Acta Petrolei Sinica ›› 2025, Vol. 46 ›› Issue (12): 2389-2409.DOI: 10.7623/syxb202512013
• REVIEW • Previous Articles Next Articles
Liu Qingyou1, Yang Yingxin2, Ye Daohui3, Guan Yang1
Received:2024-12-26
Revised:2025-11-03
Online:2025-12-25
Published:2026-01-09
刘清友1, 杨迎新2, 叶道辉3, 官杨1
作者简介:刘清友,男,1965年10月生,1997年获西南石油学院博士学位,现为成都理工大学教授、博士生导师,主要从事石油钻头及装备理论、实验、产品与应用等方面的研究工作。Email:liuqy66@aliyun.com
基金资助:CLC Number:
Liu Qingyou, Yang Yingxin, Ye Daohui, Guan Yang. Evolution and development trends of oil and gas drilling bit technology[J]. Acta Petrolei Sinica, 2025, 46(12): 2389-2409.
刘清友, 杨迎新, 叶道辉, 官杨. 油气钻头技术演进历史与发展趋势[J]. 石油学报, 2025, 46(12): 2389-2409.
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| [1] 周守为,李清平,朱海山,等. 海洋能源勘探开发技术现状与展望[J].中国工程科学,2016,18(2):19-31. ZHOU Shouwei,LI Qingping,ZHU Haishan,et al.The current state and future of offshore energy exploration and development technology[J].Strategic Study of CAE,2016,18(2):19-31. [2] 何登发,贾承造,赵文智,等.中国超深层油气勘探领域研究进展与关键问题[J].石油勘探与开发,2023,50(6):1162-1172. HE Dengfa,JIA Chengzao,ZHAO Wenzhi,et al.Research progress and key issues of ultra-deep oil and gas exploration in China[J].Petroleum Exploration and Development,2023,50(6):1162-1172. [3] 刘岩生,张佳伟,黄洪春.中国深层—超深层钻完井关键技术及发展方向[J].石油学报,2024,45(1):312-324. LIU Yansheng,ZHANG Jiawei,HUANG Hongchun.Key technologies and development direction for deep and ultra-deep drilling and completion in China[J].Acta Petrolei Sinica,2024,45(1):312-324. [4] 马德坤.牙轮钻头工作力学[M].2版.北京:石油工业出版社,2009. MA Dekun.Working mechanics of roller cone bit[M].2nd ed.Beijing:Petroleum Industry Press,2009. [5] 杨晨娟.牙轮钻头密封圈性能仿真与优化设计[D].西安:西安石油大学,2023. YANG Chenjuan.Simulation and optimization design of the sealing ring of roller cone bit[D].Xi’an:Xi’an Shiyou University,2023. [6] SCHMIDT S R,WITTRY A E,BURR B H,et al.Metal bearing seal technology improves drilling efficiency of rolling cutter bits in high-rpm North Sea applications[R].SPE 21934,1991. [7] KELLY JR J L,LEDGERWOOD III L W.Performance evaluation of a new rock bit bearing seal[R].SPE 17186,1988. [8] CARRE L,MCCOY R,WILSON L,et al.Application of new generation large roller-cone bits reduces drilling costs in Eastern Venezuela[R].SPE 69617,2001. [9] AL-WAHEDI T,HAY M A,WAHEED T,et al.New slimhole technology maximizes productivity in Middle East horizontal drilling programs[R].SPE 92376,2005. [10] GRIMES B,KIRKPATRICK B.Step change in performance:upgraded bit technology significantly improves drilling economics in GOM motor applications[R].SPE 103074,2006. [11] YU Jiaqing,YONG Zhou.Multi-part energizer for mechanical seal assembly:US,7347290B2[P].2008-03-25. [12] 王国荣,刘清友.浮动套轴承工作机理[M].北京:石油工业出版社,2012. WANG Guorong,LIU Qingyou.Working mechanism of floating sleeve bearings[M].Beijing:Petroleum Industry Press,2012. [13] 杨迎新,刘德明,林敏,等.一种牙轮脱落预警新技术的试验研究[J].天然气工业,2006,26(1):63-65. YANG Yingxin,LIU Deming,LIN Min,et al.Trial of a new alarm technology for cone dropping[J].Natural Gas Industry,2006,26(1):63-65. [14] MA D,AZAR J J.Dynamics of roller cone bits[J].Journal of Energy Resources Technology,1985,107(4):543-548. [15] MA Dekun,ZHOU Desheng,DENG Rong.The computer simulation of the interaction between roller bit and rock[R].SPE 29922,1995. [16] 刘清友,邱亚玲,姚志恒.盘形钻头牙齿刮切实验研究[J].钻采工艺,1999,22(4):46-48. LIU Qingyou,QIU Yaling,YAO Zhiheng.Experiments on disc bit for scraping-cutting effects of its teeth[J].Drilling & Production Technology,1999,22(4):46-48. [17] 刘清友,邱亚玲,彭晓东.盘形钻头刮切实验数据分析处理[J].西南石油学院学报,1999,21(2):61-64. LIU Qingyou,QIU Yaling,PENG Xiaodong.Analysis and processing the scraping experimental data of disc bit[J].Journal of Southwest Petroleum Institute,1999,21(2):61-64. [18] 刘清友.三牙轮钻头系统可靠性的预测与评估[J].石油机械,1997,25(1):19-21. LIU Qingyou.Prediction and evaluation of systematic reliability of tricone bit[J].China Petroleum Machinery,1997,25(1):19-21. [19] 刘清友.三牙轮钻头动力学计算机仿真分析研究[D].成都:西南石油大学,1997. LIU Qingyou.Research on computer simulation analysis of three roller bit dynamics[D].Chengdu:Southwest Petroleum University,1997. [20] 姚恒申,江晓涛,刘清友.石油钻井钻头钻柱的纵向振动受力分析[J].数理统计与应用概率,1998,13(2):65-72. YAO Hengshen,JIANG Xiaotao,LIU Qingyou.Longitudinal vibration force analysis of drill string of oil drilling bit[J].Mathematical Theory and Applied Probability,1998,13(2):65-72. [21] 刘清友,马德坤.牙轮钻头动力学模型的建立与仿真分析[J].石油机械,1998,26(11):1-4. LIU Qingyou,MA Dekun.Dynamic model establishing and simulation analysis of roller cone bit[J].China Petroleum Machinery,1998,26(11):1-4. [22] 刘清友.复合齿形牙轮钻头:99251810.5[P].2001-02-28. LIU Qingyou.Composite tooth rock roller bit:99251810.5[P].2001-02-28. [23] 赵永明,谢德龙,禹德洲,等.油气井金刚石钻头的现状及发展趋势[J].超硬材料工程,2012,24(5):35-38. ZHAO Yongming,XIE Delong,YU Dezhou,et al.Current situation and development trend of the diamond bits for oil and gas well[J].Superhard Material Engineering,2012,24(5):35-38. [24] 刘维,高德利.PDC钻头研究现状与发展趋势[J].前瞻科技,2023,2(2):168-178. LIU Wei,GAO Deli.Research status and development trends of polycrystalline diamond compact bits[J].Science and Technology Foresight,2023,2(2):168-178. [25] 刘强,陈文婷,王晋春,等.热稳定型高耐磨的聚晶金刚石复合片及其制备方法:201811644636.4[P].2021-01-26. LIU Qiang,CHEN Wenting,WANG Jinchun,et al.Heat-stable and high-abrasion-resistant polycrystalline diamond composite sheet and preparation method thereof:201811644636.4[P].2021-01-26. [26] 叶道辉,刘洋,徐磊,等.一种油气钻探用高抗冲击聚晶金刚石复合片及其制备方法:202310529329.6[P].2023-08-25. YE Daohui,LIU Yang,XU Lei,et al.High-impact-resistance polycrystalline diamond compact for oil and gas drilling and preparation method of high-impact-resistance polycrystalline diamond compact:202310529329.6[P].2023-08-25. [27] 李树盛,蔡镜仑,马德坤.PDC钻头冠部设计的原理与方法[J].石油机械,1998,26(3):1-3. LI Shusheng,CAI Jinglun,MA Dekun.Principle and method of PDC bit profile design[J].China Petroleum Machinery,1998,26(3):1-3. [28] 翟应虎,蔡镜仑,刘希圣.PDC钻头切削齿工作角设计理论[J].石油大学学报,1992,16(1):24-33. ZHAI Yinghu,CAI Jinglun,LIU Xisheng.Working angle design of PDC bit cutter[J].Journal of the University of Petroleum,China,1992,16(1):24-33. [29] 翟应虎,王克雄,蔡镜仑.PDC钻头的螺旋线布齿方法[J].石油大学学报,1995,19(2):25-29. ZHAI Yinghu,WANG Kexiong,CAI Jinglun.Helix model for placing cutter in the design of PDC bit[J].Journal of the University of Petroleum,China,1995,19(2):25-29. [30] 杨迎新,刘清友,况雨春,等.深部难钻地层金刚石钻头关键技术研究与应用[R].成都:西南石油大学,2014. YANG Yingxin,LIU Qingyou,KUANG Yuchun,et al.Research and application of key technology of diamond bit in deep difficult drilling formation[R].Chengdu:Southwest Petroleum University,2014. [31] 任海涛,杨迎新,陈炼,等.PDC钻头钻进仿真系统数字化方法研究[J].西南石油大学学报(自然科学版),2010,32(5):150-154. REN Haitao,YANG Yingxin,CHEN Lian,et al.Research on the digital method of the PDC bit drilling progress simulation system[J].Journal of Southwest Petroleum University(Science & Technology Edition),2010,32(5):150-154. [32] 况雨春,刘强,韩一维,等.PDC钻头参数化设计平台研究[J].工程设计学报,2017,24(6):624-631. KUANG Yuchun,LIU Qiang,HAN Yiwei,et al.Research on the parameterized design platform of PDC bit[J].Chinese Journal of Engineering Design,2017,24(6):624-631. [33] 况雨春,杨云山,杨迎新,等.PDC钻头水力结构优化设计专用软件研究[J].石油矿场机械,2007,36(4):1-4. KUANG Yuchun,YANG Yunshan,YANG Yingxin,et al.Development of professional software to optimize hydraulic structure of PDC bits[J].Oil Field Equipment,2007,36(4):1-4. [34] 左汝强.国际油气井钻头进展概述(一)——Kymera组合式(Hybrid)钻头系列[J].探矿工程(岩土钻掘工程),2016,43(1):4-6. ZUO Ruqiang.International advancement of drilling bits for oil and gas well (1)-Kymera Hybrid bit[J].Exploration Engineering (Rock & Soil Drilling and Tunneling),2016,43(1):4-6. [35] BAKER HUGHES.Drill bits catalog[EB/OL].[2025-06-08].https://dam.bakerhughes.com/m/70246e3a57c19fcf/original/Baker-Hughes-Drill-Bits-Catalog.pdf. [36] 杨迎新,林敏,陈炼,等.一种具有冲击切削结构的盘式复合钻头:201210155410.4[P].2017-05-03. YANG Yingxin,LIN Min,CHEN Lian,et al.Disc-type composite drill bit with impact cutting structure:201210155410.4[P].2017-05-03. [37] 樊孝兵,刘强,程永,等.一种强化心部切削功能的混合钻头:201210552556.2[P].2015-07-29. FAN Xiaobing,LIU Qiang,CHENG Yong,et al.Hybrid drill bit with enhanced core cutting function:201210552556.2[P].2015-07-29. [38] 刘清友,王国荣,毛良杰,等.一种切削硬质地层的复合PDC提速钻头:201811126683.X[P].2018-12-21. LIU Qingyou,WANG Guorong,MAO Liangjie,et al.Composite PDC speeding-up drill for cutting hard stratum:201811126683.X[P].2018 -12-21. [39] 邓嵘,侯凯,李孟华,等.混合式单牙轮钻头破岩性能研究[J].工程设计学报,2018,25(3):262-269. DENG Rong,HOU Kai,LI Menghua,et al.Study on rock breaking performance of hybrid single cone bit[J].Chinese Journal of Engineering Design,2018,25(3):262-269. [40] 杨迎新,刘清友,张春亮,等.一种适用于难钻地层的复合钻头:201610630578.4[P].2019-11-05. YANG Yingxin,LIU Qingyou,ZHANG Chunliang,et al.Composite drill bit suitable for bad ground:201610630578.4[P].2019-11-05. [41] 牛世伟.PDC-滚刀式牙轮复合钻头破岩机理及设计方法研究[D].成都:西南石油大学,2019. NIU Shiwei.Research on rock-breaking mechanism and design method of PDC disc-like-roller hybrid bit[D].Chengdu:Southwest Petroleum University,2019. [42] WALID M,ENIS A,NACEUR C.Development of a PDC-tricone hybrid technology to solve drilling problems of surface holes in North Africa[R].OTC 25015,2014. [43] 全兵,叶道辉,涂关富,等.一种新型区域布齿强化的混合钻头:202410101246.1[P].2024-05-03. QUAN Bing,YE Daohui,TU Guanfu,et al.Novel regional tooth distribution reinforced hybrid drill bit:202410101246.1[P].2024-05-03. [44] 杨迎新,牛世伟,陈炼,等.具有独立缓冲结构的PDC—牙轮复合钻头研制[J].天然气工业,2024,44(5):96-104. YANG Yingxin,NIU Shiwei,CHEN Lian,et al.A PDC-roller hybrid bit with an independent buffer structure[J].Natural Gas Industry,2024,44(5):96-104. [45] CHEN Xuyue,YANG Qiqi,YANG Naitong,et al.The bottomhole stress field analysis and the rate of penetration enhancement mechanism of a new type of central-grooved single-cone/multi-blade hybrid bit for deep well drilling[J].Geoenergy Science and Engineering,2024,233:212485. [46] MAURER W C.Bit-Tooth penetration under simulated borehole conditions[J].Journal of Petroleum Technology, 1965,17(12):1433-1442. [47] GNIRK P F,CHEATHAM J B.An experimental study of single Bit-Tooth penetration into dry rock at confining pressures of 0 to 5000psi[J].Society of Petroleum Engineers Journal,1965,5(2):117-130. [48] 刘清友,孟庆华,庞东晓,等.基于复杂环境多自由度牙轮钻头动力学模型建立与分析[J].应用力学学报,2008,25(4):566-571. LIU Qingyou,MENG Qinghua,PANG Dongxiao,et al.Establishment and analysis of dynamics model on multi-degree of freedom roller bit based on complicated condition[J].Chinese Journal of Applied Mechanics,2008,25(4):566-571. [49] 庞东晓,刘清友,王国荣,等.九自由度牙轮钻头动力学模型研究[J].石油学报,2007,28(4):134-137. PANG Dongxiao,LIU Qingyou,WANG Guorong,et al.Dynamic model of roller bit with nine degrees of freedom[J].Acta Petrolei Sinica,2007,28(4):134-137. [50] 刘清友,黄本生.牙轮钻头横向振动模型的建立及求解[J].天然气工业,2001,21(4):55-56. LIU Qingyou,HUANG Benshen.Establishment of lateral vibration dynamic model of roller cone rock bit and its solution[J].Natural Gas Industry,2001,21(4):55-56. [51] 刘清友,马德坤,汤小文.钻柱纵向振动模型的建立及求解方法[J].西南石油学院学报,1998,20(4):55-58. LIU Qingyou,MA Dekun,TANG Xiaowen.The method of solution and establishment for axial vibration model of drilling string[J].Journal of Southwest Petroleum Institute,1998,20(4):55-58. [52] 刘清友,马德坤,钟青.钻柱扭转振动模型的建立及求解[J].石油学报,2000,21(2):78-82. LIU Qingyou,MA Dekun,ZHON Qing.A drilling string torsional vibration model and its solution[J].Acta Petrolei Sinica,2000,21(2):78-82. [53] 况雨春,马德坤,刘清友,等.钻柱—钻头—岩石系统动态行为仿真[J].石油学报,2001,22(3):81-85. KUANG Yuchun,MA Dekun,LIU Qingyou,et al.Computer simulation on dynamic action of drillstring-bit-rock system[J].Acta Petrolei Sinica,2001,22(3):81-85. [54] 祝效华,刘清友,童华.三维井眼全井钻柱系统动力学模型研究[J].石油学报,2008,29(2):288-291. ZHU Xiaohua,LIU Qingyou,TONG Hua.Research on dynamics model of full hole drilling-string system with three-dimensional trajectory[J].Acta Petrolei Sinica,2008,29(2):288-291. [55] 刘清友,孟庆华,庞东晓.钻井系统动力学仿真研究及应用[M].北京:科学出版社,2009. LIU Qingyou,MENG Qinghua,PANG Dongxiao.Research and application of drilling system dynamics simulation[M].Beijing:Science Press,2009. [56] 闫佳.刘清友:千尺油气钻头出,大国重器来之不易[J].中国科技奖励,2020(11):59-60. YAN Jia.LIU Qingyou:from a thousand-foot oil/gas bit emerges—The great power's heavyweight hardware is hard-won[J].China Awards for Science and Technology,2020(11):59-60. [57] 刘 清友,朱海燕,唐煊赫,等.四川盆地页岩气地质工程一体化高效开发关键技术与装备[J].大庆石油地质与开发,2024,43(4): 191-203. LIU Qingyou,ZHU Haiyan,TANG Xuanhe,et al.Key techniques and equipment for efficient integrated geoscience-engineering development of shale gas in Sichuan Basin[J].Petroleum Geology & Oilfield Development in Daqing,2024,43(4):191-203. [58] 罗鸣,朱海燕,刘清友,等.一种适用于超高温超高压塑性泥岩的V形齿PDC钻头[J].天然气工业,2021,41(4):97-106. LUO Ming,ZHU Haiyan,LIU Qingyou,et al.A V-cutter PDC bit suitable for ultra-HTHP plastic mudstones[J].Natural Gas Industry,2021,41(4):97-106. [59] 杨迎新,杨燕,陈欣伟,等.PDC钻头复合钻进破岩机理及个性化设计探讨[J].地下空间与工程学报,2019,15(2):565-575. YANG Yingxin,YANG Yan,CHEN Xinwei,et al.Discussion on rock-breaking mechanism and individuation design of PDC drill bit in compound drilling[J].Chinese Journal of Underground Space and Engineering,2019,15(2):565-575. [60] 杨迎新,侯季康,邓嵘,等.小井眼PDC钻头的自平衡抗回旋技术[J].石油学报,2002,23(3):98-101. YANG Yingxin,HOU Jikang,DENG Rong,et al.Anti-whirl technology for PDC bit of slim-hole drilling using self-balanced design[J].Acta Petrolei Sinica,2002,23(3):98-101. [61] 杨迎新,周坚,黄奎林,等.定向随钻扩孔PDC钻头优化设计及应用[J].工程设计学报,2018,25(6):668-674. YANG Yingxin,ZHOU Jian,HUANG Kuilin,et al.Optimization design and application of PDC bit for directional reaming-while-drilling[J].Chinese Journal of Engineering Design,2018,25(6):668-674. [62] 杨迎新,胡浩然,黄奎林,等.环脊式PDC钻头破岩机理实验研究[J].地下空间与工程学报,2019,15(5):1451-1460. YANG Yingxin,HU Haoran,HUANG Kuilin,et al.Experimental research on the rock-breaking mechanism of annular-ridge PDC bit[J].Chinese Journal of Underground Space and Engineering,2019,15(5):1451-1460. [63] 刘维,高德利.大齿快切PDC钻头提速研究与现场试验[J].天然气工业,2022,42(9):102-110. LIU Wei,GAO Deli.Research and field test of large-tooth and rapid-cutting PDC bit for ROP enhancement[J].Natural Gas Industry,2022,42(9):102-110. [64] LIU Qingyou,ZHU Haiyan.Dynamic design method for personalized drill bit for complex difficult-to-drill formation:US 11572767B2[P]. 2023-02-07. [65] SLB.PDC cutter technology[EB/OL].[2025-06-08].https://www.slb.com/products-and-services/innovating-in-oil-and-gas/well-construction/drilling/drill-bits/pdc-cutters. [66] BAKER HUGHES.Shaped-cutter technology[EB/OL].[2025-06-08].https://www.bakerhughes.com/drilling/drill-bits/shapedcutter-technology. [67] ROBERTSON A,HANAFY A,VALBUENA F,et al.Drill bit performance improvements in challenging North America land drilling applications through optimization of PDC cutter technologies[R].SPE 223693,2025. [68] NOV.Safe,efficient drilling solutions[EB/OL].[2025-06-08].https://www.nov.com/products-and-services/capabilities/drilling.) [69] HALLIBURTON.GeometrixTM 4D shaped cutters[EB/OL].[2025-06-08].https://cdn.brandfolder.io/IMT6VIR6/at/5zpqgth8q67t6447fk28ft/Geometrix-datasheet.pdf. [70] HALLIBURTON.Application-specific shaped cutters[EB/OL ].[2025-11-10]. https://www.halliburton.com/en/products/geometrix- 4d-shaped-cutters. [71] 杨迎新,伍开松,况雨春,等.一种聚晶金刚石复合片:200720082269.4[P].2009-01-21. YANG Yingxin,WU Kaisong,KUANG Yuchun,et al.Polycrystalline diamond composite sheet:200720082269.4[P].2009-01-21. [72] 陈炼,任海涛,杨迎新,等.一种聚晶金刚石复合片:200820223366.5[P] .2009-09-23. CHEN Lian,REN Haitao,YANG Yingxin,et al.Polycrystalline diamond composite sheet:200820223366.5[P].2009-09-23. [73] 颜辉,李宁,阳君奇,等.砾石层异型齿PDC钻头的设计及现场试验[J].钻采工艺,2023,46(3):9-15. YAN Hui,LI Ning,YANG Junqi,et al.Design and field test of special-shaped cutter PDC bit in gravel layer[J].Drilling & Production Technology,2023,46(3):9-15. [74] 刘畅,杨迎新,姚建林,等.新型非平面齿破岩规律研究[J].地下空间与工程学报,2023,19(2):428-436. LIU Chang,YANG Yingxin,YAO Jianlin,et al.Research on rock breaking law of new non planar cutter[J].Chinese Journal of Underground Space and Engineering,2023,19(2):428-436. [75] SHAO Fangyuan,LIU Wei,GAO Deli,et al.Development and verification of triple-ridge-shaped cutter for PDC bits[J].SPE Journal,2022,27(6):3849-3863. [76] 沈忠厚.水射流理论与技术[M].东营:石油大学出版社,1998. SHEN Zhonghou.Theory and technology of water jet[M].Dongying:Petroleum University Press,1998. [77] 李根生,沈忠厚.自振空化射流理论与应用[M].东营:中国石油大学出版社,2008. LI Gensheng,SHEN Zhonghou.Theory and application of self-resonating cavitating water jet[M].Dongying:China University of Petroleum Press,2008. [78] 管志川,陈庭根,刘希圣.PDC钻头水力结构研究进展[J].石油大学学报,1994,18(6):136-142. GUAN Zhichuan,CHEN Tinggen,LIU Xisheng.Review of studies of PDC bit hydraulic configurations[J].Journal of the University of Petroleum,China,1994,18(6):136-142. [79] GLOWKA D.Optimization of bit hydraulic configurations[J].Society of Petroleum Engineers Journal,1983,23(1):21-32. [80] BISSON P,CHOUX J C,PROVO A.Hydraulic optimization of PDC bits by visualization methods[R].SPE 18370,1988. [81] 姚征,陈康民.CFD通用软件综述[J].上海理工大学学报,2002,24(2):137-144. YAO Zheng,CHEN Kangmin.Review on the commercial CFD softwares[J].Journal of University of Shanghai for Science and Technology,2002,24(2):137-144. [82] LEDGERWOOD L W,WELLS M R,WIESNER B C,et al.Advanced hydraulics analysis optimizes performance of roller cone drill bits[R].SPE 59111,2000. [83] 王瑞和,沈忠厚.锥形旋转射流井底流场的数值模拟[J].石油大学学报,1998,22(6):49-52. WANG Ruihe,SHEN Zhonghou.Numerical simulation of swirling jet in flow field at bottomhole[J].Journal of the University of Petroleum,China,1998,22(6):49-52. [84] 况雨春,杨云山,杨迎新,等.PDC钻头井底流场CFD仿真及二次开发[J].钻采工艺,2007,30(1):77-79. KUANG Yuchun,YANG Yunshan,YANG Yingxin,et al.Advanced development and simulation of bottom fluid field of PDC bits based on CFD[J].Drilling & Production Technology,2007,30(1):77-79. [85] KNOWLTON R H,HUANG H.Polycrystalline diamond compact bit hydraulics[R].SPE 11063,1982. [86] CROUSE R,CHIA R.Optimization of PDC bit hydraulics by fluid simulation[R].SPE 14221,1985. [87] GARCIA-GAVITO D,AZAR J J.Proper nozzle location,bit profile,and cutter arrangement affect PDC-bit performance significantly[J]. SPE Drilling & Completion,1994,9(3):167-175. [88] 刘刚,陈庭根,管志川.喷嘴倾角对PDC钻头齿水射流清洗力影响的实验研究[J].石油大学学报,1996,20(4): 30-33. LIU Gang,CHEN Tinggen,GUAN Zhichuan.Effect of nozzel inclination angle on cleaning force acting on PDC bit teeth[J].Journal of the University of Petroleum,China,1996,20(4):30-33. [89] 杨丽,陈康民.喷嘴孔径对PDC钻头井底流场影响的研究[J].机械工程学报,2005,41(9):171-174. YANG Li,CHEN Kangmin.Researche on the influence of nozzles with different diameters on flow field of PDC bits[J].Chinese Journal of Mechanical Engineering,2005,41(9):171-174. [90] 黄英勇,李根生,田守嶒,等.定向喷嘴布置对PDC钻头井底流场影响研究[J].流体机械,2012,40(1):46-49. HUANG Yingyong,LI Gensheng,TIAN Shouceng,et al.Directional nozzle layout of PDC bit bottom-hole flow field impact study[J].Fluid Machinery,2012,40(1):46-49. [91] 李根生,沈忠厚.高压水射流理论及其在石油工程中应用研究进展[J].石油勘探与开发,2005,32(1):96-99. LI Gensheng,SHEN Zhonghou.Advances in researches and applications of water jet theory in petroleum engineering[J].Petroleum Exploration and Development,2005,32(1):96-99. [92] 王学杰,李根生,康延军,等.利用水力脉冲空化射流复合钻井技术提高钻速[J].石油学报,2009,30(1):117-120. WANG Xuejie,LI Gensheng,KANG Yanjun,et al.Improvement of penetration rate with hydraulic pulsating-cavitation jet compound drilling technology[J].Acta Petrolei Sinica,2009,30(1):117-120. [93] 朱海燕,王锡洲,刘时英,等.PDC钻头水力学研究最新进展[J].石油钻采工艺,2009,31(5):23-28. ZHU Haiyan,WANG Xizhou,LIU Shiying,et al.The latest developments of the hydraulics research on PDC bit[J].Oil Drilling & Production Technology,2009,31(5):23-28. [94] VEENHUIZEN S D,KOLLE J J,RICE C C,et al.Ultra-high pressure jet assist of mechanical drilling[R].SPE 37579,1997. [95] 熊继有.脉冲射流喷嘴的清岩与破岩机理[J].天然气工业,1995,15(2):38-40. XIONG Jiyou.The mechanism of clearing away cuttings and breaking rocks using pulse jet nozzle[J].Natural Gas Industry,1995,15(2):38-40. [96] 况雨春,秦超,陈瑞诚.装有脉冲喷嘴的PDC钻头井底流场模拟[J].石油机械,2014,42(5):34-38. KUANG Yuchun,QIN Chao,CHEN Ruicheng.Simulation of the bottomhole flow field of PDC bit with pulsed nozzle[J].China Petroleum Machinery,2014,42(5):34-38. [97] 刘清友,毛良杰.一种用于复杂地层二元矢量喷嘴PDC钻头:201811125041.8[P].2019-01-18. LIU Qingyou,MAO Liangjie.Binary vector spray nozzle PDC drill bit for complex formation:201811125041.8[P].2019-01-18. [98] 徐鹏,盛茂,田守嶒,等.基于ALE-FEM耦合算法的磨料水射流破岩数值模拟及其机理分析[J].石油科学通报,2024,9(4):627-636. XU Peng,SHENG Mao,TIAN Shouceng,et al.Numerical simulation and mechanism analysis of abrasive water jet rock breaking based on A LE-FEM coupling algorithm[J].Petroleum Science Bulletin,2024,9(4):627-636. [99] DETOURNAY E,TAN C P.Dependence of drilling specific energy on bottom-hole pressure in shales[R].SPE 78221,2002. [100] RAJABOV V,MISKA S,MORTIMER L,et al.The effects of back rake and side rake angles on mechanical specific energy of single PDC cutters with selected rocks at varying depth of cuts and confining pressures[R].SPE 151406,2012. [101] KAITKAY P,LEI Shuting.Experimental study of rock cutting under external hydrostatic pressure[J].Journal of Materials Processing Technology,2005,159(2):206-213. [102] IZBINSKI K,PATEL S G,VANDEVEN A.Innovative dual-chamfer edge technology leads to performance gains in PDC bits[R].SPE 173157,2015. [103] 刘清友,欧成华,朱海燕,等.一种能够测试岩石三轴强度参数的多功能钻头破岩实验装置及方法:201710702954.0[P].2019-12-31. LIU Qingyou,OU Chenghua,ZHU Haiyan,et al.Multifunctional drill bit rock breaking experiment device and method capable of testing triaxial strength parameter of rock:201710702954.0[P].2019-12-31. [104] 王国荣,刘清友,何霞,等.牙轮钻头浮动套轴承实验方法及装置:200710050088.8[P].2010-05-19. WANG Guorong,LIU Qingyou,HE Xia,et al.Roller bit floating ring bearing experiment method and device:200710050088.8[P].2010-05-19. [105] CHEN Shijie,ZHU Haiyan,ZHAO Peng,et al.Influence of fracture network characteristics of hot dry rock on heat extraction performance:a numerical simulation study[J].Geoenergy Science and Engineering,2025,245:213523. [106] 国家能源局.石油天然气钻井工程岩石可钻性测定与分级:SY/T 5426—2016[S].北京:石油工业出版社,2016:1-7. National Energy Administration.Drilling engineering for the petroleum and natural gas-rock drillability measurement and its grading:SY/T 5426—2016[S].Beijing:Petroleum Industry Press,2016:1-7. [107] 中国石油和化工自动化应用协会.岩石研磨性测定与分级:T/CNPCI 0025—2024[S].北京:中国石油和化工自动化应用协会,2024:1-5. China Petroleum and Chemical Industry Association.Determination and classification of rock abrasiveness:T/CNPCI 0025-2024[S].Beijing:China Petroleum and Chemical Industry Association,2024:1-5. [108] 陈军海,王怡,韩艳浓,等.一种利用岩石强度刻划试验确定岩石PDC钻头可钻性级值的方法[J].中国石油大学学报(自然科学版),2017,41(2):94-99. CHEN Junhai,WANG Yi,HAN Yannong,et al.A new method for assessing rock’s drillabity for PDC bits via a scratch testing[J].Journal of China University of Petroleum(Edition of Natural Science),2017,41(2):94-99. [109] 石祥超,陈帅.岩石可钻性指数测试及分级方法验证[J].石油学报,2025,46(9):1792-1804. SHI Xiangchao,CHEN Shuai.Rock drillability index testing and grading method verification[J].Acta Petrolei Sinica,2025,46(9):1792-1804. [110] RAFATIAN N,MISKA S,LEDGERWOOD III L W,et al.Experimental study of MSE of a single PDC cutter interacting with rock under simulated pressurized conditions[J].SPE Drilling & Completion,2010,25(1):10-18. [111] 祝效华,阳飞龙,刘伟吉.液柱压力下PDC齿切削破岩机理[J].石油学报,2025,46(10):1943-1959. ZHU Xiaohua,YANG Feilong,LIU Weiji.Rock-breaking mechanism of PDC cutter under hydrostatic pressures[J].Acta Petrolei Sinica,2025,46(10):1943-1959. [112] 祝效华,程飞龙,石昌帅,等.围压条件下花岗岩重载冲击破碎模式与破碎规律[J].石油学报,2025,46(6):1203-1216. ZHU Xiaohua,CHENG Feilong,SHI Changshuai,et al.Fragmentation modes and patterns of granite subjected to heavy-load impact under confining pressure[J].Acta Petrolei Sinica,2025,46(6):1203-1216. [113] CHENG Zhen,SHENG Mao,LI Gensheng,et al.Imaging the formation process of cuttings:characteristics of cuttings and mechanical specific energy in single PDC cutter tests[J].Journal of Petroleum Science and Engineering,2018,171:854-862. [114] 翟应虎,蔡镜仑,刘希圣.重叠和覆盖条件下PDC切削齿破岩规律[J].石油学报,1994,15(3):119-125. ZHAI Yinghu,CAI Jinglun,LIU Xisheng.Study on the rock breaking of PDC chipping bits under overlay and coverage conditions[J].Acta Petrolei Sinica,1994,15(3):119-125. [115] 须志刚,蔡镜仑.PDC钻头切削齿受力试验的新方法[J].石油大学学报,1994,18(4):31-36. XU Zhigang,CAI Jinglun.New approach to experimental studies of forces on PDC bit cutters[J].Journal of the University of Petroleum,China,1994,18(4):31-36. [116] LIU Wei,WANG Yichen,WANG Xinyu,et al.Rock-breaking mechanism and performance of arch-ridged cutters used for PDC bits[J].SPE Journal,2025,30(4):1708-1722. [117] 杨迎新,谢松,蔡灿,等.PDC磨损齿切削破岩过程的实验研究[J].西南石油大学学报(自然科学版),2023,45(1):180-188. YANG Yingxin,XIE Song,CAI Can,et al.A study on the mechanism and heat generation law of PDC wear tooth cutting[J].Journal of Southwest Petroleum University(Science & Technology Edition),2023,45(1):180-188. [118] 黄春申,杨世良.复合运动岩石破碎试验设备和试验方法[J].西南石油学院学报,1991,13(4):65-81. H UANG Chunshen,YANG Shiliang.Test equipment and method for breaking rock under the circumstances of complex motion[J].Journal of Southwest Petroleum Institute,1991,13(4):65-81. [119] 祝效华,刘伟吉,石昌帅,等.重载冲击破岩提速机理实验[J].石油学报,2024,45(10):1529-1537. ZHU Xiaohua,LIU Weiji,SHI Changshuai,et al.Experiment on the rock-breaking and speed-up mechanism under heavy-duty impact[J].Acta Petrolei Sinica,2024,45(10):1529-1537. [120] 杨迎新,王云田,周春晓,等.微心PDC钻头心部结构优化的实验研究[J].地下空间与工程学报,2021,17(4):1171-1180. YANG Yingxin,WANG Yuntian,ZHOU Chunxiao,et al.Experimental study on optimization of core structure of micro-core PDC bit[J].Chinese Journal of Underground Space and Engineering,2021,17(4):1171-1180. [121] 栗大林.关于XHP3、XHP4型长齿三牙轮钻头硬质合金齿的研制[J].石油学报,1983,4(1):89-96. LI Daling.Development of long-tooth tri-cone carbide biss of XHP3 and XHP4 types[J].Acta Petrolei Sinica,1983,4(1):89-96. [122] 刘清友.三牙轮钻头数控加工自动编程系统设计[J].石油机械,1995,23(9):1-4. LIU Qingyou.Automatic programming system for numerically controlled machining of cone bits[J].China Petroleum Machinery,1995,23(9):1-4. [123] LEE M,申守庆.美国十大钻头公司的十大钻头新技术[J].国外油田工程,2002,18(7):14-20. LEE M,SHEN Shouqing.Ten new drill bit technologies of top ten drill bit companies in the United States[J].Foreign Oilfield Engineering,2002,18(7):14-20. [124] LIN C,KOLTERMANN T J,ZAHRADNIK A F,et al.Enhanced backup ring features for metal face seal in roller cone drill bits:SG 1120150 6256RA[P].2016-09-29. [125] HALLIBURTON.StrikeForceTM roller cone drill bits[EB/OL].[2025-06-08]. https://cdn.brandfolder.io/IMT6VIR6/as/q7cd79-1d5b7s-5xm4w7/Sales-Data-Sheet.pdf. [126] BAKER HUGHES.Vanguard Premium tricone drill bits[EB/OL].[2025-06-08].https://www.bakerhughes.com/sites/bakerhughes/files/ 2020-11/Vanguard-tricone-drill-bits-bro.PDF. [127] LIU Wei,GAO Deli.Hall-Petch relation in the fracture strength of matrix-body PDC bits[J].International Journal of Refractory Metals and Hard Materials,2021,98:105537. [128] 韩烈祥.国外PDC钻头技术新进展[M].北京:科学出版社,2020. HAN Liexiang.New progress of PDC bit technology abroad[M].Beijing:Science Press,2020. [129] CENTALA P K,ROBERTS T S.Shaping the future with PDC cutter technology,progress,and next steps[R].SPE 223687,2025. [130] Schlumberger.BP uses 3D-printed armor to increase average bit ROP 36 % and reduce drilling time 179 hours over eight runs[EB/OL].(2019-10-01)[2025-06-08].https://www.slb.com/resource-library/case-study-with-navigation/bdt/aegis-bp-cs. [131] PANAYIRCI H M,ROBINSON A.Next level instrumentation in PDC bits:measuring temperature at every cutter while drilling[R].SPE 223665,2025. [132] LIU Baxian,WANG Yifei,JIANG Junjie,et al.Application of three-dimensional printing technology to the manufacture of petroleum drill bits[J].Processes,2023,11(9):2706. [133] YANG Feilong,LIU Weiji,ZHU Xiaohua,et al.The rock-breaking mechanism of thermal spalling-assisted rock cutting by PDC cutter[J].Rock Mechanics and Rock Engineering,2024,57(2):993-1012. [134] 李根生,沈忠厚,周长山,等.自振空化射流研究与应用进展[J].中国工程科学,2005,7(1):27-32. LI Gensheng,SHEN Zhonghou,ZHOU Changshan,et al.Advances in investigation and application of self-resonating cavitating water jet[J].Engineering Science,2005,7(1):27-32. [135] 熊继有,付建红,钱声华,等.井下它激振荡脉冲射流机理研究[J].石油学报,2004,25(2):100-102. XIONG Jiyou,FU Jianhong,QIAN Shenghua,et al.Mechanism of oscillating jet induced by external excitation[J].Acta Petrolei Sinica,2004,25(2):100-102. [136] 蔡灿,高超,王海柱,等.高压CO2射流—PDC齿复合破岩流场及携岩增强机理[J].天然气工业,2021,41(10):101-108. CAI Can,GAO Chao,WANG Haizhu,et al.Flow field and cuttings carrying enhancement mechanism of compound rock breaking by high pressure CO2 jet and PDC cutters[J].Natural Gas Industry,2021,41(10):101-108. [137] 黄志强,梁耀文,陈科,等.激光-PDC钻头联合破岩机理及特性研究[J].工程设计学报,2023,30(3):315-324. HUANG Zhiqiang,LIANG Yaowen,CHEN Ke,et al.Research on the mechanism and characteristic of joint rock-breaking of laser-PDC drill bit[J].Chinese Journal of Engineering Design,2023,30(3):315-324. [138] WOSKOV P P,COHN D R.Millimeter-wave drilling and fracturing system:US 2010252324A1[P].2010-10-07. [139] 王修昌,赵连敏,吴大俊,等.4.6GHz高功率微波岩石钻探技术[J].科学技术与工程,2021,21(22):9404-9410. WANG Xiuchang,ZHAO Lianmin,WU Dajun,et al.4.6GHz high power microwave rock drilling technology[J].Science Technology and Engineering,2021,21(22):9404-9410. [140] 祝效华,罗云旭,刘伟吉,等.等离子体电脉冲钻井破岩机理的电击穿实验与数值模拟方法[J].石油学报,2020,41(9):1146-1162. ZHU Xiaohua,LUO Yunxu,LIU Weiji,et al.Electrical breakdown experiment and numerical simulation method of rock-breaking mechanism of plasma electric pulse drilling[J].Acta Petrolei Sinica,2020,41(9):1146-1162. [141] 呼怀刚,黄洪春,汪海阁,等.国内外PDC钻头新进展与发展趋势展望[J].石油机械,2024,52(2):1-10. HU Huaigang,HUANG Hongchun,WANG Haige,et al.New progress and development trends of PDC bits in China and abroad[J].China Petroleum Machinery,2024,52(2):1-10. [142] LIU Yongwang,ZHANG Zhe,JI Qingli,et al.A new method to improve rock breaking efficiency by using automatic unloading of bottom hole central stress[J].Geoenergy Science and Engineering,2023,225:211680. [143] 涂关富,刘强.一种分布式内流道分体刀翼钻头:202410156384.X[P] .2024-04-30. TU Guanfu,LIU Qiang.Distributed inner flow channel split blade drill bit:202410156384.X[P].2024-04-30. [144] 杨迎新,曾恒,马捷,等.PDC钻头内镶式二级齿新技术[J].石油学报,2008,29(4):612-614. YANG Yingxin,ZENG Heng,MA Jie,et al.An innovative PDC bit design with fully embedded back-up cutters[J].Acta Petrolei Sinica,2008,29(4):612-614. [145] 杨迎新,陈炼,林敏,等.一种刮切-冲击复合式钻头:201210155406.8[P].2015-10-28. YANG Yingxin,CHEN Lian,LIN Min,et al.Scraping-cutting and impacting combined type drill:201210155406.8[P].2015-10-28. [146] ZHU Haiyan,LIU Q Y.Pressure drawdown mechanism and design principle of jet pump bit[J].Scientia Iranica,2015,22(3):792-803. [147] LIU Wei,LI Yue,GAO Deli,et al.Microstructure and properties of polycrystalline diamond with AlCoCrFeNi2.1 eutectic high-entropy alloys as binder[J].Advanced Composites and Hybrid Materials,2025,8(1):124. [148] RAJAK D K,KUMAR A,BEHERA A,et al.Diamond-like carbon (DLC)coatings:classification,properties,and applications[J].Applied Sciences,2021,11(10):4445. [149] XU Jianhui,ZHAN G D,MOELLENDICK T E,et al.Advanced coating to mitigate PDC cutter thermal degradation in PDC bit manufacturing[R].IPTC 21954,2022. |
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