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HomeMy WebLinkAbout223-1187. Property Designation (Lease Number): 1. Operations Performed: 2. Operator Name: 3. Address: 4. Well Class Before Work:5. Permit to Drill Number: 6. API Number: 8. Well Name and Number: 9. Logs (List logs and submit electronic data per 20AAC25.071): 10. Field/Pool(s): Susp Well Insp Install Whipstock Mod Artificial Lift Perforate New Pool Perforate Plug Perforations Coiled Tubing Ops Other Stimulate Fracture Stimulate Alter Casing Pull Tubing Repair Well Other: Change Approved Program Operations shutdown 11. Present Well Condition Summary: Casing Length Size MD TVD Burst Collapse Exploratory Stratigraphic Development Service 14. Attachments (required per 20 AAC 25.070, 25.071, & 25.283) 16. Well Status after work: 17. I hereby certify that the foregoing is true and correct to the best of my knowledge. OIL GAS WINJ WAG GINJ WDSPL GSTOR Suspended SPLUG Authorized Name and Digital Signature with Date: Authorized Title: Contact Name: Contact Email: Contact Phone: PBU 06-18B Hilcorp North Slope, LLC 3800 Centerpoint Dr, Suite 1400, Anchorage, AK 99503 223-071 50-029-20767-02-00 12435 Surface Intermediate Scab Liner / Tie-Bac Liner Liner 9087 2475 9773 870 2696 1918 12412 13-3/8" 9-5/8" 7" 3-1/2" x 3-3/16" 2-3/8" 9079 37 - 2512 35 - 9808 33 - 9869 9449 - 9960 9356 - 12430 37 - 2512 35 - 8565 33 - 8618 8252 - 8688 8171 - 9085 none 2670 4760 5410 10530 11780 none 5380 6870 7240 10160 11200 12005 - 12346 4-1/2" 12.6# 13Cr80 31 - 9504 8919 - 9055 Conductor 82 20" 38 - 120 38 - 120 1490 470 4-1/2" HES TNT Perm , 8893 , 7777 No SSSV 8893 , 9449 7777 , 8252 Bo York Operations Manager Jerry Lau Jerry.Lau@hilcorp.com (907) 564-5280 PRUDHOE BAY, PRUDHOE OIL Total Depth Effective Depth measured true vertical feet feet feet feet measured true vertical measured measured feet feet feet feet measured true vertical Plugs Junk Packer Measured depth True Vertical depth feet feet Perforation depth Tubing (size, grade, measured and true vertical depth) Packers and SSSV (type, measured and true vertical depth) 12. Stimulation or cement squeeze summary: Intervals treated (measured): Treatment descriptions including volumes used and final pressure: 13a.Representative Daily Average Production or Injection Data Oil -Bbl Gas-Mcf Water -Bbl Casing Pressure Tubing Pressure Prior to well operation: Subsequent to operation: 15. Well Class after work: Exploratory Development Service StratigraphicDaily Report of Well Operations Copies of Logs and Surveys Run Electronic Fracture Stimulation Data Sundry Number or N/A if C.O. Exempt: ADL 028311 31 - 8229 366 261 12196 18267 1667 1500 1110 1159 439 467 N/A 13b. Pools active after work:PRUDHOE OIL 4-1/2" Baker S-3 Perm , 9449 , 8252 STATE OF ALASKA ALASKA OIL AND GAS CONSERVATION COMMISSION REPORT OF SUNDRY WELL OPERATIONS Sr Pet Eng: Sr Pet Geo: Form 10-404 Revised 10/2022 Submit in PDF format to aogcc.permitting@alaska.gov Sr Res Eng: Due Within 30 days of Operations Digitally signed by David Bjork (3888) DN: cn=David Bjork (3888) Date: 2024.12.02 13:34:46 - 09'00' David Bjork (3888) By Grace Christianson at 2:41 pm, Dec 02, 2024 RBDMS JSB 120424 DSR-12/16/24SFD 2/5/2025WCB 2-7-2025 ACTIVITYDATE SUMMARY 10/30/2024 LRS CTU #1 - 1.50" DuraCoil Job Objective: Adperf MIRU. Function test BOPs. Make up and RIH w/ HES 1.69" GR/CCL w/ 1.75" drift. ***Job Continued on 10/31/2024*** 10/31/2024 LRS CTU #1 - 1.50" Duracoil Job Objective: Adperf ***Job continued from 30-Oct-2024*** Continue RIH w/ HES logging tools. Log interval 12150' - 11000'. Flag pipe @ 11951'. POOH. Confirm -7' correction. Make up perf gun BHA with 30' x 1.56" millenium perf guns, 6spf and RIH. Tie in to the flag and perforate 12005-12035'. Rig down CTU. ***Job Complete*** 11/1/2024 BOL post CTU adperf, in test. 11/3/2024 Pulled Several S/O with someone watching the PD and MM to match the W/C. All were close to the same. Daily Report of Well Operations PBU 06-18B perforate 12005-12035'. 1. Operations Susp Well Insp Plug Perforations Fracture Stimulate Pull Tubing Operations shutdown Performed: Install Whipstock Perforate Other Stimulate Alter Casing Change Approved Program Mod Artificial Lift Perforate New Pool Repair Well Coiled Tubing Ops Other: Wellhead Sealant Treatment Development Exploratory Stratigraphic Service 6. API Number: 7. Property Designation (Lease Number): 8. Well Name and Number: 9. Logs (List logs and submit electronic data per 20AAC25.071): 10. Field/Pool(s): 11. Present Well Condition Summary: Total Depth measured 10,140 feet N/A feet true vertical 7,163 feet N/A feet Effective Depth measured 10,650 feet 7,581 feet true vertical 7,166 feet 6,792 feet Perforation depth Measured depth See Schematic feet True Vertical depth See Schematic feet Tubing (size, grade, measured and true vertical depth)4-1/2" 12.6 / L-80 / TXP 7,729' 6,906' Packers and SSSV (type, measured and true vertical depth)7” x 4-1/2” D&L Perm Hyd N/A See Above N/A 12. Stimulation or cement squeeze summary: N/A Intervals treated (measured): Treatment descriptions including volumes used and final pressure: N/A 13a. Prior to well operation: Subsequent to operation: 13b. Pools active after work: 15. Well Class after work: Daily Report of Well Operations Exploratory Development Service Stratigraphic Copies of Logs and Surveys Run 16. Well Status after work: Oil Gas WDSPL Electronic Fracture Stimulation Data GSTOR GINJ SUSP SPLUG Sundry Number or N/A if C.O. Exempt: Authorized Name and Digital Signature with Date: Contact Name: Contact Email: Authorized Title: Wells Manager Contact Phone: 10,540psi 7,820psi 3,520psi 7,240psi 10,160psi 8,620psi 7,983' 7,099' Burst N/A Collapse N/A 2,020psi 5,410psi Liner Liner 273' 352' 1,819' Casing Conductor 7,078' 7,127' 2-7/8" 7,955' 8,307' 10,126' 7,162' 7,950' 4,779'Surface Production Liner 13-3/8" 9-5/8" 7' 80' 4,744' measured TVD 3-1/2" 10,570psi 3-1/4" STATE OF ALASKA ALASKA OIL AND GAS CONSERVATION COMMISSION REPORT OF SUNDRY WELL OPERATIONS 223-118 50-029-21328-01-00 3800 Centerpoint Dr, Suite 1400 Anchorage, AK 99503 3. Address: Hilcorp Alaska LLC N/A 5. Permit to Drill Number:2. Operator Name 4. Well Class Before Work: ADL025516 & ADL047434 MILNE POINT / KUPARUK RIVER OIL MILNE PT UNIT C-13A Plugs Junk measured Length measured true vertical Packer Representative Daily Average Production or Injection Data Casing Pressure Tubing Pressure 14. Attachments (required per 20 AAC 25.070, 25.071, & 25.283) 0 Gas-Mcf MD 115' 891 Size 115' 4,623' 0 1,3340 177 186490 166 N/A Sr Pet Eng: 11,170psi Sr Pet Geo: Sr Res Eng: WINJ WAG 1,774 Water-BblOil-Bbl 17. I hereby certify that the foregoing is true and correct to the best of my knowledge. N/A Ryan Thompson ryan.thompson@hilcorp.com 907-564-5280 PL G Form 10-404 Revised 10/2022 Due Within 30 days of Operations Submit in PDF format to aogcc.permitting@alaska.gov By Grace Christianson at 11:57 am, Nov 27, 2024 Digitally signed by Taylor Wellman (2143) DN: cn=Taylor Wellman (2143) Date: 2024.11.26 12:55:15 - 09'00' Taylor Wellman (2143) WCB 2-7-2025 RBDMS JSB 120424 DSR-12/16/24 Well Name Rig API Number Well Permit Number Start Date End Date MP C-13A Wellhead 50-029-21328-01-00 223-118 11/13/2024 11/13/2024 No operations to report. No operations to report. 11/16/2024 - Saturday No operations to report. 11/19/2024 - Tuesday 11/17/2024 - Sunday No operations to report. 11/18/2024 - Monday 11/15/2024 - Friday No operations to report. 11/13/2024 - Wednesday Hilcorp Alaska, LLC Weekly Operations Summary T/I/O 2300/1500/0. Wellhead: PPPOT-T Pressure up THA to 5000 psi for 30 mins, all tests good. PPPOT-IC: Sting into packoff void packoff showing 1500 psi, attempted to bleed to zero, shut in manifold, packoff pressure back up with in 45 seconds. repeated with same results. Pumped packoff void with black plastic, setting 3000 psi on void. Plan to monitor I/A x O/A for communiation. 11/14/2024 - Thursday No operations to report. Pumped packoff void with black plastic 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:Brooks, Phoebe L (OGC) To:Alaska NS - CTD DSM Cc:Regg, James B (OGC) Subject:RE: Nabors CDR2 Bi Weekly BOPE test - MPU C-13A Date:Thursday, May 23, 2024 10:12:48 AM Attachments:Nabors CDR2AC 04-15-24 Revised.xlsx John, I made a minor revision, changing the test type to initial as this is the first report for C-13A. Please update your copy. Thank you, Phoebe Phoebe Brooks Research Analyst Alaska Oil and Gas Conservation Commission Phone: 907-793-1242 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 Phoebe Brooks at 907-793-1242 or phoebe.brooks@alaska.gov. From: Alaska NS - CTD DSM <AlaskaNS-CTD-DSM@hilcorp.com> Sent: Tuesday, April 16, 2024 7:02 PM To: Regg, James B (OGC) <jim.regg@alaska.gov>; DOA AOGCC Prudhoe Bay <doa.aogcc.prudhoe.bay@alaska.gov>; Brooks, Phoebe L (OGC) <phoebe.brooks@alaska.gov> Cc: White, Bradley <bradley.white@nabors.com>; Robert Coyne <robert.coyne@nabors.com>; Nathan Wheeler <nathan.wheeler@nabors.com>; Thomas Henson <Thomas.Henson@nabors.com>; Coyne, Cleve <Cleve.Coyne@nabors.com>; Alaska NS - CTD DSM <AlaskaNS-CTD-DSM@hilcorp.com> Subject: Nabors CDR2 Bi Weekly BOPE test - MPU C-13A John Perl Sr. Drilling Foreman – Nabors CDR2 Rig (907) 670-3097 Personal Cell (907) 355-5815 H# 4169 Positional Email AlaskaNS-CTD-DSM@hilcorp.com 0LOQH3RLQW8QLW&$ 37' evision test type Alternate: Mark Igtanloc Hilcorp Alaska, LLC The information contained in this email message is confidential and may be legally privileged and is intended only for the use of the individual or entity named above. If you are not an intended recipient or if you have received this message in error, you are hereby notified that any dissemination, distribution, or copy of this email is strictly prohibited. If you have received this email in error, 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. STATE OF ALASKA OIL AND GAS CONSERVATION COMMISSION *All BOPE reports are due to the agency within 5 days of testing* SSub m it to :jim.regg@alaska.gov; AOGCC.Inspectors@alaska.gov; phoebe.brooks@alaska.gov Rig Owner: Rig No.:CDR2AC DATE: 4/15/24 Rig Rep.: Rig Email: Operator: Operator Rep.: Op. Rep Email: Well Name:PTD #22231180 Sundry # Operation: Drilling: X Workover: Explor.: Test: Initial: X Weekly: Bi-Weekly: Other: Rams:250/3500 Annular:250/3500 Valves:250/3500 MASP:3049 MISC. INSPECTIONS: TEST DATA FLOOR SAFETY VALVES: Test Result/Type Test Result Quantity Test Result Housekeeping P Well Sign P Upper Kelly 0NA Permit On Location P Hazard Sec.P Lower Kelly 0NA Standing Order Posted P Misc.NA Ball Type 2P Test Fluid Water Inside BOP 0NA FSV Misc 0NA BOP STACK:Quantity Size/Type Test Result MUD SYSTEM:Visual Alarm Stripper 1 2-3/8"P Trip Tank PP Annular Preventer 1 7 1/16" GK P Pit Level Indicators PP #1 Rams 1 Blind/Shears P Flow Indicator PP #2 Rams 1 2-3/8" Pipe/Slip P Meth Gas Detector PP #3 Rams 1 2-3/8" x 3-1/2" VBR P H2S Gas Detector PP #4 Rams 1 2-3/8" Pipe/Slip P MS Misc 0NA #5 Rams 0NA #6 Rams 0NAACCUMULATOR SYSTEM: Choke Ln. Valves 1 2-1/16"P Time/Pressure Test Result HCR Valves 2 2-1/16"P System Pressure (psi)3000 P Kill Line Valves 2 2-1/16"P Pressure After Closure (psi)2240 P Check Valve 0NA200 psi Attained (sec)19 P BOP Misc 2 2.0" Piper P Full Pressure Attained (sec)56 P Blind Switch Covers: All stations Yes CHOKE MANIFOLD:Bottle Precharge:P Quantity Test Result Nitgn. Bottles # & psi (Avg.): 10 @ 1955 P No. Valves 12 P ACC Misc 0NA Manual Chokes 1P Hydraulic Chokes 1P Control System Response Time:Time (sec) Test Result CH Misc 0NA Annular Preventer 4 P #1 Rams 4 P Coiled Tubing Only:#2 Rams 3 P Inside Reel valves 1P #3 Rams 3 P #4 Rams 3 P Test Results #5 Rams 0 NA #6 Rams 0 NA Number of Failures:0 Test Time:5.0 HCR Choke 1 P Repair or replacement of equipment will be made within days. HCR Kill 1 P Remarks: AOGCC Inspection 24 hr Notice No Date/Time 4/14/2024 16:07 Waived By Test Start Date/Time:4/14/2024 22:30 (date) (time)Witness Test Finish Date/Time:4/15/2024 3:30 BOPE Test Report Notify the AOGCC of repairs with written confirmation to: AOGCC.Inspectors@alaska.gov Kam StJohn Nabors Bottle pre-charge pressure 1084 psi (16 bottles) Discussion with Kam St. John to test early without 24 hours due to an unexpected reel repair. Coyne / Henson Hilcorp Alaska, LLC Perl / Burnett MPU C-13A Test Pressure (psi): robert.coyne@nabors.com alaskans-ctd-dsm@hilcorp.com Form 10-424 (Revised 08/2022) 2024-0415_BOP_Nabors_CDR2AC_MPU_C-13A MEU 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: Date: 04/25/2024 To: Alaska Oil & Gas Conservation Commission Natural Resource Technician 333 W 7th Ave Suite 100 Anchorage, AK 99501 DATA TRANSMITTAL WELL: MPU C-13A + PB1 PTD: 223-118 API: 50-029-21328-01-00 (MPU C-13A) 50-029-21328-70-00 (MPU C-13APB1) FINAL LWD FORMATION EVALUATION LOGS (04/02/2024 to 04/14/2024) Multiple Propagation Resistivity & Gamma Ray (2” & 5” MD/TVD Color Logs) Pressure While Drilling (PWD) Final Definitive Directional Surveys SFTP Transfer - Data Main Folders: SFTP Transfer - Data Sub-Folders: Please include current contact information if different from above. 223-118 T38742 T38743 Meredith Guhl Digitally signed by Meredith Guhl Date: 2024.04.25 12:55:02 -08'00' 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: Milne Point Field, Kuparuk River Pool, MPU C-13A Hilcorp Alaska, LLC Permit to Drill Number: 223-118 Surface Location: 954' FSL, 2169' FEL, Sec 10, T13N, R10E, UM, AK Bottomhole Location: 1919' FSL, 1930' FWL, Sec 15, T13N, R10E, UM, AK Dear Mr. Myers: Enclosed is the approved application for the permit to drill the above referenced well. Per Statute AS 31.05.030(d)(2)(B) and Regulation 20 AAC 25.071, composite curves for all well logs run must be submitted to the AOGCC within 90 days after completion, suspension, or abandonment of this well, or within 90 days of acquisition of the data, whichever occurs first. 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, Brett W. Huber, Sr. Chair, Commissioner DATED this day of April 2024. Brett W. Huber, Sr. Digitally signed by Brett W. Huber, Sr. Date: 2024.04.12 16:26:06 -08'00' 12 REVISED Change Bottom Hole Location over 500' 3-1/2"x3-1/4" Drilling Manager 04/12/24 Monty M Myers By Grace Christianson at 11:19 am, Apr 12, 2024 A.Dewhurst 12APR24MGR12APR2024 50-029-21328-01-00 3049 * BOPE test to 3500 psi. * Variance to 20 AAC 25.112(i) Alternate plug placement approved. 223-118 DSR-4/12/24(,$GPS+FTTJF Brett W. Huber, Sr.Digitally signed by Brett W. Huber, Sr. Date: 2024.04.12 16:26:25 -08'00' 4/12/24 04/12/24 1/8/2024 JSB RBDMS JSB 042424 To: Alaska Oil & Gas Conservation Commission From: Ryan Ciolkosz Drilling Engineer Date: April 12, 2024 Re:MPC-13A Revised Permit to Drill Approval is requested for a revised Permit to drill more than 500’ from the directional plan submitted in the original MPC-13A PTD. The target fault block appears to be deeper than originally expected. The original plan drilled toward the East end of the fault block to maximize sweep efficiently for injectors, however, because the A sands are deeper than expected, the well needs to drill up-dip to the West to avoid the oil-water contact. The new directional plan (WP09) and anti-collision have been included. Approval is requested for drilling a CTD sidetrack lateral from well MPC-13 with the Nabors CDR2 Coiled Tubing Drilling. Proposed plan for C-13A Producer: Prior to drilling activities, a rig workover will pull the ESP completion and run 4-1/2" tubing. Screening will be conducted to MIT and drift for whipstock. E-line will then set a 4-1/2"x7" flow through whipstock (if not possible, will set with rig). Service Coil will mill the window if a unit is available. –Completed A coil tubing drilling sidetrack will be drilled with the Nabors CDR2 rig. The rig will move in, test BOPE and kill the well. If unable to set or mill pre-rig, the rig will mill a single string 3.80" window + 10' of formation. The well will kick off drilling and land in the Kuparuk A sands.– Completed The lateral will continue in the Kuparuk to TD turning towards the west end of the fault block. The proposed sidetrack will be completed with a 3-1/2"x3-1/4"x2- 7/8” L-80 solid liner and cemented. CDR2 will then perforate the 2-7/8" liner. This completion WILL abandon the parent Kuparuk perfs. The following describes the work planned. A wellbore schematic of the current well and proposed sidetrack is attached for reference. Pre-Rig Work: (Estimated to start in December 8th)– Completed x Reference MPC-13 Sundry submitted in concert with this request for full details. 1. RWO : Pull ESP completion, Run 4-1/2" tubing (Separate Sundry) 2. Slickline : Dummy WS drift, Caliper 3. E-Line : Set Whipstock 4. Fullbore : MIT-IA or MIT-T to 3000 psi 5. Valve Shop : Pre-CTD Tree Work 6. Operations : Remove wellhouse and level pad. Rig Work: (Estimated to start in February 7th, 2024) –Started March 31st, 2024 1. MIRU and test BOPE 250 psi low and 3,500 psi high (MASP 2,800 psi). 2. Mill 3.80” Window. 3. Drill build section: 4.25" OH, ~301'265’ MD (~40 deg DLS planned). 4. Drill production lateral: 4.25" OH, ~2720'~2410’(12 deg DLS planned). -1435’ MD already drilled. 5. Run 3-1/2” x 3-1/4” x 2-7/8” L80 liner leaving TOL at ~7750’ MD. 6. Pump primary cement job: 38 42 bbls, 15.3 ppg Class G, TOC at TOL*. 7. Perforate ~1000' of 2-7/8" liner in Kuparuk A Sands 8. Freeze protect well to a min 2,200' TVDss. 9. Close in tree, RDMO. * Approved alternate plug placement per 20 AAC 25.112(i) Sundry 323-654 PTD 223-118 Post Rig Work: 1. Valve Shop : Valve & tree work 2. Slickline : Set live GLVs, set LTP* (if necessary). Managed Pressure Drilling: Managed pressure drilling techniques will be employed on this well. The intent is to provide constant bottom hole pressure by using minimum 8.4 ppg drilling fluid in combination with annular friction losses and applied surface pressure. Constant BHP will be utilized to reduce pressure fluctuations to help with hole stability. Applying annular friction and choke pressure also allow use of lighter drilling fluid and minimizes fluid losses and/or fracturing at the end of the long well bores. A MPD choke for regulating surface pressure and is independent of the WC choke. Deployment of the BHA under trapped wellhead pressure will be necessary. Pressure deployment of the BHA will be accomplished utilizing 3” (big hole) & 2-3/8” (slim hole) pipe/slip rams (see attached BOP configurations). The annular preventer will act as a secondary containment during deployment and not as a stripper. Operating parameters and fluid densities will be adjusted based on real-time bottom hole pressure measurements while drilling and shale behavior. The following scenario is expected: MPD Pressure at the Planned Window (8014' MD -7122' TVD) Pumps On Pumps Oī A Target BHP at Window (ppg)4370 psi 4370 psi 11.8 B Annular ĨƌŝĐƟŽŶ-;ƉƐŝͬŌͿ 481 psi 0 psi 0.06 C DƵĚ,LJĚƌŽƐƚĂƟĐ;ƉƉŐͿ 3185 psi 3185 psi 8.6 B+C Mud + ECD Combined 3666 psi 3185 psi (no choke pressure) A-(B+C)Choke Pressure Required to Maintain 704 psi 1185 psi Target BHP at window and deeper Operation Details: Reservoir Pressure: x The reservoir pressure is expected to be 3500 psi at 7000 TVD. (9.6 ppg equivalent).Draw down test of the parent well indicated a pore pressure of 3749 at 7000’ TVD (10.3 ppg equivalent) at the parent perfs. Pressure in the target fault block is predicted to be 3057 psi at 7000 TVD. (8.4 ppg equivalent) x Maximum expected surface pressure with gas (0.10 psi/ft) to surface is 3049 psi. x A min EMW of 8.4 ppg for this well will be 691 psi Underbalance to the reservoir. Mud Program: x Drilling: Minimum MW of 8.4 ppg KCL with viscosifier for drilling. Managed pressure used to maintain constant BHP. Disposal: x All Class l & II non-hazardous and RCRA-exempt drilling and completion fluids will go to GNI at DS 4. x Fluids >1% hydrocarbons or flammables must go to GNI. x Fluids >15% solids by volume must go to GNI. x Fluids with solids that will not pass through 1/4” screen must go to GNI. (pp 3049 psi. x Fluids with PH >11 must go to GNI. Hole Size: x 4.25" hole for the entirety of the production hole section. Liner Program: x 3-1/2", 9.3#, L80 Solid: 7700' MD – 8000' MD (300' liner)7700’ MD – 7970’ MD (270’ Liner) x 3-1/4", 6.6#, L80 Solid: 8000' MD – 8214' MD (214' liner)7970’ MD – 8200’ MD (230’ Liner) x 2-7/8", 6.5#, L80 Solid: 8214' MD – 11035' MD (2821' liner)8200’ MD – 10670’ MD (2470’ liner) x The primary barrier for this operation: Kill Weight Fluid to provide overbalance as necessary. x A X-over shall be made up to a safety joint including a TIW valve for all tubulars ran in hole. Well Control: x BOP diagram is attached. MPD and pressure deployment is planned. x Pipe rams, blind rams and the CT pack off will be pressure tested to 250 psi and to 3,500 psi. x The annular preventer will be tested to 250 psi and 2,500 psi. x A X-over shall be made up to a 2 3/8" safety joint including a TIW valve for all tubulars ran in hole. x 2 3/8" safety joint will be utilized while running solid or slotted liner. The desire is to keep the same standing orders for the entire liner run and not change shut in techniques from well to well (run safety joint with pre-installed TIW valve). When closing on a 2 3/8" safety joint, 2 sets of pipe/slip rams will be available, above and below the flow cross providing better well control option. Directional: x Directional plan attached. Maximum planned hole angle is 106°103°. Inclination at kick off point is 41°. x Magnetic and inclination surveys will be taken every 30 ft. No gyro will be run. x Distance to nearest property line – 13,705 ft 11,800’ x Distance to nearest well within pool – 873 ft 750’ Logging: x MWD directional and Gamma Ray will be run through the entire open hole section. x Real time bore pressure to aid in MPD and ECD management. Perforating: x 1000' perforated post rig – See future perf sundry. x 2" Perf Guns at 6 spf x If post rig extended perforating with service coil is not an option, the well will be perforated with the rig or post rig under this PTD. x The well will be perforated between the CTD whipstock and TD of the newly drilled CTD well, completely in the Kuparuk pool. Anti-Collision Failures: x Anti-Collision Summary – All wells pass major risk criteria with WP06 WP09 Hazards: x MPC is not an H2S pad. H2S reading on MPC-13: 2 ppm 10/16/2022. x Max H2S recorded on MPC: 20 ppm. x 1 fault crossings expected.One fault crossed at 9082’ MD. No additional fault crossings are expected. x Medium lost circulation risk. Ryan Ciolkosz CC: Well File Drilling Engineer (907-244-4357) Joseph Lastufka Swap BOP rams from 3" pipe/slips to 2-3/8" X 3-1/2" VBRs. -mgr -5 0 0 0 -4 5 0 0 -4 0 0 0 -3 5 0 0 -3 0 0 0 -2 5 0 0 -2 0 0 0 South(-)/North(+) (1000 usft/in) -500 0 500 1000 1500 2000 2500 3000 We s t ( - ) / E a s t ( + ) ( 1 0 0 0 u s f t / i n ) 5 2 0 0 5600 6 0 0 0 64 00 68 00 7 20 0 76 0 0 8 0 0 0 8 400 8 8 00 9 02 1 MP U C-46 5 2 0 0 5 6 0 0 6 0 0 0 6400 6800 7200 7261 MP U C-46 PB1 7 2 0 0 7 2 0 0 M P U C - 1 3 A P B 1 7102 MP U C - 1 3 A w p 0 6 4 0 0 0 4 4 0 0 4 8 0 0 5 2 0 0 5 6 0 0 60 00 6 40 0 6 8 0 0 7 2 0 0 7 2 2 9 M P U C - 0 6 718 1 MP U C-13A 6 4 0 0 6 8 0 0 7 2 0 0 7 3 1 6 M P U C - 1 3 MPC -24A 6 4 0 0 6 8 0 0 7 2 0 0 7 2 3 5 M P C - 2 4 7016 MPC-24A P B1 92 0 0 92 52 MPU C-1 5 A 7 1 66 MP U C - 1 3 A w p 0 9 TD - 1 0 6 7 0 ' M D 70 0 0 70 5 0 71 0 0 71 5 0 72 0 0 True Vertical Depth (100 usft/in) 2000 2200 2400 2600 2800 3000 3200 3400 3600 3800 4000 4200 4400 4600 4800 5000 5200 5400 5600 5800 Ve r t i c a l S e c t i o n a t 1 7 6 . 7 3 ° ( 4 0 0 u s f t / i n ) TD - 1 1 0 3 5 ' M D MP U C - 1 3 A w p 0 6 MP U C - 1 3 A M P U C - 1 3 MP U C - 1 3 A w p 0 9 TD - 1 0 6 7 0 ' M D Se c MD I n c A z i TV D +N / - S +E / - W D l e g T F a c e VS e c t 1 9 6 1 9 . 8 7 8 4 . 2 5 1 8 5 . 4 8 7 1 8 0 . 5 5 - 3 7 7 9 . 7 9 1 0 2 0 . 5 5 0 . 0 0 0 . 0 0 3 8 3 1 . 7 9 2 9 6 7 9 . 7 3 9 1 . 0 0 1 8 7 . 9 4 7 1 8 3 . 0 3 - 3 8 3 9 . 1 5 1 0 1 3 . 5 6 1 2 . 0 0 2 0 . 0 0 3 8 9 0 . 6 5 3 1 0 0 2 9 . 7 3 9 1 . 0 0 2 2 9 . 9 4 7 1 7 6 . 9 2 - 4 1 3 8 . 5 9 8 4 7 . 9 9 1 2 . 0 0 9 0 . 0 0 4 1 8 0 . 1 7 4 1 0 3 8 9 . 7 3 9 1 . 0 0 2 7 3 . 1 4 7 1 7 0 . 6 4 - 4 2 4 9 . 8 8 5 1 4 . 5 9 1 2 . 0 0 9 0 . 0 0 4 2 7 2 . 2 9 5 1 0 6 7 0 . 0 0 9 1 . 0 0 2 3 9 . 5 1 7 1 6 5 . 7 5 - 4 3 1 5 . 1 9 2 4 6 . 2 0 1 2 . 0 0 - 9 0 . 0 0 4 3 2 2 . 2 1 Pr o j e c t : M i l n e P o i n t Si t e : M P t C P a d We l l : M P U C - 1 3 We l l b o r e : M P U C - 1 3 A Pl a n : M P U C - 1 3 A w p 0 9 WE L L B O R E D E T A I L S Pa r e n t W e l l b o r e : MP U C - 1 3 To p o f W i n d o w : 9 6 1 9 . 8 7 MP U C - 1 3 A w p 0 9 De p t h F r o m D e p t h T o S u r v e y / P l a n T o o l 10 0 . 0 0 7 9 0 0 . 0 0 1 : C a m e r a b a s e d g y r o m u l t i s h o ( M P U C - 1 3 ) 3 _ C B - F i l m - G M S 2 79 7 8 . 0 0 9 6 1 9 . 8 7 S u r v e y # 1 ( M P U C - 1 3 A ) 3 _ M W D 96 1 9 . 8 7 1 0 6 7 0 . 0 0 M P U C - 1 3 A w p 0 9 ( M P U C - 1 3 A ) 3 _ M W D WE L L D E T A I L S No r t h i n g : 6 0 2 9 2 3 7 . 3 9 Ea s t i n g : 5 5 8 2 9 2 . 5 6 La t t i t u d e : 7 0 ° 2 9 ' 2 5 . 7 6 7 9 N Lo n g i t u d e : 1 4 9 ° 3 1 ' 2 4 . 4 8 5 9 W MP U C - 1 3 A w p 0 9 SE C T I O N D E T A I L S Hi l c o r p A l a s k a , L L C SU R V E Y P R O G R A M NA D 1 9 2 7 ( N A D C O N C O N U S ) US S t a t e P l a n e 1 9 2 7 ( E x a c t s o l u t i o n ) Al a s k a Z o n e 0 4 PR O J E C T D E T A I L S RE F E R E N C E I N F O R M A T I O N Co o r d i n a t e ( N / E ) R e f e r e n c e : W e l l M P U C - 1 3 , T r u e N o r t h Ve r t i c a l ( T V D ) R e f e r e n c e : O R I G K E L L Y B U S H I N G @ 5 2 . 0 0 u s f t Me a s u r e d D e p t h R e f e r e n c e : O R I G K E L L Y B U S H I N G @ 5 2 . 0 0 u s f t Se c t i o n ( V S ) R e f e r e n c e : S l o t - ( 0 . 0 0 N , 0 . 0 0 E ) Ca l c u l a t i o n M e t h o d : M i n i m u m C u r v a t u r e RE F E R E N C E I N F O R M A T I O N                 !!        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(* #/0 1# ( % !"#$% &!'()*++ , / - % 2 1  + ( - 6+ %8 :   678 ;#+- 678 435) 6+ %8  / -. 6+ %8  3 . 6+ %8 4/5 6+ %8  +,$ '  ( - 6+ %8 &'( + % (! => '  (*=+ +*++ (*=+ +*++ +*+++*++((= ).)*(<< +). )3*.<*)++*++ +*++ ++*++ +*++ ++*++ +*++ +*+++*++((= ).)*(<< +). )3*.8=*+++*++ +*++ )++*++ +*++ )++*++ +*++ +*+++*++((= ).)*(<< +). )3*.8=*+++*++ +*++ ++*++ +*++ ++*++ +*++ +*+++*++((= ).)*(<< +). )3*.)8=*+++*++ +*++ 8++*++ +*++ 8++*++ +*++ +*+++*++((= ).)*(<< +). )3*.8=*+++*++ +*++ (++*++ +*++ (++*++ +*++ +*+++*++((= ).)*(<< +). )3*.88=*+++*++ +*++ <++*++ +*++ <++*++ +*++ +*+++*++((= ).)*(<< +). )3*.(8=*+++*++ +*++ 3++*++ +*)( 3++*++ +*8 +*3(+*++((= ).)*3< +). )3*(<8=*+++*)( +* =++*++ +*++ =++*++ +*)= +*=+*++((= ).)*=.< +). )3*<338=*+++*)( +*)< .++*++ +*++ .++*++ +*)= +*=+*++((= ).)*=.< +). )3*<3=8=*+++*++ +*)<  +++*++ +*++  +++*++ +*)= +*=+*++((= ).)*=.< +). )3*<3.8=*+++*++ +*)<  ++*++ +*++  ++*++ +*)= +*=+*++((= ).)*=.< +). )3*<3 +8=*+++*++ +*)<  )++*++ +*++  )++*++ +*)= +*=+*++((= ).)*=.< +). )3*<3 8=*+++*++ +*)<  ++*++ +*++  ++*++ +*)= +*=+*++((= ).)*=.< +). )3*<3 )8=*+++*++ +*)<  8++*++ +*++  8++*++ +*)= +*=+*++((= ).)*=.< +). )3*<3 8=*+++*++ +*)<  (++*++ +*(+  (++*++ +*+. +*(<8.*++((= ).*)< +). )3*+ 88=*+++*(+ +*  <++*++ +*)(  <++*++ +* +*.8)*++((= ).*8.< +). )3*+. (8=*+++*<) +*<  3++*++ +*(+  3++*++ +*. *8)(*++((= ).8*++< +). )3*+ <8=*+++*( +*83  =++*++ +*(+  3..*.. +*=) )*.8*++((= ).8*3<< +). )<*(. 383*..+*+ +*.8  .++*++ +*++  =..*.. *++ )*(.=+*++((= ).(*<< +). )<*8 =83*..+*(+ *8 ) +++*++ +*(+  ...*.. *= )*..8*++((= ).(*(<< +). )<*)8 .83*..+*(+ *8 ) ++*++ +*3( ) +..*.= *(< 8*++=*++((= ).<*(=< +). )(*=3) +83*.=+*)< *3= ) )++*++ +*)( ) ..*.= *38 8*=(=<*++((= ).3*8)< +). )(*<.) 83*.=+*( )*+) ) ++*++ +*++ ) )..*.= *3 (*+3=+*++((= ).3*<8< +). )(*3+) )83*.=+*)( )*+ ) 8++*++ +*++ ) ..*.= *3 (*+3=+*++((= ).3*<8< +). )(*3+) 83*.=+*++ )*+ ) (++*++ +*++ ) 8..*.= *3 (*+3=+*++((= ).3*<8< +). )(*3+) 883*.=+*++ )*+ ) <++*++ +*)( ) (..*.= *= (*)<.*++((= ).3*=< +). )(*<+) (83*.=+*)( )* ) 3++*++ +*)( ) <..*.= )*< (*8=8*++((= ).=*+< +). )(*)=) <83*.=+*)3 )*8< ) =++*++ +*++ ) 3..*.= )*3 (*8)=+*++((= ).3*..< +). )(*+<) 383*.=+*)( )*<= ) .++*++ +*)( ) =..*.= )*(= (*(..*++((= ).3*.)< +). )8*=() =83*.=+*)( )*==  +++*++ +*)( ) ...*.= )*.= (*=)+(*++((= ).3*3<< +). )8*8() .83*.=+*+ *)=  ++*++ *)(  +..*.) (*.3 (*(=3+*++((= ).=*.< +). )*8< +83*.)*+( <*)=  )++*++ <*++  ..*(= *=) 3*8<(*++((= ++*+.< +). ))*< 83*(=)*3= 8*))  ++*++ .*++  ).=*3) )<*( *+3<*++((= +*=< +). )* )8<*3)*+ )<*.8  8++*++ )*++  .3*+ 8*<+ <*.<+*++((= +.*=< +). .*. 8(*+*+( 88*8.  (++*++ (*)(  8.8*) <(*(3 )(*8+(=*++((= =*83< +). 3)*+ 88)*)*)= <<*.  <++*++ 3*3(  (.+*+. .*) 3*8=()*++((= +*3(< +). 8<*83 (=*+.*+) .*)  3++*++ .*(+  <=8*=< =*< (8*)8(*++((= 83*3+< +). .*83 <)*=<)*=8 )*)<  =++*++ )*(+  33=*() 83*8 3*3383*++((= <3*8=< +). +.+*(= 3)<*())*) (*3  .++*++ )*(+  =3+*. 3.*=3 .8*+)8.*++((= =3*.=< +). +(=*)= ==*.)*8 =8*. 8 +++*++ )<*++  .<*3 )<*8 8*.)(*++((= 8+.*<< +). +))*= .+.*3)*<8 )))* 8 ++*++ )=*++ 8 +(+*= )(<*+8 <*(3()*++((= 8*)< +)= .=)*8< ..=*=)*+( )<*8+ 8 )++*++ ).*(+ 8 =*8= ).=*.+ (=*=(8*++((= 8(*)3< +)= ..*338 +=<*8=*3= +3*8 8 ++*++ *++ 8 ))8*=3 88*3 =+*+<((*++((= 83(*+< +)= =.8*8=8 3)*=3 *(= (8*+3 8 8++*++ *++ 8 +.*<3 .)*3= )+*(.(3*++((= 8.3*)+< +)= =8<*)88 )(3*<3 )*)< 8+*<        "  # $ !     % &'( %            )  ) *    +,$ +  -    !"#$% &!'()*++ , ( . -+. (* #/0 1# ( % !"#$% &!'()*++ , / - % 2 1  + ( - 6+ %8 :   678 ;#+- 678 435) 6+ %8  / -. 6+ %8  3 . 6+ %8 4/5 6+ %8  +,$ '  ( - 6+ %8 &'( + % (! >? '  8 (++*++ 8*(+ 8 .)*=) 888*83 ))*.)<+*++((= (3*.< +)= 3.8*3)8 8+*=))*)8 8(<*. 8 <++*++ 8*(+ 8 83(*) 8.3*<. )8*).<+*++((= (3*3)< +)= 38*<(8 8)*)+*++ (+*< 8 3++*++ 8*++ 8 ((3*=. ((+*(= )<+*(8<+*++((= ((3*=< +)= <==*.8 (+(*=.+*(+ (<8*() 8 =++*++ 8*++ 8 <8+*3. <+*). )3.*)+<*++((= (3<*8<< +)= <<*38 (==*3.+*(< <=*) 8 .++*++ 8*++ 8 3)*3+ <(<*++ ).3*=3<+*++((= (.(*(< +)= (=*=8 <3*3++*(< <3*.+ ( +++*++ <*(+ 8 =+(*< 3+.*=< =*(=(=*++((= <<*<<< +)= (+*)8 3(*<)*3( 3)<*=( ( ++*++ =*)( 8 ==8*= 3<(*3) 8)*(<*++((= <8+*=< +)= 838*8(8 =)*=)* 3=*.3 ( )++*++ =*++ 8 .<*( =)*= <.*<()*++((= <<=*< +)= 8.*)8 .*()*8= =8+*=. ( ++*++ =*(+ ( +8)*+8 =3(*(. .=*.+(*++((= <.=*)3< +)= <(*+88 ..+*+8 +*=+ =.<*=. ( 8++*++ .*(+ ( .*3( .+*=. 8)=*.)()*++((= 3)=*3< +)= +.*.=( +<3*3(*= .(*=) ( (++*++ 8+*3( ( .<*)) .=3*() 8(.*<=(*++((= 3(.*.)< +)= )(*(.( 88*))*8  +)* ( <++*++ .*++ ( )3)*.<  +8*+( 8.*38.*++((= 3.)*.< +)= .=*( ))+*.<)*3  +<.*< ( 3++*++ 8*)( ( 8.*8)  +.=*=< ()*.(*++((= =)(*+< +)= 8)*33( ).3*8))*(.  )<*.) ( =++*++ 8*)( ( 8)8*<  ((*.< ((<*=38.*++((= =(=*8)< +)= +=(*.8( 3)*<*)  =(*=+ ( .++*++ 8)*++ ( 8..*<  ))*.+ (.*+=8.*++((= =.*+3< +)= +).*)=( 883*<+*3(  )88*<+ < +++*++ 8)*3( ( (3*)  )3+*<3 <)(*3.8.*++((= .)=*)8< +)3 .3*3.( ()*)+*3(  +8*)( < ++*++ 8)*(+ ( <8<*=  )=*3 <<+*<38.*++((= .<*(<< +)3 .8*+)( (.8*=+*)(  <8*. < )++*++ 8)*++ ( 3)+*=8  =(*3 <.<*).83*++((= ...*<< +)3 =(3*).( <<=*=8 *8  8)*8 < ++*++ 8*++ ( 3.(*38  88+*.. 3)*=<8<*++((. +<*<)< +)3 =+)*( 38*38 *)+  8=+*. < 8++*++ .*3( ( =3*.)  8.8*<. 3<.*+=8<*++((. +3*)<< +)3 38=*.)( =.*.)*)(  (<*+3 < (++*++ .*(+ ( .8=*.8  (83*(< =+8*3(8<*++((. +.*8< +)3 <.<*( =.<*.8 +*)(  (.+*=. < <++*++ =*++ < +)<*.  (..*8( =.*3(8<*++((. 88*38< +)3 <88*3)( .38*.*(+  <88*<. < 3++*++ =*)( < +(*(.  <(+*< =38*)38<*++((. 3.*<<< +)3 (.*=)< +(*(.+*)(  <.3*3< < =++*++ .*++ < =*3)  3+)*+3 .+.*<8(*++((. )(*8)< +)3 (8)*<<< *3)+*.=  3(* < .++*++ .*++ < )<*8  3(*< .8(*38(*++((. )(*.< +)3 8.*8+< )+.*8+*++  =+8*<( 3 +++*++ =*(+ < .*8)  =+8*(= .=)*+388*++((. )==*<(< +)3 88+*3< )=3*8)+*=+  =(3*(. 3 ++*++ =*3( < 83*((  =((*8+  +=*)8(*++((. )(*).< +)3 .+*)< <(*((+*<3  .+*. 3 )++*++ =*(+ < 8.(*<3  .+<*))  +(8*(<88*++((. <*.< +)3 .*<=< 88*<3 +*<3  .<*. 3 ++*++ =*3( < (3*=+  .(3*+8  +.+*=8(*++((. .=*(3< +)3 )=.*(< ()*=++*<3 ) +(*.. 3 8++*++ =*3( < <(*3. ) ++3*..  )3*(88*++((. 8(*< +)3 )=*8.< (..*3.+*< ) +<=*.8 3 (++*++ .*++ < 3).*<8 ) +(=*88  <8*8.8*++((. 83*+8< +)3 ==*8< <33*<8 +*<= ) )*8 3 <++*++ .*)( < =+3*)) ) +=*(+  )+)*.+8)*++((. (*=8< +)3 =*(=< 3((*))+*<= ) 3*<+ 3 3++*++ .*3( < ==8*= ) (=*)=  )8)*(+8*++((. ((*=)< +)3 +=.*)< =)*=+*= ) ))(*(( 3 =++*++ 8*++ < .<+*(< ) )+=*.=  )=)*=)8)*++((. (.)*(< +)3 +=*3(< .+=*(<*8 ) )3=*8< 3 .++*++ 8+*3( 3 +<*3 ) )<+*((  )*8)*++((. <*))< +)< .=3*(+< .=8*3 +*)( ) )*)8 3 .3=*++ 8*8 3 +.(*+. ) ++*=  (8*(=8)*++((. <<(*++< +)< .83*833 +8*+.+*(+ ) 38*)( = ++*=) 83*.< 3 =*83 ) .*)(  <=*(88*+((. <3=*.)< +)< .).*<3 +<<*83 )*( ) .*8 = +8*+) (=*<= 3 <*8= ) .*+  =)*38(*.((. <.)*=.< +)< .+.*8)3 +=8*8=(*3( ) 88*+8 = +<(*=+ <3*3 3 83*<( ) (3*()  .8*383*+)((. 3+(*)< +)< =.*+3 +.(*<(<*<< ) 8*) = +.(*< 3.*88 3 (<*+3 ) =*(  8+.*=883*(((. 3)+*=.< +)< =<3*)3 +8*+3 .*8 ) 8(3*.3 = )*< =.*.3 3 (=*88 ) 8+*.  8)*)(+*+.((. 38*8< +)< =8(*8<3 +<*88 8)*)3 ) 8=+*(< = (+*<= .<*8+ 3 (<*=+ ) 8+*+(  8(*+<<*3((. 38<*8=< +)< ==*=.3 +8*=+8(*)) ) (+3*=( = =8*= +*3( 3 (*8+ ) 8<)*..  88*33(*(+((. 3(*8< +)< 3=<*+3 +..*8+8)*=( ) (8*) = )(*=< +*< 3 88*<3 ) 8.*)+  88+*8)=.*8.((. 3()*8< +)< 3((*=+3 +.)*<3 88*)) ) (3*)+ = )8<*=) +*)( 3 3*(3 ) ())*=  8)*<)+*(.((. 388*(< +)< 3)<*3<3 +=(*(3 =*+( ) (..*<3        "  # $ !     % &'( %            )  ) *    +,$ +  -    !"#$% &!'()*++ , ( . -+. (* #/0 1# ( % !"#$% &!'()*++ , / - % 2 1  + ( - 6+ %8 :   678 ;#+- 678 435) 6+ %8  / -. 6+ %8  3 . 6+ %8 4/5 6+ %8  +,$ '  ( - 6+ %8 &'( + % (! @@>@ '  = )3(*(= ++*. 3 *3) ) (83*(=  8)+*)3)+.*)<((. 3)*<)< +)< 3+*)<3 +3.*3))=*. ) <)8*( = +(*+) .3*+= 3 )3*+ ) (3)*.)  8+(*.()+.*<.((. 3=*(+< +)< <3(*=)3 +3(*++*<< ) <8=*= = 8*.3 .*(+ 3 )8*(8 ) (.=*<8  .+*=3)*+.((. 3+*<)< +)< <8.*.=3 +3)*(8 )*= ) <3*<( = <(*)+ .*.. 3 )*+. ) <)*=)  38*))(*=)((. <=3*=< +)< <)8*<33 +3*+.<*8 ) <.3*=8 = .(*8< .8*+) 3 )*( ) <83*<  ((*<))+*).((. <<=*3(< +)< <++*383 +<.*(<*)+ ) 3)+*( = 8)(* .(*3 3 .*+= ) <<.*))  (*8<))(*3+((. <8=*3=< +)< (3=*.=3 +<3*+==*3( ) 38+*.( = 8<+*< .)*<8 3 <*< ) <.8*+=  +*=.))*<)((. <)8*8+< +)< ((*.)3 +<8*<.*3= ) 3<8*= = 8.+*)3 .*.. 3 (*8 ) 3<*8=  ).+*=))+*<((. <+8*(+< +)< (*=3 +<*8*<= ) 3=(*(. = ()+*)+ .8*8) 3 *38 ) 3.*=.  )3)*)()<*<8 ((. (=<*)< +)< (+3*=)3 +<*38 8*)= ) =+3*. = ((+*< .<*) 3 +*.. ) 3<8*=  )(8*.)8*)((. (<.*++< +)< 8=*8+3 +(=*...*(3 ) =*= = (=+*+3 .<*=( 3 +3*< ) 3=.*).  ).*+()+*+((. ((*)< +)< 8(=*<3 +((*<*(= ) =((*8 = <+*)) .(*.. 3 +8*) ) =(*(8  ))8*<+)+3*3 ((. (.*+=< +)< 8*=3 +()*)+*+3 ) ==+*3) = <(*<8 .)*< 3 +* ) =()*8  )+(*=3)+<*<+((. ()+*<< +)< .8*=33 +8.*=*3 ) .<*. = <3(*) .*.3 3 ++*. ) =3*(  .(*()+(*(((. (+*8(< +)< 3*<3 +8=*.(*< ) .<*.( = 3+(*)( .8*. 3 +.=*() ) .++*.+  =*()+)*3 ((. 8.=*(+< +)< 8<*3 +8<*()*. ) .<*<+ = 3(*)8 .<*8+ 3 +.(*3+ ) .)=*==  3)*.8.=*88 ((. 8==*< +)< =*+=3 +8*3+8*<3 ) ..+*.8 = 3<(*) .<*)< 3 +.)*8 ) .(3*+  <8*<.(*(((. 83.*.<< +)< )=.*(.3 +8+*8+*.(  +=*= = 3.(*+< .8* 3 +=.*3+ ) .=<*)  (3*).)*.<((. 83)*.(< +)< )<+*<3 +3*3++*)  +83*). = =)(*)) .*3 3 +==*  +(*3)  (*+).+*8)((. 8<3*+=< +)< )*+33 +<*)*==  +3<*. = =<+*3 .+*() 3 +=3*3.  +(+*).  8(*.=<*8+((. 8<)*)8< +)< .<*833 +(*3.*<(  +*< = =.+*< .+*++ 3 +=3*<<  +=+*=  8*(<=)*(.((. 8<+*)< +)< <<*(33 +(*<<)*=)  8+*) = .)+*+ .*.+ 3 +=<*<8  +*+=  8)*<=*+3 ((. 8(.*8+< +)< <*<<3 +8*<8 *.=  3+* = .(+*)) .(*<( 3 +=8*  8+*+.  8)*3+3=*(=((. 8(.*3< +)< +<*<(3 +)*+*+=  )++*+= = .=+*) .<*3 3 +=+*.+  <.*.)  8*)3.*3.((. 8<+*.< +)< +3<*=3 +)=*.+(*8  )).*=. . ++*8 .(*8 3 +33*38  ..*=8  8)*+.=8*(((. 8(.*(.< +)< +8<*.3 +)(*38 (*+  )(.*3+ . +8+*88 .*( 3 +3(*.8  )).*33  .*83=(*=8 ((. 8(3*)< +)< +<*.33 +)*.8 *=8  )=.*8 . +3+*+3 .)*+( 3 +3(*+  )(.*+.  (*3.+*+.((. 8(*8< +)( .=3*<)3 +)*+8*88  =*83 . +.8*3) .*. 3 +38*<  )=*)8  +*(.)*3+((. 88=*<<< +)( .<*83 +))*<+*<+  8)*+ . )8*<8 =.*( 3 +3*3.  )*)3  )*)..(*))((. 88*<3< +)( .8*(3 +)*3.*<  3+*=3 . (8*38 =<*.< 3 +38*3  8*))  (*8.<*)+((. 8*3(< +)( .+(*3 +))*3.*+=  ..*) . 3.*<= =8* 3 +3<*<  <(*+  +=*..<*)=((. 8)<*..< +)( ==*83 +)8*<+*<  8))*3< . )+*88 =+*8 3 +=+*3+  .8*  +..*((.<*<<((. 8=*(=< +)( =()*3 +)=*3+)*<3  8(*8( . ).*=+ 3<*8= 3 +=<*(3  8)*33  +.+*.(.=*((. 8+*)+< +)( =)8*<+3 +8*(3 8*)  83=*< . )(.*=( 38*. 3 +.*()  88+*))  +=8*=(.=*8=((. 8+8*)8< +)( =+<*3 +.*()3*.  8.<*8 . )=8*3 38*<= 3 +.=*+8  8<)*=8  +3<*=()++*8<((. .<*8)< +)( 3=*83 +8<*+8 3*3(  (=*(< . (*<8 3*<= 3 +<*83  8.+*<=  +<<*8)++*.((. =<*< +)( 3((*(3 +(8*83 *()  (8(*3( . 8(*= 3*8 3 8*=.  (3*(  +(<*<=.=*<.((. 3<*<=< +)( 3)=*<3 +<)*=.3*)  (3*.. . 3(*( 3)*<< 3 )*<  (88*=)  +83*.=.<*<<((. <=*.< +)( 3+*)3 +3*<<*.3  (.=*3< . 8+*) 3*.+ 3 *<8  (3<*.8  +.*)+.*.)((. (.*<3< +)( <<.*+(3 +=*<8 =*(  <+* . 8.*3) 3*< 3 8*.=  <+8*3+  +*).+*3 ((. (*.< +)( <8*)(3 +=.*.=*<(  <(3*3+ . 8<.*83 38*88 3 (+*)  <)*.<  +)=*.3=<*3=((. 8.*=3< +)( <)*.<3 +.=*))*(  <=(*<3 . 8.8*= 3(*8. 3 (<*=  <(3*+  +)<*8<=8*.3 ((. 83*(<< +)( (==*<+3 +8*==*+(  3+.*= . ().*38 33*( 3 <8*.<  <.*))  +)8*=8=+*()((. 8<*)< +)( ((8*<33 )*.<*3+  38*<+ . ((.*=3 3=*3 3 3*+  3)+*<3  +)8*)==*<<((. 8(*==< +)( ()(*))3 .*+8*)3  33)*.3 . (.+*) =*+3 3 3<*3(  3(+*.  +))*.+=*<<((. 88*3< +)( 8.(*(+3 )8*3(*(=  =+)*(<        "  # $ !     % &'( %            )  ) *    +,$ +  -    !"#$% &!'()*++ , ( . -+. (* #/0 1# ( % !"#$% &!'()*++ , / - % 2 1  + ( - 6+ %8 :   678 ;#+- 678 435) 6+ %8  / -. 6+ %8  3 . 6+ %8 4/5 6+ %8  +,$ '  ( - 6+ %8 &'( + % (! @?>AA '  . <.*=3 =8*)( 3 =+*((  33.*3.  +)+*((=(*8=((. 8)*<< +)( 8<<*+=3 )=*(()*).  =*3. . <)(*++ =8*= 3 =*+8  3=8*=3  +)+*+(=(*<.((. 8)*(< +)( 8<+*..3 ).*+8 )*++  =<*= . <(+*++ =3*<( 3 =)*<=  =+.*<3  +3*(=<*3)((. .*<(< +)( 8<*=3 +*<=)*++  =<*88 . <3(*++ .+*83 3 =*+.  =8*83  +8*)=3*3(((. <*<.< +)( 8*<3 *+.)*++  ==<*+ . <3.*3 .*++ 3 =*+  =.*(  +*(<=3*.8 ((. <*+.< +)( 8+<*<33 *+)*++  =.+*<( . 3++*++ .*++ 3 =)*<=  =(.*<  ++*8.+*3 ((. *+)< +)( =<*<83 +*<=)*++  .+*88 . 3)(*++ .*++ 3 =)*)8  ==*<)  ++(*..*3 ((. )=*+3< +)( <)*83 +*)8 )*++  .8*(3 . 3(+*++ .*++ 3 =*=+  .+3*33 ..=*3=.<*3 ((. )*=8< +)( 3*.83 ).*=+)*++  .(=*) . 33(*++ .*++ 3 =*3  .*(< ..*..*3 ((. 8*<< +)( 8*+3 ).*3 )*++  .=*< . =++*++ .*++ 3 =+*.  .(8*. .=)*)+)+)*3 ((. +(*<8< +)( ).+*<=3 )=*.)*++ 8 ++8*88 . =)(*++ .*++ 3 =+*(+  .33*33 .3)*+.)+(*3 ((. ).(*3< +)( )<3*3(3 )=*(+)*++ 8 +)<*<= . =(+*++ .*++ 3 =+*+< 8 +++*+< .<+*3.)+=*3 ((. )=8*(=< +)( )8(*33 )=*+<)*++ 8 +8=*+ . =3(*++ .*++ 3 3.*<) 8 +)*38 .8=*8)*3 ((. )3)*< +)( ))*<+3 )3*<))*++ 8 +<.*) . .++*++ .*++ 3 3.*. 8 +8)*3 .8*3=)8*3 ((. )(=*.< +)( )+)*(+3 )3*.)*++ 8 +=.*8 . .)(*++ .*++ 3 3=*3( 8 +<)*.= .)+*)3*3 ((. )88*8)< +)( =)*83 )<*3()*++ 8 +=*=+ . .(+*++ .*++ 3 3=* 8 +=)*88 .+8*8())+*3 ((. ))=*=.< +)( <)*(<3 )<*)*++ 8 )3* . .3(*++ .*++ 3 33*== 8 +*+( ==3*3<))*3 ((. ))*<< +)( 8*=)3 )(*==)*++ 8 88*.< + +++*++ .*++ 3 33*88 8 =*3< =3+*))<*3 ((. .8*=3< +)( )(*.33 )(*88 )*++ 8 <*<8 + +)(*++ .*++ 3 33*++ 8 (*( =(*(.)).*3 ((. 3<*8<< +)( +.*+<3 )(*++)*++ 8 33*) + +).*3 .*++ 3 3<*.) 8 =*(. =83*..)).*.8 ((. 3)*==< +)( +(*.33 )8*.))*++ 8 =+*3 + +(+*++ .*++ 3 3<*(3 8 (*+ =)*)+))*3 ((. (3*)+< +)( +.*83 )8*(3 )*++ 8 .*.< + +3(*++ .*++ 3 3<* 8 <<*+ =)*+))(*3 ((. 3*< +)( +3=*)(3 )8*)*++ 8 )+(*() + ++*++ .*++ 3 3(*3+ 8 3.*<. 3.*+.)=*3 ((. <*< +)( +<8*83 )*3+)*++ 8 )3*.3 + )(*++ .*++ 3 3(*)< 8 .)*)8 3<.*83)8*3 ((. +.8*3.< +)( +(*3)3 )*)<)*++ 8 )).*)< + (+*++ .*++ 3 38*=) 8 )+*< 383*)))88*3 ((. +3)*<8< +)( +8+*(3 ))*=))*++ 8 ).*3 + 3(*++ .*++ 3 38*. 8 )*=( 3)8*8))83*3 ((. +8.*.< +)( +).*3(3 ))*.)*++ 8 )8=*)3 + )++*++ .*++ 3 3*.( 8 )))*=< 3+*+)(+*3 ((. +)<*<=< +)( +)+*(<3 )*.()*++ 8 )((*.8 + ))(*++ .*++ 3 3*( 8 )+*<8 <33*()(*3 ((. ++)*..< +)( +)*<+3 )*()*++ 8 )<)*( + )(+*++ .*++ 3 3*+= 8 )3*< <(*)))(<*3 ((= .3=*.< +)( ++(*=.3 )*+=)*++ 8 )<3*8. + )3(*++ .*++ 3 3)*<8 8 )8)*8 <)=*3.)(.*3 ((= .(8*()< +)( +++*8(3 )+*<8 )*++ 8 )3*8 + ++*++ .*++ 3 3)*) 8 )8<*3 <+8*)<)*3 ((= .).*==< +)8 ..<*).3 )+*))*++ 8 )3*=. + )(*++ .*++ 3 3*33 8 )8.*+8 (3.*)<)<(*3 ((= .+(*+(< +)8 ..*83 .*33 )*++ 8 )3(*8 + (+*++ .*++ 3 3* 8 )(+*8+ ((8*+)<=*3 ((= ==+*< +)8 ..*=33 .*)*++ 8 )3(*+= + 3(*++ .*++ 3 3+*.+ 8 )(+*8< ().*)3*3 ((= =((*)< +)8 ..*<)3 =*.+)*++ 8 )3*3 + =.*3 .*++ 3 3+*<8 8 )8.*== (8*(.)3*8 ((= =8+*8+< +)8 ..)*+=3 =*<8 )*++ 8 )3)*). + 8++*++ .*++ 3 3+*8< 8 )8.*8 (+8*8)3*.((= =+*8< +)8 ..)*8(3 =*8<)*++ 8 )3*)< + 8)(*++ .*++ 3 3+*+) 8 )8.*)( 83.*8)<=*.((= =+(*(< +)8 ..)*883 =*+))*++ 8 )<.*<< + 8(+*++ .*++ 3 <.*(. 8 )(+*= 8(8*3)<(*.((= 3=+*)+< +)8 ..*3 3*(.)*++ 8 )<.*< + 83(*++ .*++ 3 <.*( 8 )()*=) 8).*(+)<)*.((= 3((*8< +)8 .==*8=3 3*()*++ 8 )3+*= + (++*++ .*++ 3 <=*3 8 )(<*(( 8+8*3.)(.*.((= 3+*<<< +)8 .=8*((3 <*3)*++ 8 )3)*3+ + ()(*++ .*++ 3 <=*)= 8 )<*(3 =+*+)(<*.((= 3+<*))< +)8 .3.*83 <*)=)*++ 8 )3<*) + ((+*++ .*++ 3 <3*=8 8 )<3*=3 (<*))(*.((= <=)*+.< +)8 .3)*=(3 (*=8 )*++ 8 )=*)) + (3(*++ .*++ 3 <3*8 8 )3(*8) )*).)(+*.((= <(=*)< +)8 .<(*3 (*8)*++ 8 )=3*8 + <++*++ .*++ 3 <<*.3 8 )=8*) +=*.+)83*.((= <(*++< +)8 .(<*83 8*.3 )*++ 8 ).8*=( + <)(*++ .*++ 3 <<*( 8 ).8*)) )=(*..)88*.((= <)*=< +)8 .8(*.<3 8*()*++ 8 +*(        "  # $ !     % &'( %            )  ) *    +,$ +  -    !"#$% &!'()*++ , ( . -+. (* #/0 1# ( % !"#$% &!'()*++ , / - % 2 1  + ( - 6+ %8 :   678 ;#+- 678 435) 6+ %8  / -. 6+ %8  3 . 6+ %8 4/5 6+ %8  +,$ '  ( - 6+ %8 &'( + % (! @> '  + <(+*++ .*++ 3 <<*+ 8 +(*8+ )<*<8)8*.((= (=.*.)< +)8 .8*<+3 8*+)*++ 8 *8 + <3+*++ .*++ 3 <(*3( 8 (*. )8<*)+).*(((= (3)*(<< +)8 .)8*<=3 *3()*++ 8 ))*) &(=@B(  + ( - 6+ %8 ' ( - 6+ %8 435) 6+ %8 4/5 6+ %8 !     ##     + <3+*++ 3 <(*3( 8 (*. )8<*)+ 1/+<3+>/                    ! " #!$  !  !% #         & '     '  ! "#$ %  &! ' ()*++ ,()*& ' + '  ! "#$ %  &! 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"#$ %  &! ' ()*++ ,()*& ' + '  ! "#$ %  &! 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"#$ %  &! ' ()*++ ,()*& ' + '  ! "#$ %  &! ' ()*++ ,*& '    -&  ' . , -& '+*++ , .'   /  /   -' & 0' 1   )*++ 0 0.'+*++ , & 02 * 2'#12 .# ,, 1  & *3 '  3+4 1&& ()*& ' + (+ ;++ +(+ =++                     + )+++ =+++ 9+++ :+++ ++++ )+++   - 15  --   =9  =9  =9 >+     !7   >+  # ! # & 1 -    / 7   -         4); A#<   C   F += !- /0  ,  7 +*=(G  -   (+G +H +*++++  ,, 15   /  ,, 1  , 15   /   ! "#$ %  &! ' ()*++ ,            -   /0  6      ,  #                & '     '  ! "#$ %  &! ' ()*++ ,()*& ' + '  ! "#$ %  &! ' ()*++ ,*& '    -&  ' . , -& '+*++ , .'   /  /   -' & 0' 1   )*++ 0 0.'+*++ , & 02 * 2'#12 .# ,, 1  & *3 '  3+4 1&& ()*& ' +*++ *++ 9*++ 4*++        6     + )+++ =+++ 9+++ :+++ ++++   - 15 &! F   10  /-  D -   -  D* &#    6    =9  =9  =9 >+     !7   >+  # ! # & 1 -    / 7   -         4); A#<   C   F += !- /0  ,  7 +*=(G  -   (+G +H +*++++  ,, 15   /  ,, 1  , 15   /   ! "#$ %  &! ' ()*++ ,            -   /0  6      ,  #        $) $) $) $) $) $) $) $) $) $) $) $) $) $) $)$) $) $) $) $) $) $) $) $) $) $)$) ! ! ! ! !! ! ! ! ! !! ! ! ! ! !! ! ! ! ! !! ! ! ! !!! !! ! !!! ! ! !! !! ! !! ! ! ! ! ! !! ! ! ! ! ! ! ! ! ! !! !! ! D $)MPU C-13A_BHL MPU C-13A_TPH MPU C-13A_SHL MPU C U013N010E Sec. 10 Sec. 11 Sec. 15 Sec. 14 Sec. 3 Sec. 2 ADL047434 ADL047433 ADL025516 ADL047437 MILNE POINT UNIT C-46 C-26 C-20 C-01 C-42 C-24 C-15 C-14 C-13 C-11 C-10 C-06 C-02 C-11A C-15A C-24A 18-01 C-26L1 C-46PB1 C-47PB1 C-11APB2 C-24APB1 C-26L1PB3 C-26L1PB2 C-26L1PB1 Map Date: 4/12/2024 Milne Point Unit MPC-13A Well wp09 E0 1,000 2,000Feet Legend $)MPU C-13A_BHL !MPU C-13A_SHL D MPU C-13A_TPH !Other Surface Holes (SHL) $)Other Bottom Holes (BHL) Other Well Paths Oil and Gas Unit Boundary Pad Footprint Coastline (USGS 1:63k) Do c u m e n t P a t h : O : \ A W S \ G I S \ P r o d u c t s \ A l a s k a \ N S \ W e l l s \ T R S _ D i s t a n c e \ m x d s \ 2 0 2 4 \ N o r t h S l o p e _ M P C _ 1 3 A w p 0 9 . m x d _____________________________________________________________________________________ Revised By: JNL 4/12/2024 PROPOSED Milne Point Unit Well: MPC-13A Last Completed: TBD PTD: 223-118 TD = 10,670’(MD) / TD = 7,166’(TVD) 13-3/8” PB1: 8,020’– 8,183’ Orig. KB Elev.: 52.0’/ GL Elev.: 16.2’ 7” 8 Est. TOC @ 6,900’ 9-5/8” 6 7 11 12 Whipstock #1 Top @ 8,014’ Window @ 8,020’ PBTD =10,650’ (MD) / PBTD = 7,166’(TVD) 9 Whipstock #2 Top @ 7,978’ Window @ 7,983’ TOC / Top of Liner @ 7,700’ 10 5 4 3 2 1 CASING DETAIL Size Type Wt/ Grade/ Conn Drift ID Top Btm 13-3/8" Conductor 48 / H-40 / N/A 12.559 Surface 115' 9-5/8" Surface 36 / K-55 / Btrc. 8.765 Surface 4,779’ 7" Production 26 / L-80 / Btrc 6.151 Surface 7,983’ 3-1/2” x 3-1/4” x 2-7/8” Liner 9.3 / L-80 / STL 6.6 / L-80 / TCII 6.5 / L-80 / H511 2.992 2.805 2.441 7,700’ 10,670’ TUBING DETAIL 4-1/2" Tubing 12.6 / L-80 / TXP 3.833” Surface 7,729’ JEWELRY DETAIL No Depth Item 1 2,503’ Sta #5: 4.5” K&B GLM – Latch BK 2 (1” Dummy) 2 3,516’ Sta #4: 4.5” K&B GLM – Latch BK 2 (1” Dummy) 3 5,010’ Sta #3: 4.5” K&B GLM – Latch BK 2 (1” Dummy) 4 6,308’ Sta #2: 4.5” K&B GLM – Latch BK 2 (1” Dummy) 5 7,438’ Sta #1: 4.5” K&B GLM – Latch BK 2 (1” Dummy) 6 7,502’ 4-1/2” Sliding Sleeve (3.813” Sealbore) 7 7,522’ 4-1/2” Gauge Carrier 8 7,581’ 7” x 4-1/2” D&L Perm Hyd. Packer- COE 7.8” f/ PIN Threads Off 9 7,640’ 4-1/2” X Nipple (3.813” Sealbore) w/ RHC Installed 10 7,690’ 4-1/2” WLEG – Btm @ 7,729’ 11 ~7,970’ 3-1/2” xo 3-1/4” 12 ~8,200’ 3-1/4” xo 2-7/8” PERFORATION DETAIL Kuparuk Sands Top (MD) Btm (MD) Top (TVD) Btm (TVD) FT Date Status WELL INCLINATION DETAIL A KOP @ 7,983’ Max Hole Angle = 103 deg. @ 8,215’ TREE & WELLHEAD Tree 5M FMC 4-1/2”” Wellhead 11” 5M FMC - Phase w/4.5” FMC Tubing Hanger GENERAL WELL INFO API: 50-029-21328-01-00 Drilled and Cased by AUD #3 - 5/9/1985 A Sidetrack – CDR2 - TBD OPEN HOLE / CEMENT DETAIL 17-1/2” ~100 cu ft Cement 12-1/4” 1120 sx Permafrost E, 250sx Class G 8-1/2” 310 sx Class G 4-1/4” 190 sx Class G Well Date Quick Test Sub to Otis -1.1 ft Top of 7" Otis 0.0 ft Distances from top of riser Excluding quick-test sub Top of Annular 2.75 ft C L Annular 3.40 ft Bottom Annular 4.75 ft CL Blind/Shears 6.09 ft CL 2.0" Pipe / Slips 6.95 ft B3 B4 B1 B2 Kill Line Choke Line CL 2-3/8" Pipe / Slip 9.54 ft CL 2.0" Pipe / Slips 10.40 ft TV1 TV2 T1 T2 Flow Tee Master Master LDS IA OA LDS Ground Level 3" LP hose open ended to Flowline CDR2-AC BOP Schematic CDR2 Rig's Drip Pan Fill Line from HF2 Normally Disconnected 3" HP hose to Micromotion Hydril 7 1/16" Annular Blind/Shear 2-3/8" Pipe/Slips 2 3/8" Pipe/Slips 2 3/8" Pipe/Slips 7-1/16" 5k Mud Cross 2-3/8" Pipe/Slips 3.0" Pipe / Slip HF nneceeeeeeeeeeeeeeeeeeeeeeeeeeeeeeee Revised 7/2022 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 Number _____________, API Number 50-______________________. Production from or injection into this wellbore must be reported under the original API Number stated above. Spacing Exception The permit is approved subject to full compliance with 20 AAC 25.055. Approval to produce or inject is contingent upon issuance of a conservation order approving a spacing exception. The 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-foot sample intervals from below the permafrost or from where samples are first caught and 10-foot 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 this well until after the Operator has designed and implemented a water-well testing program to provide baseline data on water quality and quantity. The Operator must contact the AOGCC to obtain advance approval of such a 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 the Operator 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 all well logs run must be submitted to the AOGCC within 90 days after completion, suspension, or abandonment of this well, or within 90 days of acquisition of the data, whichever occurs first. 223-118 X MILNE POINT KUPARUK RIVER OIL POOL MPU C-13A W E L L P E R M I T C H E C K L I S T Co m p a n y Hi l c o r p A l a s k a , L L C We l l N a m e : MI L N E P T U N I T C - 1 3 A In i t i a l C l a s s / T y p e DE V / 1 - O I L Ge o A r e a 89 0 Un i t 11 3 2 8 On / O f f S h o r e On Pr o g r a m DE V Fi e l d & P o o l We l l b o r e s e g An n u l a r D i s p o s a l PT D # : 22 3 1 1 8 0 MI L N E P O I N T , K U P A R U K R I V E R O I L - 5 2 5 1 0 0 NA 1 Pe r m i t f e e a t t a c h e d Ye s AD L 0 4 7 4 3 4 a n d A D L 0 2 5 5 1 6 2 Le a s e n u m b e r a p p r o p r i a t e Ye s 3 Un i q u e w e l l n a m e a n d n u m b e r Ye s MI L N E P O I N T , K U P A R U K R I V E R O I L - 5 2 5 1 0 0 - g o v e r n e d b y 4 3 2 E 4 We l l l o c a t e d i n a d e f i n e d p o o l Ye s 5 We l l l o c a t e d p r o p e r d i s t a n c e f r o m d r i l l i n g u n i t b o u n d a r y NA 6 We l l l o c a t e d p r o p e r d i s t a n c e f r o m o t h e r w e l l s Ye s 7 Su f f i c i e n t a c r e a g e a v a i l a b l e i n d r i l l i n g u n i t Ye s 8 If d e v i a t e d , i s w e l l b o r e p l a t i n c l u d e d Ye s 9 Op e r a t o r o n l y a f f e c t e d p a r t y Ye s 10 Op e r a t o r h a s a p p r o p r i a t e b o n d i n f o r c e Ye s 11 Pe r m i t c a n b e i s s u e d w i t h o u t c o n s e r v a t i o n o r d e r Ye s 12 Pe r m i t c a n b e i s s u e d w i t h o u t a d m i n i s t r a t i v e a p p r o v a l Ye s 13 Ca n p e r m i t b e a p p r o v e d b e f o r e 1 5 - d a y w a i t NA 14 We l l l o c a t e d w i t h i n a r e a a n d s t r a t a a u t h o r i z e d b y I n j e c t i o n O r d e r # ( p u t I O # i n c o m m e n t s ) ( F o r NA 15 Al l w e l l s w i t h i n 1 / 4 m i l e a r e a o f r e v i e w i d e n t i f i e d ( F o r s e r v i c e w e l l o n l y ) NA 16 Pr e - p r o d u c e d i n j e c t o r : d u r a t i o n o f p r e - p r o d u c t i o n l e s s t h a n 3 m o n t h s ( F o r s e r v i c e w e l l o n l y ) NA 17 No n c o n v e n . g a s c o n f o r m s t o A S 3 1 . 0 5 . 0 3 0 ( j . 1 . A ) , ( j . 2 . A - D ) NA Th i s w e l l i s a i n z o n e C T D s i d e t r a c k f r o m a n e x i s t i n g w e l l b o r e w i t h p r e s s u r e i n t e g r i t y . 18 Co n d u c t o r s t r i n g p r o v i d e d NA Th i s w e l l i s a i n z o n e C T D s i d e t r a c k f r o m a n e x i s t i n g w e l l b o r e w i t h p r e s s u r e i n t e g r i t y . 19 Su r f a c e c a s i n g p r o t e c t s a l l k n o w n U S D W s NA Th i s w e l l i s a i n z o n e C T D s i d e t r a c k f r o m a n e x i s t i n g w e l l b o r e w i t h p r e s s u r e i n t e g r i t y . 20 CM T v o l a d e q u a t e t o c i r c u l a t e o n c o n d u c t o r & s u r f c s g Ye s Th i s w e l l i s a i n z o n e C T D s i d e t r a c k f r o m a n e x i s t i n g w e l l b o r e w i t h p r e s s u r e i n t e g r i t y . 21 CM T v o l a d e q u a t e t o t i e - i n l o n g s t r i n g t o s u r f c s g Ye s Fu l l y c e m e n t e d p r o d u c t i o n l i n e r . P a r e n t w e l l i s o l a t e s t h e r e s e r v o i r . 22 CM T w i l l c o v e r a l l k n o w n p r o d u c t i v e h o r i z o n s Ye s 23 Ca s i n g d e s i g n s a d e q u a t e f o r C , T , B & p e r m a f r o s t Ye s CD R 2 h a s a d e q u a t e t a n k a g e a n d g o o d t r u c k i n g s u p p o r t . 24 Ad e q u a t e t a n k a g e o r r e s e r v e p i t Ye s Su n d r y 3 2 3 - 6 5 4 25 If a r e - d r i l l , h a s a 1 0 - 4 0 3 f o r a b a n d o n m e n t b e e n a p p r o v e d Ye s Ha l l i b u r t o n c o l l i s i o n s c a n s h o w s m a n a g e a b l e c o l l i s i o n r i s k . 26 Ad e q u a t e w e l l b o r e s e p a r a t i o n p r o p o s e d NA Al l d r i l l i n g b e l o w t h e s u r f a c e c a s i n g s h o e . N o d i v e r t e r r e q u i r e d . 27 If d i v e r t e r r e q u i r e d , d o e s i t m e e t r e g u l a t i o n s Ye s MP D b u t r e s e r v o i r p r e s s u r e b e l o w w a t e r g r a d i e n t . 28 Dr i l l i n g f l u i d p r o g r a m s c h e m a t i c & e q u i p l i s t a d e q u a t e Ye s C T P a c k o f f , f l o w c r o s s , a n n u l a r , b l i n d s h e a r , C T p i p e s l i p s , f l o w c r o s s , B H A p i p e s l i p s , C T p i p e s l i p s 29 BO P E s , d o t h e y m e e t r e g u l a t i o n Ye s 7- 1 / 1 6 " 5 0 0 0 p s i s t a c k p r e s s u r e t e s t e d t o 3 5 0 0 p s i . 30 BO P E p r e s s r a t i n g a p p r o p r i a t e ; t e s t t o ( p u t p s i g i n c o m m e n t s ) Ye s Fl a n g e d c h o k e a n d k i l l l i n e s b e t w e e n d u a l c o m b i ' s w r e m o t e c h o k e 31 Ch o k e m a n i f o l d c o m p l i e s w / A P I R P - 5 3 ( M a y 8 4 ) Ye s 32 Wo r k w i l l o c c u r w i t h o u t o p e r a t i o n s h u t d o w n No 33 Is p r e s e n c e o f H 2 S g a s p r o b a b l e NA Th i s i s a d e v e l o p m e n t w e l l . 34 Me c h a n i c a l c o n d i t i o n o f w e l l s w i t h i n A O R v e r i f i e d ( F o r s e r v i c e w e l l o n l y ) No Me a s u r e s r e q u i r e d ; 2 0 p p m H 2 S h a s b e e n m e a s u r e d i n w e l l M P U C - 1 4 . 35 Pe r m i t c a n b e i s s u e d w / o h y d r o g e n s u l f i d e m e a s u r e s Ye s Po r e p r e s s u r e a n t i c i p a t e d t o b e 1 0 . 3 p p g E M W 36 Da t a p r e s e n t e d o n p o t e n t i a l o v e r p r e s s u r e z o n e s NA 37 Se i s m i c a n a l y s i s o f s h a l l o w g a s z o n e s NA 38 Se a b e d c o n d i t i o n s u r v e y ( i f o f f - s h o r e ) NA 39 Co n t a c t n a m e / p h o n e f o r w e e k l y p r o g r e s s r e p o r t s [ e x p l o r a t o r y o n l y ] Ap p r AD D Da t e 12 - A p r - 2 4 Ap p r MG R Da t e 05 - J a n - 2 4 Ap p r AD D Da t e 12 - A p r - 2 4 Ad m i n i s t r a t i o n En g i n e e r i n g Ge o l o g y Ge o l o g i c Co m m i s s i o n e r : GC W Da t e : En g i n e e r i n g Co m m i s s i o n e r : JL C Da t e Pu b l i c Co m m i s s i o n e r BW H Da t e 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: Milne Point, Kuparuk River Oil Pool, MPU C-13A Hilcorp Alaska, LLC Permit to Drill Number: 223-118 Surface Location: 954' FSL, 2169' FEL, Sec 10, T13N, R10E UM, AK Bottomhole Location: 1476' FSL, 508' FEL, Sec 15, T13N, R10E, UM, AK Dear Mr. Myers: Enclosed is the approved application for the permit to drill the above referenced well. Per Statute AS 31.05.030(d)(2)(B) and Regulation 20 AAC 25.071, composite curves for all well logs run must be submitted to the AOGCC within 90 days after completion, suspension, or abandonment of this well, or within 90 days of acquisition of the data, whichever occurs first. 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, Brett W. Huber, Sr. Chair, Commissioner DATED this day of January 2024. Brett W. Huber, Sr. Digitally signed by Brett W. Huber, Sr. Date: 2024.01.08 10:06:59 -09'00' 8 3-1/2"x3-1/4" Drilling Manager 12/08/23 Monty M Myers By Grace Christianson at 1:45 pm, Dec 08, 2023 223-118 * BOPE test to 3500 psi. * Variance to 20 AAC 25.112 (i) Alternate plug placement approved. DSR-12/14/23 7,102' A.Dewhurst 05JAN24 50-029-21328-01-00 7,102' MGR22DEC2023*&:JLC 1/8/2024 Brett W. Huber, Sr.Digitally signed by Brett W. Huber, Sr. Date: 2024.01.08 10:07:27 -09'00'01/08/24 01/08/24 To: Alaska Oil & Gas Conservation Commission From: Ryan Ciolkosz Drilling Engineer Date: December 8, 2023 Re:C-13A Permit to Drill Approval is requested for drilling a CTD sidetrack lateral from well MPC-13 with the Nabors CDR2 Coiled Tubing Drilling. Proposed plan for C-13A Producer: Prior to drilling activities, a rig workover will pull the ESP completion and run 4-1/2" tubing. Screening will be conducted to MIT and drift for whipstock. E-line will then set a 4-1/2"x7" flow through whipstock (if not possible, will set with rig). Service Coil will mill the window if a unit is available. A coil tubing drilling sidetrack will be drilled with the Nabors CDR2 rig. The rig will move in, test BOPE and kill the well. If unable to set or mill pre-rig, the rig will mill a single string 3.80" window + 10' of formation. The well will kick off drilling and land in the Kuparuk A sands. The lateral will continue in the Kuparuk to TD. The proposed sidetrack will be completed with a 3-1/2"x3-1/4"x2-7/8” L-80 solid liner and cemented. CDR2 will then perforate the 2-7/8" liner. This completion WILL abandon the parent Kuparuk perfs. The following describes the work planned. A wellbore schematic of the current well and proposed sidetrack is attached for reference. Pre-Rig Work: (Estimated to start in December 8th) x Reference MPC-13 Sundry submitted in concert with this request for full details. 1. RWO : Pull ESP completion, Run 4-1/2" tubing (Separate Sundry) 2. Slickline : Dummy WS drift, Caliper 3. E-Line : Set Whipstock 4. Fullbore : MIT-IA or MIT-T to 3000 psi 5. Valve Shop : Pre-CTD Tree Work 6. Operations : Remove wellhouse and level pad. Rig Work: (Estimated to start in February 7th, 2024) 1.MIRU and test BOPE 250 psi low and 3,500 psi high (MASP 2,800 psi). 2.Mill 3.80” Window. 3.Drill build section: 4.25" OH, ~301' (40 deg DLS planned). 4. Drill production lateral: 4.25" OH, ~2720' (12 deg DLS planned). 5.Run 3-1/2” x 3-1/4” x 2-7/8” L80 liner leaving TOL at ~7750’ MD. 6.Pump primary cement job: 38 bbls, 15.3 ppg Class G, TOC at TOL*. 7. Perforate ~1000' of 2-7/8" liner in Kuparuk A Sands 8.Freeze protect well to a min 2,200' TVDss. 9.Close in tree, RDMO. * Approved alternate plug placement per 20 AAC 25.112(i) Post Rig Work: 1.Valve Shop : Valve & tree work 2.Slickline : Set live GLVs, set LTP* (if necessary). Sundry 323-654 PTD 223-118 20 AAC 25.036(c)(2)(A)(iv) : at least one preventer equipped with pipe rams that fit the size of the tubing, liner, or casing being used approved - mgr 3" rams change to VBRs. Managed Pressure Drilling: Managed pressure drilling techniques will be employed on this well. The intent is to provide constant bottom hole pressure by using minimum 8.4 ppg drilling fluid in combination with annular friction losses and applied surface pressure. Constant BHP will be utilized to reduce pressure fluctuations to help with hole stability. Applying annular friction and choke pressure also allow use of lighter drilling fluid and minimizes fluid losses and/or fracturing at the end of the long well bores. A MPD choke for regulating surface pressure and is independent of the WC choke. Deployment of the BHA under trapped wellhead pressure will be necessary. Pressure deployment of the BHA will be accomplished utilizing 3” (big hole) & 2-3/8” (slim hole) pipe/slip rams (see attached BOP configurations). The annular preventer will act as a secondary containment during deployment and not as a stripper. Operating parameters and fluid densities will be adjusted based on real-time bottom hole pressure measurements while drilling and shale behavior. The following scenario is expected: MPD Pressure at the Planned Window (8014' MD -7122' TVD) Pumps On Pumps Off A Target BHP at Window (ppg)4370 psi 4370 psi 11.8 B Annular friction - ECD (psi/ft)481 psi 0 psi 0.06 C Mud Hydrostatic (ppg)3185 psi 3185 psi 8.6 B+C Mud + ECD Combined 3666 psi 3185 psi (no choke pressure) A-(B+C)Choke Pressure Required to Maintain 704 psi 1185 psi Target BHP at window and deeper Operation Details: Reservoir Pressure: x The reservoir pressure is expected to be 3500 psi at 7000 TVD. (9.6 ppg equivalent). x Maximum expected surface pressure with gas (0.10 psi/ft) to surface is 2,800 psi. x A min EMW of 8.4 ppg for this well will be 442 psi Underbalance to the reservoir. Mud Program: x Drilling: Minimum MW of 8.4 ppg KCL with viscosifier for drilling. Managed pressure used to maintain constant BHP. Disposal: x All Class l & II non-hazardous and RCRA-exempt drilling and completion fluids will go to GNI at DS 4. x Fluids >1% hydrocarbons or flammables must go to GNI. x Fluids >15% solids by volume must go to GNI. x Fluids with solids that will not pass through 1/4” screen must go to GNI. x Fluids with PH >11 must go to GNI. Hole Size: x 4.25" hole for the entirety of the production hole section. Liner Program: x 3-1/2", 9.3#, L80 Solid: 7700' MD – 8000' MD (300' liner) x 3-1/4", 6.6#, L80 Solid: 8000' MD – 8214' MD (214' liner) x 2-7/8", 6.5#, L80 Solid: 8214' MD – 11035' MD (2821' liner) x The primary barrier for this operation: Kill Weight Fluid to provide overbalance as necessary. x A X-over shall be made up to a safety joint including a TIW valve for all tubulars ran in hole. Well Control: x BOP diagram is attached. MPD and pressure deployment is planned. x Pipe rams, blind rams and the CT pack off will be pressure tested to 250 psi and to 3,500 psi. x The annular preventer will be tested to 250 psi and 2,500 psi. x A X-over shall be made up to a 2 3/8" safety joint including a TIW valve for all tubulars ran in hole. x 2 3/8" safety joint will be utilized while running solid or slotted liner. The desire is to keep the same standing orders for the entire liner run and not change shut in techniques from well to well (run safety joint with pre-installed TIW valve). When closing on a 2 3/8" safety joint, 2 sets of pipe/slip rams will be available, above and below the flow cross providing better well control option. Directional: x Directional plan attached. Maximum planned hole angle is 106°. Inclination at kick off point is 41°. x Magnetic and inclination surveys will be taken every 30 ft. No gyro will be run. x Distance to nearest property line – 13,705 ft x Distance to nearest well within pool – 873 ft Logging: x MWD directional and Gamma Ray will be run through the entire open hole section. x Real time bore pressure to aid in MPD and ECD management. Perforating: x 1000' perforated post rig – See future perf sundry. x 2" Perf Guns at 6 spf x If post rig extended perforating with service coil is not an option, the well will be perforated with the rig or post rig under this PTD. x The well will be perforated between the CTD whipstock and TD of the newly drilled CTD well, completely in the Kuparuk pool. Anti-Collision Failures: x Anti-Collision Summary – All wells pass major risk criteria with WP06 Hazards: x MPC is not an H2S pad. H2S reading on MPC-13: 2 ppm 10/16/2022. x Max H2S recorded on MPC: 20 ppm. x 1 fault crossings expected. x Medium lost circulation risk. Ryan Ciolkosz CC: Well File Drilling Engineer (907-244-4357) Joseph Lastufka Swap BOP rams from 3" pip/slip to 2-3/8" x 3-1/2" VBRs. - mgr H2S measures required. -A.Dewhurst 05JAN24 $) $) $) $) $) $) $) $) $) ! ! ! !! ! ! ! ! ! ! ! ! ! ! !! ! ! ! ! !! ! ! ! !!! !! ! !!! ! ! !! !! ! !! ! ! ! ! ! !! ! ! ! ! ! ! ! ! ! !! !! ! D $)PLAN: MPU C-13A_BHL PLAN: MPU C-13A_TPH PLAN: MPU C-13A_SHL MPU C U013N010E Sec. 15 Sec. 10 Sec. 14 Sec. 11 ADL025516 ADL047434 ADL047437 ADL047433 MILNE POINT UNIT C-46 C-24 C-15 C-13 C-06 C-15A C-26L1 C-46PB1 Map Date: 12/7/2023 Milne Point Unit MPC-13A Well wp06 E0 670 1,340Feet Legend MPU_C_13A_wp06 $)PLAN: MPU C-13A_BHL !PLAN: MPU C-13A_SHL D PLAN: MPU C-13A_TPH !Other Surface Holes (SHL) $)Other Bottom Holes (BHL) Other Well Paths Oil and Gas Unit Boundary Pad Footprint Do c u m e n t P a t h : O : \ A W S \ G I S \ P r o d u c t s \ A l a s k a \ N S \ W e l l s \ T R S _ D i s t a n c e \ m x d s \ 2 0 2 3 \ N o r t h S l o p e _ M P C _ 1 3 A w p 0 6 . m x d -5 0 0 0 -4 5 0 0 -4 0 0 0 -3 5 0 0 -3 0 0 0 -2 5 0 0 -2 0 0 0 South(-)/North(+) (1000 usft/in) -500 0 500 1000 1500 2000 2500 3000 We s t ( - ) / E a s t ( + ) ( 1 0 0 0 u s f t / i n ) 5 2 0 0 56 0 0 6 0 0 0 64 00 680 0 7 20 0 7600 8 00 0 8 4 0 0 8 80 0 90 2 1 MP U C -46 5 2 0 0 5 6 0 0 6 0 0 0 6400 6800 720 0 7261 MPU C- 4 6 P B1 4 0 0 0 4 4 0 0 4 8 0 0 5 2 0 0 5 6 0 0 60 0 0 6 4 0 0 6 8 0 0 7 2 0 0 7 2 2 9 M P C - 0 6 6 4 0 0 6 8 0 0 7 2 0 0 7 3 1 6 M P C - 1 3 TI P KO P TI PKO P MPC -24A 6 4 0 0 6 8 0 0 7 2 0 0 7 2 3 5 M P C - 2 4 TI P KO P 7016 MPC-2 4 A P B 1 92 00 92 52 MPU C-1 5 A 7102 MPU C-13A wp06 To p o f W i n d o w - 8 0 1 4 ' M D En d 4 0 d l s - 8 3 1 5 ' M D TD - 1 1 0 3 5 ' M D 70 0 0 70 5 0 71 0 0 71 5 0 72 0 0 True Vertical Depth (100 usft/in) 2000 2200 2400 2600 2800 3000 3200 3400 3600 3800 4000 4200 4400 4600 4800 5000 5200 5400 5600 5800 Ve r t i c a l S e c t i o n a t 1 7 0 . 0 0 ° ( 4 0 0 u s f t / i n ) M P C - 1 3 MPU C-13A wp06 To p o f W i n d o w - 8 0 1 4 ' M D En d 4 0 d l s - 8 3 1 5 ' M D TD - 1 1 0 3 5 ' M D Se c MD I n c A z i TV D +N / - S +E / - W D l e g T F a c e VS e c t 1 8 0 1 4 . 0 0 4 1 . 3 2 1 4 2 . 1 4 7 1 2 2 . 1 7 - 2 3 1 9 . 5 3 1 3 6 9 . 1 8 0 . 0 0 0 . 0 0 2 5 2 2 . 0 5 2 8 0 3 4 . 0 0 4 3 . 1 2 1 4 2 . 1 4 7 1 3 6 . 9 8 - 2 3 3 0 . 1 4 1 3 7 7 . 4 2 9 . 0 0 0 . 0 0 2 5 3 3 . 9 3 3 8 1 5 1 . 2 0 9 0 . 0 0 1 4 2 . 1 4 7 1 8 2 . 3 1 - 2 4 1 2 . 6 9 1 4 4 1 . 5 9 4 0 . 0 0 0 . 0 0 2 6 2 6 . 3 6 4 8 2 1 4 . 6 8 1 0 6 . 0 0 1 6 2 . 1 2 7 1 7 3 . 4 1 - 2 4 6 7 . 6 9 1 4 7 0 . 9 2 4 0 . 0 0 5 0 . 0 0 2 6 8 5 . 6 2 5 8 3 1 5 . 0 0 1 0 6 . 0 0 2 0 3 . 8 7 7 1 4 5 . 7 6 - 2 5 6 1 . 8 8 1 4 6 5 . 9 9 4 0 . 0 0 9 0 . 0 0 2 7 7 7 . 5 2 6 8 5 1 5 . 0 0 1 0 6 . 0 0 2 2 8 . 8 3 7 0 9 0 . 6 3 - 2 7 1 5 . 5 0 1 3 5 2 . 9 5 1 2 . 0 0 9 0 . 0 0 2 9 0 9 . 1 9 7 8 6 5 5 . 0 0 9 2 . 9 3 2 1 8 . 1 1 7 0 6 7 . 6 0 - 2 8 1 5 . 5 3 1 2 5 8 . 4 8 1 2 . 0 0 - 1 4 0 . 0 0 2 9 9 1 . 2 9 8 8 7 5 5 . 0 0 8 3 . 7 3 2 1 0 . 3 8 7 0 7 0 . 5 2 - 2 8 9 8 . 0 0 1 2 0 2 . 3 2 1 2 . 0 0 - 1 4 0 . 0 0 3 0 6 2 . 7 5 9 9 0 3 5 . 0 0 8 4 . 5 1 1 7 6 . 6 0 7 1 0 0 . 0 5 - 3 1 6 4 . 8 6 1 1 3 8 . 3 5 1 2 . 0 0 - 9 0 . 5 0 3 3 1 4 . 4 5 10 9 2 1 5 . 0 0 8 4 . 5 3 1 9 8 . 3 1 7 1 1 7 . 4 5 - 3 3 4 1 . 4 4 1 1 1 5 . 2 5 1 2 . 0 0 9 1 . 0 0 3 4 8 4 . 3 4 1 1 9 3 3 5 . 0 0 8 4 . 4 5 1 8 3 . 8 4 7 1 2 9 . 0 4 - 3 4 5 8 . 3 5 1 0 9 2 . 3 7 1 2 . 0 0 - 9 1 . 0 0 3 5 9 5 . 5 0 12 9 4 3 5 . 0 0 9 3 . 6 7 1 9 1 . 5 3 7 1 3 0 . 6 8 - 3 5 5 7 . 2 5 1 0 7 9 . 0 1 1 2 . 0 0 4 0 . 0 0 3 6 9 0 . 5 8 13 9 5 4 5 . 0 0 9 3 . 5 7 2 0 4 . 7 6 7 1 2 3 . 7 1 - 3 6 6 1 . 3 4 1 0 4 4 . 9 0 1 2 . 0 0 9 0 . 0 0 3 7 8 7 . 1 6 14 9 7 8 0 . 0 0 9 3 . 1 4 1 7 6 . 5 1 7 1 0 9 . 6 7 - 3 8 8 9 . 5 6 1 0 0 2 . 0 5 1 2 . 0 0 - 9 0 . 0 0 4 0 0 4 . 4 8 15 9 9 2 0 . 0 0 9 3 . 3 0 1 9 3 . 3 4 7 1 0 1 . 7 4 - 4 0 2 8 . 3 2 9 9 0 . 0 9 1 2 . 0 0 8 9 . 0 0 4 1 3 9 . 0 5 16 1 0 2 2 0 . 0 0 9 3 . 2 6 1 5 7 . 2 8 7 0 8 4 . 0 0 - 4 3 2 1 . 8 9 1 0 1 4 . 1 8 1 2 . 0 0 - 8 9 . 0 0 4 4 3 2 . 3 4 17 1 0 3 6 0 . 0 0 9 0 . 8 1 1 4 0 . 6 5 7 0 7 8 . 9 9 - 4 4 4 1 . 3 3 1 0 8 6 . 0 7 1 2 . 0 0 - 9 8 . 0 0 4 5 6 2 . 4 5 18 1 0 5 2 0 . 0 0 8 1 . 3 2 1 2 3 . 9 0 7 0 9 0 . 0 4 - 4 5 4 8 . 3 0 1 2 0 3 . 5 3 1 2 . 0 0 - 1 2 0 . 0 0 4 6 8 8 . 1 9 19 1 0 7 2 0 . 0 0 8 9 . 9 8 1 0 1 . 4 3 7 1 0 5 . 4 1 - 4 6 2 4 . 3 7 1 3 8 6 . 2 8 1 2 . 0 0 - 7 0 . 0 0 4 7 9 4 . 8 4 20 1 0 9 2 0 . 0 0 9 0 . 7 9 1 2 5 . 4 2 7 1 0 4 . 0 5 - 4 7 0 3 . 2 9 1 5 6 8 . 4 5 1 2 . 0 0 8 8 . 0 0 4 9 0 4 . 2 0 2 1 1 1 0 3 5 . 0 0 9 0 . 7 7 1 1 1 . 6 2 7 1 0 2 . 4 7 - 4 7 5 8 . 0 5 1 6 6 9 . 2 5 1 2 . 0 0 - 9 0 . 0 0 4 9 7 5 . 6 3 Pr o j e c t : M i l n e P o i n t Si t e : M P t C P a d We l l : M P U C - 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( )*+,, -           .   0  7      -  $        _____________________________________________________________________________________ Revised By: TDF 3/1/2019 SCHEMATIC Milne Point Unit Well:MPC-13 Last Completed: 4/25/2015 PTD: 185-067 CASING DETAIL Size Type Wt/ Grade/ Conn Drift ID Top Btm 13-3/8"Conductor 48 / H-40 / N/A 12.559 Surface 115' 9-5/8"Surface 36 / K-55 / Btrc.8.765 Surface 4,779’ 7"Production 26 / L-80 / Btrc 6.151 Surface 8,236’ TUBING DETAIL 3-1/2"Tubing 9.2 / L-80 / IBT 2.867 Surface 7,480’ JEWELRY DETAIL No Depth Item 1 292’GLM w/ Orifice Valve 2 7,199’GLM w/ Dummy Valve 3 7,351’XN-Nipple 4 7,405’Discharge Head 5 7,406’Upper Pump: 161P11 / PMSXD AR 6 7,428’Lower Pump : 18P75 / PMSXD 7 7,435’Gas Separator: GRSFTXARH6 8 7,440’Upper Tandem Seal Assembly: GSB3DBUT SB/SB PFSA 9 7,447’Lower Tandem Seal Assembly: GSB3DBUT SB/SB PFSA 10 7,453’Motor: CL5 / MSP1-250 / 210hp / 2,145V / 59A 11 7,476’Sensor: Phoenix XT150 12 7,478’Centralizer –Bottom 7,480’ PERFORATION DETAIL Kuparuk Sands Top (MD)Btm (MD)Top (TVD)Btm (TVD)FT Date Status C1 Sands 7,770’7,786’6,934 6,946 16 11/3/94 Open C1 Sands 7,770’7,786’6,934 6,946 16 5/85 Open B-Silt Sands 7,878’7,881’7,016 7,018 3 5/85 Open B-Silt Sands 7,890’7,894’7,025 7,028 4 5/85 Open B-Silt Sands 7,904’7,910’7,035 7,040 6 5/85 Open A3 & A2 Sands 7,990’8,055’7,100 7,149 65 11/3/94 Open A3 Sands 7,991’8,009’7,101 7,114 18 5/85 Open A2 Sands 8,021’8,056’7,123 7,150 35 5/85 Open WELL INCLINATION DETAIL KOP @ 3,000’ Max Hole Angle = 42.75 deg. @ 6,000’ TREE & WELLHEAD Tree 5M FMC 3-1/2”” Wellhead 11” 5M FMC - Phase ( 1 & 2) w/ 3.5” FMC Tubing Hanger, 3.5” NSCT Threads, 3” CIW BPV Profile GENERAL WELL INFO API: 50-029-21328-00-00 Drilled and Cased by AUD #3 - 5/9/1985 ESP RWO by Nabors 4ES – 8/24/1996 ESP RWO by Nabors 4ES – 7/10/2005 ESP RWO by Nabors 4ES – 4/21/2009 ESP RWO by Doyon 16 – 12/30/2012 ESP RWO by Nordic 3 – 4/25/2015 OPEN HOLE / CEMENT DETAIL 9-5/8”Cmt w/1,120 sx Permafrost E/ 250sx Class G in a 12-1/2” Hole 8-1/2”Cmt w/ 310 sx Class G _____________________________________________________________________________________ Revised By: TCS 11/6/2023 PROPOSED Milne Point Unit Well: MPC-13 Last Completed: 4/25/2015 PTD: 185-067 TD =8,270 (MD) / TD = 7,313’(TVD) 13-3/8” Orig. KB Elev.: 52.0’/ GL Elev.: 16.2’ 7” 8 Est. TOC @ 6,900’ 9-5/8” 6 7 Whipstock set @ 8,014’ PBTD = 8,014’ (MD) / PBTD = 7,122’(TVD) 9 KUP Sands 10 5 4 3 2 1 CASING DETAIL Size Type Wt/ Grade/ Conn Drift ID Top Btm 13-3/8" Conductor 48 / H-40 / N/A 12.559 Surface 115' 9-5/8" Surface 36 / K-55 / Btrc. 8.765 Surface 4,779’ 7" Production 26 / L-80 / Btrc 6.151 Surface 8,236’ TUBING DETAIL 4-1/2" Tubing 12.6 / L-80 / EUE 3.833” Surface 7,720’ JEWELRY DETAIL No Depth Item 1 ~2,500’ 4.5” GLM KBG 2 ~3,500’ 4.5” GLM KBG 3 ~5,000’ 4.5” GLM KBG 4 ~6,200’ 4.5” GLM KBG 5 ~7,500’ 4.5” GLM KBG 6 ~7,520’ 4-1/2” Sliding Sleeve (3.813” Sealbore) 7 ~7,570’ 4-1/2” Zenith Gauge Carrier 8 ~7,620’ 7” x 4-1/2” Packer 9 ~7,680’ 4-1/2” XN Nipple (2.75” Sealbore) 10 ~7,720’ 4-1/2” WLEG PERFORATION DETAIL Kuparuk Sands Top (MD) Btm (MD) Top (TVD) Btm (TVD) FT Date Status C1 Sands 7,770’ 7,786’ 6,934 6,946 16 11/3/94 Open C1 Sands 7,770’ 7,786’ 6,934 6,946 16 5/85 Open B-Silt Sands 7,878’ 7,881’ 7,016 7,018 3 5/85 Open B-Silt Sands 7,890’ 7,894’ 7,025 7,028 4 5/85 Open B-Silt Sands 7,904’ 7,910’ 7,035 7,040 6 5/85 Open A3 & A2 Sands 7,990’ 8,055’ 7,100 7,149 65 11/3/94 Open A3 Sands 7,991’ 8,009’ 7,101 7,114 18 5/85 Open A2 Sands 8,021’ 8,056’ 7,123 7,150 35 5/85 Open WELL INCLINATION DETAIL KOP @ 3,000’ Max Hole Angle = 42.75 deg. @ 6,000’ TREE & WELLHEAD Tree 5M FMC 4-1/2”” Wellhead 11” 5M FMC - Phase w/4.5” FMC Tubing Hanger GENERAL WELL INFO API: 50-029-21328-00-00 Drilled and Cased by AUD #3 - 5/9/1985 ESP RWO by Nabors 4ES – 8/24/1996 ESP RWO by Nabors 4ES – 7/10/2005 ESP RWO by Nabors 4ES – 4/21/2009 ESP RWO by Doyon 16 – 12/30/2012 ESP RWO by Nordic 3 – 4/25/2015 OPEN HOLE / CEMENT DETAIL 9-5/8” Cmt w/1,120 sx Permafrost E/ 250sx Class G in a 12-1/2” Hole 8-1/2” Cmt w/ 310 sx Class G _____________________________________________________________________________________ Revised By: JNL 12/7/2023 PROPOSED Milne Point Unit Well: MPC-13A Last Completed: TBD PTD: TBD TD =11,035’(MD) / TD = 7,050’(TVD) 13-3/8” Orig. KB Elev.: 52.0’/ GL Elev.: 16.2’ 7” 8 Est. TOC @ 6,900’ 9-5/8” 6 7 3-1/2”x3-1/4” 3-1/4”x2-7/8”Whipstock / TOW @ 8,014’ PBTD =10,975’ (MD) / PBTD = 7,051’(TVD) 9 TOC / Top of Liner @ 7,700’ 10 5 4 3 2 1 CASING DETAIL Size Type Wt/ Grade/ Conn Drift ID Top Btm 13-3/8" Conductor 48 / H-40 / N/A 12.559 Surface 115' 9-5/8" Surface 36 / K-55 / Btrc. 8.765 Surface 4,779’ 7" Production 26 / L-80 / Btrc 6.151 Surface 8,236’ 3-1/2” x 3-1/4” x 2-7/8” Liner 9.3 / L-80 / STL 6.6 / L-80 / TCII 6.5 / L-80 / H511 2.992 2.805 2.441 7,700’ 11,035’ TUBING DETAIL 4-1/2" Tubing 12.6 / L-80 / EUE 3.833” Surface 7,720’ JEWELRY DETAIL No Depth Item 1 ~2,500’ 4.5” GLM KBG 2 ~3,500’ 4.5” GLM KBG 3 ~5,000’ 4.5” GLM KBG 4 ~6,200’ 4.5” GLM KBG 5 ~7,500’ 4.5” GLM KBG 6 ~7,520’ 4-1/2” Sliding Sleeve (3.813” Sealbore) 7 ~7,570’ 4-1/2” Zenith Gauge Carrier 8 ~7,620’ 7” x 4-1/2” Packer 9 ~7,680’ 4-1/2” XN Nipple (2.75” Sealbore) 10 ~7,720’ 4-1/2” WLEG PERFORATION DETAIL Kuparuk Sands Top (MD) Btm (MD) Top (TVD) Btm (TVD) FT Date Status WELL INCLINATION DETAIL A KOP @ 8,014’ Max Hole Angle = 106 deg. @ 8,215’ TREE & WELLHEAD Tree 5M FMC 4-1/2”” Wellhead 11” 5M FMC - Phase w/4.5” FMC Tubing Hanger GENERAL WELL INFO API: 50-029-21328-01-00 Drilled and Cased by AUD #3 - 5/9/1985 A Sidetrack – CDR2 - TBD OPEN HOLE / CEMENT DETAIL 17-1/2” ~100 cu ft Cement 12-1/4” 1120 sx Permafrost E, 250sx Class G 8-1/2” 310 sx Class G 4-1/4” 172 sx Class G Well Date Quick Test Sub to Otis -1.1 ft Top of 7" Otis 0.0 ft Distances from top of riser Excluding quick-test sub Top of Annular 2.75 ft C L Annular 3.40 ft Bottom Annular 4.75 ft CL Blind/Shears 6.09 ft CL 2.0" Pipe / Slips 6.95 ft B3 B4 B1 B2 Kill Line Choke Line CL 2-3/8" Pipe / Slip 9.54 ft CL 2.0" Pipe / Slips 10.40 ft TV1 TV2 T1 T2 Flow Tee Master Master LDS IA OA LDS Ground Level 3" LP hose open ended to Flowline CDR2-AC BOP Schematic CDR2 Rig's Drip Pan Fill Line from HF2 Normally Disconnected 3" HP hose to Micromotion Hydril 7 1/16" Annular Blind/Shear 2-3/8" Pipe/Slips 2 3/8" Pipe/Slips 2 3/8" Pipe/Slips 7-1/16" 5k Mud Cross 2-3/8" Pipe/Slips 3.0" Pipe / Slip HF nneceeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeeee Revised 7/2022 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 Number _____________, API Number 50-______________________. Production from or injection into this wellbore must be reported under the original API Number stated above. Spacing Exception The permit is approved subject to full compliance with 20 AAC 25.055. Approval to produce or inject is contingent upon issuance of a conservation order approving a spacing exception. The 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-foot sample intervals from below the permafrost or from where samples are first caught and 10-foot 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 this well until after the Operator has designed and implemented a water-well testing program to provide baseline data on water quality and quantity. The Operator must contact the AOGCC to obtain advance approval of such a 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 the Operator 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 all well logs run must be submitted to the AOGCC within 90 days after completion, suspension, or abandonment of this well, or within 90 days of acquisition of the data, whichever occurs first. 223-118 X MILNE POINT KUPARUK RIVER OIL POOL MPU C-13A W E L L P E R M I T C H E C K L I S T Co m p a n y Hi l c o r p A l a s k a , L L C We l l N a m e : MI L N E P T U N I T C - 1 3 A In i t i a l C l a s s / T y p e DE V / P E N D Ge o A r e a 89 0 Un i t 11 3 2 8 On / O f f S h o r e On Pr o g r a m DE V Fi e l d & P o o l We l l b o r e s e g An n u l a r D i s p o s a l PT D # : 22 3 1 1 8 0 MI L N E P O I N T , K U P A R U K R I V E R O I L - 5 2 5 1 0 0 NA 1 P e r m i t f e e a t t a c h e d Ye s AD L 0 4 7 4 3 4 a n d A D L 0 2 5 5 1 6 2 L e a s e n u m b e r a p p r o p r i a t e Ye s 3 U n i q u e w e l l n a m e a n d n u m b e r Ye s M I L N E P O I N T , K U P A R U K R I V E R O I L - 5 2 5 1 0 0 - g o v e r n e d b y 4 3 2 E 4 W e l l l o c a t e d i n a d e f i n e d p o o l Ye s 5 W e l l l o c a t e d p r o p e r d i s t a n c e f r o m d r i l l i n g u n i t b o u n d a r y NA 6 W e l l l o c a t e d p r o p e r d i s t a n c e f r o m o t h e r w e l l s Ye s 7 S u f f i c i e n t a c r e a g e a v a i l a b l e i n d r i l l i n g u n i t Ye s 8 I f d e v i a t e d , i s w e l l b o r e p l a t i n c l u d e d Ye s 9 O p e r a t o r o n l y a f f e c t e d p a r t y Ye s 10 O p e r a t o r h a s a p p r o p r i a t e b o n d i n f o r c e Ye s 11 P e r m i t c a n b e i s s u e d w i t h o u t c o n s e r v a t i o n o r d e r Ye s 12 P e r m i t c a n b e i s s u e d w i t h o u t a d m i n i s t r a t i v e a p p r o v a l Ye s 13 C a n p e r m i t b e a p p r o v e d b e f o r e 1 5 - d a y w a i t NA 14 W e l l l o c a t e d w i t h i n a r e a a n d s t r a t a a u t h o r i z e d b y I n j e c t i o n O r d e r # ( p u t I O # i n c o m m e n t s ) ( F o r NA 15 A l l w e l l s w i t h i n 1 / 4 m i l e a r e a o f r e v i e w i d e n t i f i e d ( F o r s e r v i c e w e l l o n l y ) NA 16 P r e - p r o d u c e d i n j e c t o r : d u r a t i o n o f p r e - p r o d u c t i o n l e s s t h a n 3 m o n t h s ( F o r s e r v i c e w e l l o n l y ) NA 17 N o n c o n v e n . g a s c o n f o r m s t o A S 3 1 . 0 5 . 0 3 0 ( j . 1 . A ) , ( j . 2 . A - D ) NA T h i s w e l l i s a i n z o n e C T D s i d e t r a c k f r o m a n e x i s t i n g w e l l b o r e w i t h p r e s s u r e i n t e g r i t y . 18 C o n d u c t o r s t r i n g p r o v i d e d NA T h i s w e l l i s a i n z o n e C T D s i d e t r a c k f r o m a n e x i s t i n g w e l l b o r e w i t h p r e s s u r e i n t e g r i t y . 19 S u r f a c e c a s i n g p r o t e c t s a l l k n o w n U S D W s NA T h i s w e l l i s a i n z o n e C T D s i d e t r a c k f r o m a n e x i s t i n g w e l l b o r e w i t h p r e s s u r e i n t e g r i t y . 20 C M T v o l a d e q u a t e t o c i r c u l a t e o n c o n d u c t o r & s u r f c s g Ye s T h i s w e l l i s a i n z o n e C T D s i d e t r a c k f r o m a n e x i s t i n g w e l l b o r e w i t h p r e s s u r e i n t e g r i t y . 21 C M T v o l a d e q u a t e t o t i e - i n l o n g s t r i n g t o s u r f c s g Ye s F u l l y c e m e n t e d p r o d u c t i o n l i n e r . P a r e n t w e l l i s o l a t e s t h e r e s e r v o i r . 22 C M T w i l l c o v e r a l l k n o w n p r o d u c t i v e h o r i z o n s Ye s 23 C a s i n g d e s i g n s a d e q u a t e f o r C , T , B & p e r m a f r o s t Ye s C D R 2 h a s a d e q u a t e t a n k a g e a n d g o o d t r u c k i n g s u p p o r t . 24 A d e q u a t e t a n k a g e o r r e s e r v e p i t Ye s S u n d r y 3 2 3 - 6 5 4 25 I f a r e - d r i l l , h a s a 1 0 - 4 0 3 f o r a b a n d o n m e n t b e e n a p p r o v e d Ye s H a l l i b u r t o n c o l l i s i o n s c a n s h o w s m a n a g e a b l e c o l l i s i o n r i s k . 26 A d e q u a t e w e l l b o r e s e p a r a t i o n p r o p o s e d NA A l l d r i l l i n g b e l o w t h e s u r f a c e c a s i n g s h o e . N o d i v e r t e r r e q u i r e d . 27 I f d i v e r t e r r e q u i r e d , d o e s i t m e e t r e g u l a t i o n s Ye s M P D b u t r e s e r v o i r p r e s s u r e b e l o w w a t e r g r a d i e n t . 28 D r i l l i n g f l u i d p r o g r a m s c h e m a t i c & e q u i p l i s t a d e q u a t e Ye s C T P a c k o f f , f l o w c r o s s , a n n u l a r , b l i n d s h e a r , C T p i p e s l i p s , f l o w c r o s s , B H A p i p e s l i p s , C T p i p e s l i p s 29 B O P E s , d o t h e y m e e t r e g u l a t i o n Ye s 7 - 1 / 1 6 " 5 0 0 0 p s i s t a c k p r e s s u r e t e s t e d t o 3 5 0 0 p s i . 30 B O P E p r e s s r a t i n g a p p r o p r i a t e ; t e s t t o ( p u t p s i g i n c o m m e n t s ) Ye s F l a n g e d c h o k e a n d k i l l l i n e s b e t w e e n d u a l c o m b i ' s w r e m o t e c h o k e 31 C h o k e m a n i f o l d c o m p l i e s w / A P I R P - 5 3 ( M a y 8 4 ) Ye s 32 W o r k w i l l o c c u r w i t h o u t o p e r a t i o n s h u t d o w n No 33 I s p r e s e n c e o f H 2 S g a s p r o b a b l e NA T h i s i s a d e v e l o p m e n t w e l l . 34 M e c h a n i c a l c o n d i t i o n o f w e l l s w i t h i n A O R v e r i f i e d ( F o r s e r v i c e w e l l o n l y ) No M e a s u r e s r e q u i r e d ; 2 0 p p m H 2 S h a s b e e n m e a s u r e d i n w e l l M P U C - 1 4 . 35 P e r m i t c a n b e i s s u e d w / o h y d r o g e n s u l f i d e m e a s u r e s Ye s P o r e p r e s s u r e a n t i c i p a t e d t o b e 9 . 6 p p g E M W 36 D a t a p r e s e n t e d o n p o t e n t i a l o v e r p r e s s u r e z o n e s NA 37 S e i s m i c a n a l y s i s o f s h a l l o w g a s z o n e s NA 38 S e a b e d c o n d i t i o n s u r v e y ( i f o f f - s h o r e ) NA 39 C o n t a c t n a m e / p h o n e f o r w e e k l y p r o g r e s s r e p o r t s [ e x p l o r a t o r y o n l y ] Ap p r AD D Da t e 1/ 5 / 2 0 2 4 Ap p r MG R Da t e 1/ 5 / 2 0 2 4 Ap p r AD D Da t e 1/ 5 / 2 0 2 4 Ad m i n i s t r a t i o n 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ƚĞƐƚŝŶŐĞƋƵŝƉŵĞŶƚ͘&ůŽŽĚƚŚĞĐŚŽŬĞŵĂŶŝĨŽůĚΘKWƐƚĂĐŬǁŝƚŚĨƌĞƐŚǁĂƚĞƌĂŶĚƉƵƌŐĞƚŚĞĂŝƌ͘WhĂŶĚDhƚŚĞϮͲϳͬϴΗƚĞƐƚ ũŽŝŶƚ͘^ŚĞůůƚĞƐƚƚŚĞKWƚŽϮϱϬͬϮ͕ϴϬϬƉƐŝ;ŐŽŽĚƚĞƐƚĂĨƚĞƌƉƵƌŐŝŶŐĂŝƌĨƌŽŵƐLJƐƚĞŵƐĞǀĞƌĂůƚŝŵĞƐͿ͘&ůŽŽĚƚŚĞĐŚŽŬĞŵĂŶŝĨŽůĚΘ KWƐƚĂĐŬǁŝƚŚĨƌĞƐŚǁĂƚĞƌĂŶĚƉƵƌŐĞƚŚĞĂŝƌ͘WhĂŶĚDhƚŚĞϮͲϳͬϴΗƚĞƐƚũŽŝŶƚ͘^ŚĞůůƚĞƐƚƚŚĞKWƚŽϮϱϬͬϮ͕ϴϬϬƉƐŝ;ŐŽŽĚƚĞƐƚ ĂĨƚĞƌƉƵƌŐŝŶŐĂŝƌĨƌŽŵƐLJƐƚĞŵƐĞǀĞƌĂůƚŝŵĞƐͿ͕͘dĞƐƚKWĂƐƉĞƌ^ƵŶĚƌLJĂŶĚK'ƌĞƋŵƚƐ͘WŝƉĞƌĂŵƐ;ϮͲϳͬϴ͟džϱ͟sZ͛ƐͿǁŝƚŚ ϮͲϳͬϴ͟ΘϰͲϭͬϮ͟ƚĞƐƚũŽŝŶƚƐ͕ĂŶŶƵůĂƌǁŝƚŚϮͲϳͬϴ͟ƚĞƐƚũŽŝŶƚ͘ůůƚĞƐƚƐƉĞƌĨŽƌŵĞĚǁŝƚŚĨƌĞƐŚ,ϮKĂŐĂŝŶƐƚƚĞƐƚƉůƵŐŝŶWsƚŽϮϱϬ ƉƐŝůŽǁĂŶĚϮϴϬϬƉƐŝŚŝŐŚ͕ĨŽƌϱŵŝŶĞĂĐŚĂŶĚĐŚĂƌƚĞĚ͘'ĂƐůĂƌŵƐdĞƐƚĞĚ͘K'ƌĞƉ'ƵLJŽŽŬǁĂŝǀĞĚǁŝƚŶĞƐƐŽŶϬϭͬϭϳͬϮϮ Ăƚϭϴ͗ϮϰŚŽƵƌƐ͘dĞƐƚƐ͗ϭ͘ŶŶƵůĂƌǁŝƚŚϮͲϳͬϴ͟ƚĞƐƚũŽŝŶƚ͕ϮͲϳͬϴΗĚĂƌƚǀĂůǀĞ͕Ϯ͕ϴ͕ϵ͕ϭϬΘ<ϲ;ƉĂƐƐĞĚͿ͕Ϯ͘ϮͲϳͬϴ͟džϱ͟sZǁŝƚŚ ϮͲϳͬϴ͟ƚĞƐƚũŽŝŶƚ͕ϮͲϳͬϴ͟&K^s͕ϭΘ<ϭ;ĨĂŝůͬƉĂƐƐͲĞdžĐĞƐƐƉƐŝĚƌŽƉŽŶůŽǁƚĞƐƚ͕ǁŽƌŬǀĂůǀĞƐĂŶĚƌĞƚĞƐƚʹŐŽŽĚͿ͕ϯ͘ϮͲϳͬϴ͟džϱ͟ sZǁŝƚŚϰͲϭͬϮ͟ƚĞƐƚũŽŝŶƚ͕,ZŚŽŬĞ͕<Ϯ;ƉĂƐƐĞĚͿ͕ϰ͘ϱ͕ϲΘ<ϯ;ĨĂŝůͬƉĂƐƐͲĞdžĐĞƐƐƉƐŝĚƌŽƉŽŶůŽǁƚĞƐƚ͕ŐƌĞĂƐĞΘǁŽƌŬ ǀĂůǀĞƐϱ͕ϲΘϵĂŶĚƌĞƚĞƐƚʹŐŽŽĚͿ͕ϱ͘ϰ͕ϳΘϭϭ;ƉĂƐƐĞĚ͕ϳ͘ůŝŶĚZĂŵƐ͕ϭϮΘϭϲ;ƉĂƐƐĞĚͿ͕ϴĂ͘DĂŶƵĂůĂĚũƵƐƚĂďůĞ ĐŚŽŬĞ;ƉĂƐƐĞĚͿ͕ϴď͘,LJĚƌĂƵůŝĐƐƵƉĞƌĐŚŽŬĞ;ƉĂƐƐĞĚͿ͘ ϭͬϭϴͬϮϬϮϮͲdƵĞƐĚĂLJ tĞůůEĂŵĞ ZŝŐ W/EƵŵďĞƌ tĞůůWĞƌŵŝƚEƵŵďĞƌ ^ƚĂƌƚĂƚĞ ŶĚĂƚĞ DW&ͲϲϮ ^Zηϭ ϱϬͲϬϮϵͲϮϮϲϬϵͲϬϭͲϬϬ ϮϮϬͲϬϲϲ ϭͬϭϱͬϮϬϮϮ ϭͬϮϰͬϮϬϮϮ ,ŝůĐŽƌƉůĂƐŬĂ͕>> tĞĞŬůLJKƉĞƌĂƚŝŽŶƐ^ƵŵŵĂƌLJ ŽŶƚŝŶƵĞWKK,ǁŝƚŚϰ͘ϱΗϭϯ͘ϱη>ͲϴϬdďŐĂŶĚĐŽŶƚƌŽůůŝŶĞĨƌŽŵ͘ŽŶƚŝŶƵĞWKK,ǁŝƚŚϰ͘ϱΗϭϯ͘ϱη>ͲϴϬdďŐĂŶĚĐŽŶƚƌŽůůŝŶĞ͘ ΛϭϮϬϬŚƌƐĂŶĚϮϬϬĨƚŵĚƉƵůůĞĚĂƉƉƌŽdž͘ϯϱϬĨƚĐŽŶƚƌŽůůŝŶĞďĂůůĞĚƵƉĂůŽŶŐƚƵďŝŶŐ͘>ͬůĂƐƚĐƵƚũŽŝŶƚŽĨϰ͘ϱΗϭϯ͘ϱη>ͲϴϬdďŐ͕ ĐŽŶƚƌŽůůŝŶĞĂŶĚƐůŝĚŝŶŐƐůĞĞǀĞ͘>ͬtĞĂƚŚĞƌĨŽƌĚƚŽŶŐ͕ĞŵƉƚLJƉŝƉĞƐŚĞĚĂŶĚŵŽǀĞƐĂŵĞƚŽƉƵůůtĞĂƚŚĞƌĨŽƌĚŚLJĚ͘ƵŶŝƚ͘WͬhƌŝŐ ƉŽǁĞƌƚŽŶŐƐ͘Zͬh,ĂůŝďƵƌƚŽŶƐůŝĐŬůŝŶĞ͕ŝŶƐƚĂůůƉŝƉĞƐŚĞĚ͘Dͬhϱ͘ϵϮΗũƵŶŬďĂƐŬĞƚĂƐƐĞŵďůLJĂŶĚZ/,͘dĂŐĂƚƐƚƵŵƉĂƚϵϲϮϱΖǁůŵ͘ WKK,ƌĞĐŽǀĞƌĞĚϵΗŽĨƚĞĐŚǁŝƌĞĂŶĚϯΗdžϵΗƌƵďďĞƌ͘ZͬƐůŝĐŬůŝŶĞ͘>ŽĂĚƉŝƉĞƐŚĞĚĂŶĚƚĂůůLJϮϳͬϴΗĐŽŵƉůĞƚŝŽŶ͘WƌĞƉĨůŽŽƌĂŶĚ Zͬh^WĞƋƵŝƉŵĞŶƚ͘WͬhĂŶĚƐĞƌǀŝĐĞ^WĂƐƐĞŵďůLJĂŶĚZ/,ƚŽϵϭΖ͘ ϭͬϮϮͬϮϬϮϮͲ^ĂƚƵƌĚĂLJ Wͬh:ƚηϭŽĨϮͲϳͬϴΗdďŐ;ϲ͘ϱη͕>ͲϴϬhϴƌĚ͘Ϳ͕ϮͲϳͬϴΗyEŶŝƉƉůĞ;ǁͬϮ͘ϮϬϱΗEŽͲ'ŽͿ͕:ƚηϮͲϯͲϰĂŶĚƚŚĞůŽǁĞƌϮͲϳͬϴΗdžϭΗƐŝĚĞ ƉŽĐŬĞƚ'>DǁͬƵŵŵLJ'>sƚŽϮϳϱĨƚ͘/ŶƐƚĂůůŝŶŐĐĂŶŽŶĐůĂŵƉƐŽŶƚŚĞĨŝƌƐƚϭϬũƚƚŚĞŶĞǀĞƌLJŽƚŚĞƌũŽŝŶƚĂĨƚĞƌ͘ŽŶƚŝŶƵĞZ/,ǁŝƚŚϮͲ ϳͬϴΗdďŐǁŝƚŚ^WĐŽŵƉůĞƚŝŽŶƚŽϱ͕ϲϯϮΖ͘/ŶƐƚĂůůŝŶŐĐĂŶŽŶĐůĂŵƉƐŽŶƚŚĞĨŝƌƐƚϭϬũƚƚŚĞŶĞǀĞƌLJŽƚŚĞƌũŽŝŶƚĂĨƚĞƌ͘^ƉůŝĐĞ^WĐĂďůĞ ĂŶĚƚĞƐƚĐŽŶŶĞĐƚŝǀŝƚLJŽĨƐĂŵĞ͘ŽŶƚŝŶƵĞZ/,ǁŝƚŚϮͲϳͬϴΗdďŐǁŝƚŚ^WĐŽŵƉůĞƚŝŽŶĨƌŽŵϱ͕ϲϯϮΖƚŽϲ͕ϲϳϱΖ͘ĂďůĞƐƉůŝĐĞůŽĐĂƚĞĚĂƚ ϱ͕ϴϱϱΖ/ŶƐƚĂůůĐůĂŵƉĂďŽǀĞĂŶĚďĞůŽǁ^WƐƉůŝĐĞ͘/ŝŶƐƚĂůůŝŶŐĐĂŶŽŶĐůĂŵƉƐŽŶƚŚĞĨŝƌƐƚϭϬũƚƚŚĞŶĞǀĞƌLJŽƚŚĞƌũŽŝŶƚĂĨƚĞƌ͘Wͬh dƌŝƉŽŝŶƚƉĂĐŬĞƌĂŶĚƚĞƌŵŝŶĂƚĞ^WĐĂďůĞĂŶĚŝŶƐƚĂůůƉĞŶĞƚƌĂƚŽƌ͘ ϭͬϮϬͬϮϬϮϭͲdŚƵƌƐĚĂLJ ^ƉĞĂƌŝŶƚŽŚĂŶŐĞƌĂŶĚK>^͕ƵŶƐĞĂƚŚĂŶŐĞƌǁŝƚŚϭϭϬŬďƌĞĂŬŽǀĞƌǁƚ͘ϭϬϮŬŚĂŶŐŝŶŐǁƚ͘ƉƵůůŚĂŶŐĞƌƚŽZŝŐ&ůŽŽƌ͘>ͬƐƉĞĂƌĂŶĚ ,ĂŶŐĞƌƚŽŐĞƚŚĞƌͬ͘KĂŬĞƌĞŶƚƌŝůŝĨƚƐŚĞĂǀĞ͕ƐǁŝǀĞůůŽĐŬĞĚƵƉ͘WKK,ǁͬϰ͘ϱƚďŐĨƌŽŵϵϲϬϱΖŵĚƚŽϴϯϴϴΖŵĚ͘,ŽůĞƚĂŬŝŶŐϱW,͕ ƐƚĂƌƚĞĚĨŝůůŝŶŐĞǀĞƌLJϱũƚƵŶƚŝůŐŽŽĚƚƌĞŶĚǁͬϮϬũƚ>͕ͬĨŝůůŝŶŐĞǀĞƌLJϭϬũƚƐ͘ŶĚŽĨŚŝƚĐŚĐƌĞǁĐŚĂŶŐĞǁͬŶĞǁĐƌĞǁĐŽŵŝŶŐŽŶ͘ DƵůƚŝƉůĞŚĞĂƚĞƌƐĚŽǁŶŽŶĐĞůůĂƌĂŶĚŵŽĚƐ͕ƐĐƌĂŵďůĞƚŽƐƚĂƌƚŚĞĂƚĞƌƐ͕^/DKWŽĨĨůŽĂĚϭϳϬďďůϵ͘ϳηďƌŝŶĞŝŶƚŽƉŝƚƐ͘WKK, 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