新疆石油天然气 ›› 2025, Vol. 21 ›› Issue (1): 50-60.DOI: 10.12388/j.issn.1673-2677.2025.01.006
出版日期:
2025-03-05
发布日期:
2025-03-12
作者简介:
尹奥博(2001-),在读硕士,主要从事井筒完整性方面的研究工作。(Tel)13288323976(E-mail)xiangnuan8462@163.com
基金资助:
国家自然科学基金青年基金项目“页岩气井多级压裂诱发断层滑移量化计算模型与套管变形控制方法研究”(52204018)
Online:
2025-03-05
Published:
2025-03-12
摘要:
页岩气水平井多级压裂过程中套管变形(套变)现象显著,降低了储层动用率,增加了压裂成本。综合国内外学者对该问题的研究成果,对比分析了国内外页岩气水平井套管变形现状,以长宁-威远、泸州、威荣区块的套管变形数据为基础,总结了套管变形问题在时间、空间、形态上的分布规律。讨论了套管及水泥环类型、固井质量、压裂及射孔参数、热应力等工程因素和储层非均质性、储层滑移等地质因素对套管变形的影响。调研分析结果认为,工程因素会使套管应力增加,但不易造成套管变形,而地质因素中多级压裂诱发天然裂缝和断层活化导致的储层滑移是套管产生较大变形的主控因素。针对该问题总结梳理了优选套管及水泥环参数、提升固井质量、优选压裂及射孔参数、优化井眼轨迹、控制储层滑移等多种控制方法,并提出了需提高对地层的认识和储层滑移预测精度等方面的建议。研究成果可为压裂过程中套管完整性设计及控制提供参考。
中图分类号:
尹奥博 , 李军, , 连威 , 张辉. 页岩气水平井套管变形机理及控制方法研究进展#br#[J]. 新疆石油天然气, 2025, 21(1): 50-60.
YIN Aobo , LI Jun, , LIAN Wei , ZHANG Hui. Research Progress on the Mechanisms and Control Methods of Casing Deformation in Shale Gas Horizontal Wells#br#[J]. Xinjiang Oil & Gas, 2025, 21(1): 50-60.
[1]邹才能,朱如凯,董大忠,等. 页岩油气科技进步、发展战略及政策建议[J]. 石油学报,2022,43(12):1675-1686.ZOU Caineng,ZHU Rukai,DONG Dazhong,et al. Scientific and technological progress,development strategy and policy suggestion regarding shale oil and gas[J]. Acta Petrolei Sinica,2022,43(12) :1675-1686. [2]张明,李润川,余兆才,等. 三维地震速度建模技术在川南页岩气随钻地质导向中的应用[J]. 录井工程,2024,35(2):80-90.ZHANG Ming,LI Runchuan,YU Zhaocai,et al. Application of 3D seismic velocity modeling technology to geosteering of shale gas while drilling in Southern Sichuan[J]. Mud Logging Engineering,2024,35(2):80-90. [3]沈新普,张平. 预防套管变形的许用压裂注入压力计算方法[J]. 天然气工业,2019,39(1):87-96.SHEN Xinpu,ZHANG Ping. A calculation method for the allowable fracturing injection pressure of preventing casing deformation[J]. Natural Gas Industry,2019,39(1):87-96. [4]田中兰,石林,乔磊. 页岩气水平井井筒完整性问题及对策[J]. 天然气工业,2015,35(9):70-76.TIAN Zhonglan,SHI Lin,QIAO Lei. Reasearch of and countermeasure for wellbore integrity of shale gas horizontal well[J]. Natural Gas Industry,2015,35(9):70-76. [5]陈朝伟,石林,项德贵. 长宁-威远页岩气示范区套管变形机理及对策[J]. 天然气工业,2016,36(11):70-75.CHEN Zhaowei,SHI Lin,XIANG Degui. Mechanism of casing deformation in the Changning-Weiyuan national shale gas project demonstration area and countermeasures[J]. Natural Gas Industry,2016,36(11):70-75. [6]杨毅,刘俊辰,曾波,等. 页岩气井套变段体积压裂技术应用及优选[J]. 石油机械,2017,45(12):82-87.YANG Yi,LIU Junchen,ZENG Bo,et al. Application and optimization of SRV fracturing technology for casing deformation section of shale gas well[J]. China Petroleum Machinery,2017,45(12):82-87. [7]余夫,史伟. 页岩气井套管变形失效原因分析[J]. 石油管材与仪器,2018,4(3):35-38.YU Fu,SHI Wei. Casing deformation failure cause analysis in shale gas well[J]. Petroleum Tubular Goods & Instruments,2018,4(3):35-38. [8]席岩,李军,柳贡慧,等. 页岩气水平井多级压裂过程中套管变形研究综述[J]. 特种油气藏,2019,26(1):1-6.XI Yan,LI Jun,LIU Gonghui,et al. Overview of casing deformation in multistage fracturing of shale gas horizontal wells[J]. Special Oil and Gas Reservoirs,2019,26(1):1-6. [9]陈朝伟,项德贵,张丰收,等. 四川长宁-威远区块水力压裂引起的断层滑移和套管变形机理及防控策略[J]. 石油科学通报,2019,4(4):364-377.CHEN Zhaowei,XIANG Degui,ZHANG Fengshou,et al. Fault slip and casing deformation caused by hydraulic fracturing in Changning-Weiyuan Blocks,Sichuan:Mechanism and prevention strategy[J]. Petroleum Science Bulletin,2019,4(4):364-377. [10]路千里,刘壮,郭建春,等. 水力压裂致套管剪切变形机理及套变量计算模型[J]. 石油勘探与开发,2021,48(2):394-401.LU Qianli,LIU Zhuang,GUO Jianchun,et al. Hydraulic fracturing induced casing shear deformation and a prediction model of casing deformation[J]. Petroleum Exploration and Development,2021,48(2):394-401. [11]张鑫,李军,张慧,等. 威荣区块深层页岩气井套管变形失效分析[J]. 钻采工艺,2021,44(1):23-27.ZHANG Xin,LI Jun,ZHANG Hui,et al. Analysis on casing deformation failure in deep shale gas wells in Weirong shale gas play[J]. Drilling & Production Technology,2021,44(1):23-27. [12]童亨茂,张平,张宏祥,等. 页岩气水平井开发套管变形的地质力学机理及其防治对策[J]. 天然气工业,2021,41(1):189-197.TONG Hengmao,ZHANG Ping,ZHANG Hongxiang,et al. Geomechanical mechanisms and prevention countermeasures of casing deformation in shale gas horizontal wells[J]. Natural Gas Industry,2021,41(1):189-197. [13]张鹏,蒲春生,胡淑颖,等. 致密油压裂套管变形应力特征数值模拟[J]. 科学技术与工程,2022,22(25):10968-10974.ZHANG Peng,PU Chunsheng,HU Shuying,et al. Casing deformation stress characteristics numerical simulation under tight oil fracturing[J]. Science Technology and Engineering,2022,22(25):10968-10974. [14]吴建忠,张小军,李军,等. 页岩气井多级压裂过程中地应力变化对套管载荷的影响[J]. 石油管材与仪器,2022,8(2):23-29.WU Jianzhong,ZHANG Xiaojun,LI Jun,et al. Influence of in-situ stress variation on casing load during multi-stage fracturing of shale gas well[J]. Petroleum Tubular Goods & Instruments,2022,8(2):23-29. [15]韩玲玲,李熙喆,刘照义,等. 川南泸州深层页岩气井套变主控因素与防控对策[J]. 石油勘探与开发,2023,50(4):853-861.HAN Lingling,LI Xizhe,LIU Zhaoyi,et al. Influencing factors and prevention measures of casing deformation in deep shale gas wells in Luzhou Block,southern Sichuan Basin,SW China[J]. Petroleum Exploration and Development,2023,50(4):853-861. [16]XI Y,LI J,LIU G H,et al. Numerical investigation for different casing deformation reasons in Weiyuan-Changning shale gas field during multistage hydraulic fracturing[J]. Journal of Petroleum Science and Engineering,2018,163:691-702. [17]李留伟,王高成,练章华,等. 页岩气水平井生产套管变形机理及工程应对方案——以昭通国家级页岩气示范区黄金坝区块为例[J]. 天然气工业,2017,37(11):91-99.LI Liuwei,WANG Gaocheng,LIAN Zhanghua,et al. Deformation mechanism of horizontal shale gas well production casing and its engineering solution:A case study on the Huangjinba Block of the Zhaotong National Shale Gas Demonstration Zone[J]. Natural Gas Industry,2017,37(11):91-99. [18]史彪彬,尹飞,陈朝伟,等. 页岩气井套管剪切-挤压-弯曲组合变形反演分析[J]. 石油管材与仪器,2022,8(6):54-59.SHI Biaobin,YIN Fei,CHEN Chaowei,et al. Inversion analysis and prediction of shear-extrusion-bending combination deformation of casing in shale gas wells[J]. Petroleum Tubular Goods & Instruments,2022,8(6):54-59. [19]INGRAFFEA A R,WELLS M T,SANTOROB R L,et al. Assessment and risk analysis of casing and cement impairment in oil and gas wells in Pennsylvania,2000-2012[J]. Proceedings of the National Academy of Sciences of the United States of America,2014,111(30):10955-10960. [20]张平,何昀宾,刘子平,等. 页岩气水平井套管的剪压变形试验与套变预防实践[J]. 天然气工业,2021,41(5):84-91.ZHANG Ping,HE Yunbin,LIU Ziping,et al. Shear compression deformation test and deformation prevention practice of casing in shale gas horizontal wells[J]. Natural Gas Industry,2021,41(5):84-91. [21]张忠铧,董晓明. 页岩气井套管变形原因分析及选材设计[J]. 石油管材与仪器,2020,6(4):24-29、37.ZHANG Zhonghua,DONG Xiaoming. Deformation analysis and material design of production casing for shale gas well[J]. Petroleum Tubular Goods & Instruments,2020,6(4):24-29,37. [22]DUSSEAULT M B. Geomechanical challenges in petroleum reservoir exploitation[J]. Ksce Journal of Civil Engineering,2011,15(4):669-678. [23]李军,陈勉,柳贡慧,等. 套管、水泥环及井壁围岩组合体的弹塑性分析[J]. 石油学报,2005,26(6):99-103.LI Jun,CHEN Mian,LIU Gonghui,et al. Elastic-plastic analysis of casing-concrete sheath-rock combination[J]. Acta Petrolei Sinica,2005,26(6):99-103. [24]郭雪利,李军,柳贡慧,等. 温-压作用下水泥环缺陷对套管应力的影响[J]. 石油机械,2018,46(4):112-118.GUO Xueli,LI Jun,LIU Gonghui,et al. Influence of cement sheath defect on casing stress under temperature-pressure effect[J]. China Petroleum Machinery,2018,46(4):112-118. [25]杨超,周建堃,张倩,等. 大庆深层致密气固井质量对完井套管受力变形规律的影响[J]. 化学工程与装备,2022,(11):161-162、165.YANG Chao,ZHOU Jiankun,ZHANG Qian,et al. Influence of cementing quality on stress and deformation of completion casing in Daqing deep tight gas reservoirs[J]. Chemical Engineering & Equipment,2022,(11):161-162,165. [26]范明涛,柳贡慧,李军,等. 页岩气井温压耦合下固井质量对套管应力的影响[J]. 石油机械,2016,44(8):1-5.FAN Mingtao,LIU Gonghui,LI Jun,et al. Effect of cementing quality on casing stress of shale gas well under heat-mechanical coupling[J]. China Petroleum Machinery,2016,44(8):1-5. [27]蒋可,李黔,陈远林,等. 页岩气水平井固井质量对套管损坏的影响[J]. 天然气工业,2015,35(12):77-82.JIANG Ke,LI Qian,CHEN Yuanlin,et al. Influence of cementing quality on casing failures in horizontal shale gas wells[J]. Natural Gas Industry,2015,35(12):77-82. [28]王典,李军,张伟,等. 吉木萨尔页岩油井水泥环性能评价[J]. 新疆石油天然气,2023,19(4):49-55.WANG D,LI Jun,ZHANG Wei,et al. Performance evaluation of the cement sheath in Jimsar shale oil wells[J]. Xinjiang Oil & Gas,2023,19(4):49-55. [29]林魂,宋西翔,孙新毅,等. 深层页岩气压裂井套管应力影响因素分析[J]. 石油机械,2022,50(6):84-90.LIN Hun,SONG Xixiang,SUN Xinyi,et al. Analysis of factors influencing casing stress in deep shale gas fractured wells[J]. China Petroleum Machinery,2022,50(6):84-90. [30]陈峥嵘. 页岩横观各向同性储层水平井井周应力预测模型[J]. 科学技术与工程,2017,17(24):26-31.CHEN Zhengrong. Prediction model of borehole stress of horizontal well in transversely isotropy shale gas formation[J]. Science Technology and Engineering,2017,17(24):26-31. [31]刘奎,高德利,王宴滨,等. 局部载荷对页岩气井套管变形的影响[J]. 天然气工业,2016,36(11):76-82.LIU Kui,GAO Deli,WANG Yanbin,et al.Effects of local load on shale gas well casing deformation[J]. Natural Gas Industry,2016,36(11):76-82. [32]席岩,李军,梅博文,等. 体积压裂过程中岩性界面对套管应力影响研究[J]. 石油机械,2018,46(5):115-121.XI Yan,LI Jun,MEI Bowen,et al. Effect of lithology interface on casing stress during stimulated reservoir volume fracturing[J]. China Petroleum Machinery,2018,46(5):115-121. [33]林志伟,钟守明,宋琳,等. 体积压裂改造非对称性对套管损坏影响机理[J]. 特种油气藏,2021,28(6):158-164.LIN Zhiwei,ZHONG Shouming,SONG Lin,et al. Study on the mechanism of the asymmetry effect of SRV fracturing on casing damage[J]. Special Oil & Gas Reservoirs,2021,28(6):158-164. [34]李皋,李泽,蒋祖军,等. 页岩-液体作用对套管变形的影响研究[J]. 西南石油大学学报:自然科学版,2021,43(1):103-110.LI Gao,LI Ze,JIANG Zujun,et al. A study on the effect of shale-liquid reaction on casing deformation[J]. Journal of Southwest Petroleum University (Science & Technology Edition),2021,43(1):103-110. [35]彭斐. 考虑水化膨胀的泥页岩油藏数值模拟研究[D].山东青岛:中国石油大学(华东),2021.PENG Fei. Numerical simulation study of mud shale reservoirs considering hydration expansion[D]. Qingdao,Shandong:China University of Petroleum (East China),2021. [36]李军,赵超杰,柳贡慧,等. 页岩气压裂条件下断层滑移及其影响因素[J]. 中国石油大学学报:自然科学版,2021,45(2):63-70.LI Jun,ZHAO Chaojie,LIU Gonghui,et al. Assessment of fault slip in shale formation during hydraulic fracturing and its influence factors[J]. Journal of China University of Petroleum (Edition of Natural Science),2021,45(2):63-70. [37]赵超杰. 页岩气多级压裂井套管变形失效机理及试验研究[D]. 北京:中国石油大学(北京),2023.ZHAO Chaojie. Failure mechanism and experimental study on casing deformation in multi-stage fracturing wells of shale gas[D]. Beijing:China University of Petroleum (Beijing),2023. [38]DANESHY A A. Impact of off-balance fracturing on borehole stability and casing failure[C]. SPE Western Regional Meeting,Irvine,California,2005:SPE-93620-MS. [39]赵欢,李玮,唐鹏飞,等. 压裂工况下近井筒地应力及套管载荷分布规律研究[J]. 石油钻探技术,2023,51(5):106-111.ZHAO Huan,LI Wei,TANG Pengfei,et al. Study on the distribution law of near-wellbore in-situ stress and casing load under fracturing conditions[J]. Petroleum Drilling Techniques,2023,51(5):106-111. [40]付盼,廖明豪,田中兰,等. 页岩气水平井压裂中地层滑移数值模拟研究[J]. 石油机械,2019,47(4):73-79.FU Pan,LIAO Minghao,TIAN Zhonglan,et al. Numerical simulation of formation slippage in shale gas horizontal well fracturing[J]. China Petroleum Machinery,2019,47(4):73-79. [41]陈朝伟,张浩哲,周小金,等. 四川长宁页岩气套管变形井微地震特征分析[J]. 石油地球物理勘探,2021,56(6):1286-1292、1198.CHEN Zhaowei,ZHANG Haozhe,ZHOU Xiaojin,et al. Microseismic characteristics of shale gas wells with casing deformation in Changning,Sichuan[J]. Oil Geophysical Prospecting,2021,56(6):1286-1292,1198. [42]陈朝伟,宋毅,青春,等. 四川长宁页岩气水平井压裂套管变形实例分析[J]. 地下空间与工程学报,2019,15(2):513-524.CHEN Zhaowei,SONG Yi,QING Chun,et al. A Case study on casing deformation of horizontal well during hydraulic fracturing in Sichuan Changning[J]. Chinese Journal of Underground Space and Engineering,2019,15(2):513-524. [43]张小军. 页岩气井多级压裂过程中孔隙压力变化特征及其对套管变形的影响[D]. 北京:中国石油大学(北京),2022.ZHANG Xiaojun. Study on the characteristics of pore pressure changes during multi-stage fracturing of shale gas wells and its influence on casing deformation[D]. Beijing:China University of Petroleum (Beijing),2022. [44]于浩,练章华,林铁军,等. 页岩气体积压裂过程中套管失效机理研究[J]. 中国安全生产科学技术,2016,12(10):37-43.YU Hao,LIAN Zhanghua,LIN Tiejun,et al. Study on failure mechanism of casing in stimulated reservoir volume fracturing of shale gas[J]. Journal of Safety Science and Technology,2016,12(10):37-43. [45]尹飞,韩礼红,陈颖杰,等. 页岩气井压裂套管变形评价及水泥环性能优化[J]. 石油管材与仪器,2020,6(4):41-45.YIN Fei,HAN Lihong,CHEN Yingjie,et al. Assessment of casing deformation and optimization of cement sheath performance under fracturing shale gas wells[J]. Petroleum Tubular Goods and Instruments,2020,6(4):41-45. [46]ZHANG N,WANG P,LI J L,et al. A study on the mechanism of casing deformation and its control strategies in shale oil hydraulic fracturing[J]. Processes,2023,11(8):2437. [47]赵元伟,李鹏翔,李嘉浩,等. 泸203区块页岩气水平井固井液体系与施工技术[J]. 河南化工,2021,38(10):26-29.ZHAO Yuanwei,LI Pengxiang,LI Jiahao,et al. Cementing fluid system and construction technology for shale gas horizontal wells in Lu203 Block[J]. Henan Chemical Industry,2021,38(10):26-29. [48]席岩,李军,汪伟,等. 利用绕层固井装置提高页岩气井套管完整性[J]. 中国石油大学学报:自然科学版,2021,45(3):82-87.XI Yan,LI Jun,WANG Wei,et al.Study on improvement of casing integrity by using a bypass cementing device in shale gas wells[J]. Journal of China University of Petroleum (Edition of Natural Sciences),2021,45(3):82-87. [49]孟胡,吕振虎,王晓东,等. 基于压裂参数优化的套管剪切变形控制研究[J]. 断块油气田,2023,30(4):601-608.MENG Hu,LV Zhenhu,WANG Xiaodong,et al. Research on casing shear deformation control by optimizing fracturing parameters[J]. Fault-Block Oil & Gas Field,2023,30(4):601-608. [50]陈朝伟,黄锐,曾波,等. 四川盆地长宁页岩气区块套管变形井施工参数优化分析[J]. 石油钻探技术,2020,49(1):93-100.CHEN Zhaowei,HUANG Rui,ZENG Bo,et al. Analysis and optimization of construction parameters for preventing casing deformation in the Changning Shale Gas Block,Sichuan Basin[J]. Petroleum Drilling Techniques,2020,49(1):93-100. [51]张丽萍,杜金玲,田志宏,等. 新疆油田利用地震资料预测套管变形技术[J]. 新疆石油天然气,2022,18(3):86-91.ZHANG Liping,DU Jinling,TIAN Zhihong,et al. Application of seismic-based casing deformation prediction technology in Xinjiang Oil Field[J]. Xinjiang Oil and Gas,2022,18(3):86-91. [52]刘学伟,田福春,李东平,等. 沧东凹陷孔二段页岩压裂套变原因分析及预防对策[J]. 石油钻采工艺,2022,44(1):77-82.LIU Xuewei, TIAN Fuchun, LI Dongping, et al. Cause analysis and preventive countermeasures for casing deformation when fracturing shale in Kong 2 member in Cangdong Sag[J]. Oil Drilling & Production Technology,2022,44(1):77-82. [53]林鹤,赵予凤,徐刚,等. 吉木萨尔页岩油水力压裂套管变形预测方法[C]. 中国石油学会石油物探专业委员会,中国地球物理学会勘探地球物理委员会. 2022年中国石油物探学术年会论文集(下册),海南海口:石油地球物理勘探编辑部,2022:396-399.LIN He,ZHAO Yufeng,XU Gang,et al. Prediction method of casing deformation during hydraulic fracturing in Jimusaer shale oil [C]. Society of Petroleum Geophysicists;Exploration Geophysics Committee of Chinese Geophysical Society. Proceedings of the 2022 China Petroleum Geophysical Exploration Academic Annual Conference (Volume 2),Haikou,Hainan:Edition Department of Oil Geophysical Prospecting,2022:396-399. [54]ZHANG H X,TONG H M,ZHANG P,et al. How can casing deformation be prevented during hydraulic fracturing of shale gas?-A case study of the Weiyuan area in Sichuan,China[J]. Journal of Petroleum Science and Engineering,2023,221(11):111251. [55]任山,曾韦,刘斌,等. 浅层页岩气暂堵工艺技术及应用[C]. 中国石油学会天然气专业委员会. 第32届全国天然气学术年会(2020)论文集,重庆:中国石油学会天然气专业委员会,2020:3127-3137.REN Shan,ZENG Wei,LIU Bin,et al. Temporary plugging technology and its application in shallow shale gas [C]. Natural Gas Committee of Chinese Petroleum Society. Proceedings of the 32nd National Natural Gas Academic Annual Conference (2020),Chongqing:Natural Gas Committee of Chinese Petroleum Society,2020:3127-3137. [56]付海峰,刘鹏林,陈祝兴,等. 基于避免断层激活机制的组合压裂模式研究[J]. 石油机械,2024,52(1):88-97.FU Haifeng,LIU Penglin,CHEN Zhuxing,et al. Combined fracturing mode based on avoiding fault activation mechanism[J]. China Petroleum Machinery,2024,52(1):88-97. [57]陈朝伟,项德贵. 四川盆地页岩气开发套管变形一体化防控技术[J]. 中国石油勘探,2022,27(1):135-141.CHEN Zhaowei,XIANG Degui. Integrated prevention and control technology of casing deformation in shale gas development well in Sichuan Basin[J]. China Petroleum Exploration,2022,27(1):135-141. |
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