综述

地质导向钻井前探技术现状及进展

  • 林昕 ,
  • 苑仁国 ,
  • 秦磊 ,
  • 刘素周 ,
  • 苏朝博 ,
  • 卢中原 ,
  • 于忠涛 ,
  • 谭伟雄
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  • 中海油能源发展股份有限公司工程技术分公司,天津 300452
林昕(1983—),男,工程师,2005年毕业于中国地质大学(北京)测控技术与仪器专业,2008年毕业于该校地球探测与信息技术专业,获硕士学位,现从事油气地质工程一体化科研工作。

收稿日期: 2020-05-20

  修回日期: 2020-12-19

  网络出版日期: 2022-02-16

基金资助

中海油能源发展股份有限公司重大科研专项(课题)“钻井地质风险评价及实时导向技术研究”(HFZDZX-GJ2020-01-05)

Present Situation and Progress of Geosteering Drilling Pre-prospecting Technology

  • Lin Xin ,
  • Yuan Renguo ,
  • Qin Lei ,
  • Liu Suzhou ,
  • Su Chaobo ,
  • Lu Zhongyuan ,
  • Yu Zhongtao ,
  • Tan Weixiong
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  • CNOOC Ener Tech-Drilling & Production Co., Tianjin 300452, China

Received date: 2020-05-20

  Revised date: 2020-12-19

  Online published: 2022-02-16

摘要

地质导向钻井前探技术可有效提高钻井效率和成功率。将地质导向钻井前探技术分为近钻头前探技术、随钻地震前探技术和方位电磁波前探技术3类,结合复杂油气藏勘探开发案例,对地质导向钻井前探技术中常用的近钻头测量、R-VSP、VSP-WD、边界探测、储层成像和随钻前视等方法进行了分析总结。各种地质导向钻井前探技术分别从不同途径实现地质导向钻井前探测量,但都存在一定的局限性;前探技术应在提高探测精度与多方法联合应用上深入研究,为应用前探技术进行套管下深设计、地层压力预测、泥浆窗口设置、复杂油气藏精细刻画、钻井轨迹优化等提供有力的技术支撑。该研究对于地质导向钻井前探技术科研攻关及现场应用具有参考价值。

本文引用格式

林昕 , 苑仁国 , 秦磊 , 刘素周 , 苏朝博 , 卢中原 , 于忠涛 , 谭伟雄 . 地质导向钻井前探技术现状及进展[J]. 特种油气藏, 2021 , 28(2) : 1 -10 . DOI: 10.3969/j.issn.1006-6535.2021.02.001

Abstract

Geosteering drilling pre-prospecting technology can effectively improve drilling efficiency and success rate. There are three types of geosteering drilling pre-prospecting technology: near-bit pre-prospecting, seismic-while-drilling pre-prospecting, and azimuth electromagnetic wave pre-prospecting. With case study of exploration and development of complex oil and gas reservoirs, methods widely used in the geosteering drilling pre-prospecting technology were analyzed and summarized, including near-bit measurement, R-VSP, VSP-WD, bed boundary mapping, reservoir mapping while drilling, and looking ahead while drilling. All kinds of geo-steering pre-prospecting technologies can be used for measurements in different ways, but they all have certain limitations. There is a need for pre-prospecting tehcnologies to conduct further studies on the improvement of prospecting accuracy and the combined application of multiple methods, so as to provide strong technical support for casing setting depth design, formation pressure prediction, mud density window setting, detailed description of complex oil and gas reservoirs, and drilling trajectory optimization for the application of pre-prospecting technologies. The study can provide a strong reference for domestic research and field application of geosteering drilling pre-prospecting technologies.

参考文献

[1] BONNER S,BURGRESS T,CLARK B,et al.Measurements at the bit:a new generation of MWD tools[J].Oilfield Review,1994,2(3):44-54.
[2] 苏义脑.地质导向钻井技术概况及其在我国的研究进展[J].石油勘探与开发,2005,32(1):92-95.
SU Yinao.General situation of geosteering drilling technology and its research progress in my country[J].Petroleum Exploration and Development,2005,32(1):92-95.
[3] 唐诚,王志战,陈明,等.基于X射线荧光元素录井的深层页岩气精准地质导向技术[J].石油钻探技术,2019,47(6):103-110.
TANG Cheng,WANG Zhizhan,CHEN Ming,et al.Accurate geosteering technology for deep shale gas based on XRF element mud logging[J].Petroleum Drilling Techniques,2019,47(6):103-110.
[4] 操延辉,余露,孙意博.勘探水平井地质导向难点及对策分析[J].石油地质与工程,2020,34(3):92-94.
CAO Yanhui,YU Lu,SUN Yibo.Analysis on the difficulties and countermeasures of geological guidance of exploration horizontal wells[J].Petroleum Geology & Engineering,2020,34(3):92-94.
[5] 郑奕挺,方方,吴金平,等.近钻头随钻伽马成像系统研制及应用[J].东北石油大学学报,2020,44(3):70-76.
ZHENG Yiting,FANG Fang,WU Jinping,et al.Development and application of near-bit gamma-ray imaging system during drilling[J].Journal of Northeast Petroleum University,2020,44(3):70-76.
[6] 张瑞平,宋朝晖,李彬,等.地质导向技术在玛湖区块的应用分析[J].石油地质与工程,2020,34(2):94-96.
ZHANG Ruiping,SONG Zhaohui,LI Bin,et al.Application analysis of geo-steering technology in Mahu Block[J].Petroleum Geology & Engineering,2020,34(2):94-96.
[7] 倪卫宁,康正明,路保平,等.随钻高分辨率电阻率成像仪器探测特性研究[J].石油钻探技术,2019,47(2):114-119.
NI Weining,KANG Zhengming,LU Baoping,et al.The detection characteristics of a high resolution resistivity imaging instrument while drilling[J].Petroleum Drilling Techniques,2019,47(2):114-119.
[8] 何胜林,李明,王光,等.GeoSphere地质导向工具在深水气田水平井钻井中的应用[J].天然气工业,2021,41(4):91-96.
HE Shenglin,LI Ming,WANG Guang,et al.Application of GeoSphere geosteering tool to the drilling of horizontal wells in deepwater gas fields[J].Natural Gas Industry,2021,41(4):91-96.
[9] GRIFFITHS R.Well placement fundamentals[M].Sugar Land.TX:Schlumberger,2009:119-120.
[10] 侯胜明,王以法,管志川,等.基于超声波的近钻头无线随钻测斜系统设计[J].石油机械,2010,38(10):1-3.
HOU Shengming,WANG Yifa,GUAN Zhichuan,et al.Design of an ultrasonic wave-based near-bit wireless inclinometry-while-drilling system[J].China Petroleum Machinery,2010,38(10):1-3.
[11] 段永贤,张雷,陈军,等.基于电信号传输数据的近钻头测量仪器研究[J].石油机械,2017,45(2):41-44.
DUAN Yongxian,ZHANG Lei,CHEN Jun,et al.Study on near-bit measuring instrument based on electric signal transmitting data[J].China Petroleum Machinery,2017,45(2):41-44.
[12] 杨文景,周智勇,闫国兴,等.有线传输式近钻头地质导向钻井系统应用[J].石油矿场机械,2014,43(6):77-79.
YANG Wenjing,ZHOU Zhiyong,YAN Guoxing,et al.Application of near-bit geosteering drilling system through wire transmission[J].Petroleum Field Machinery,2014,43(6):77-79.
[13] PEACH S R,KLOSS P J C.A new generation of instrumented steerable motors improves geosteering in North Sea horizontal wells[C].IADC/SPE27482,1994:455-463.
[14] PITCHER J L,SCHAFER D B,BOTTERELL P,et al.A new azimuthal gamma at bit imaging tool for geosteering thin reservoir[C].SPE/IADC118328,2009:1-8.
[15] FLOOK R,ALEXANDER W,LIST D,et al.At-bit inclination,gamma,and imaging system tracks productive zone in complex geology[J].Journal of Petroleum Technology,2013,65(3):30-32.
[16] GAO Wenkai,SHENG Limin,DOU Xiurong,et al.CGDS near-bit geosteering drilling system and its application in China[C].SPE/IATMI 176495,2015:1-9.
[17] 杨志坚,齐悦,吴党辉,等.DQNBMS-1型近钻头随钻测量系统的研制与应用[J].石油钻采工艺,2013,35(1),48-50.
YANG Zhijian,QI Yue,WU Danghui,et al.Development and field application of DQNBMS-1 near-bit measurement while drilling[J].Oil Drilling & Production Technology,2013,35(1),48-50.
[18] 陈金宏,王静,黄益,等.近钻头地质导向在煤层气水平井的应用[J].中国煤层气,2019,16(4):27-30.
CHEN Jinhong,WANG Jing,HUANG Yi,et al.Application of near-bit geosteering in coalbed methane horizontal wells[J].China Coalbed Methane,2019,16(4):27-30.
[19] LI Qiang,LIU Ruiying,KANG Peng,et al.Best practices of integrated well placement technologies in developing an ultrathin reservoir:a case history from Tarim Basin west China[C].SPE173874,2015:1-13.
[20] ZHENG Majia,LIU Xin,ZHAO Jianping,et al.RSS with near-bit gr imaging assist accurate steer drilling in shale gas project in Sichuan:a fit-for-purpose solutions for shale gas drilling case study[C].IPTC19464,2019:1-17.
[21] LYU Zonggang,PENG Hairun,XIA Qin,et al.Uncovering the potential of thin,tight gas reservoirs in Sichuan Basin,China:new development campaign using new LWD imaging technology and innovative interpretation workflows[C].SPE160173,2012:1-13.
[22] 苏义脑,徐义,盛利民,等.随钻地震技术研究进展[J].石油钻采工艺,2010,32(5):1-7.
SU Yinao,XU Yi,SHENG Limin,et al.Review on study progress of seismic while drilling technology[J].Oil Drilling & Production Technology,2010,32(5):1-7.
[23] 周小慧,宋桂桥,张卫华,等.随钻地震技术及其新进展[J].石油物探,2016,55(6):913-923.
ZHOU Xiaohui,SONG Guiqiao,ZHANG Weihua,et al.Current research progress of seismic while drilling technology[J].Geophysical Prospecting for Petroleum,2016,55(6):913-923.
[24] RECTOR J W,MARION B P.The use of drill-bit energy as a downhole seismic source[J].Geophysics,1991,56(5):628-634.
[25] BERTELLI L,MIRANDA F,POLETTO F,et al.Design of SWD 3D RVDP using seisbit(R)technology[C].EAGE 2214-4609.201408296,1998:10-49.
[26] NAVILLE C H,SERBUTOVIEZ S,THROO A,et al.Seismic while drilling(SWD) techniques with downhole measurements,introduced by IFP and its partners in 1990-2000[J].Oil & Gas Science and Technology,2004,59(4):371-403.
[27] BAKULIN A,ALDAWOOD A,SILVESTROV I,et al.Seismic-while-drilling applications from the first drill CAM trial with wireless geophones and instrumented top drive[J].The Leading Edge,2020,39(6):422-429.
[28] 张绍槐,韩继勇,朱根法.随钻地震技术的理论及工程应用[J].石油学报,1999,20(2):67-72.
ZHANG Shaohuai,HAN Jiyong,ZHU Genfa.Petroleum engineering the engineering application and theory of seismic while drilling[J].Acta Petrolei Sinica,1999,20(2):67-72.
[29] 韩继勇.随钻地震中地层参数的预测[J].测井技术,2000,24(3):176-178.
HAN Jiyong.Prediction of formation parameters in seismic while drilling[J].Well Logging Technology,2000,24(3):176-178.
[30] 罗斌.随钻地震技术研究及应用效果[D].北京:中国地质大学(北京),2005.
LUO Bin.Seismic while drilling (SWD) technique research and its application effect[D].Beijing:China University of Geosciences (Beijing),2005.
[31] 王敏生,王智锋,李作会,等.水力脉冲式钻井工具的研制与应用[J].石油机械,2006,34(5):27-28.
WANG Minsheng,WANG Zhifeng,LI Zuohui,et al.Development and application of a hydraulic-pulse drilling tool[J].China Petroleum Machinery,2006,34(5):27-28.
[32] 倪红坚,韩来聚,马清明,等.水力脉冲诱发井下振动钻井工具研究[J].石油钻采工艺,2006,28(2):15-17,20.
NI Hongjian,HAN Laiju,MA Qingming,et al.Study on downhole vibration drilling tool induced by hydropulse[J].Oil Drilling & Production Technology,2006,28(2):15-17,20.
[33] 杨微,葛洪魁,宁靖,等.流动地震仪检测钻头振动信号的现场试验[J].地球物理学进展,2007,22(2):622-628.
YANG Wei,GE Hongkui,NING Jing,et al.Field test of the drill-bit vibration signal detection using portable seismometers[J].Progress in Geophysics,2007,22(2):622-628.
[34] 吴何珍,葛洪魁,杨顶辉,等.钻柱振动倒谱分析及其钻头源信号提取方法研究[J].地球物理学报,2010,53(8):1968-1975.
WU Hezhen,GE Hongkui,YANG Dinghui,et al.A research of cepstrum analysis of drill string vibration and extracting the bit source signals[J].Chinese Journal of Geophysics,2010,53(8):1968-1975.
[35] 陆斌,葛洪魁,吴何珍,等.独立成分分析在随钻地震信号处理中的应用[J].石油地球物理勘探,2010,45(1):15-22.
LU Bin,GE Hongkui,WU Hezhen,et al.Application of independent component analysis in seismic while drilling signal processing[J].Petroleum Geophysical Prospecting,2010,45(1):15-22.
[36] 徐冰,刘怀山,张进,等.基于分层模式的随钻地震数据处理软件系统体系结构研究[J].中国海洋大学学报,2014,44(8):83-88.
XU Bing,LIU Huaishan,ZHANG Jin,et al.Research of SWD data processing software architecture based on layering mode[J].Periodical of Ocean University of China,2014,44(8):83-88.
[37] 朱键,高韶燕.随钻地震资料反演预测超高压层段[J].地球物理勘探,2003,38(1):38-43.
ZHU Jian,GAO Shaoyan.Prediction of superpressure stratum using inversion of seismic while drilling (SWD) data[J].Oil Geophysical Prospecting,2003,38(1):38-43.
[38] 杨进,谢玉洪,黄凯文.随钻地震技术在异常高压地层预测中的应用[J].石油勘探与开发,2007,34(6):755-759.
YANG Jin,XIE Yuhong,HUANG Kaiwen.Application of seismic while drilling technique in prediction of abnormally high pressure formation[J].Petroleum Exploration and Development,2007,34(6):755-759.
[39] ESMERSOY C,UNDERHILL W,HAWTHRON A.Seismic measurement while drilling:conventional borehole seismics on LWD [C].SPWLA-2001-RR,2001:1-9.
[40] ESMERSOY C,HAWTHRON A,DURRAND C,et al.Seismic MWD:drilling in time,on time,it′s about time[J].The Leading Edge,2005,24(1):56-62.
[41] TOKHY M,FAHMY A,MARAKEBY H,et al. Seismic while-drilling,real-data reposition the well in the seismic volume and improve the accuracy of the depth prognosis of the target events[C].SPE176763,2015:1-9.
[42] 贾衡天,艾维平,张连成,等.随钻垂直地震剖面测量装置[J].石油机械,2017,45(2):1-5.
JIA Hengtian,AI Weiping,ZHANG Liancheng,et al.Measurement while drilling device for vertical seismic profile[J].China Petroleum Machinery,2017,45(2):1-5.
[43] 李明印,窦修荣,艾维平,等.随钻VSP井下推靠系统结构研究与设计[J].石油机械,2018,46(2):29-34.
LI Mingyin,DOU Xiurong,AI Weiping,et al.Research of VSP-WD downhole pushing system structure[J].China Petroleum Machinery,2018,46(2):29-34.
[44] SHI Hongxiang,LI Hui,ZHENG Duoming,et al.Seismic guided drilling technique based on seismic while drilling(SWD):a case study of fracture-cave reservoirs of Halahatang Block,Tarim Oilfield,NW China[J].Petroleum Exploration and Development,2016,43(4):724-730.
[45] 高永德,刘鹏,杜超,等.随钻地震技术在莺歌海盆地高温高压地层钻井中的应用[J].石油钻探技术,2020,48(4):63-71.
GAO Yongde,LIU Peng,DU Chao,et al.The application of seismic while drilling in high temperature,high pressure reservoirs of the Yinggehai Basin[J].Petroleum Drilling Technology,2020,48(4):63-71.
[46] LI Q,OMERAGIC D,CHOU L,et al.New directional electromagnetic tool for proactive geosteering and accurate formation evaluation while drilling[C].SPWLA-2005-UU,2005:1-16.
[47] BEER R,CLAUDIO L,DIAS T,et al.Geosteering and/or reservoir characterization the prowess of new-generation LWD tools[C].SPWLA-2010-93320,2010:1-13.
[48] CONSTABLE M V,ANSTONSEN F,STALHEIM S O,et al.Looking ahead of the bit while drilling:from vision to reality [C].SPWLA-2016-MMMM,2016:1-16.
[49] 刘乃震,王忠,刘策.随钻电磁波传播方位电阻率仪地质导向关键技术[J].地球物理学报,2015,58(5):1767-1775.
LIU Naizhen,WANG Zhong,LIU Ce.Theories and key techniques of directional electromagnetic propagation resistivity tool for geosteering applications while drilling[J].Chinese Journal of Geophysics,2015,58(5):1767-1775.
[50] 杨震,马清明,杨宁宁,等.基于正交天线的随钻方位电磁波电阻率成像响应特征模拟[J].石油学报,2018,39(9):1063-1069.
YANG Zhen,MA Qingming,YANG Ningning,et al.Imaging response characteristic simulation of azimuthal electromagnetic resistivity while drilling based on orthogonal antenna[J].Acta Petrolei Sinica,2018,39(9):1063-1069.
[51] 杨震,于其蛟,马清明,等.基于拟牛顿法的随钻方位电磁波电阻率仪器响应实时反演与现场试验[J].石油钻探技术,2020,48(3):120-126.
YANG Zhen,YU Qijiao,MA Qingming,et al.Real time inversion and field test of LWD azimuthal electromagnetic waves based on Quasi-Newton Method[J].Petroleum Drilling Technology,2020,48(3):120-126.
[52] 王磊,范宜仁,袁超,等.随钻方位电磁波测井反演模型选取及适用性[J].石油勘探与开发,2018,45(5),914-922.
WANG Lei,FAN Yiren,YUAN Chao,et al.Selection criteria and feasibility of the inversion model for azimuthal electromagnetic logging while drilling(LWD)[J].Petroleum Exploration and Development,2018,45(5),914-922.
[53] 王磊,范宜仁,操应长,等.大斜度井/水平井随钻方位电磁波测井资料实时反演方法[J].地球物理学报,2020,63(4):1715-1724.
WANG Lei,FAN Yiren,CAO Yingchang,et al.Real-time inversion of logging-while-drilling azimuthal electromagnetic measurements acquired in high-angle and horizontal wells[J].Chinese Journal of Geophysics,2020,63(4):1715-1724.
[54] 李建,王超,易杰,等.高清多边界探测技术在南海东部H油田的应用[J].测井技术,2019,43(2):180-185.
LI Jian,WANG Chao,YI Jie,et al.Application of periscope HD multi-boundary detecting technology in the H Oilfield in eastern south China Sea[J].Well Logging Technology,2019,43(2):180-185.
[55] UPCHURCH E R,SALEEM S,RUSSELL K,et al.Geo-stopping using deep directional resistivity LWD:a new method for well bore placement using below-the-bit resistivity mapping[C].SPE/IADC 173169,2015:1-14.
[56] 高杰,娄研,李可赛,等.随钻前视电磁波电阻率测井方法前期理论研究[J].测井技术,2018,42(1):20-24,30.
GAO Jie,LOU Yan,LI Kesai,et al.Prophase theoretical study on look-ahead electromagnetic wave resistivity LWD[J].Well Logging Technology,2018,42(1):20-24,30.
[57] YANG Kun,DU Hongling,ZHANG Yi,et al.Extending the vitality of a mature oilfield using well placement technology:a case history of 10 years innovation and commitment,Junggar Basin northwest China[C].SPE175277,2015:1-14.
[58] 吴丛文,石国新,路建国,等.准噶尔盆地陆梁油田超薄层低阻油藏水平井开发技术[J].特种油气藏,2018,25(4),164-169.
WU Congwen,SHI Guoxin,LU Jianguo,et al.Development of ultra-thin low-resistance reservoirs through horizontal wells in Luliang Oilfield,Junggar Basin[J].Special Oil & Gas Reservoirs,2018,25(4),164-169.
[59] WU Yiming,ZHANG Yongjiang,WANG Chao,et al.Improving oilfield recovery in complex heterogeneous reservoirs of highly mature oil fields through innovative measurement and strategies:a case study from south China Sea [C].IADC/SPE180606,2016:1-12.
[60] LI Wei,CHEN Jianbo,JIN Baoqiang,et al.Ultra-deep high definition reservoir mapping while drilling measurement to optimize landing operation:a case study from offshore China[C].SPWLA-JFES-2019-P,2019:1-9.
[61] DUPUIS C,MENDOZA B.Avoid pilot holes,land wells,and optimize well placement and production with deep directional resistivity logging while drilling[J].SPE Drilling & Completion,2014,29(4):473-480.
[62] KHALIL H,SEYDOUX J,DENICHOW J,et al.Successful implementation of real-time look-ahead resistivity measurements in the North Sea[C].SPE191340,2018:1-14.
[63] SEYDOUX J,DENICHOU J M,AMIR I,et al.Real-time EM looking-ahead:a maturing technology to decrease drilling risk in low inclination wells[C].SPWLA-T60ALS-2019_GGGG,2019:1-18.
[64] YANG Hongjun,GUO Shusheng,GAO Yongde,et al.Reduce drilling risk in HPHT gas field using innovative look-ahead technology:a case study from south China Sea[C].IPTC 19636,2020:1-8.
[65] GUO Qingbin,HAO Xiangbao,WU Chao,et al.Deep em method for proactively prediction of resistivity ahead of bit to determine salt bottom position[C].IPTC 19616,2020:1-11.
[66] 廖高龙,郭书生,胡益涛,等.地质工程一体化理念在南海高温高压井的实践[J].中国石油勘探,2020,25(2):142-154.
LIAO Gaolong,GUO Shusheng,HU Yitao,et al.Practice of the geology-engineering integration concept in high temperature and high pressure wells in south China Sea[J].China Petroleum Exploration,2020,25(2):142-154.
[67] 张科,赵汝敏,齐凯,等.海外低勘探区预探井深度预测难点及对策[J].特种油气藏,2014,21(2):57-60.
ZHANG Ke,ZHAO Rumin,QI Kai,et al.The difficulties and countermeasures of depth prediction for exploratory well in oversea low exploration degree area[J].Special Oil & Gas Reservoirs,2014,21(2):57-60.
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