[1] 刘洪平,赵彦超,孟俊,等. 压裂水平井产能预测方法研究综述[J]. 地质科技情报, 2015, 34(1):131-139. LIU Hongping, ZHAO Yanchao, MENG Jun, et al. A method of predicting the fractured horizontal well production[J]. Geological Science and Technology Information, 2015, 34(1):131-139. [2] 樊好福,臧艳彬,张金成,等. 深层页岩气钻井技术难点与对策[J]. 钻采工艺, 2019, 42(3):20-23. doi:10.3969/J.ISSN.1006-768X.2019.03.06 FAN Haofu, ZANG Yanbin, ZHANG Jincheng, et al. Technical difficulties and countermeasuresof deep shale gas drilling[J]. Drilling & Production Technology, 2019, 42(3):20-23. doi:10.3969/J.ISSN.1006-768X.2019.03.06 [3] ZOBACK M D, KOHLI A, DAS I, et al. The importance of slow slip on faults during hydraulic fracturing stimulation of shale gas reservoirs[C]. Pittsburgh, Pennsylvania USA:SPE Americas Unconventional Resources Conference, 2012. doi:10.2118/155476-MS [4] 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 Chaowei, 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. [5] XI Yan, LI Jun, ZHA Chunqing, et al. A new investigation on casing shear deformation during multistage fracturing in shale gas wells based on microseism data and calliper surveys[J]. Journal of Petroleum Science and Engineering, 2019, 180:1034-1045. doi:10.1016/j.petrol.2019.05.079 [6] LIU Kui, TALEGHANI A D, GAO Deli. Calculation of hydraulic fracture induced stress and corresponding fault slippage in shale formation[J]. Fuel, 2019, 254:115525. doi:10.1016/j.fuel.2019.05.108 [7] FURUI K, FUH G, ABDELMALEK N A, et al. A comprehensive modeling analysis of borehole stability and production-liner deformation for inclined/horizontal wells completed in a highly compacting chalk formation[C]. SPE Drilling & Completion, 2010. doi:10.2118/123651-PA [8] LIAN Zhanghua, YU Hao, LIN Tiejun, et al. A study on casing deformation failure during multi-stage hydraulic fracturing for the stimulated reservoir volume of horizontal shale wells[J]. Journal of Natural Gas Science and Engineering, 2015, 23:538-546. doi:10.1016/j.jngse.2015.02.028 [9] LIN Tiejun, YU Hao, LIAN Zhanghua, et al. Numerical simulation of the influence of stimulated reservoir volume on in-situ stress field[J]. Journal of Natural Gas Science and Engineering, 2016, 36:1228-1238. doi:10.1016/j.jngse.2016.03.040 [10] 于浩. 体积压裂过程中套管失效机理研究[D]. 成都:西南石油大学, 2015. YU Hao. Study on casing failure mechanism during SRV fracturing[D]. Chengdu:Southwest petroleum university, 2015. [11] 席岩,柳贡慧,李军,等. 力-热耦合作用下套管应力瞬态变化研究[J]. 石油机械, 2017, 45(6):8-12. doi:10.16082/j.cnki.issn.1001-4578.2017.06.003 XI Yan, LIU Gonghui, LI Jun. et al. Study on casing transient stress under thermo-mechanical coupling effect[J]. China Petroleum Machinery, 2017, 45(6):8-12. doi:10.16082/j.cnki.issn.1001-4578.2017.06.003 [12] 席岩,李军,柳贡慧,等. 瞬态力-热耦合作用下水泥环形态对套管应力的影响[J]. 断块油气田, 2017, 24(5):700-704. doi:10.6056/dkyqt201705023 XI Yan, LI Jun, LIU Gonghui, et al. Impact analysis of cement sheath shape on casing stress under transient mechanical-thermal coupling effect[J]. Fault-Block Oil & Gas Field, 2017, 24(5):700-704. doi:10.6056/dkyqt201705023 [13] 麦洋,莫丽,傅栋,等. 固井质量对页岩气井水平井段套管失效的影响[J]. 石油机械, 2019, 47(12):123-130. doi:10.16082/j.cnki.issn.1001-4578.2019.12.019 MAI Yang, MO Li, FU Dong, et al. Effect of cementing quality on casing failure in horizontal section of shale gas well[J]. China Petroleum Machinery, 2019, 47(12):123-130. doi:10.16082/j.cnki.issn.1001-4578.2019.12.019 [14] 窦益华,韦堃,罗敬兵,等. 水泥环缺失对水平井套管强度安全性影响分析[J]. 石油机械, 2019, 47(9):17-22. doi:10.16082/j.cnki.issn.1001-4578.2019.09.003 DOU Yihua, WEI Kun, LUO Jingbin, et al. Analysis of the influence of cement sheath absence on casing strength safety in horizontal well[J]. China Petroleum Machinery, 2019, 47(9):17-22. doi:10.16082/j.cnki.issn.1001-4578.2019.09.003 [15] 朱宝龙,李晓宁,巫锡勇,等. 黑色页岩遇水膨胀微观特征试验研究[J]. 岩石力学与工程学报, 2015, 34(S2):3896-3905. doi:10.13722/j.cnki.jrme.2014.1147 ZHU Baolong, LI Xiaoning, WU Xiyong, et al. Experimental study of micro-characteristics of swelling for black shale under influence of water[J]. Chinese Journal of Rock Mechanics and Engineering, 2015, 34(S2):3896-3905. doi:10.13722/j.cnki.jrme.2014.1147 [16] 滕学清,陈勉,金衍,等. 致密地层井壁失稳的孔隙弹性动力学机理研究[J]. 石油科学通报, 2017, 2(4):478-489. doi:10.3969/j.issn.2096-1693.2017.04.044 TENG Xueqing, CHEN Mian, JIN Yan, et al. Poroelastic dynamics mechanisms of wellbore instability in tight formations[J]. Petroleum Science Bulletin, 2017, 2(4):478-489. doi:10.3969/j.issn.2096-1693.2017.04.044 [17] 肖京男,方春飞,周仕明,等. 泡沫分数对泡沫水泥性能的影响规律分析[J]. 钻井液与完井液, 2015, 32(5):69-72. doi:10.3696/j.issn.1001-5620.2015.05.017 XIAO Jingnan, FANG Chunfei, ZHOU Shiming, et al. Effect of gas volume fraction in foam on performance of foam cement slurry[J]. Drilling Fluid & Completion Fluid, 2015, 32(5):69-72. doi:10.3696/j.issn.1001-5620.2015.05.017 [18] 杨斌,练章华. 射孔套管抗挤强度综合因素有限元分析[J]. 石油钻采工艺, 2005, 27(6):27-29. doi:10.13639/j.odpt.2005.06.009 YANG Bin, LIAN Zhanghua. Finite element analyses on synthetic factors of perforating casing's collapse strength[J]. Oil Drilling & Production Technology, 2005, 27(6):27-29. doi:10.13639/j.odpt.2005.06.009 [19] 唐汝众,王同涛,闫相祯,等. 射孔参数对套管强度影响的有限元分析[J]. 石油机械, 2010, 38(1):32-34. doi:10.16082/j.cnki.issn.1001-4578.2010.01.010 TANG Ruzhong, WANG Tongtao, YAN Xiangzhen, et al. Finite element analysis of the influence of perforating parameters on casing strength[J]. China Petroleum Machinery, 2010, 38(1):32-34. doi:10.16082/j.cnki.issn.1001-4578.2010.01.010 |