PBU L-207 Geosteering EOW Plot150dpi.tif36085EDDigital DataDF12/16/2021 Electronic File: PBU L-207 Geosteering EOW Plot300dpi.tif36085EDDigital Data0 0 2210810 PRUDHOE BAY UN ORIN L-207 LOG HEADERS36085LogLog Header ScansDF12/16/2021140 14720 Electronic Data Set, Filename: PBU L-207 LWD Final.las36086EDDigital DataDF12/16/2021 Electronic File: PBU L-207 LWD Final MD.cgm36086EDDigital DataDF12/16/2021 Electronic File: PBU L-207 LWD Final TVD.cgm36086EDDigital DataDF12/16/2021 Electronic File: L-207_Definitive Survey Report.pdf36086EDDigital DataDF12/16/2021 Electronic File: L-207_Definitive Survey Report.txt36086EDDigital DataFriday, February 25, 2022AOGCC Page 1 of 3PBU L-207 LWDFinal.las
DATA SUBMITTAL COMPLIANCE REPORTAPI No.50-029-23702-00-00Well Name/No.PRUDHOE BAY UN ORIN L-207Completion Status1-OILCompletion Date12/15/2021Permit to Drill2210810OperatorHilcorp North Slope, LLCMD14720TVD4229Current Status1-OIL2/25/2022UICNoWell Cores/Samples Information:ReceivedStart Stop CommentsTotalBoxesSample SetNumberNameIntervalDF12/16/2021 Electronic File: L-207_Definitive Surveys.xlsx36086EDDigital DataDF12/16/2021 Electronic File: L-207_GIS.txt36086EDDigital DataDF12/16/2021 Electronic File: L-207_Plan.pdf36086EDDigital DataDF12/16/2021 Electronic File: L-207_VSec.pdf36086EDDigital DataDF12/16/2021 Electronic File: PBU L-207 LWD Final MD.emf36086EDDigital DataDF12/16/2021 Electronic File: PBU L-207 LWD Final TVD.emf36086EDDigital DataDF12/16/2021 Electronic File: PBU L-207 LWD Final MD.pdf36086EDDigital DataDF12/16/2021 Electronic File: PBU L-207 LWD Final TVD.pdf36086EDDigital DataDF12/16/2021 Electronic File: PBU L-207 LWD Final MD.tif36086EDDigital DataDF12/16/2021 Electronic File: PBU L-207 LWD Final TVD.tif36086EDDigital Data0 0 2210810 PRUDHOE BAY UN ORIN L-207 LOG HEADERS36086LogLog Header ScansDF2/24/202214730 7000 Electronic Data Set, Filename: PBU_L-207_PPROF_12JAN22_MainPass.las36374EDDigital DataDF2/24/20227000 14729 Electronic Data Set, Filename: PBU_L-207_PPROF_12JAN22_ProcessedLog.las36374EDDigital DataDF2/24/20220 335 Electronic Data Set, Filename: PBU_L-207_PPROF_12JAN22_stop-14703ft.las36374EDDigital DataDF2/24/20220 336 Electronic Data Set, Filename: PBU_L-207_PPROF_12JAN22_stop-8668ft.las36374EDDigital DataDF2/24/20220 346 Electronic Data Set, Filename: PBU_L-207_PPROF_12JAN22_stop-8688ft.las36374EDDigital DataDF2/24/2022 Electronic File: PBU_L-207_PPROF_12JAN22.pdf36374EDDigital DataDF2/24/2022 Electronic File: PBU_L-207_PPROF_12JAN22_img.tiff36374EDDigital DataDF2/24/2022 Electronic File: PBU_L-207_PPROF_12JAN22_Report.pdf36374EDDigital DataDF2/24/2022 Electronic File: PBU_L-207_PPROF_12JAN22_V1.ke536374EDDigital DataFriday, February 25, 2022AOGCC Page 2 of 3
DATA SUBMITTAL COMPLIANCE REPORTAPI No.50-029-23702-00-00Well Name/No.PRUDHOE BAY UN ORIN L-207Completion Status1-OILCompletion Date12/15/2021Permit to Drill2210810OperatorHilcorp North Slope, LLCMD14720TVD4229Current Status1-OIL2/25/2022UICNoINFORMATION RECEIVEDCompletion ReportProduction Test InformationGeologic Markers/TopsY Y / NAYComments:Compliance Reviewed By:Date:Mud Logs, Image Files, Digital DataComposite Logs, Image, Data Files Cuttings SamplesY / NAYY / NADirectional / Inclination DataMechanical Integrity Test InformationDaily Operations SummaryYY / NAYCore ChipsCore PhotographsLaboratory AnalysesY / NAY / NAY / NACOMPLIANCE HISTORYDate CommentsDescriptionCompletion Date:12/15/2021Release Date:10/5/2021Friday, February 25, 2022AOGCC Page 3 of 3M. Guhl2/25/2022
David Douglas Hilcorp North Slope
Sr. Geotechnician 3800 Centerpoint Drive, Suite 1400
Anchorage, AK 99503
Tele: (907) 777-8337
E-mail: david.douglas@hilcorp.com
Please acknowledge receipt and return one copy of this transmittal.
Received By: Date:
Hilcorp North Slope, LLC
Date: 02/23/2022
To: Alaska Oil & Gas Conservation Commission
Natural Resource Technician
333 W 7th Ave Suite 100
Anchorage, AK 99501
SFTP DATA TRANSMITTAL (23-FEB-2022)
Folder Contents: Log Print Files, Reports and Digital Data Files:
Well API #PTD #Log Company Log Date Log Type Notes:
PBU L-207 50029237020000 221081 HALLIBURTON 1/12/2022 PPROF INCLUDES ANALYSIS
PBU 04-51 50029235970000 218018 BAKER 11//24/2021 RPM INCLUDES ANALYSIS
PBU 09-38 50029219190000 189021 BAKER 12/1/2021 RPM INCLUDES ANALYSIS
PBU 09-39 50029221330000 191012 BAKER 12/6/2021 RPM INCLUDES ANALYSIS
PBU 18-02C 50029207620300 213009 BAKER 11/25/2021 RPM INCLUDES ANALYSIS
PBU 18-03C 50029207760300 211066 BAKER 11/26/2021 RPM INCLUDES ANALYSIS
PBU 18-05A 50029215830100 202219 BAKER 12/8/2021 RPM INCLUDES ANALYSIS
PBU Z-32C 50029219240300 213127 BAKER 12/10/2021 RPM INCLUDES ANALYSIS
Please include current contact information if different from above.
221-081
T36374
PBU L-207 50029237020000 221081 HALLIBURTON 1/12/2022 PPROF INCLUDES ANALYSIS
Meredith Guhl Digitally signed by Meredith Guhl
Date: 2022.02.25 08:36:20 -09'00'
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Chelsea Wright Digitally signed by Chelsea
Wright
Date: 2021.12.09 09:46:43 -09'00'
Benjamin Hand Digitally signed by Benjamin Hand
Date: 2021.12.09 11:33:11 -09'00'
David Douglas Hilcorp Alaska, LLC
Sr. Geotechnician 3800 Centerpoint Drive, Suite 1400
Anchorage, AK 99503
Tele: (907) 777-8337
E-mail: david.douglas@hilcorp.com
Please acknowledge receipt by signing and returning one copy of this transmittal.
Received By: Date:
Hilcorp North Slope, LLC
Date: 12/16/2021
To: Alaska Oil & Gas Conservation Commission
Natural Resource Technician
333 W 7th Ave Suite 100
Anchorage, AK 99501
DATA TRANSMITTAL
PBU L-207 (PTD 221-081)
FINAL LWD FORMATION EVALUATION LOGS (11/25/2021 to 12/08/2021)
x EWR-M5, AGR, ABG, DGR, ADR, Horizontal Presentation (2” & 5” MD/TVD Color Logs)
x Final Definitive Directional Survey
x Geosteering and EOW Report
SFTP Transfer – Main Folders:
LWD Subfolder:
Geosteering Subfolder:
Please include current contact information if different from above.
Received By:
12/16/2021
37'
(6HW
By Abby Bell at 1:33 pm, Dec 16, 2021
David Douglas Hilcorp Alaska, LLC
Sr. Geotechnician 3800 Centerpoint Drive, Suite 1400
Anchorage, AK 99503
Tele: (907) 777-8337
E-mail: david.douglas@hilcorp.com
Please acknowledge receipt by signing and returning one copy of this transmittal.
Received By: Date:
Hilcorp North Slope, LLC
Date: 12/16/2021
To: Alaska Oil & Gas Conservation Commission
Natural Resource Technician
333 W 7th Ave Suite 100
Anchorage, AK 99501
DATA TRANSMITTAL
PBU L-207 (PTD 221-081)
FINAL LWD FORMATION EVALUATION LOGS (11/25/2021 to 12/08/2021)
x EWR-M5, AGR, ABG, DGR, ADR, Horizontal Presentation (2” & 5” MD/TVD Color Logs)
x Final Definitive Directional Survey
x Geosteering and EOW Report
SFTP Transfer – Main Folders:
LWD Subfolder:
Geosteering Subfolder:
Please include current contact information if different from above.
Received By:
12/16/2021
37'
(6HW
By Abby Bell at 1:33 pm, Dec 16, 2021
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:Brodie Wages
Cc:Joe Engel; Wyatt Rivard
Subject:20211210 1704 APPROVAL: PTD221-081, PBU L-207 Development well, production packer setting depth change
request
Date:Friday, December 10, 2021 5:05:42 PM
Attachments:PBU L-207 Proposed Schematic 12-10-21.doc
PBU L-207 Proposed Schematic 10-05-21.doc
Brodie,
Recorded and approved. Noted: as this well is a producing well.
This PTD was approved on October 5, 2021. You should have an approved PTD reference
number. Please utilize this number in your email requests to AOGCC.
Mel Rixse
Senior Petroleum Engineer (PE)
Alaska Oil and Gas Conservation Commission
907-793-1231 Office
907-223-3605 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).
cc. Joe Engel, Wyatt Rivard
From: Brodie Wages <David.Wages@hilcorp.com>
Sent: Friday, December 10, 2021 11:13 AM
To: Rixse, Melvin G (OGC) <melvin.rixse@alaska.gov>
Cc: Joseph Engel <jengel@hilcorp.com>; Wyatt Rivard <wrivard@hilcorp.com>
Subject: L-207 updated WBD
Hello Mel,
Please see attached updated proposed WBD for L-207. After further internal conversations, we want
to keep gas lift pressure off that 7” tieback seals, so we moved it above. Old proposal attached as
well for your reference
David “Brodie” Wages
Ops Engineer
C: 713.380.9836
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 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 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.
_____________________________________________________________________________________
Revised By: DW 12/10/2021
PROPOSED SCHEMATIC
Prudhoe Bay Unit
Well: PBU L-207
Last Completed: TBD
PTD: TBD
CASING DETAIL
Size Type Wt/ Grade/ Conn ID Top Btm BPF
20" Conductor 129.5 / X52 / Weld N/A Surface 110’ N/A
9-5/8" Surface 47/ L-80 / Vam21 8.681 Surface 2,500’ 0.0732
9-5/8” Surface 40 / L-80 / BTC 8.835 2,500’ 7147 0.0758
7” Tieback 26 / L-80 / VamTop 6.276 Surface 6976 0.0383
7” Liner 26 / L-80 / VamTop 6.276 6976 7043 0.0383
4-1/2” Liner 11.6 / L-80 / Ezgo HT 3.875 7043 14,720’ 0.0355
TUBING DETAIL
4-1/2" Tubing 12.6# / L-80 / Vamtop 3.958 Surface 6,342’ 0.0152
OPEN HOLE / CEMENT DETAIL
Driven Conductor
12-1/4" Stg 1 – Lead – 637 sx / Tail – 395 sx
Stg 2 – Lead – 439 sx / Tail – 268 sx
8-1/2” Cementless Slotted Liner
WELL INCLINATION DETAIL
KOP @ 300’
90° Hole Angle = @ 7173’ MD
TREE & WELLHEAD
Tree Cameron 3 1/8" 5M w/ 4-1/16” 5M Cameron Wing
Wellhead FMC 11” 5K x sliplock bottom w/ (2) 2-1/16” 5K outs
GENERAL WELL INFO
API: TBD
Completion Date: TBD
JEWELRY DETAIL
No. Top MD* Item ID
1 2,200 X Nipple 3.813”
2 3,231 GLM 3.833”
3 4200 GLM 3.833”
4 5400 GLM 3.833”
5 5930 GLM 3.833”
6 5960 X Nipple 3.813”
7 5990’ Production Packer 3.865”
8 6,323 X Nipple @ 68 deg INC 3.813”
9 6976 7” x 9-5/8” Liner Hanger w/ Tieback Sleeve 6.160”
10 7040 MuleShoe 3.958”
11 14,720 Shoe
*All depths are approximate and are subject to change based on actual drilled
depths.
4-1/2” 100µ DETAIL
Jts Top (MD) Top (TVD) Btm (MD) Btm (TVD)
_____________________________________________________________________________________
Revised By: NS 10/05/2021
PROPOSED SCHEMATIC
Prudhoe Bay Unit
Well: PBU L-207
Last Completed: TBD
PTD: TBD
CASING DETAIL
Size Type Wt/ Grade/ Conn ID Top Btm BPF
20" Conductor 129.5 / X52 / Weld N/A Surface 110’ N/A
9-5/8" Surface 47/ L-80 / Vam21 8.681 Surface 2,500’ 0.0732
9-5/8” Surface 40 / L-80 / BTC 8.835 2,500’ 7,174’ 0.0758
7” Tieback 26 / L-80 / VamTop 6.276 Surface 6,169’ 0.0383
7” Liner 26 / L-80 / VamTop 6.276 6,164’ 6,350’ 0.0383
4-1/2” Liner 11.6 / L-80 / Ezgo HT 3.875 6,350’ 14,720’ 0.0355
TUBING DETAIL
4-1/2" Tubing 12.6# / L-80 / Vamtop 3.958 Surface 6,342’ 0.0152
OPEN HOLE / CEMENT DETAIL
Driven Conductor
12-1/4" Stg 1 – Lead – 637 sx / Tail – 395 sx
Stg 2 – Lead – 439 sx / Tail – 268 sx
8-1/2” Cementless Slotted Liner
WELL INCLINATION DETAIL
KOP @ 300’
90° Hole Angle = @ 7173’ MD
TREE & WELLHEAD
Tree Cameron 3 1/8" 5M w/ 4-1/16” 5M Cameron Wing
Wellhead FMC 11” 5K x sliplock bottom w/ (2) 2-1/16” 5K outs
GENERAL WELL INFO
API: TBD
Completion Date: TBD
JEWELRY DETAIL
No. Top MD* Item ID
1 2,200 X Nipple 3.813”
2 3,231 GLM 3.833”
3 5,121 GLM 3.833”
4 5,980 GLM 3.833”
5 6,060 GLM 3.833”
6 6,127 X Nipple 3.813”
7 6,164 7” x 9-5/8” Liner Hanger w/ Tieback Sleeve 6.160”
8 6,164 Liner Top Packer 6.160”
9 6,194 Production Packer 3.865”
10 6,261 X Nipple 3.813”
11 6,328 X Nipple 3.813”
12 6,342 WLEG 3.958”
13 14,720 Shoe
*All depths are approximate and are subject to change based on actual drilled
depths.
4-1/2” 100µ DETAIL
Jts Top (MD) Top (TVD) Btm (MD) Btm (TVD)
Alaska Oil and Gas
Conservation Commission
333 West Seventh Avenue
Anchorage, Alaska 99501-3572
Main: 907.279.1433
Fax: 907.276.7542
www.aogcc.alaska.gov
Monty M Myers
Drilling Manager
Hilcorp Alaska, LLC
3800 Centerpoint Drive, Suite 1400
Anchorage, AK 99503
Re: Prudhoe Bay Field, Schrader Bluff Oil Pool, PBU L-207
Hilcorp Alaska, LLC
Permit to Drill Number: 221-081
Surface Location: 2354' FSL, 3814' FEL, Sec. 34, T12N, R11E, UM, AK
Bottomhole Location: 1373' FSL, 1374' FWL, Sec. 21, T12N, R11E, UM, AK
Dear Mr. Myers:
Enclosed is the approved application for the permit to drill the above referenced well.
This permit to drill does not exempt you from obtaining additional permits or an approval required
by law from other governmental agencies and does not authorize conducting drilling operations
until all other required permits and approvals have been issued. In addition, the AOGCC reserves
the right to withdraw the permit in the event it was erroneously issued.
Operations must be conducted in accordance with AS 31.05 and Title 20, Chapter 25 of the Alaska
Administrative Code unless the AOGCC specifically authorizes a variance. Failure to comply
with an applicable provision of AS 31.05, Title 20, Chapter 25 of the Alaska Administrative Code,
or an AOGCC order, or the terms and conditions of this permit may result in the revocation or
suspension of the permit.
Sincerely,
Jeremy M. Price
Chair
DATED this ___ day of October, 2021.
Jeremy Price
Digitally signed by Jeremy
Price
Date: 2021.10.05 13:45:46
-08'00'
1a. Type of Work: 1b. Proposed Well Class: Exploratory - Gas Service - WAG Service - Disp 1c. Specify if well is proposed for:
Drill Lateral Stratigraphic Test Development - Oil Service - Winj Single Zone Coalbed Gas Gas Hydrates
Redrill Reentry Exploratory - Oil Development - Gas Service - Supply Multiple Zone Geothermal Shale Gas
2. Operator Name: 5. Bond: Blanket Single Well 11. Well Name and Number:
Bond No.
3. Address:6. Proposed Depth:12. Field/Pool(s):
MD: 14,720' TVD: 4,224'
4a. Location of Well (Governmental Section): 7.Property Designation:
Surface:
Top of Productive Horizon:8.DNR Approval Number:13.Approximate Spud Date:
Total Depth: 9. Acres in Property: 14. Distance to Nearest Property:
4b. Location of Well (State Base Plane Coordinates - NAD 27): 10.KB Elevation above MSL (ft):15.Distance to Nearest Well Open
Surface: x-583102 y- 5978075 Zone- 4 45.7' to Same Pool: 880'
16.Deviated wells: Kickoff depth: 300 feet 17.Maximum Potential Pressures in psig (see 20 AAC 25.035)
Maximum Hole Angle: 91 degrees Downhole: Surface:
Hole Casing Weight Grade Coupling Length MD TVD MD TVD
Driven 20" 129.5# X-52 126' Surface Surface 126' 126'
47# L-80 Vam21 2,500' Surface Surface 2,500' 1,975'
40# L-80 BTC 4,674' 2,500' 1,975' 7,174' 4,302'
Tieback 7" 26# L-80 Vamtop 7,024' Surface Surface 7,024' 4,296'
8-1/2" 4-1/2" 11.6# L-80 Ezgo HT 7,696' 7,024' 4,296' 14,720' 4,224'
19.PRESENT WELL CONDITION SUMMARY (To be completed for Redrill and Re-Entry Operations)
Junk (measured):
TVD
Hydraulic Fracture planned? Yes No
20. Attachments: Property Plat BOP Sketch Drilling Program Time v. Depth Plot Shallow Hazard Analysis
Diverter Sketch Seabed Report Drilling Fluid Program 20 AAC 25.050 requirements
Contact Name: Joe Engel
Monty Myers Contact Email:jengel@hilcorp.com
Drilling Manager Contact Phone:777-8395
Date:
Permit to Drill API Number: Permit Approval
Number:Date:
Conditions of approval : If box is checked, well may not be used to explore for, test, or produce coalbed methane, gas hydrates, or gas contained in shales:
Samples req'd: Yes No Mud log req'd: Yes No
H2S measures: Yes No Directional svy req'd: Yes No
Spacing exception req'd: Yes No Inclination-only svy req'd: Yes No
Post initial injection MIT req'd: Yes No
APPROVED BY
Approved by: COMMISSIONER THE COMMISSION Date:
Comm. Comm. Sr Pet Eng Sr Pet Geo Sr Res Eng
9,191'
12-1/4" 9-5/8"
December 2, 2021
21. I hereby certify that the foregoing is true and the procedure approved herein will not be
deviated from without prior written approval.
Surface
Perforation Depth TVD (ft):
GL / BF Elevation above MSL (ft):
Perforation Depth MD (ft):
Uncemented Tieback
Uncemented Screen Liner
Effect. Depth MD (ft): Effect. Depth TVD (ft):
Authorized Title:
Authorized Signature:
Production
Liner
Intermediate
Authorized Name:
Conductor/Structural
LengthCasing Cement Volume MDSize
Plugs (measured):
(including stage data)
Stg 1 L - 637 sx / T - 395 sx
5120
18. Casing Program: Top - Setting Depth - BottomSpecifications
1857
Total Depth MD (ft): Total Depth TVD (ft):
107205344
STATE OF ALASKA
ALASKA OIL AND GAS CONSERVATION COMMISSION
PERMIT TO DRILL
20 AAC 25.005
Stg 2 L - 439 sx / T - 268 sx
1463
1380' FSL, 2263' FWL, Sec. 27, T12N, R11E, UM, AK
1373' FSL, 1374' FWL, Sec. 21, T12N, R11E, UM, AK
01-001
3800 Centerpoint Drive, Suite 1400, Anchorage, AK 99503
Hilcorp North Slope, LLC
2354' FSL, 3814' FEL, Sec. 34, T12N, R11E, UM, AK ADL 028239 & 047447
PBU L-207
Prudhoe Bay Field
Schrader Bluff Oil Pool,
Orion Development Area
Cement Quantity, c.f. or sacks
Commission Use Only
See cover letter for other
requirements.
Form 10-401 Revised 3/2021 This permit is valid for 24 months from the date of approval per 20 AAC 25.005(g)
9.30.2021Digitally signed by Monty M Myers
DN: cn=Monty M Myers, c=US,
o=Hilcorp Alaska, LLC, ou=Technical
Services - AK Drilling,
email=mmyers@hilcorp.com
Reason: I am approving this document
Date: 2021.09.30 08:45:42 -08'00'
Monty M
Myers
By Meredith Guhl at 9:22 am, Sep 30, 2021
72.2
SFD 9/30/2021
50-029-23702-00-00221-081
DSR-9/30/21
SFD 9/30/2021
MGR05OCT2021
BOPE test to 3000 psi. Annular to 2500 psi.
dts 10/5/2021
10/5/21
Jeremy Price Digitally signed by Jeremy Price
Date: 2021.10.05 13:46:25 -08'00'
Prudhoe Bay West
(PBU) L-207
Drilling Program
Version 1
9/29/2021
Table of Contents
1.0 Well Summary ........................................................................................................................... 2
2.0 Management of Change Information ........................................................................................ 3
3.0 Tubular Program:...................................................................................................................... 4
4.0 Drill Pipe Information: .............................................................................................................. 4
5.0 Internal Reporting Requirements ............................................................................................. 5
6.0 Planned Wellbore Schematic ..................................................................................................... 6
7.0 Drilling / Completion Summary ................................................................................................ 7
8.0 Mandatory Regulatory Compliance / Notifications .................................................................. 8
9.0 R/U and Preparatory Work ..................................................................................................... 10
10.0 N/U 13-5/8” 5M Diverter System ............................................................................................. 11
11.0 Drill 12-1/4” Hole Section ........................................................................................................ 13
12.0 Run 9-5/8” Surface Casing ...................................................................................................... 16
13.0 Cement 9-5/8” Surface Casing ................................................................................................. 21
14.0 ND Diverter, NU BOPE, & Test .............................................................................................. 26
15.0 Drill 8-1/2” Hole Section .......................................................................................................... 27
16.0 Run 4-1/2” Screened Liner ...................................................................................................... 32
17.0 Run 7” Tieback ........................................................................................................................ 36
18.0 Run Upper Completion/ Post Rig Work – Gas Lift ................................................................ 39
19.0 Innovation Rig Diverter Schematic ......................................................................................... 43
20.0 Innovation Rig BOP Schematic ............................................................................................... 44
21.0 Wellhead Schematic ................................................................................................................. 45
22.0 Days Vs Depth .......................................................................................................................... 46
23.0 Formation Tops & Information............................................................................................... 47
24.0 Anticipated Drilling Hazards .................................................................................................. 49
25.0 Innovation Rig Layout ............................................................................................................. 53
26.0 FIT Procedure .......................................................................................................................... 54
27.0 Innovation Rig Choke Manifold Schematic ............................................................................ 55
28.0 Casing Design ........................................................................................................................... 56
29.0 8-1/2” Hole Section MASP ....................................................................................................... 57
30.0 Spider Plot (NAD 27) (Governmental Sections) ...................................................................... 58
31.0 Surface Plat (As Built) (NAD 27) ............................................................................................. 59
32.0 Offset Wells TVD MW............................................................................................................. 60
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Prudhoe Bay West
L-207 SB Producer
Drilling Procedure V3
1.0 Well Summary
Well PBU L-207
Pad Prudhoe Bay L Pad
Planned Completion Type Gas Lift on 4-1/2” Tubing
Target Reservoir(s) Schrader Bluff OBa Sand
Planned Well TD, MD / TVD 14,720’ MD / 4,224’ TVD
PBTD, MD / TVD 14,720’ MD / 4,224’ TVD
Surface Location (Governmental) 2354' FSL, 1465' FWL, Sec 34, T12N, R11E, UM, AK
Surface Location (NAD 27) X= 583102, Y=5978075
Top of Productive Horizon
(Governmental)1380' FSL, 2263' FWL, Sec 27, T12N, R11E, UM, AK
TPH Location (NAD 27) X= 583844, Y=5982389
BHL (Governmental) 1373' FSL, 1374' FWL, Sec 21, T12N, R11E, UM, AK
BHL (NAD 27) X= 577607, Y=5987594
AFE Number 211-00051
AFE Drilling Days 20
AFE Completion Days 4
Maximum Anticipated Pressure
(Surface) 1463 psig
Maximum Anticipated Pressure
(Downhole/Reservoir) 1857 psig
Work String 5” 19.5# S-135 NC 50
Innovation KB Elevation above MSL: 26.5 ft + 45.7 ft = 72.2 ft
GL Elevation above MSL: 45.7 ft
BOP Equipment 13-5/8” x 5M Annular, (3) ea 13-5/8” x 5M Rams
fOBa
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Prudhoe Bay West
L-207 SB Producer
Drilling Procedure V3
2.0 Management of Change Information
Page 4
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L-207 SB Producer
Drilling Procedure V3
3.0 Tubular Program:
Hole
Section
OD (in)ID
(in)
Drift
(in)
Conn OD
(in)
Wt
(#/ft)
Grade Conn Burst
(psi)
Collapse
(psi)
Tension
(k-lbs)
Cond 20” 19.25”---X-52Weld
12-1/4”9-5/8” 8.835”8.679”10.625”40 L-80 BTC 5,750 3,090 916
9-5/8” 8.681”8.525”10.625”47 L-80 VAM 21 6,870 4,750 1,086
Tieback 7” 6.276 6.151 7.565 26 L-80 VAMTOP 7,240 5,410 604
8-1/2” 4-1/2” 4.0 3.833 5 11.6 L-80
EZGO
HTGT 7,780 6,350 267
Tubing 4-1/2” 3.958 3.833 4.937 12.6 L-80 VAMTOP 8,430 7,500 288
4.0 Drill Pipe Information:
Hole
Section
OD
(in)
ID (in)TJ ID
(in)
TJ OD
(in)
Wt
(#/ft)
Grade Conn M/U
(Min)
M/U
(Max)
Tension
(k-lbs)
Surface &
Production
5”4.276”3.25” 6.625”19.5 S-135 DS50 36,100 43,100 560klb
5”4.276”3.25” 6.625”19.5 S-135 NC50 30,730 34,136 560klb
All casing will be new, PSL 1 (100% mill inspected, 10% inspection upon delivery).
Page 5
Prudhoe Bay West
L-207 SB Producer
Drilling Procedure V3
5.0 Internal Reporting Requirements
5.1 Fill out daily drilling report and cost report on WellEz.
x Report covers operations from 6am to 6am
x Click on one of the tabs at the top to save data entered. If you click on one of the tabs to the left
of the data entry area – this will not save the data entered, and will navigate to another data entry.
x Ensure time entry adds up to 24 hours total.
x Try to capture any out of scope work as NPT. This helps later on when we pull end of well
reports.
x Enter the MD and TVD depths EVERY DAY whether you are making hole or not.
5.2 Afternoon Updates
x Submit a short operations update each work day to pmazzolini@hilcorp.com, mmyers@hilcorp,
nathan.sperry@hilcorp.com, jengel@hilcorp.com and joseph.lastufka@hilcorp.com
5.3 Intranet Home Page Morning Update
x Submit a short operations update each morning by 7am on the company intranet homepage. On
weekend and holidays, ensure to have this update in before 5am.
5.4 EHS Incident Reporting
x Health and Safety: Notify EHS field coordinator.
x Environmental: Drilling Environmental Coordinator
x Notify Drilling Manager & Drilling Engineer on all incidents
x Submit Hilcorp Incident report to contacts above within 24 hrs
5.5 Casing Tally
x Send final “As-Run” Casing tally to mmyers@hilcorp,com jengel@hilcorp.com and
joseph.lastufka@hilcorp.com
5.6 Casing and Cement report
x Send casing and cement report for each string of casing to mmyers@hilcorp.com
jengel@hilcorp.com and joseph.lastufka@hilcorp.com
5.7 Hilcorp Milne Point Contact List:
Title Name Work Phone Cell Phone Email
Drilling Manager Monty Myers 907.777.8431 907.538.1168 mmyers@hilcorp.com
Drilling Engineer Joe Engel 907.777.8395 805.235.6265 jengel@hilcorp.com
Drilling Engineer Nate Sperry 907.777.8450 907.301.8996 nathan.sperry@hilcorp.com
Completion Engineer Brian Glasheen 907.564.5277 907.545.1144 Brian.Glasheen@hilcorp.com
Geologist Kevin Eastham 907.777.8316 907.360.5087 keastham@hilcorp.com
Reservoir Engineer Michael Mayfield 907.564.5097 713.205.0533 mmayfield@hilcorp.com
Drilling Env. Coordinator Keegan Fleming 907.777.8477 907.350.9439 kfleming@hilcorp.com
EHS Manager Carl Jones 907.777.8327 907.382.4336 cajones@hilcorp.com
Drilling Tech Joe Lastufka 907.777.8400 907.227.8496 Joseph.Lastufka@hilcorp.com
_____________________________________________________________________________________
Revised By: NS10/05/2021
PROPOSED SCHEMATIC
Prudhoe Bay Unit
Well: PBU L-207
Last Completed: TBD
PTD: TBD
CASING DETAIL
Size Type Wt/ Grade/ Conn ID Top Btm BPF
20"Conductor 129.5 / X52 / Weld N/A Surface 110’N/A
9-5/8"Surface 47/ L-80 / Vam21 8.681 Surface 2,500’0.0732
9-5/8”Surface 40 / L-80 / BTC 8.835 2,500’7,174’0.0758
7”Tieback 26 / L-80 / VamTop 6.276 Surface 6,169’0.0383
7”Liner 26 / L-80 / VamTop 6.276 6,164’6,350’0.0383
4-1/2”Liner 11.6 / L-80 / Ezgo HT 3.875 6,350’14,720’0.0355
TUBING DETAIL
4-1/2"Tubing 12.6# / L-80 / Vamtop 3.958 Surface 6,342’0.0152
OPEN HOLE / CEMENT DETAIL
Driven Conductor
12-1/4"Stg 1 –Lead – 637 sx/ Tail – 395 sx
Stg 2 –Lead – 439 sx/ Tail – 268 sx
8-1/2”Cementless Slotted Liner
WELL INCLINATION DETAIL
KOP @ 300’
90°Hole Angle = @ 7173’ MD
TREE & WELLHEAD
Tree Cameron 3 1/8" 5M w/ 4-1/16” 5M Cameron Wing
Wellhead FMC 11” 5K x sliplock bottom w/ (2) 2-1/16” 5K outs
GENERAL WELL INFO
API: TBD
Completion Date: TBD
JEWELRY DETAIL
No.Top MD*Item ID
1 2,200 X Nipple 3.813”
2 3,231 GLM 3.833”
3 5,121 GLM 3.833”
4 5,980 GLM 3.833”
5 6,060 GLM 3.833”
6 6,127 X Nipple 3.813”
7 6,164 7” x 9-5/8” Liner Hanger w/ Tieback Sleeve 6.160”
8 6,164 Liner Top Packer 6.160”
9 6,194 Production Packer 3.865”
10 6,261 X Nipple 3.813”
11 6,328 X Nipple 3.813”
12 6,342 WLEG 3.958”
13 14,720 Shoe
*All depths are approximate and are subject to change based on actual drilled
depths.
4-1/2” 100ђ DETAIL
Jts Top (MD)Top (TVD)Btm (MD)Btm (TVD)
Page 6
Prudhoe Bay West
L-207 SB Producer
Drilling Procedure V3
6.0 Planned Wellbore Schematic
Superceded on previous page.
Illegible
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Prudhoe Bay West
L-207 SB Producer
Drilling Procedure V3
7.0 Drilling / Completion Summary
PBU L-207 is a grassroots producer planned to be drilled in the Schrader Bluff OBa sands. L-207 is part of a
multi-well program targeting the Schrader Bluff sand on PBU L-pad
The directional plan is 12-1/4” surface hole and 9-5/8” surface casing set into the top of the Schrader Bluff
OBa sand. An 8-1/2” lateral section will be drilled. A 4-1/2” liner will be run in the open hole section and
the well will be produced with a gas lift completion
The Innovation Rig will be used to drill and complete the wellbore.
Drilling operations are expected to commence approximately Dec 2, 2021, pending rig schedule.
Surface casing will be run to 7,174’ MD / 4,302’ TVD and cemented to surface via a 2 stage primary cement
job. Cement returns to surface will confirm TOC at surface. If cement returns to surface are not observed,
necessary remedial action will then be discussed with AOGCC authorities.
All cuttings & mud generated during drilling operations will be hauled to one of two locations:
Primary: Prudhoe G&I on Pad 4
Secondary: the Milne Point “B” pad G&I facility
General sequence of operations:
1. MIRU Innovation Rig to well site
2. N/U & Test 13-5/8” Diverter and 16” diverter line
3. Drill 12-1/4” hole to TD of surface hole section. Run and cement 9-5/8” surface casing
4. N/D diverter, N/U wellhead, NU 13-5/8” 5M BOP & Test
5. Drill 8-1/2” lateral to well TD
6. Run 4-1/2” production liner
7. Run 7” tieback
8. Run Upper Completion
9. N/D BOP, N/U Tree, RDMO
Reservoir Evaluation Plan:
1. Surface hole: No mud logging. On Site geologist. LWD: GR + Res
2. Production Hole: No mud logging. On site geologist. LWD: GR + ADR (For geo-steering)
f OBa sands. a grassroots producer p
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Prudhoe Bay West
L-207 SB Producer
Drilling Procedure V3
8.0 Mandatory Regulatory Compliance / Notifications
Regulatory Compliance
Ensure that our drilling and completion operations comply with the all applicable AOGCC regulations,
specific regulations are listed below. If additional clarity or guidance is required on how to comply with
a specific regulation, do not hesitate to contact the Anchorage Drilling Team.
x BOPs shall be tested at (2) week intervals during the drilling and completion of PBU L-207. Ensure
to provide AOGCC 24 hrs notice prior to testing BOPs.
x The initial test of BOP equipment will be to 250/3,000 psi & subsequent tests of the BOP equipment
will be to 250/3,000 psi for 5/5 min (annular to 50% rated WP, 2,500 psi on the high test for initial
and subsequent tests).Confirm that these test pressures match those specified on the APD.
x If the BOP is used to shut in on the well in a well control situation or control fluid flow from the
well bore, AOGCC is to be notified and we must test all BOP components utilized for well control
prior to the next trip into the wellbore. This pressure test will be charted same as the 14 day BOP
test.
x All AOGCC regulations within 20 AAC 25.033 “Primary well control for drilling: drilling fluid program
and drilling fluid system”.
x All AOGCC regulations within 20 AAC 25.035 “Secondary well control for primary drilling and
completion: blowout prevention equipment and diverter requirements”.
o Ensure the diverter vent line is at least 75’ away from potential ignition sources
x Ensure AOGCC approved drilling permit is posted on the rig floor and in Co Man office.
x Casing pressure test criteria in 20 AAC 25.030 (e) Casing and Cementing,“A casing pressure test
must be performed if BOPE is to be installed on a casing. The casing must be tested to hold a
minimum surface pressure equal to 50 percent of the casing internal yield pressure. The test
pressure must show stabilizing pressure and may not decline more than 10 percent within 30
minutes. The results of this test and any subsequent tests of the casing must be recorded as required
by 20 AAC 25.070(1)”.
AOGCC Regulation Variance Requests:
x No variance requests at this time.
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Prudhoe Bay West
L-207 SB Producer
Drilling Procedure V3
Summary of Innovation BOP Equipment & Test Requirements
Hole Section Equipment Test Pressure (psi)
12-1/4”x 13-5/8” 5M CTI Annular BOP w/ 16” diverter line Function Test Only
8-1/2”
x 13-5/8” x 5M Control Technology Inc Annular BOP
x 13-5/8” x 5M Control Technology Inc Double Gate
o Blind ram in btm cavity
x Mud cross w/ 3” x 5M side outlets
x 13-5/8” x 5M Control Technology Single ram
x 3-1/8” x 5M Choke Line
x 3-1/8” x 5M Kill line
x 3-1/8” x 5M Choke manifold
x Standpipe, floor valves, etc
Initial Test: 250/3,000
Subsequent Tests:
250/3,000
Primary closing unit: Control Technology Inc. (CTI), 6 station, 3,000 psi, 220 gallon accumulator unit.
Primary closing hydraulics is provided by an electrically driven triplex pump. Secondary back-up is an electric
triplex pump on a different electrical circuit and emergency pressure is provided by bottled nitrogen.
The remote closing operator panels are located in the doghouse and on accumulator unit.
Required AOGCC Notifications:
x Well control event (BOPs utilized to shut in the well to control influx of formation fluids).
x 24 hours notice prior to spud.
x 24 hours notice prior to testing BOPs.
x 24 hours notice prior to casing running & cement operations.
x Any other notifications required in APD.
Regulatory Contact Information:
AOGCC
Jim Regg / AOGCC Inspector / (O): 907-793-1236 / Email:jim.regg@alaska.gov
Victoria Loepp / Petroleum Engineer / (O): 907-793-1247 / Email:Victoria.loepp@alaska.gov
Mel Rixse / Petroleum Engineer / (O): 907-793-1231 / (C): 907-223-3605 / Email:melvin.rixse@alaska.gov
Primary Contact for Opportunity to witness:AOGCC.Inspectors@alaska.gov
Test Inspection notification standardization format:http://doa.alaska.gov/ogc/forms/TestWitnessNotif.html
Notification / Emergency Phone: 907-793-1236 (During normal Business Hours)
Notification / Emergency Phone: 907-659-2714 (Outside normal Business Hours)
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Prudhoe Bay West
L-207 SB Producer
Drilling Procedure V3
9.0 R/U and Preparatory Work
9.1 L-207 will utilize a newly set 20” conductor on L-pad. Ensure to review attached surface plat
and make sure rig is over appropriate conductor.
9.2 Ensure PTD and drilling program are posted in the rig office and on the rig floor.
9.3 Install landing ring.
9.4 Insure (2) 4” nipples are installed on opposite sides of the conductor with ball valves on each.
9.5 Level pad and ensure enough room for layout of rig footprint and R/U.
9.6 Rig mat footprint of rig.
9.7 MIRU Innovation. Ensure rig is centered over conductor to prevent any wear to BOPE or
wellhead.
9.8 Mud loggers WILL NOT be used on either hole section.
9.9 Mix spud mud for 12-1/4” surface hole section. Ensure mud temperatures are cool (<80qF).
9.10 Ensure 5” liners in mud pumps.
x White Star Quattro 1,300 HP mud pumps are rated at 4,097 psi, 381 gpm @ 140 spm @
96.5% volumetric efficiency.
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L-207 SB Producer
Drilling Procedure V3
10.0 N/U 13-5/8” 5M Diverter System
10.1 N/U 13-5/8” CTI BOP stack in diverter configuration (Diverter Schematic attached to program).
x N/U 20” x 13-5/8” DSA
x N/U 13 5/8”, 5M diverter “T”.
x NU Knife gate & 16” diverter line.
x Ensure diverter R/U complies with AOGCC reg 20.AAC.25.035(C).
x Diverter line must be 75 ft from nearest ignition source
x Place drip berm at the end of diverter line.
x Utilized extensions if needed.
10.2 Notify AOGCC. Function test diverter.
x Ensure that the knife gate and annular are operated on the same circuit so that knife gate opens
prior to annular closure.
x Ensure that the annular closes in less than 30 seconds (API Standard 64 3rd edition March 2018
section 12.6.2 for packing element ID less than or equal to 20”)
10.3 Ensure to set up a clearly marked “warning zone” is established on each side and ahead of the
vent line tip. “Warning Zone” must include:
x A prohibition on vehicle parking
x A prohibition on ignition sources or running equipment
x A prohibition on staged equipment or materials
x Restriction of traffic to essential foot or vehicle traffic only.
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Prudhoe Bay West
L-207 SB Producer
Drilling Procedure V3
10.4 Rig & Diverter Orientation:
x May change on location
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L-207 SB Producer
Drilling Procedure V3
11.0 Drill 12-1/4” Hole Section
11.1 P/U 12-1/4” directional drilling assembly:
x Ensure BHA components have been inspected previously.
x Drift and caliper all components before M/U. Visually verify no debris inside components
that cannot be drifted.
x Ensure TF offset is measured accurately and entered correctly into the MWD software.
x Consider running a UBHO sub for wireline gyro.GWD will be the primary gyro tool.
x Have DD run hydraulics calculations on site to ensure optimum nozzle sizing.
x Drill string will be 5” 19.5# S-135.
x Run a solid float in the surface hole section.
11.2 Begin drilling out from 20” conductor at reduced flow rates to avoid broaching the conductor.
x Consider using a trash bit to clean out conductor to mitigate potential damage from debris in
conductor.
11.3 Drill 12-1/4” hole section to section TD, in the Schrader OBd sand. Confirm this setting depth
with the Geologist and Drilling Engineer while drilling the well.
x Monitor the area around the conductor for any signs of broaching. If broaching is observed,
Stop drilling (or circulating) immediately notify Drilling Engineer.
x Efforts should be made to minimize dog legs in the surface hole. Keep DLS < 6 deg / 100.
x Hold a safety meeting with rig crews to discuss:
x Conductor broaching ops and mitigation procedures.
x Well control procedures and rig evacuation
x Flow rates, hole cleaning, mud cooling, etc.
x Pump sweeps and maintain mud rheology to ensure effective hole cleaning.
x Keep mud as cool as possible to keep from washing out permafrost.
x Pump at 400-600 gpm. Monitor shakers closely to ensure shaker screens and return lines can
handle the flow rate.
x There have been ‘directional dead zones’ noted in PBW. Directoinal plan has a build up in
DLS from 2 – 4, to allow gradual build. If possible get ahead of build rates while still
meeting tangent hold target.
x Ensure to not out drill hole cleaning capacity, perform clean up cycles or reduce ROP if
packoffs, increase in pump pressure or changes in hookload are seen
x Slow in/out of slips and while tripping to keep swab and surge pressures low
x Ensure shakers are functioning properly. Check for holes in screens on connections.
x Have the flowline jets hooked up and be ready to jet the flowline at the first sign of pea
gravel, clay balling or packing off.
x Adjust MW and viscosity as necessary to maintain hole stability,ensure MW is at a 9.5 at
base of perm and at TD (pending MW increase due to hydrates). This is to combat
hydrates and free gas risk, based upon offset wells.
x Perform gyro surveys until clean MWD surveys are seen. Take MWD surveys every stand
drilled.
r OBd
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Prudhoe Bay West
L-207 SB Producer
Drilling Procedure V3
x Be prepared for gas hydrates. In PBW they have been encountered typically around 1660’
TVD (Base of Perm) to 2740’ TVD (Top Ugnu). Be prepared for hydrates:
x Gas Hydrates are present on L PAD
x L-206 Encountered high gas hydrates at the base of the permafrost to the top of the
Ugnu, with the majority of the hydrates occurring in the SV3 & SV2 Sand
x Keep mud temperature as cool as possible, Target 60-70*F.
x Dump and dilute as necessary to maintain temp, utilize cold water on the rig as well as
cold pre-made mud on trucks ready.
x Drill through hydrate sands and quickly as possible, do not backream.
x Gas hydrates can be identified by the gas detector and a decrease in MW or ECD
x Monitor returns for hydrates, checking pressurized & non-pressurized scales
x Do not stop to circulate out gas hydrates – this will only exacerbate the problem by
washing out additional permafrost. Attempt to control drill (150 fph MAX) through the
zone completely and efficiently to mitigate the hydrate issue. Flowrates can also be
reduced to prevent mud from belching over the bell nipple.
x Gas hydrates are not a gas sand, once a hydrate is disturbed the gas will come out of the
well. MW will not control gas hydrates, but will affect how gas breaks out at surface.
x Take MWD and GWD surveys every stand until magnetic interference cleans up. After
MWD surveys show clean magnetics, only take MWD surveys.
x Surface Hole AC:
x There are no wells with a clearance factor of <1.0
11.4 12-1/4” hole mud program summary:
x Density: Weighting material to be used for the hole section will be barite. Additional
barite or spike fluid will be on location to weight up the active system (1) ppg above
highest anticipated MW. We will start with a simple gel + FW spud mud at 8.8 ppg and
TD with 9.5+ ppg. MW for free gas and hydrates based upon offset wells
Depth Interval MW (ppg)
Surface – Base Permafrost 8.9+
Base Permafrost - TD 9.5+ (For Hydrates/Free Gas based on offset
wells)
x PVT System: PVT will be used throughout the drilling and completion phase. Remote
monitoring stations will be available at the driller’s console, Co Man office, Toolpusher
office, and mud loggers office.
x Rheology: Aquagel and Barazan D+ should be used to maintain rheology. Begin system
with a 75 YP but reduce this once clays are encountered. Maintain a minimum 25 YP at
all times while drilling. Be prepared to increase the YP if hole cleaning becomes an
issue.
x Fluid Loss: DEXTRID and/or PAC L should be used for filtrate control. Background
LCM (10 ppb total) BARACARBs/BAROFIBRE/STEELSEALs can be used in the
system while drilling the surface interval to prevent losses and strengthen the wellbore.
yp
L-206 Encountered high gas hydrates at the base of the permafrost to the top of the
Ugnu, w
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Prudhoe Bay West
L-207 SB Producer
Drilling Procedure V3
x Wellbore and mud stability:Additions of CON DET PRE-MIX/DRIL N SLIDE are
recommended to reduce the incidence of bit balling and shaker blinding when penetrating
the high-clay content sections of the Sagavanirktok and the heavy oil sections of the
UGNU 4A. Maintain the pH in the 8.5 – 9.0 range with caustic soda. Daily additions of
ALDACIDE G / X-CIDE 207 MUST be made to control bacterial action.
x Casing Running:Reduce system YP with DESCO as required for running casing as
allowed (do not jeopardize hole conditions). Run casing carefully to minimize surge and
swab pressures. Reduce the system rheology once the casing is landed to a YP < 20
(check with the cementers to see what YP value they have targeted).
System Type:8.8 – 9.8 ppg Pre-Hydrated Aquagel/freshwater spud mud
Properties:
Section Density Viscosity Plastic Viscosity Yield Point API FL pH Temp
Surface 8.8 – 9.8 75-175 20 - 40 25-45 <10 8.5 – 9.0 70 F
System Formulation: Gel + FW spud mud
Product Concentration
Fresh Water
soda Ash
AQUAGEL
caustic soda
BARAZAN D+
BAROID 41
PAC-L /DEXTRID LT
ALDACIDE G
0.905 bbl
0.5 ppb
15 - 20 ppb
0.1 ppb (8.5 – 9.0 pH)
as needed
as required for 8.8 – 9.2 ppg
if required for <10 FL
0.1 ppb
11.5 At TD; PU 2-3 stands off bottom to avoid washing out the hole at TD, CBU, pump tandem
sweeps and drop viscosity.
11.6 RIH to bottom, proceed to BROOH to HWDP
x Pump at full drill rate (400-600 gpm), and maximize rotation.
x Pull slowly, 5 – 10 ft / minute, adjust as dictated by hole conditions
x Monitor well for any signs of packing off or losses.
x Have the flowline jets hooked up and be ready to jet the flowline at the first sign of clay
balling.
x If flow rates are reduced to combat overloaded shakers/flowline, stop back reaming until
parameters are restored.
11.7 TOOH and LD BHA
11.8 No open hole logging program planned.
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Prudhoe Bay West
L-207 SB Producer
Drilling Procedure V3
12.0 Run 9-5/8” Surface Casing
12.1 R/U and pull wearbushing.
12.2 R/U Weatherford 9-5/8” casing running equipment (CRT & Tongs)
x Ensure 9-5/8” BTC x NC50, and VAM 21 x NC50 XO on rig floor and M/U to FOSV.
x Use BOL 2000 thread compound. Dope pin end only w/ paint brush.
x R/U of CRT if hole conditions require.
x R/U a fill up tool to fill casing while running if the CRT is not used.
x Ensure all casing has been drifted to 8.75” on the location prior to running.
x Top 2,000’ of casing 47# drift 8.525”
x Be sure to count the total # of joints on the location before running.
x Keep hole covered while R/U casing tools.
x Record OD’s, ID’s, lengths, S/N’s of all components w/ vendor & model info.
12.3 P/U shoe joint, visually verify no debris inside joint.
12.4 Continue M/U & thread locking 120’ shoe track assembly consisting of:
9-5/8” Float Shoe
1 joint – 9-5/8” , 2 Centralizers 10’ from each end w/ stop rings
1 joint –9-5/8” , 1 Centralizer mid joint w/ stop ring
9-5/8” Float Collar w/ Stage Cementer Bypass Baffle ‘Top Hat’
1 joint –9-5/8” , 1 Centralizer mid joint with stop ring
9-5/8” HES Baffle Adaptor
x Ensure bypass baffle is correctly installed on top of float collar.
x Ensure proper operation of float equipment while picking up.
x Ensure to record S/N’s of all float equipment and stage tool components.
This end up.
Bypass Baffle
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12.5 Float equipment and Stage tool equipment drawings:
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12.6 Continue running 9-5/8” surface casing
x Fill casing while running using fill up line on rig floor.
x Use BOL 2000 thread compound. Dope pin end only w/ paint brush.
x Centralization:
x 1 centralizer every joint to ~ 1000’ MD from shoe
x 1 centralizer every 2 joints to ~2,000’ above shoe (Top of Lowest Ugnu)
x Verify depth of lowest Ugnu water sand for isolation with Geologist
x Utilize a collar clamp until weight is sufficient to keep slips set properly.
x Break circulation prior to reaching the base of the permafrost if casing run indicates poor
hole conditions.
x Any packing off while running casing should be treated as a major problem. It is preferable
to POH with casing and condition hole than to risk not getting cement returns to surface.
12.7 Install the Halliburton Type H ES-II Stage tool so that it is positioned at least 100’ TVD below
the permafrost (~ 2,500’ MD).
x Install centralizers over couplings on 5 joints below and 5 joints above stage tool.
x Do not place tongs on ES cementer, this can cause damaged to the tool.
x Ensure tool is pinned with 6 opening shear pins. This will allow the tool to open at 3300 psi.
9-5/8” 47# L-80 VAM21 Make-Up Torques:
Casing OD Minimum Optimum Maximum
9-5/8”28,400 ft-lbs 31,550 ft-lbs 34,650 ft-lbs
9-5/8” 40# L-80 BTC MUT:
Casing OD Minimum Optimum Maximum
9-5/8”To mark on pipe. Keep track of averages and investigate anomalies.
40# L-80 Collapse pressure = 3090, Internal Yield (BTC) 5750 psi, ID 8.835", Drift 8.679" from API
data tables.
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Drilling Procedure V3
47# L-80 to 2500' MD
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12.8 Continue running 9-5/8” surface casing
x Centralizers: 1 centralizer every 3rd joint to 200’ from surface
x Fill casing while running using fill up line on rig floor.
x Use BOL 2000 thread compound. Dope pin end only w/ paint brush.
x Centralization:
o 1 centralizer every 2 joints to base of conductor
12.9 The last 2,500’ of 9-5/8” will be 47#, from 2,500’ to Surface
x Ensure drifted to 8.525”
12.10 Watch displacement carefully and avoid surging the hole. Slow down running speed if
necessary.
12.11 Slow in and out of slips.
12.12 P/U landing joint and M/U to casing string. Position the casing shoe +/- 10’ from TD. Strap the
landing joint prior to the casing job and mark the joint at (1) ft intervals to use as a reference
when getting the casing on depth.
12.13 Lower casing to setting depth. Confirm measurements.
12.14 Have slips staged in cellar, along with necessary equipment for the operation.
12.15 Circulate and condition mud through CRT. Reduce YP to < 20 to help ensure success of cement
job. Ensure adequate amounts of cold M/U water are available to achieve this. If possible
reciprocate casing string while conditioning mud.
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13.0 Cement 9-5/8” Surface Casing
13.1 Hold a pre-job safety meeting over the upcoming cement operations. Make room in pits for
volume gained during cement job. Ensure adequate cement displacement volume available as
well. Ensure mud & water can be delivered to the cementing unit at acceptable rates.
x How to handle cement returns at surface. Ensure vac trucks are on standby and ready to
assist.
x Which pumps will be utilized for displacement, and how fluid will be fed to displacement
pump.
x Ensure adequate amounts of water for mix fluid is heated and available in the water tanks.
x Positions and expectations of personnel involved with the cementing operation.
i. Extra hands in the pits to strap during the cement job to identify any losses
x Review test reports and ensure pump times are acceptable.
x Conduct visual inspection of all hard lines and connections used to route slurry to rig floor.
13.2 Document efficiency of all possible displacement pumps prior to cement job.
13.3 Flush through cement pump and treating iron from pump to rig floor to the shakers. This will
help ensure any debris left in the cement pump or treating iron will not be pumped downhole.
13.4 R/U cement line (if not already done so). Company Rep to witness loading of the top and
bottom plugs to ensure done in correct order.
13.5 Fill surface cement lines with water and pressure test.
13.6 Pump remaining 60 bbls 10.5 ppg tuned spacer.
13.7 Drop bottom plug (flexible bypass plug) – HEC rep to witness. Mix and pump cement per below
calculations for the 1st stage, confirm actual cement volumes with cementer after TD is reached.
13.8 Cement volume based on annular volume + 30% open hole excess. Job will consist of lead &
tail, TOC brought to stage tool.
Estimated 1st Stage Total Cement Volume:
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Cement Slurry Design (1st Stage Cement Job):
13.8 Attempt to reciprocate casing during cement pumping if hole conditions allow. Watch
reciprocation PU and SO weights, if the hole gets “sticky”, cease pipe reciprocation and continue
with the cement job.
13.9 After pumping cement, drop top plug (Shutoff plug) and displace cement with spud mud out of
mud pits, spotting water across the HEC stage cementer.
x Ensure volumes pumped and volumes returned are documented and constant communication
between mud pits, HEC Rep and HES Cementers during the entire job.
13.10 Ensure rig pump is used to displace cement. Displacement calculations have proven to be very
accurate using 0.0625 bps (5” liners) for the Quattro pump output. To operate the stage tool
hydraulically, the plug must be bumped.
13.11 Displacement calculation:
2500’ x 0.0732 bpf + (7,174’-120’-2500’) x .0758 bpf = 528.3 bbls
60 bbls of tuned spacer to be left behind stage tool
13.12 Monitor returns closely while displacing cement. Adjust pump rate if losses are seen at any
point during the job. Be prepared to pump out fluid from cellar. Have black water available to
contaminate any cement seen at surface.
13.13 If plug is not bumped at calculated strokes, double check volumes and calculations. Over
displace by no more than 50% of shoe track volume, ±4.5 bbls before consulting with Drilling
Engineer.
13.14 If plug is not bumped, consult with Drilling Engineer. Ensure the free fall stage tool opening
plug is available if needed. This is the back-up option to open the stage tool if the plugs are not
bumped.
13.15 Bump the plug with 500 psi over displacement pressure. Bleed off pressure and confirm floats
are holding. If floats do not hold, pressure up string to final circulating pressure and hold until
cement is set. Monitor pressure build up and do not let it exceed 500 psi above final circulating
pressure if pressure must be held, this is to ensure the stage tool is not prematurely opened.
Lead Slurry Tail Slurry
Density 12.0 lb/gal 15.8 lb/gal
Yield 2.35 ft3/sk 1.16 ft3/sk
Mix Water 13.92 gal/sk 4.98 gal/sk
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13.16 Increase pressure to 3,300 psi to open circulating ports in stage collar. Slightly higher pressure
may be necessary if TOC is above the stage tool. CBU and record any spacer or cement returns
to surface and volume pumped to see the returns. Circulate until YP < 20 again in preparation
for the 2nd stage of the cement job.
13.17 Be prepared for cement returns to surface. Dump cement returns in the cellar or open the shaker
bypass line to the cuttings tank. Have black water available and vac trucks ready to assist.
Ensure to flush out any rig components, hard lines and BOP stack that may have come in contact
with the cement.
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Second Stage Surface Cement Job:
13.18 Prepare for the 2
nd stage as necessary. Circulate until first stage reaches sufficient compressive
strength. Try to maintain flow rate through stage tool until 2nd stage is ready. Hold pre-job safety
meeting.
x Past wells have seen pressure increase while circulating through stage tool after reduced
rate
13.19 HEC representative to witness the loading of the ES cementer closing plug in the cementing
head.
13.20 Fill surface lines with water and pressure test.
13.21 Pump remaining 60 bbls 10.5 ppg tuned spacer.
13.22 Mix and pump cmt per below recipe for the 2
nd stage.
13.23 Cement volume based on annular volume + open hole excess (200% for lead and 100% for tail).
Job will consist of lead & tail, TOC brought to surface. However cement will continue to be
pumped until clean spacer is observed at surface.
Estimated 2nd Stage Total Cement Volume:
Cement Slurry Design (2nd stage cement job):
Lead Slurry Tail Slurry
System Permafrost L G
Density 10.7 lb/gal 15.8 lb/gal
Yield 4.41 ft3/sk 1.17 ft3/sk
Mixed
Water 22.02 gal/sk 5.08 gal/sk
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13.24 Continue pumping lead until uncontaminated spacer is seen at surface, then switch to tail.
13.25 After pumping cement, drop ES Cementer closing plug and displace cement with spud mud out
of mud pits.
13.26 Displacement calculation:
2500’ x 0.0732 bpf = 183 bbls mud
13.27 Monitor returns closely while displacing cement. Adjust pump rate if necessary. Wellhead side
outlet valve in cellar can be opened to take returns to cellar if required. Be prepared to pump out
fluid from cellar. Have black water available to retard setting of cement.
13.28 Decide ahead of time what will be done with cement returns once they are at surface. We should
circulate approximately 100 - 150 bbls of cement slurry to surface.
13.29 Land closing plug on stage collar and pressure up to 1,000 – 1,500 psi to ensure stage tool closes.
Follow instructions of Halliburton personnel. Bleed off pressure and check to ensure stage tool
has closed. Slips will be set as per plan to allow full annulus for returns during surface cement
job. Set slips.
13.30 Make initial cut on 9-5/8” final joint. L/D cut joint. Make final cut on 9-5/8”. Dress off stump.
Install 9-5/8” wellhead. If transition nipple is welded on, allow to cool as per schedule.
Ensure to report the following on wellez:
x Pre flush type, volume (bbls) & weight (ppg)
x Cement slurry type, lead or tail, volume & weight
x Pump rate while mixing, bpm, note any shutdown during mixing operations with a duration
x Pump rate while displacing, note whether displacement by pump truck or mud pumps, weight & type
of displacing fluid
x Note if casing is reciprocated or rotated during the job
x Calculated volume of displacement , actual displacement volume, whether plug bumped & bump
pressure, do floats hold
x Percent mud returns during job, if intermittent note timing during pumping of job. Final circulating
pressure
x Note if pre flush or cement returns at surface & volume
x Note time cement in place
x Note calculated top of cement
x Add any comments which would describe the success or problems during the cement job
Send final “As-Run” casing tally & casing and cement report to jengel@hilcorp.com and
joseph.lastufka@hilcorp.com This will be included with the EOW documentation that goes to the
AOGCC.
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14.0 ND Diverter, NU BOPE, & Test
14.1 ND the diverter T, knife gate, diverter line & NU 11” x 13-5/8” 5M casing spool.
14.2 NU 13-5/8” x 5M BOP as follows:
x BOP configuration from top down: 13-5/8” x 5M annular / 13-5/8” x 5M double gate / 13-
5/8” x 5M mud cross / 13-5/8” x 5M single gate
x Double gate ram should be dressed with 2-7/8” x 5-1/2” VBRs in top cavity,blind ram in
bottom cavity.
x Single ram can be dressed with 2-7/8” x 5-1/2” VBRs or 5” solid body rams
x NU bell nipple, install flowline.
x Install (1) manual valve & HCR valve on kill side of mud cross. (Manual valve closest to
mud cross).
x Install (1) manual valve on choke side of mud cross. Install an HRC outside of the manual
valve.
14.3 RU MPD RCD and related equipment
14.4 Run 5” BOP test plug
14.5 Test BOP to 250/3,000 psi for 5/5 min. Test annular to 250/2,500 psi for 5/5 min.
x Test with 5” test joint and test VBR’s with 3-1/2” test joint
x Confirm test pressures with PTD
x Ensure to monitor side outlet valves and annulus valve pressure gauges to ensure no pressure
is trapped underneath test plug
x Once BOPE test is complete, send a copy of the test report to town engineer and drilling tech
14.6 RD BOP test equipment
14.7 Dump and clean mud pits, send spud mud to G&I pad for injection.
14.8 Mix 8.9 ppg Baradrill-N fluid for production hole.
14.9 Set wearbushing in wellhead.
14.10 If needed, rack back as much 5” DP in derrick as possible to be used while drilling the hole
section.
14.11 Ensure 5” liners in mud pumps.
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Drilling Procedure V3
15.0 Drill 8-1/2” Hole Section
15.1 MU 8-1/2” Cleanout BHA (Milltooth Bit & 1.22° PDM)
15.2 TIH w/ 8-1/2” cleanout BHA to stage tool. Note depth TOC tagged on AM report. Drill out
stage tool.
15.3 TIH to TOC above the baffle adapter. Note depth TOC tagged on morning report.
15.4 RU and test casing to 2,500 psi / 30 min. Ensure to record volume / pressure (every ¼ bbl) and
plot on FIT graph. AOGCC reg is 50% of burst = 5,750 / 2 = ~2,875 psi, but max test pressure
on the well is 2,500 psi as per AOGCC. Document incremental volume pumped (and subsequent
pressure) and volume returned. Ensure rams are used to test casing as per AOGCC Industry
Guidance Bulletin 17-001.
15.5 Drill out shoe track and 20’ of new formation.
15.6 CBU and condition mud for FIT.
15.7 Conduct FIT to 12.0 ppg EMW. Chart Test. Ensure test is recorded on same chart as casing test.
Document incremental volume pumped (and subsequent pressure) and volume returned.
15.8 POOH and LD cleanout BHA
15.9 PU 8-1/2” directional BHA.
x Ensure BHA components have been inspected previously.
x Drift and caliper all components before MU. Visually verify no debris inside components that
cannot be drifted.
x Ensure TF offset is measured accurately and entered correctly into the MWD software.
x Ensure MWD is RU and operational.
x Have DD run hydraulics calculations on site to ensure optimum nozzle sizing. Hydraulics
calculations and recommended TFA is attached below.
x Drill string will be 5” 19.5# S-135 NC50.
x Run a ported float in the production hole section.
Schrader Bluff Bit Jetting Guidelines
Formation Jetting TFA
NB 6 x 14 0.902
OA 6 x 13 0.778
OB 6 x 13 0.778
FIT and casing test digital data to AOGCC.
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15.10 8-1/2” hole section mud program summary:
x Density: Weighting material to be used for the hole section will be calcium carbonate.
Additional calcium carbonate will be on location to weight up the active system (1) ppg
above highest anticipated MW.
x Solids Concentration: It is imperative that the solids concentration be kept low while
drilling the production hole section. Keep the shaker screen size optimized and fluid
running to near the end of the shakers. It is okay if the shakers run slightly wet to ensure
we are running the finest screens possible.
x Rheology: Keep viscosifier additions to an absolute minimum (N-VIS). Data suggests
excessive viscosifier concentrations can decrease return permeability. Do not pump high
vis sweeps, instead use tandem sweeps. Ensure 6 rpm is > 8.5 (hole diameter) for
sufficient hole cleaning
x Run the centrifuge continuously while drilling the production hole, this will help with
solids removal.
x Dump and dilute as necessary to keep drilled solids to an absolute minimum.
x MD Totco PVT will be used throughout the drilling and completion phase. Remote
monitoring stations will be available at the driller’s console, Co Man office, &
Toolpusher office.
System Type:8.9 – 9.5 ppg Baradrill-N drilling fluid
Properties:
Interval Density PV YP
LSYP Total Solids MBT HPH
T
Hardness
Production 8.9-9.5 15-25 - ALAP 15 - 30 4-6 <10% <8 <11.0 <100
System Formulation:
Product Concentration
Water
KCL
KOH
N-VIS
DEXTRID LT
BARACARB 5
BARACARB 25
BARACARB 50
BARACOR 700
BARASCAV D
X-CIDE 207
0.955 bbl
11 ppb
0.1 ppb
1.0 – 1.5 ppb
5 ppb
4 ppb
4 ppb
2 ppb
1.0 ppb
0.5 ppb
0.015 ppb
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Drilling Procedure V3
15.11 TIH with 8-1/2” directional assembly to bottom
15.12 Install MPD RCD
15.13 Displace wellbore to 8.9 ppg Baradrill-N drilling fluid
15.14 Begin drilling 8-1/2” hole section, on-bottom staging technique:
x Tag bottom and begin drilling with 100 - 120 rpms at bit. Allow WOB to stabilize at 5-8K.
x Slowly begin bringing up rpms, monitoring stick slip and BHA vibrations
x If BHA begins to show excessive vibrations / whirl / stick slip, it may be necessary to PU
off bottom and restart on bottom staging technique. If stick slip continues, consider adding
0.5% lubes
15.14 Drill 8-1/2” hole section to section TD per Geologist and Drilling Engineer.
x Flow Rate: 350-550 GPM, target min. AV’s 200 ft/min, 385 GPM
x RPM: 120+
x Ensure shaker screens are set up to handle this flowrate. Ensure shakers are running slightly
wet to maximize solids removal efficiency. Check for holes in screens on every connection.
x Keep pipe movement with pumps off to slow speeds, to keep surge and swab pressures low
x Take MWD surveys every stand, can be taken more frequently if deemed necessary, ex:
concretion deflection
x Monitor Torque and Drag with pumps on every 5 stands
x Monitor ECD, pump pressure & hookload trends for hole cleaning indication
x Good drilling and tripping practices are vital for avoidance of differential sticking. Make
every effort to keep the drill string moving whenever possible and avoid stopping with the
BHA across the sand for any extended period of time.
x Use ADR to stay in section. Reservoir plan is to stay in OBa sand.
x Limit maximum instantaneous ROP to < 250 FPH. The sands will drill faster than this, but
when concretions are hit when drilling this fast, cutter damage can occur.
x Target ROP is as fast as we can clean the hole without having to backream connections
x Schrader Bluff OBa Concretions: 4-6% Historically
x MPD will be utilized to monitor pressure build up on connections.
x 8-1/2” Lateral A/C:
x There are no wells with a clearance factor <1.0.
15.15 Reference:Halliburton has a procedure for Schrader OH sidetracks based on lessons
learned and best practices. Ensure the DD is referencing their procedure.
x Patience is key! Getting kicked off too quickly might have been the cause of failed liner
runs on past wells.
x If a known fault is coming up, put a slight “kick-off ramp” in wellbore ahead of the fault so
we have a nice place to low side.
x Attempt to lowside in a fast drilling interval where the wellbore is headed up.
x Orient TF to low side and dig a trough with high flowrates for the first 30 feet, working
string back and forth. Trough for approximately 30 minutes.
n OBa sand.
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x Time drill at 4 to 6 feet per hour with high flow rates. Gradually increase ROP as the
openhole sidetrack is achieved.
15.16 At TD, CBU at least 4 times at 200 ft/min AV (385+ GPM) and rotation (120+ RPM). Pump
tandem sweeps if needed
x Monitor BU for increase in cuttings, cuttings in laterals come back in waves and not a consistent
stream, circulate more if necessary
x If seepage losses are seen while drilling, consider reducing MW at TD to 9.0 ppg minimum
15.17 Mix and pump 40 bbl 10 ppb SAPP pill. Line up to a closed loop system and circulate three SAP
pills with 50 bbl in between. Displace out SAP pills. Monitor shakers for returns of mud filter
cake and calcium carbonate. Circulate the well clean.
Losses during the cleanup of the wellbore are a good indication that the mud filter cake is being
removed, including an increase in the loss rate.
15.18 Displace 1.5 OH + liner volume with viscosified brine.
x Proposed brine blend (same as used on M-16, aiming for an 8 on the 6 RPM reading) -
KCl: 7.1ppb for 2%
NaCl: 60.9ppg for 9.4ppg
Lotorq: 1.5%
Lube 776: 1.5%
Soda Ash: as needed for 9.5pH
Busan 1060: 0.42ppb
Flo-Vis Plus: 1.25ppb
x Monitor well for loss rate and contact Drilling Engineer and/or Ops Engineer if further
discussion needed prior to BROOH.
15.15 Monitor the returned fluids carefully while displacing to brine. After 1 (or more if needed) BU,
Perform production screen test (PST). The brine has been properly conditioned when it will pass
the production screen test (x3 350 ml samples passing through the screen in the same amount
of time which will indicate no plugging of the screen). Reference PST Test Procedure
15.19 BROOH with the drilling assembly to the 9-5/8” casing shoe
x Circulate at full drill rate (less if losses are seen, 350 GPM minimum).
x Rotate at maximum RPM that can be sustained.
x Pulling speed 5 – 10 min/stand (slip to slip time, not including connections), adjust as
dictated by hole conditions
x If backreaming operations are commenced, continue backreaming to the shoe
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15.20 If abnormal pressure has been observed in the lateral, utilize MPD to close on connections while
BROOH.
15.21 CBU minimum two times at 9-5/8” shoe and clean casing with high vis sweeps.
15.22 Monitor well for flow/pressure build up with MPD. Increase fluid weight if necessary.
x Wellbore breathing has been seen on past MPU SB wells. Perform extended flow checks to
determine if well is breathing, treat all flow as an influx until proven otherwise
x If necessary, increase MW at shoe for any higher than expected pressure seen
x Ensure fluid coming out of hole has passed a PST at the possum belly
15.23 POOH and LD BHA.
15.24 Continue to POOH and stand back BHA if possible. Rabbit DP on TOOH, ensure rabbit
diameter is sufficient for future ball drops.
Only LWD open hole logs are planned for the hole section (GR + Res). There will not be any
additional logging runs conducted.
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16.0 Run 4-1/2” Screened Liner
16.1 Well control preparedness: In the event of an influx of formation fluids while running the 4-
1/2” screened liner, the following well control response procedure will be followed:
x P/U & M/U the 5” safety joint (with 4-1/2” crossover installed on bottom, TIW valve in open
position on top, 4-1/2” handling joint above TIW). This joint shall be fully M/U and
available prior to running the first joint of 4-1/2” screened liner.
x Slack off and with 5” DP across the BOP, shut in ram or annular on 5” DP. Close TIW.
x Proceed with well kill operations.
16.2 R/U 4-1/2” liner running equipment.
x Ensure 4-1/2” 11.6# EZGO x NC50 crossover is on rig floor and M/U to FOSV.
x Ensure all casing has been drifted on the deck prior to running.
x Be sure to count the total # of joints on the deck before running.
x Keep hole covered while R/U casing tools.
x Record OD’s, ID’s, lengths, S/N’s of all components w/ vendor & model info.
16.3 Run 4-1/2” screened production liner
x Use API Modified or “Best O Life 2000 AG”thread compound. Dope pin end only w/ paint
brush. Wipe off excess. Thread compound can plug the screens
x Utilize a collar clamp until weight is sufficient to keep slips set properly.
x Use lift nubbins and stabbing guides for the liner run.
x Fill 4-½” liner with PST passed mud (to keep from plugging screens with solids)
x Install screen joints as per the Running Order (From Completion Engineer post TD).
o Do not place tongs or slips on screen joints
o Screen placement ±40’
o The screen connection is 4-1/2” 11.6# EZGO HT
x If liner length exceeds surface casing length, ensure centralizers are placed 1/jt for each joint
outside of the surface shoe. This is to mitigate difference sticking risk while running inner
string.
x Obtain up and down weights of the liner before entering open hole. Record rotating torque at
10 and 20 rpm
4-1/2” 11.6 # EZGO HT Torque
OD Minimum Maximum Yield Torque
4-1/2 4,007 ft-lbs 6,144 ft-lbs 11,537 ft-lbs
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16.6. Ensure to run enough liner to provide for approx 150’ overlap inside 9-5/8” casing. Ensure
hanger/pkr will not be set in a 9-5/8” connection.
x AOGCC regulations require a minimum 100’ overlap between the inner and outer strings as
per 20 AAC 25.030(d)(6). Do not place liner hanger/packer across 9-5/8” connection.
16.7. Before picking up Baker SLZXP liner hanger / packer assy, count the # of joints on the pipe deck
to make sure it coincides with the pipe tally.
16.8. M/U Baker SLZXP liner top packer to 4-1/2” liner.
16.9. Note: PU, SO, ROT and torque of liner. Run liner in the hole one stand and pump through liner
hanger to ensure a clear flow path exists.
16.10. RIH with liner no faster than 30 ft/min – this is to prevent buckling the liner and drill string and
weight transfer to get liner to bottom with minimal rotation. Watch displacement carefully and
avoid surging the hole or buckling the liner. Slow down running speed if necessary.
x Ensure 5” DP/HWDP has been drifted
x There is no inner string planned to be run, as opposed to previous wells. The DP should auto
fill. Monitor FL and if filling is required due to losses/surging.
16.11. Slow in and out of slips. Ensure accurate slack off data is gathered during RIH. Record shoe
depth + SO depth every stand. Record torque value if it becomes necessary to rotate the string to
bottom.
16.12. Obtain up and down weights of the liner before entering open hole. Record rotating torque at 10,
& 20 RPM.
16.13. If any open hole sidetracks have been drilled, monitor sidetrack depths during run in and ensure
shoe enters correct hole.
16.14. TIH deeper than planned setting depth. Last motion of the liner should be up to ensure it is set in
tension.
16.15. Rig up to pump down the work string with the rig pumps.
16.16. Break circulation. Begin circulating at ~1 BPM and monitor pump pressures. Do not exceed
1,600 psi while circulating.Pusher tool is set at 2,100 psi with 5% shear screws but it should be
discussed before exceeding 1,600 psi. Note all losses. Confirm all pressures with Baker
16.17. Prior to setting the hanger and packer, double check all pipe tallies and record amount of drill
pipe left on location. Ensure all numbers coincide with proper setting depth of liner hanger.
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16.18. Shut down pumps. Drop setting ball (ball seat now located in HRDE setting tool and not at the
WIV) down the workstring and pump slowly (1-2 BPM). Slow pump before the ball seats. Do
not allow ball to slam into ball seat.
16.19. Continue pressuring up to 2,700 psi to set the SLZXP liner hanger/packer. Hold for 5 minutes.
Slack off 20K lbs on the SZXP liner hanger/packer to ensure the HRDE setting tool is in
compression for release from the SLZXP liner hanger/packer. Continue pressuring up 4,500 psi
to release the HRDE running tool.
16.20. Bleed DP pressure to 0 psi. Pick up to expose rotating dog sub and set down 50K without
pulling sleeve packoff. Pick back up without pulling sleeve packoff, begin rotating at 10-20
RPM and set down 50K again.
16.21. PU to neutral weight, close BOP and test annulus to 1,500 psi for 10 minutes charted.
16.22. Bleed off pressure and open BOPE. Pickup to verify that the HRD setting tool has released. If
packer did not test, rotating dog sub can be used to set packer. If running tool cannot be
hydraulically released, apply LH torque to mechanically release the setting tool.
16.23. PU pulling running tool free of the packer and displace with at max rate to wash the liner top.
Pump sweeps as needed.
16.24. POOH. LD and inspect running tools. If setting of liner hanger/packer proceeded as planned,
LD DP on the TOOH.
Note: Once running tool is LD, swap to the completion AFE.
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17.0 Run 7” Tieback
17.1 RU and pull wear bushing. Get an accurate measurement of RKB to tubing hanger load shoulder
to be used for tie-back space out calculation. Install 7” solid body casing rams in the upper ram
cavity. RU testing equipment. PT to 250/3,000 psi with 7” test joint. RD testing equipment.
17.2 RU 7” casing handling equipment.
x Ensure XO to DP made up to FOSV and ready on rig floor.
x Rig up computer torque monitoring service.
x String should stay full while running, RU fill up line and check as appropriate.
17.3 PU 7” tieback seal assembly and set in rotary table. Ensure 7” seal assembly has (4) 1” holes
above the first seal. These holes will be used to spot diesel freeze protect in the 9-5/8” x 7”
annulus.
17.4 MU first joint of 7” to seal assy.
17.6 Run 7”, 26#, L-80 VAMTOP Gas tight tieback to position seal assembly two joints above
tieback sleeve. Record PU and SO weights.
7”, 26#, L-80, VAMTOP
=Casing OD Torque (Min) Torque (Opt)Torque (Max)
7”10,850 ft-lbs 11,950 ft-lbs 13,050 ft-lbs
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Drilling Procedure V3
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17.7 MU 7” to DP crossover.
17.8 MU stand of DP to string, and MU top drive.
17.9 Break circulation at 1 BPM and begin lowering string.
17.10 Note seal assembly entering tieback sleeve with a pressure increase, stop pumping and bleed off
pressure. Leave standpipe bleed off valve open.
17.11 Continue lowering string and land out on no-go. Set down 5 – 10K and mark the pipe as “NO-
GO DEPTH”.
17.12 PU string & remove unnecessary 7” joints.
17.13 Space out with pups as needed to leave the no-go 1 ft above fully no-go position when the casing
hanger is landed. Ensure one full joint is below the casing hanger.
17.14 PU and MU the 7” casing hanger.
17.15 Ensure circulation is possible through 7” string.
17.16 RU and circulation corrosion inhibited brine in the 9-5/8” x 7” annulus.
17.17 With seals stabbed into tieback sleeve, spot diesel freeze protection from 2,500’ TVD to surface
in 9-5/8” x 7” annulus by reverse circulating through the holes in the seal assembly. Ensure
annular pressure are limited to prevent collapse of the 7” casing (verify collapse pressure of 7”
tieback seal assembly).
17.18 SO and land hanger. Confirm hanger has seated properly in wellhead. Make note of actual
weight on hanger on morning report.
17.19 Back out the landing joint. MU packoff running tool and install packoff on bottom of landing
joint. Set casing hanger packoff and RILDS. PT void to 3,000 psi for 10 minutes.
17.20 RD casing running tools.
17.21 PT 9-5/8” x 7” annulus to 1,500 psi for 30 minutes charted.
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18.0 Run Upper Completion/ Post Rig Work – Gas Lift
18.1 RU to run 4-1/2”, 12.6#, L-80 VAMTOP tubing.
x Ensure wear bushing is pulled.
x Ensure 4-1/2”, L-80, 13.5#, VAMTOP x XT-39 crossover is on rig floor and M/U to FOSV.
x Ensure all tubing has been drifted in the pipe shed prior to running.
x Be sure to count the total # of joints in the pipe shed before running.
x Keep hole covered while RU casing tools.
x Record OD’s, ID’s, lengths, SN’s of all components with vendor & model info.
x Monitor displacement from wellbore while RIH.
18.2 PU, MU and RH with the following 4-1/2” GL completion jewelry (tally to be provided by
Operations Engineer):
x Tubing Jewelry to include:
x 4x ‘X’ Nipple
x 4x GLM
x 1x WLEG
x 1x Packer
x XXX joints, 4-1/2”, 12.6#, L-80, VAMTOP
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Drilling Procedure V3
Colors indicate assemblies to be bucked up prior to Rig
Nom.
Size Thread ~Length Item Lb/ft Material Notes
4.5''VAM WLEG L-80
4.5''VAM 13.5 Pup Joint 12.6 L-80
4.5''VAM X Nip with RHC profile 12.6 L-80 Will Require RHC profile
4.5''VAM 13.5'Pup Joint 12.6 L-80
4.5''VAM 1 joint 12.6 L-80
4.5''VAM 13.5 Pup Joint 12.6 L-80
4.5''VAM X Nip 12.6 L-80
4.5''VAM 13.5'Pup Joint 12.6 L-80
4.5''VAM 1 joint 12.6 L-80
4.5''VAM 13.5 Pup Joint 12.6 L-80
4.5''VAM 7” 4-1/2” Packer 12.6 L-80 From HAL TNT Packer. Set below the
7" tie back
4.5''VAM 13.5 Pup Joint 12.6 L-80
4.5''VAM 1 joint 12.6 L-80
4.5''VAM 13.5 Pup Joint 12.6 L-80
4.5''VAM X Nip 12.6 L-80 HAL
4.5''VAM 13.5 Pup Joint 12.6 L-80
4.5''VAM 1 joint 12.6 L-80
4.5''VAM 13.5 Pup Joint 12.6 L-80
4.5''VAM GLM #1 with DMY 12.6 L-80 HAL
4.5''VAM 13.5 Pup Joint 12.6 L-80
4.5''VAM Joints 12.6 L-80
4.5''VAM 13.5 Pup Joint 12.6 L-80
4.5''VAM GLM #2 with DMY 12.6 L-80 HAL
4.5''VAM 13.5 Pup Joint 12.6 L-80
4.5''VAM Joints 12.6 L-80
4.5''VAM 13.5 Pup Joint 12.6 L-80
4.5''VAM GLM #3 with shear valve 12.6 L-80 HAL GLM3 will have shear valve set at
2500 psi.
4.5''VAM 13.5 Pup Joint 12.6 L-80
4.5''VAM Joints 12.6 L-80
4.5''VAM 13.5 Pup Joint 12.6 L-80
4.5''VAM GLM #4 with DMY 12.6 L-80 HAL
4.5''VAM 13.5 Pup Joint 12.6 L-80
4.5''VAM Joints 12.6 L-80
4.5''VAM 13.5 Pup Joint 12.6 L-80
4.5''VAM X Nip @ 2200 MD 12.6 L-80
4.5''VAM 13.5 Pup Joint 12.6 L-80
4.5''VAM Joints 12.6 L-80
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Drilling Procedure V3
4.5''VAM Space out PUPS 12.6 L-80
4.5''VAM 1 joint 12.6 L-80
4.5''VAM(p) X
TCII (p)PUP 12.6 L-80
4.5''TCII Tubing Hanger 12.6 L-80
Pups to be made and staged
Nom.
Size Thread Quantity Item Lb/ft Material Notes
4.5''VAM 2 10' Pup Joint 9.3 L-80 Space out
4.5''VAM 2 8' Pup Joint 9.3 L-80 Space out
4.5''VAM 2 6' Pup Joint 9.3 L-80 Space out
4.5''VAM 2 4' Pup Joint 9.3 L-80 Space out
4.5''VAM 16 13.5' Pup Joint 9.3 L-80 Packer GLM and Nips handling pups
4.5''VAM(p) X
TCII (p)1 10 Pup Joint 9.3 L-80 Tubing Hanger
18.3 PU and MU the 4-1/2” tubing hanger. Make final splice of any TEC wire used and ensure any
unsued control line ports are dummied off.
18.4 Record PU and SO weights before landing hanger. Note PU and SO weights on tally along with
band/clamp summary.
18.5 Land the tubing hanger and RILDS. Lay down the landing joint.
18.6 Install 4” HP BPV. ND BOP. Install the plug off tool.
18.7 NU the tubing head adapter and NU the tree.
18.8 PT the tubing hanger void to 500/5,000 psi. PT the tree to 250/5,000 psi.
18.9 Pull the plug off tool and BPV.
18.10 Reverse circulate the well over to corrosion inhibited source water follow by 85 bbls of diesel
freeze protect for both tubing and IA to 2,500’ MD.
18.11 Drop the ball & rod and complete loading tubing and hydraulically set the packer as per
Halliburton’s setting procedure
18.12 Pressure up and test the tubing to 3500 psi for MIT-T with 1000 psi on the IA. Bleed off the
tubing to 2000psi. Test the IA to 3500 psi for MIT-IA. Bleed off the tubing and observe DCK
shear. Confirm circulation in both directions thru the sheared valve. Record and notate all
pressure tests (30 minutes) on chart.
18.13 Bleed both the IA and tubing to 0 psi.
18.14 Rig up jumper from IA to tubing to allow freeze protect to swap.
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Drilling Procedure V3
18.15 Prepare to hand over well to production. Ensure necessary forms filled out and well handed over
with valve alignment as per operations personnel.
18.16 RDMO Innovation
i. POST RIG WELL WORK
1. SL
a. Change out GLV per GL ENGR
b. Pull ball and rod and RHC
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19.0 Innovation Rig Diverter Schematic
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20.0 Innovation Rig BOP Schematic
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21.0 Wellhead Schematic
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22.0 Days Vs Depth
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23.0 Formation Tops & Information
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24.0 Anticipated Drilling Hazards
12-1/4” Hole Section:
Lost Circulation
Ensure adequate amounts of LCM are available. Monitor fluid volumes to detect any early signs of lost
circulation. For minor seepage losses, consider adding small amounts of calcium carbonate.
Gas Hydrates/Free Gas
Gas hydrates have been seen on PBU L Pad. They were reported between 1660’ and 2740’ TVD. MW
has been chosen based upon successful trouble free penetrations of offset wells.
x PBU L-206 (2021) saw gas hydrates from the base of permafrost to top of Ugnu 4, with the
highest levels in the SV3 & 2.
o Keep mud temperature as cool as possible, Target 60-70*F
o Dump and dilute as necessary to maintain temp, utilize cold water on the rig as well as
cold premade mud on trucks ready
o Drill through hydrate sands and quickly as possible, do not backream.
Remember that hydrate gas behaves differently from a gas sand. Additional fluid density will not
prevent influx of gas hydrates, but can help control the breakout at surface. Once a gas hydrate has been
disturbed the gas will come out of the hole. Drill through the hydrate section as quickly as possible
while minimizing gas belching. Minimize circulation time while drilling through the hydrate zone.
Excessive circulation will accelerate formation thawing which can increase the amount of hydrates
released into the wellbore. Keep the mud circulation temperature as cold as possible. Weigh mud with
both a pressurized and non-pressurized mud scale. The non-pressurized scale will reflect the actual mud
cut weight. Isolate/dump contaminated fluid to remove hydrates from the system.
Hole Cleaning:
Maintain rheology of mud system. Sweep hole with high viscosity sweeps as necessary. Optimize
solids control equipment to maintain density, sand content, and reduce the waste stream. Monitor
ECD’s to determine if additional circulation time is necessary. In a highly deviated wellbore, pipe
rotation is critical for effective hole cleaning. Rotate at maximum RPM’s when CBU, and keep pipe
moving to avoid washing out a particular section of the hole. Ensure to clean the hole with rotation after
slide intervals. Do not out drill our ability to clean the hole.
Anti-Collison:
There are no known wells with a clearance factory <1.0. Take directional surveys every stand, take
additional surveys if necessary. Continuously monitor proximity to offset wellbores and record any
close approaches on AM report.
Well Specific A/C:
x There are no wells with a clearance factor of <1.0
Wellbore stability (Permafrost, running sands and gravel, conductor broaching):
Washouts in the permafrost can be severe if the string is left circulating across it for extended periods of
time. Keep mud as cool as possible by taking on cold water and diluting often. High TOH and RIH
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Drilling Procedure V3
speeds can aggravate fragile shale/coal formations due to the pressure variations between surge and
swab. Bring the pumps on slowly after connections. Monitor conductor for any signs of broaching.
Maintain mud parameters and increase MW to combat running sands and gravel formations.
H2S:
Treat every hole section as though it has the potential for H2S. PBU L-pad has a history of H2S on
wells in all reservoirs. Below are the most recent H2S values of monitored wells in the Shrader / Orion
Pool.
1. The AOGCC will be notified within 24 hours if H2S is encountered in excess of 20 ppm during
drilling operations.
2. The rig will have fully functioning automatic H2S detection equipment meeting the requirements
of 20 AAC 25.066.
3. In the event H2S is detected, wellwork will be suspended and personnel evacuated until a
detailed mitigation procedure can be developed.
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Drilling Procedure V3
8-1/2” Hole Section:
Hole Cleaning:
Maintain rheology of mud system. Sweep hole with low-vis water sweeps. Ensure shakers are set up
with appropriate screens to maximize solids removal efficiency. Run centrifuge continuously. Monitor
ECDs to determine if additional circulation time is necessary. In a highly deviated wellbore, pipe
rotation is critical for effective hole cleaning. Rotate at maximum RPMs when CBU, and keep pipe
moving to avoid washing out a particular section of the wellbore. Ensure to clean the hole with rotation
after slide intervals. Do not out drill our ability to clean the hole. Maintain circulation rate of > 300
gpm
Lost Circulation:
Ensure adequate amounts of LCM are available. Monitor fluid volumes to detect any early signs of lost
circulation. For minor seepage losses, consider adding small amounts of calcium carbonate.
Faulting:
Crossing faults, known or unknown, can result in drilling into unstable formations that may impact
future drilling and liner runs. Talk with Geologist to ensure all known faults are identified and prepared
for accordingly.
H2S:
Treat every hole section as though it has the potential for H2S. PBU L-pad has a history of H2S on
wells in all reservoirs. Below are the most recent H2S values of monitored wells in the Shrader / Orion
Pool.
1. The AOGCC will be notified within 24 hours if H2S is encountered in excess of 20 ppm during
drilling operations.
2. The rig will have fully functioning automatic H2S detection equipment meeting the requirements
of 20 AAC 25.066.
3. In the event H2S is detected, wellwork will be suspended and personnel evacuated until a
detailed mitigation procedure can be developed.
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Drilling Procedure V3
Abnormal Pressures and Temperatures:
Reservoir pressures are expected to be normal. Utilize MPD to mitigate any abnormal pressure seen.
Anti-Collision
Take directional surveys every stand, take additional surveys if necessary. Continuously monitor
drilling parameters for signs of magnetic interference with another well. Reference A/C report in
directional plan.
Well Specific AC:
x There are no wells with a clearance factor <1.0.
p
Reservoir pressures are expected to be normal.
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Drilling Procedure V3
25.0 Innovation Rig Layout
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Prudhoe Bay West
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26.0 FIT Procedure
Formation Integrity Test (FIT) and
Leak-Off Test (LOT) Procedures
Procedure for FIT:
1. Drill 20' of new formation below the casing shoe (this does not include rat hole below the shoe).
2. Circulate the hole to establish a uniform mud density throughout the system. P/U into the shoe.
3. Close the blowout preventer (ram or annular).
4. Pump down the drill stem at 1/4 to 1/2 bpm.
5. On a graph with the recent casing test already shown, plot the fluid pumped (volume or strokes) vs.
drill pipe pressure until appropriate surface pressure is achieved for FIT at shoe.
6. Shut down at required surface pressure. Hold for a minimum 10 minutes or until the pressure stabilizes.
Record time vs. pressure in 1-minute intervals.
7. Bleed the pressure off and record the fluid volume recovered.
The pre-determined surface pressure for each formation integrity test is based on achieving an EMW at
least 1.0 ppg higher than the estimated reservoir pressure, and allowing for an appropriate amount of kick
tolerance in case well control measures are required.
Where required, the LOT is performed in the same fashion as the formation integrity test. Instead of
stopping at a pre-determined point, surface pressure is increased until the formation begins to take fluid;
at this point the pressure will continue to rise, but at a slower rate. The system is shut in and pressure
monitored as with an FIT.
Ensure that casing test and subsequent FIT tests are recorded on the same chart. Document incremental
volume pumped and returned during test.
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Drilling Procedure V3
27.0 Innovation Rig Choke Manifold Schematic
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Drilling Procedure V3
28.0 Casing Design
Page 57
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Drilling Procedure V3
29.0 8-1/2” Hole Section MASP
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30.0 Spider Plot (NAD 27) (Governmental Sections)
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31.0 Surface Plat (As Built) (NAD 27)
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32.0 Offset Wells TVD MW
MD TVD MW MD TVD MW MD TVD MW MD TVD MW
800 791.5 8.9 108 108.0 8.8 1000 998.47 9 1560 1514.07 9.3
1600 1498.3 9.2 2631 2187.4 9.4 3130 2616.42 9.7 3310 2630.56 9.7
3000 2228.4 9.7 4005 2762.5 9.2 4836 3567.24 9.6 4776 3494.73 9.2
3900 2686.6 9.5 6647 3879.0 9.1 6195 4417.2 9.6 6175 4366.7 9.2
5000 3253.8 9.2 8793 4843.0 9.2 7458 5419.14 9.6 7686 5500.14 9.2
6500 4028.8 9.2
7800 4488.0 9.3
Source IADC reports Drilling reports Drilling Reports Drilling reports
Comments No daily reports 3130' TD 3310 surf td
No MW issues noted on drilling summary report
L-117 L-118
Hydrates from 1950' to TD 4005
Hydrates breaking out at bell nipple at
4005 td
at 4005, reduced MW from 9.5 to
9.2ppg
L-200 L-217
6WDQGDUG3URSRVDO5HSRUW
6HSWHPEHU
3ODQ/ZS
+LOFRUS$ODVND//&
3UXGKRH%D\
/
3ODQ/
/
-60006001200180024003000360042004800True Vertical Depth (1200 usft/in)-600 0 600 1200 1800 2400 3000 3600 4200 4800 5400 6000 6600 7200 7800 8400 9000 9600 10200 10800Vertical Section at 307.00° (1200 usft/in)L-207-interp pointL-207 wp03 HeelL-207 wp03 cp1L-207 wp03 cp2L-207 srfc cp1L-207 wp03 cp3L-207 wp03 toe9 5/8" x 12 1/4"6 5/8" 8 1/2"50010001500200025003000350040004500500055006000650070007 500
800 0
850 0
90 00
9 500
1 0 000
1 0 500
11 0 0 0
11 5 0 0
1 20 00
1 250 0
13000
13500
14000
14500
14720L-207 wp05Start Dir 2º/100' : 250' MD, 250'TVDStart Dir 3º/100' : 450' MD, 449.84'TVDStart Dir 4º/100' : 650' MD, 648.32'TVDEnd Dir : 1830.57' MD, 1608.38' TVDStart Dir 3º/100' : 3528.45' MD, 2537.7'TVDEnd Dir : 3832.82' MD, 2714.8' TVDFault (50' throw)Start Dir 4º/100' : 5234.52' MD, 3575.38'TVDEnd Dir : 6435.22' MD, 4178.09' TVDStart Dir 4º/100' : 6563.18' MD, 4214.38'TVDStart Dir 2º/100' : 7173.2' MD, 4302.2'TVDEnd Dir : 7214' MD, 4301.93' TVDStart Dir 2º/100' : 9428.88' MD, 4272.2'TVDEnd Dir : 9478.75' MD, 4271.3' TVDStart Dir 2º/100' : 10540.5' MD, 4247.2'TVDEnd Dir : 10717.56' MD, 4243.22' TVDStart Dir 2º/100' : 12782.01' MD, 4197.2'TVDEnd Dir : 13085.21' MD, 4196.4' TVDTotal Depth : 14719.66' MD, 4224.2' TVDSV1Ugnu 4AUgnu LANAOA (Heel)Hilcorp Alaska, LLCCalculation Method:Minimum CurvatureError System:ISCWSAScan Method: Closest Approach 3DError Surface: Ellipsoid SeparationWarning Method: Error RatioWELL DETAILS: Plan: L-20745.70+N/-S+E/-WNorthingEastingLatitudeLongitude0.000.005978074.73583102.33 70° 21' 0.2576 N 149° 19' 31.1086 WSURVEY PROGRAMDate: 2021-07-26T00:00:00 Validated: Yes Version: Depth From Depth To Survey/Plan Tool26.50 1600.00 L-207 wp05 (L-207) 3_Gyro-MWD90+Sag1600.00 7174.00 L-207 wp05 (L-207) 3_MWD+IFR2+MS+Sag7174.00 14719.66 L-207 wp05 (L-207) 3_MWD+IFR2+MS+SagFORMATION TOP DETAILSTVDPath TVDssPath MDPath Formation2568.20 2496.00 3583.51 SV12902.20 2830.00 4138.05 Ugnu 4A3700.20 3628.00 5436.11 Ugnu LA4072.20 4000.00 6132.54 NA4217.20 4145.00 6573.21 OA (Heel)REFERENCE INFORMATIONCo-ordinate (N/E) Reference:Well Plan: L-207, True NorthVertical (TVD) Reference:L-207 As-built RKB @ 72.20usftMeasured Depth Reference:L-207 As-built RKB @ 72.20usftCalculation Method: Minimum CurvatureProject:Prudhoe BaySite:LWell:Plan: L-207Wellbore:L-207Design:L-207 wp05CASING DETAILSTVD TVDSS MD SizeName4302.20 4230.00 7174.00 9-5/8 9 5/8" x 12 1/4"4224.20 4152.00 14719.66 6-5/8 6 5/8" 8 1/2"SECTION DETAILSSec MD Inc Azi TVD +N/-S +E/-W Dleg TFace VSect Target Annotation1 26.50 0.00 0.00 26.50 0.00 0.00 0.00 0.00 0.002 250.00 0.00 0.00 250.00 0.00 0.00 0.00 0.00 0.00 Start Dir 2º/100' : 250' MD, 250'TVD3 450.00 4.00 0.00 449.84 6.98 0.00 2.00 0.00 4.20 Start Dir 3º/100' : 450' MD, 449.84'TVD4 650.00 9.77 15.09 648.32 30.36 4.42 3.00 25.00 14.74 Start Dir 4º/100' : 650' MD, 648.32'TVD5 750.00 13.60 20.91 746.24 49.55 10.83 4.00 20.00 21.176 1830.57 56.82 22.57 1608.38 612.72 240.73 4.00 2.03 176.49 End Dir : 1830.57' MD, 1608.38' TVD7 3528.45 56.82 22.57 2537.70 1924.85 786.14 0.00 0.00 530.57 L-207 srfc cp1 Start Dir 3º/100' : 3528.45' MD, 2537.7'TVD8 3832.82 52.12 12.93 2714.80 2160.03 862.07 3.00 -123.62 611.46 End Dir : 3832.82' MD, 2714.8' TVD9 5234.52 52.12 12.93 3575.38 3238.38 1109.72 0.00 0.00 1062.65 Start Dir 4º/100' : 5234.52' MD, 3575.38'TVD10 5488.93 51.50 0.00 3733.08 3436.32 1132.25 4.00 -97.51 1163.78 L-207-interp point11 6435.22 73.53 324.78 4178.09 4205.44 860.61 4.00 -64.34 1843.58 End Dir : 6435.22' MD, 4178.09' TVD12 6563.18 73.53 324.78 4214.38 4305.68 789.83 0.00 0.00 1960.44 Start Dir 4º/100' : 6563.18' MD, 4214.38'TVD13 7173.20 90.00 306.52 4302.20 4732.60 369.65 4.00 -49.32 2552.94 L-207 wp03 Heel Start Dir 2º/100' : 7173.2' MD, 4302.2'TVD14 7214.00 90.77 306.25 4301.93 4756.80 336.80 2.00 -19.54 2593.73 End Dir : 7214' MD, 4301.93' TVD15 9428.88 90.77 306.25 4272.20 6066.27 -1449.28 0.00 0.00 4808.22 L-207 wp03 cp1 Start Dir 2º/100' : 9428.88' MD, 4272.2'TVD16 9478.75 91.30 307.09 4271.30 6096.05 -1489.28 2.00 57.78 4858.08 End Dir : 9478.75' MD, 4271.3' TVD17 10540.50 91.30 307.09 4247.20 6736.21 -2335.99 0.00 0.00 5919.56 L-207 wp03 cp2 Start Dir 2º/100' : 10540.5' MD, 4247.2'TVD18 10717.56 91.28 310.63 4243.22 6847.26 -2473.81 2.00 90.34 6096.46 End Dir : 10717.56' MD, 4243.22' TVD19 12782.01 91.28 310.63 4197.20 8191.33 -4040.12 0.00 0.00 8156.25 L-207 wp03 cp3 Start Dir 2º/100' : 12782.01' MD, 4197.2'TVD20 13085.21 89.03 316.26 4196.40 8399.74 -4260.13 2.00 111.77 8457.39 End Dir : 13085.21' MD, 4196.4' TVD21 14719.66 89.03 316.26 4224.20 9580.51 -5389.92 0.00 0.00 10070.28 L-207 wp03 toe Total Depth : 14719.66' MD, 4224.2' TVD
-2000
-1000
0
1000
2000
3000
4000
5000
6000
7000
8000
9000
10000
11000
South(-)/North(+) (1500 usft/in)-6000 -5000 -4000 -3000 -2000 -1000 0 1000 2000 3000 4000
West(-)/East(+) (1500 usft/in)
L-207 wp03 toe
L-207 wp03 cp3
L-207 srfc cp1
L-207 wp03 cp2
L-207 wp03 cp1
L-207 wp03 Heel
L-207-interp point
750
100
0
1250
1500
1750
2000
2250
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2750
3000
3250
3500
375 0
4 0 0 042504224L-207 wp05
Start Dir 2º/100' : 250' MD, 250'TVD
Start Dir 3º/100' : 450' MD, 449.84'TVD
Start Dir 4º/100' : 650' MD, 648.32'TVD
End Dir : 1830.57' MD, 1608.38' TVD
Start Dir 3º/100' : 3528.45' MD, 2537.7'TVD
End Dir : 3832.82' MD, 2714.8' TVD
Fault (50' throw)
Start Dir 4º/100' : 5234.52' MD, 3575.38'TVD
End Dir : 6435.22' MD, 4178.09' TVD
Start Dir 4º/100' : 6563.18' MD, 4214.38'TVD
Start Dir 2º/100' : 7173.2' MD, 4302.2'TVD
End Dir : 7214' MD, 4301.93' TVD
Start Dir 2º/100' : 9428.88' MD, 4272.2'TVD
End Dir : 9478.75' MD, 4271.3' TVD
Start Dir 2º/100' : 10540.5' MD, 4247.2'TVD
End Dir : 10717.56' MD, 4243.22' TVD
Start Dir 2º/100' : 12782.01' MD, 4197.2'TVD
End Dir : 13085.21' MD, 4196.4' TVD
Total Depth : 14719.66' MD, 4224.2' TVD
Project: Prudhoe Bay
Site: L
Well: Plan: L-207
Wellbore: L-207
Plan: L-207 wp05
WELL DETAILS: Plan: L-207
45.70
+N/-S +E/-W Northing Easting Latitude Longitude
0.00 0.00 5978074.73 583102.33 70° 21' 0.2576 N 149° 19' 31.1086 W
REFERENCE INFORMATION
Co-ordinate (N/E) Reference:Well Plan: L-207, True North
Vertical (TVD) Reference:L-207 As-built RKB @ 72.20usft
Measured Depth Reference:L-207 As-built RKB @ 72.20usft
Calculation Method:Minimum Curvature
CASING DETAILS
TVD TVDSS MD Size Name
4302.20 4230.00 7174.00 9-5/8 9 5/8" x 12 1/4"
4224.20 4152.00 14719.66 6-5/8 6 5/8" 8 1/2"
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0.001.503.004.50Separation Factor400 800 1200 1600 2000 2400 2800 3200 3600 4000 4400 4800 5200 5600 6000 6400 6800 7200Measured DepthL-200L2L-200L1L-200L-201L-202L-202L3L-217L-250L-206No-Go Zone - Stop DrillingCollision Avoidance RequiredCollision Risk Procedures Req.WELL DETAILS:Plan: L-207 NAD 1927 (NADCON CONUS)Alaska Zone 0445.70+N/-S +E/-W Northing EastingLatitudeLongitude0.000.005978074.73583102.3370° 21' 0.2576 N149° 19' 31.1086 WREFERENCE INFORMATIONCo-ordinate (N/E) Reference:Well Plan: L-207, True NorthVertical (TVD) Reference: L-207 As-built RKB @ 72.20usftMeasured Depth Reference:L-207 As-built RKB @ 72.20usftCalculation Method: Minimum CurvatureSURVEY PROGRAMDate: 2021-07-26T00:00:00 Validated: Yes Version: Depth From Depth To Survey/PlanTool26.50 1600.00 L-207 wp05 (L-207) 3_Gyro-MWD90+Sag1600.00 7174.00 L-207 wp05 (L-207) 3_MWD+IFR2+MS+Sag7174.00 14719.66 L-207 wp05 (L-207) 3_MWD+IFR2+MS+Sag0.0030.0060.0090.00120.00Centre to Centre Separation (50.00 usft/in)400 800 1200 1600 2000 2400 2800 3200 3600 4000 4400 4800 5200 5600 6000 6400 6800 7200Measured DepthL-240 wp03L-04L-109L-110L-111L-114L-121L-205L-220L-50L-51L-116L-116A wp08aGLOBAL FILTER APPLIED: All wellpaths within 200'+ 100/1000 of reference26.50 To 14719.66Project: Prudhoe BaySite: LWell: Plan: L-207Wellbore: L-207Plan: L-207 wp05Ladder / S.F. Plots1 of 2CASING DETAILSTVD TVDSS MD Size Name4302.20 4230.00 7174.00 9-5/8 9 5/8" x 12 1/4"4224.20 4152.00 14719.66 6-5/8 6 5/8" 8 1/2"
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0.001.002.003.004.00Separation Factor7875 8250 8625 9000 9375 9750 10125 10500 10875 11250 11625 12000 12375 12750 13125 13500 13875 14250 14625Measured Depth (750 usft/in)L-240 wp03L-200L2L-200L1L-200L-206 wp06L-211PB1No-Go Zone - Stop DrillingCollision Avoidance RequiredCollision Risk Procedures Req.WELL DETAILS:Plan: L-207 NAD 1927 (NADCON CONUS)Alaska Zone 0445.70+N/-S +E/-W Northing EastingLatitudeLongitude0.000.005978074.73583102.3370° 21' 0.2576 N149° 19' 31.1086 WREFERENCE INFORMATIONCo-ordinate (N/E) Reference:Well Plan: L-207, True NorthVertical (TVD) Reference: L-207 As-built RKB @ 72.20usftMeasured Depth Reference:L-207 As-built RKB @ 72.20usftCalculation Method: Minimum CurvatureSURVEY PROGRAMDate: 2021-07-26T00:00:00 Validated: Yes Version: Depth From Depth To Survey/PlanTool26.50 1600.00 L-207 wp05 (L-207) 3_Gyro-MWD90+Sag1600.00 7174.00 L-207 wp05 (L-207) 3_MWD+IFR2+MS+Sag7174.00 14719.66 L-207 wp05 (L-207) 3_MWD+IFR2+MS+Sag0.0025.0050.0075.00100.00125.00Centre to Centre Separation (50.00 usft/in)7875 8250 8625 9000 9375 9750 10125 10500 10875 11250 11625 12000 12375 12750 13125 13500 13875 14250 14625Measured Depth (750 usft/in)L-200L2GLOBAL FILTER APPLIED: All wellpaths within 200'+ 100/1000 of reference26.50 To 14719.66Project: Prudhoe BaySite: LWell: Plan: L-207Wellbore: L-207Plan: L-207 wp05Ladder / S.F. Plots2 of 2CASING DETAILSTVD TVDSS MD Size Name4302.20 4230.00 7174.00 9-5/8 9 5/8" x 12 1/4"4224.20 4152.00 14719.66 6-5/8 6 5/8" 8 1/2"
Revised 2/2015
TRANSMITTAL LETTER CHECKLIST
WELL NAME: ______________________________________
PTD: _____________________________________________
___ Development ___ Service ___ Exploratory ___ Stratigraphic Test ___ Non-Conventional
FIELD: ____________________________ POOL: ______________________________________
Check Box for Appropriate Letter / Paragraphs to be Included in Transmittal Letter
CHECK OPTIONS TEXT FOR APPROVAL LETTER
MULTI
LATERAL
(If last two digits
in API number are
between 60-69)
The permit is for a new wellbore segment of existing well Permit
No. _____________, API No. 50-_______________________.
Production should continue to be reported as a function of the original
API number stated above.
Pilot Hole
In accordance with 20 AAC 25.005(f), all records, data and logs
acquired for the pilot hole must be clearly differentiated in both
well name (_______________________PH) and API number
(50-_____________________) from records, data and logs acquired for
well (name on permit).
Spacing
Exception
The permit is approved subject to full compliance with 20 AAC 25.055.
Approval to produce/inject is contingent upon issuance of
a conservation order approving a spacing exception.
(_____________________________) as Operator assumes the liability
of any protest to the spacing exception that may occur.
Dry Ditch Sample
All dry ditch sample sets submitted to the AOGCC must be in no greater
than 30' sample intervals from below the permafrost or from where
samples are first caught and 10' sample intervals through target zones.
Non-
Conventional
Well
Please note the following special condition of this permit:
Production or production testing of coal bed methane is not allowed for
well ( ) until after ( )
has designed and implemented a water well testing program to provide
baseline data on water quality and quantity.
(________________________) must contact the AOGCC to obtain
advance approval of such water well testing program.
Well Logging
Requirements
Regulation 20 AAC 25.071(a) authorizes the AOGCC to specify types
of well logs to be run. In addition to the well logging program proposed
by (_______________________________) in the attached application,
the following well logs are also required for this well:
Per Statute AS 31.05.030(d)(2)(B) and Regulation 20 AAC 25.071,
composite curves for well logs run must be submitted to the AOGCC
within 90 days after completion, suspension or abandonment of this
well.
PBU L-207
Schrader Bluff Oil Pool, Orion Development AreaPrudhoe Bay
221-081
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