4/18/2025, 4:13:14 PM 星期五
国外钻井工具与仪器新进展及国内发展建议
CSTR:
作者:
作者单位:

中国石油长庆油田分公司第六采油厂,陕西 定边 718600

中图分类号:

TE92;P634

基金项目:

国家科技重大专项“复杂地层钻井提速提效关键工具与装备”(编号:2016ZX05021-003)


New advances in drilling tools and instruments abroad and suggestions for domestic development
Author:
Affiliation:

The Sixth Oil Production Plant of PetroChina Changqing Oilfield Company, Dingbian Shaanxi 718600, China

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  • 参考文献 [41]
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    摘要:

    页岩气、致密油气、深井超深井油气和深水油气的勘探开发对钻井工具与仪器提出了更高要求。本文介绍了国外钻井工具与仪器的新进展,钻井工具包括高效破岩钻头(Aegis铠装合金钻头、Crush&Shear?混合式钻头、智能自适应钻头、StrataBlade*凹面金刚石元件钻头和HyperBlade*双曲面金刚石元件钻头)、辅助破岩工具(Navi-Drill DuraMax井下马达、NitroForce?高性能螺杆和耐温300 ℃螺杆钻具)和循环短节(iCWD智能循环短节、iDisc智能循环和丢手工具、MOCS G2循环短节和JetStream?RFID循环短节),而钻井仪器包括旋转导向工具(Lucida高端旋转导向系统、RST旋转导向系统、VectorEDGE旋转导向系统、HALO高性能旋转导向系统和NeoSteer@bit导向系统)和随钻测量仪器(TruLink*高分辨率动态MWD、IriSphere*随钻前视LWD、HEX200℃高温LWD和QuestTM随钻陀螺测斜仪)。在此基础上,对国内钻井工具与仪器的未来发展提出了建议。最后指出我国应尽快完成核心钻井工具与仪器的国产化,继续加大低成本替代技术的研究力度,以实现经济有效开发。

    Abstract:

    Exploration and development of shale gas, tight oil and gas, deep and ultra-deep well oil and gas, and deepwater oil and gas puts forward higher requirements for drilling tools and instruments. This paper introduces the new developments in drilling tools and instruments abroad. Drilling tools include efficient rock breaking bits(Aegis armor cladded bit, Crush & Shear? hybrid bit, adjustable smart-bit, StrataBlade concave diamond element bit and HyperBlade hyperbolic diamond element bit), auxiliary rock breaking tools (Navi-Drill motor; NitroForce? high-torque, high-flow motor and 300℃-resistant positive displacement motor) and circulating subs(iCWD intelligent circulation drilling tool, IDisc intelligent circulation and disconnection tool, MOCS G2 circulation sub and JetStream? RFID circulation sub); drilling instruments include rotary steerable tools(Lucida advanced-rotary-steerable tool, RST rotary steerable tool, VectorEDGE rotary steerable system, HALO high-performance rotary steerable system and NeoSteer at-bit steerable system) and MWD(TruLink high definitive dynamic MWD, IriSphere look-ahead LWD, HEX 200℃ high temperature LWD and QuestTM gyro while drilling ). On this basis, the future development of domestic drilling tools and instruments is suggested. Finally, it is pointed out that China should complete the localization of core drilling tools and instruments as soon as possible, and continue to strengthen the research on low-cost alternative technologies to achieve economic and effective development.

    参考文献
    [1] Schlumberger. Aegis Armor cladding[EB/OL]. [2021-09-01]. https://www.slb.com/drilling/bottomhole-assemblies/drill-bits/pdc-bits/aegis-armor-cladding.
    [2] Schlumberger. BP Uses Armor Cladding to Increase Average Bit ROP 36% and Reduce Drilling Time 179 Hours over 8 Runs[EB/OL].[2021-09-01]. https://www.slb.com/-/media/files/bdt/case-study/aegis-bp-cs.ashx.
    [3] Halliburton. Crush & Shear™ Hybrid Bit[EB/OL]. [2021-09-01]. https://cdn.brandfolder.io/IMT6VIR6/as/qdxi8w-a9lpeg-cmmqo3/2020-MKTG-EVE-11618_Crush_and_Shear_Data_Sheet_-_V2.pdf.
    [4] Ivie Brad. Adjustable smart-bit increases durability and ROP during drilling operations[J]. World Oil, 2020,241(2):53-56.
    [5] Schlumberger. StrataBlade Concave diamond element bit [EB/OL]. [2021-8-20]. https://www.slb.com/-/media/files/bdt/product-sheet/stratablade-ps.ashx.
    [6] Schlumberger. Operator Cuts Deeper to Improve ROP in Medium-Strength Interbedded Layers, Marcellus Shale[EB/OL]. [2021-8-20]. https://www.slb.com/-/media/files/bdt/case-study/stratablade-appalachian-basin-cs.ashx
    [7] Schlumberger. HyperBlade Hyperbolic diamond element bit[EB/OL]. [2021-8-20]. https://www.slb.com/-/media/files/smith/product-sheets/hyperblade-ps.ashx.
    [8] Schlumberger. Equinor Sees Record ROP After First Field Run of Bit with 3D Cutting Elements[EB/OL]. [2021-8-20]. https://www.slb.com/-/media/files/bdt/tech-report/hyperblade-equinor-north-sea-tr.ashx.
    [9] Schlumberger. Hyperbolic Bit Enhances ROP by 17% While Maintaining Complex Well Trajectory[EB/OL]. [2021-8-20]. https://www.slb.com/-/media/files/bdt/case-study/hyperblade-thailand-cs.ashx.
    [10] Hughes Baker. Navi-Drill Motor Handbook[EB/OL]. [2022-2-25]. https://www.bakerhughes.com/sites/bakerhughes/files/2020-11/Baker-Hughes-Navi-Drill-motor-handbook-15th-edition-2020.PDF.
    [11] HalliBurton. NitroForce® high-torque, high-flow motor[EB/OL]. [2022-2-26]. https://www.halliburton.com/en/products/nitroforce-high-torque-high-flow-motor.
    [12] Stefánsson Ari, Duerholt Ralf, Jon Schroderet al. A 300 degree Celsius directional drilling system[R]. SPE 189677, 2018.
    [13] MIT-Technologies. iCWD Intelligent Circulation Drilling Tool Unlimited Potential[EB/OL]. [2021-8-30]. https://mit-technologies.com/icwd/.
    [14] Hunter Gordon, Ollerenshaw Andy. Application of Modern Technology to a Multi-position Down Hole Drilling Electronic Circulating Valve and Integral Disconnect Mechanism[R]. SPE 173063, 2015.
    [15] NOV. MOCS G2 Circulation Sub[EB/OL]. [2021-8-30]. https://www.nov.com/products/mocs-g2-circulation-sub.
    [16] Weatherford. JetStream® RFID CIRCULATION SUB[EB/OL]. [2021-8-30]. https://www.weatherford.com/getattachment/c36f32a2-776d-473d-900a-e5f9acb76b0c/JetStream-RFID-Circulation-Sub.pdf.
    [17] Weatherford. JetStream® RFID Circulation Sub Saves Operator 1.5 Days of Rig Time Valued at $350,000[EB/OL]. [2021-8-30]. https://www.weatherford.com/en/documents/real-result/drilling/drilling-services/jetstream-rfid-circulation-sub-saves-operator-1-5-days-of-rig-time-valued-at-$350,000/.
    [18] Weatherford. JetStream® RFID Circulation Sub Precisely Spots LCM, Enables Operator to Reach Total Depth[EB/OL]. [2021-8-30]. https://www.weatherford.com/getattachment/4cae41a6-2bbd-4fe8-835b-54b4e5c95590/JetStream-RFID-Circulation-Sub-Precisely-Spots-LCM,-Enables-Operator-to-Reach-Total-Depth.pdf.
    [19] Hughes Baker. Lucida advanced rotary steerable service[EB/OL]. [2021-8-26]. https://www.bakerhughes.com/sites/bakerhughes/files/2020-07/Lucida-advanced-rotary-steerable-service-slsh.pdf.
    [20] Hughes Baker. Lucida service delivered superior wellbore quality and 17% faster ROP, saving $160,000 USD[EB/OL]. [2021-8-26]. https://www.bakerhughes.com/sites/bakerhughes/files/2020-07/Lucida-delivered-superior-wellbore-quality-delaware-basin-tx-cs.pdf.
    [21] D-Tech. Next-Gen RST—Increased Technical Capabilities Helps Maximize Performance[EB/OL]. [2021-8-26]. https://img1.wsimg.com/blobby/go/bfbab73f-5ffa-43ba-a0f7-b143efe7932f/D-Tech_NextGen_DataSheet_01_14_US.pdf
    [22] D-Tech. Permian Operator Sets New Wolfcamp Lateral Record While Using the D-Tech RST, Beating All Previous RSS and Conventional Assembly Lateral Runs[EB/OL]. [2021-8-26]. https://www.iadd-intl.org/media/files/files/4e4f832b/dtech-pa-delaware-basin3-12-3.pdf.
    [23] D-Tech.Rockies Next-Generation RST675[EB/OL]. [2022-3-28]. https://dtechdrilling.com/?s=rst.
    [24] NOV. VectorEXAKT Rotary Steerable System[EB/OL]. [2021-8-26]. https://www.nov.com/-/media/nov/files/products/wbt/directional-drilling-technologies/vectorziel-rotary-steerable-system/vectorziel-rotary-steerable-system-spec-sheet.pdf.
    [25] Drilling Scientific. HALO 6.50” HIGH-PERFORMANCE ROTARY STEERABLE SYSTEM[EB/OL]. [2021-8-26]. https://scientificdrilling.com/assets/uploads/sites/3/2019/10/HALO-6.50_Product-Spec-Sheet-SDI-B015_02_20-English.pdf.
    [26] Drilling Scientific. HALO RSS in the Permian-7 Consecutive Runs on 7 separate wells[EB/OL]. [2022-3-6]. https://scientificdrilling.com/assets/uploads/sites/3/2019/11/HALO_Permian-Success_Rev1.jpg.
    [27] Schlumberger. NeoSteer At-bit steerable systems[EB/OL]. [2021-8-26]. https://www.slb.com/drilling/bottomhole-assemblies/directional-drilling/neosteer-at-bit-steerable-systems
    [28] Schlumberger. At-Bit Innovation Boosts ROP 40% While Drilling Each of 12 Wells in One Run—Vertical Through Curve to Lateral, Colorado[EB/OL]. [2021-8-26]. https://www.slb.com/-/media/files/drilling/case-study/neosteer-cl-src-energy-colorado-niobrara.ashx.
    [29] Schlumberger. TruLink definitive dynamic survey-while-drilling service[EB/OL]. [2021-8-28]. https://www.slb.com/-/media/files/drilling/product-sheet/trulink-ps.ashx.
    [30] Schlumberger. High-Density, Definitive Dynamic Survey Data Helps Precisely Land Well 10-ft TVD Below Reservoir Top[EB/OL]. [2021-8-28]. https://www.slb.com/-/media/files/drilling/case-study/trulink-tortuosity-middle-east-cs.ashx.
    [31] Schlumberger. IriSphere Look-ahead-while-drilling service[EB/OL]. [2021-8-28]. https://www.slb.com/-/media/files/drilling/product-sheet/irisphere-ps.ashx.
    [32] Schlumberger. Real-Time Look Ahead While Drilling Eliminates Risk of Unplanned Section and Related Costs[EB/OL]. [2021-8-28]. https://www.slb.com/-/media/files/drilling/case-study/irisphere-indonesia-cs.ashx.
    [33] Schlumberger. IriSphere Service Enhances Coring Operations with Real-Time Look-Ahead Capability[EB/OL]. [2021-8-28]. https://www.slb.com/-/media/files/drilling/case-study/irisphere-australia-cs.ashx.
    [34] Kleawyothatis T., J. Pruimboom, S. Dendandomeet al. Thailand Joint Development Project Delivers 200°C M/LWD Triple Combo: Eliminating Wireline, Driving World Class Efficiency and Slashing Days Per Well[R]. SPE 191054, 2018.
    [35] gyrodata. QUESTTM GYRO WHILE DRILLING (GWD) [EB/OL]. [2021-8-30]. https://www.gyrodata.com/technology-and-services/surveying-services/quest-gwd/.
    [36] gyrodata. QUEST GWD USED FOR FIRST TIME IN AFRICA, IMPROVING WELLBORE PLACEMENT AND SAVING 3 HOURS OF RIG TIME[EB/OL]. [2022-3-6]. https://www.gyrodata.com/wp-content/uploads/2021/11/35_Quest_Angolia-Africa-Final.pdf.
    [37] 赵研,张丛珊,高科,等.超声波辅助PDC切削齿振动破岩仿真分析[J].钻探工程,2021,48(4):11-20.ZHAO Yan, ZHANG Congshan, GAO Ke, et al. Rock breaking simulation analysis for the ultrasonic vibration-assisted PDC cutter[J]. Drilling Engineering, 2021,48(4):11-20.
    [38] 汤凤林,沈中华,段隆臣,等.关于PDC钻头低温氮、磁化综合处理的试验研究[J].探矿工程(岩土钻掘工程),2019,46(2):80-85.TANG Fenglin, SHEN Zhonghua, DUAN Longchen, et al. Experimental research on integrative treatment of PDC drill bit with cryogenic nitrogen and magnetization[J]. Exploration Engineering (Rock & Soil Drilling and Tunneling), 2019,46(2):80-85.
    [39] 高明洋,张凯,周琴,等.高温硬地层钻进中PDC钻头切削齿磨损研究[J].探矿工程(岩土钻掘工程),2018,45(10):185-189.GAO Mingyang, ZHANG Kai, ZHOU Qin, et al. Wear of PDC cutters in high temperature hard formation drilling[J]. Exploration Engineering (Rock & Soil Drilling and Tunneling), 2018,45(10):185-189.
    [40] 谭现锋,王景广,郭新强,等.螺杆钻进工艺在青海共和干热岩GR1钻井中的应用[J].钻探工程,2021,48(2):49-53.TAN Xianfeng, WANG Jingguang, GUO Xinqiang, et al. Application of PDM drilling technology in Well-GR1 drilling in hot dry rock[J]. Drilling Engineering, 2021,48(2):49-53.
    [41] 刘江民,闫文辉,彭勇,等.复合式旋转导向钻井工具原理与导向执行机构分析[J].机械研究与应用,2018,31(1):78-80,83.LIU Jiangmin, YAN Wenhui, PENG Yong, et al. Analysis on working principle and directional actuator of the compound rotary steerable drilling tools[J]. Mechanical Research & Application, 2018,31(1):78-80,83.
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引用本文

李垚,梁升平,居迎军,等.国外钻井工具与仪器新进展及国内发展建议[J].钻探工程,2022,49(5):145-155.
LI Yao, LIANG Shengping, JU Yingjun, et al. New advances in drilling tools and instruments abroad and suggestions for domestic development[J]. Drilling Engineering, 2022,49(5):145-155.

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  • 收稿日期:2021-09-23
  • 最后修改日期:2022-06-16
  • 录用日期:2022-03-31
  • 在线发布日期: 2022-09-29
  • 出版日期: 2022-09-10
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