[1] 自然资源部油气资源战略研究中心. 煤层气资源动态评价[M]. 北京:地质出版社,2017.
Strategic Research Center of Oil and Gas Resources, Ministry of Natural Resources. Evaluation of coalbed methane resources[M]. Beijing: Geological Publishing House, 2017.
[2] 秦勇,申建,史锐. 中国煤系气大产业建设战略价值与战略选择[J].煤炭学报,2022,47(1):371-387.
Qin Yong, Shen Jian, Shi Rui. Strategic value and choice on construction of large CMG industry in China [J]. Journal of China Coal Society, 2022,47(1):371-387.
[3] 吴裕根,门相勇,娄钰. 我国“十四五”煤层气勘探开发新进展与前景展望[J]. 中国石油勘探,2024,29(1):1-13.
Wu Yugen, Men Xiangyong, Lou Yu. New progress and prospect of coalbed methane exploration and development in China during the 14th Five-Year Plan period [J]. China Petroleum Exploration, 2024,29(1):1-13.
[4] 徐凤银,闫霞,李曙光,等. 鄂尔多斯盆地东缘深部( 层) 煤层气勘探开发理论技术难点与对策[J]. 煤田地质与勘探,2023,51(1):115-130.
Xu Fengyin, Yan Xia, Li Shuguang, et al . Theoretical and technological difficulties and countermeasures of deep CBM exploration and development in the eastern edge of Ordos Basin[J]. Coal Geology & Exploration, 2023,51(1):115-130.
[5] 刘建忠,朱光辉,刘彦成,等. 鄂尔多斯盆地东缘深部煤层气勘探突破及未来面临的挑战与对策:以临兴—神府区块为例[J]. 石油学报,2023,44(11):1827-1839.
Liu Jianzhong, Zhu Guanghui, Liu Yancheng, et al .Breakthrough, future challenges and countermeasures of deep coalbed methane in the eastern margin of Ordos Basin: a case study of Linxing-Shenfu block [J]. Acta Petrolei Sinica, 2023,44(11):1827-1839.
[6] 姚红生,肖翠,陈贞龙,等. 延川南深部煤层气高效开发调整对策研究[J]. 油气藏评价与开发,2022,12(4):545-555.
Yao Hongsheng, Xiao Cui, Chen Zhenlong, et al . Adjustment countermeasures for efficient development of deep coalbed methane in southern Yanchuan CBM Field [J]. Reservoir Evaluation and Development, 2022,12(4):545-555.
[7] 郭绪杰,支东明,毛新军,等. 准噶尔盆地煤岩气的勘探发现及意义[J]. 中国石油勘探,2021,26(6):38-49.
Guo Xujie, Zhi Dongming, Mao Xinjun, et al . Discovery and significance of coal measure gas in Junggar Basin [J]. China Petroleum Exploration, 2021,26(6):38-49.
[8] 石军太,曹敬添,徐凤银,等. 深部煤层气游离气饱和度计算模型及其应用[J]. 煤田地质与勘探,2024,52(2):134-146.
Shi Juntai, Cao Jingtian, Xu Fengyin, et al . A calculation model of free gas saturation in deep coalbed methane reservoirs and its application [J]. Coal Geology & Exploration, 2024,52(2):134-146.
[9] 郗兆栋,唐书恒,刘忠,等. 宁武盆地南部深部煤层气临界深度与成藏特征[J]. 天然气工业,2024,44(1):108-118.
Xi Zhaodong, Tang Shuheng, Liu Zhong, et al . Critical depth and accumulation characteristics of deep coalbed methane in the southern Ningwu Basin [J]. Natural Gas Industry, 2024,44(1):108-118.
[10] 何发岐,董昭雄. 深部煤层气资源开发潜力:以鄂尔多斯盆地大牛地气田为例[J]. 石油与天然气地质,2022,43(2):277-285.
He Faqi, Dong Zhaoxiong. Development potential of deep coalbed methane: a case study in the Daniudi gas field, Ordos Basin [J]. Oil & Gas Geology, 2022,43(2):277-285.
[11] 范立红,韩晟,宋鑫,等. 大城游离气与吸附气AVO 地震响应特征差异研究与应用[J]. 中国煤层气,2021,18(4):7-10.
Fan Lihong, Han Sheng, Song Xin, et al . Study and application of AVO seismic response characteristics difference between free gas and adsorbed gas in Dacheng Rise [J]. China Coalbed Methane, 2021,18(4):7-10.
[12] 石军太,范倩雯,曹运兴,等. 煤储层酸化氧化试剂体系优选及增产效果评价[J]. 煤炭学报,2024,49(4):1989-2003.
Shi Juntai, Fan Qianwen, Cao Yunxing, et al . Acidification oxidation reagent system optimization on coal seams and stimulation effect evaluation [J]. Journal of China Coal Society, 2024,49(4):1989-2003.
[13] 刘婷芝,张伟,赵丹,等. 砂岩储层应力敏感性及其对单井产能的影响:以四川盆地JQ 气田为例[J]. 天然气勘探与开发,2024,47(4):81-88.
Liu Tingzhi, Zhang Wei, Zhao Dan, et al . Stress sensitivity of sandstone reservoirs and its impact on well productivity: a case study of JQ gas field in Sichuan Basin [J]. Natural Gas Exploration and Development, 2024,47(4):81-88.
[14] 熊波,刘坤,郭凯,等. 基于X-CT 技术对黔西滇东区域煤储层物性特征的研究[J]. 石油实验地质,2016,38(3):407-412.
Xiong Bo, Liu Kun, Guo Kai, et al . Characterization of the physical properties of coal reservoirs in the western Guizhou and eastern Yunnan by X-ray computed tomography [J]. Petroleum Geology & Experiment, 2016,38(3):407-412.
[15] 陈振宏,陈艳鹏,杨焦生,等. 高煤阶煤层气储层动态渗透率特征及其对煤层气产量的影响[J]. 石油学报,2010,31(6):966-969.
Chen Zhenhong, Chen Yanpeng, Yang Jiaosheng, et al . Reservoir dynamic permeability of high rank coalbed methane and its effect on the coalbed methane output [J]. Acta Petrolei Sinica, 2010,31(6):966-969.
[16] 贾慧敏,孙世轩,毛崇昊,等. 基于煤岩应力敏感性的煤层气井单相流产水规律研究[J]. 煤炭科学技术,2017,45(12):189-193.
Jia Huimin, Sun Shixuan, Mao Chonghao, et al . Study on single-phase flow water production law of coalbed methane well based on coal and rock stress sensitivity [J]. Coal Science and Technology, 2017,45(12):189-193.
[17] 田永东,武杰. 沁水盆地南部高煤阶煤储层敏感性[J]. 煤炭学报,2014,39(9):1835-1839.
Tian Yongdong, Wu Jie. Sensitivity of high-rank coal-bed methane reservoir in the Southern Qinshui Basin [J]. Journal of China Coal Society, 2014,39(9):1835-1839.
[18] 杨延辉,陈彦君,郭希波,等. 沁水盆地南部高煤阶煤岩渗透率压敏效应分析[J]. 煤炭科学技术,2015,43(12):152-156.
Yang Yanhui, Chen Yanjun, Guo Xibo, et al . Analysis on effect of stress sensitivity on permeability of high-rank coal in southern Qinshui Basin [J]. Coal Science and Technology, 2015,43(12):152-156.
[19] 鲍清英,东振,张义,等. 低煤阶应力敏感性机理及其对产气的影响:以二连盆地为例[J]. 煤炭学报,2017,42(3):671-679.
Bao Qingying, Dong Zhen, Zhang Yi, et al . Stress sensitivity mechanism of low-rank coal and its influence on gas production: a case study from Erlian Basin [J]. Journal of China Coal Society, 2017,42(3):671-679.
[20] 陈术源,秦勇,申建,等. 高阶煤渗透率温度应力敏感性试验研究[J].煤炭学报,2014,39(9):1845-1851.
Chen Shuyuan, Qin Yong, Shen Jian, et al . Temperaturestress sensitivity of high-rank coal permeability [J]. Journal of China Coal Society, 2014,39(9):1845-1851.
[21] 薛培,高潮. 有效应力对保德区块煤储层渗透率影响研究[J]. 地质与勘探,2016,52(2):334-339.
Xue Pei, Gao Chao. Study on influence of effective stress on coal reservoir permeability in the Baode block [J]. Geology and Exploration, 2016,52(2):334-339.
[22] Somerton W H, S?ylemezoglu I M, Dudley R C. Effect of stress on permeability of coal [J]. International Journal of Rock Mechanics and Mining Sciences, 1975,12(5).
[23] 李孟涛,姚尚林,单文文. 低渗透气藏应力敏感性实验研究[J]. 大庆石油地质与开发,2006,(6):69-72,123-124.
Li Mengtao, Yao Shanglin, Shan Wenwen. Lab research on stress sensitivity of low permeability gas reservoirs [J]. Petroleum Geology and Oilfield Development in Daqing, 2006(6):69-72,123-124.
[24] 石玉江,孙小平. 长庆致密碎屑岩储集层应力敏感性分析[J]. 石油勘探与开发,2001,28(5):85-87,5,14.
Shi Yujiang, Sun Xiaoping. Stress sensitivity analysis of Changqing tight clastic reservoir [J]. Petroleum Exploration and Development, 2001,28(5):85-87,5,14.
[25] Vairogs J, Hearn C L, Dareing D W, et al . Effect of rock stress on gas production from low-permeability reservoirs [J]. Journal of Petroleum Technology, 1971,23(9):1161-1167.
[26] 代平,孙良田,李闽. 低渗透砂岩储层孔隙度、渗透率与有效应力关系研究[J]. 天然气工业,2006,26(5):93-95.
Dai Ping, Sun Liangtian, Li Min. Study on relation between porosity/permeability and effective stress of sand reservoir with low permeability [J]. Natural Gas Industry, 2006,26(5):93-95.
[27] 郭为,熊伟,高树生. 页岩气藏应力敏感效应实验研究. 特种油气藏,2012(1):95-97.
Guo Wei, Xiong Wei, Gao Shusheng. Experimental study on stress sensitivity of shale gas reservoirs [J]. Special Oil & Gas Reservoirs, 2012,19(1):95-97.
[28] 郭平,张俊,杜建芬,等. 采用两种实验方法进行气藏岩芯应力敏感研究[J]. 西南石油大学学报(自然科学版),2007,(2):7-9,178.
Guo Ping, Zhang Jun, Du Jianfen, et al . Study on core stress sensitivity for gas reservoir with two experiment method[J]. Journal of Southwest Petroleum University (Science & Technology Edition), 2007,(2):7-9,178.
[29] Wilhelmi B, Somerton W H. Simultaneous measurement of pore and elastic properties of rocks under triaxial stress conditions [J]. Society of Petroleum Engineers Journal, 1967,7(3):283-294.
[30] 赵群,王红岩,李景明,等. 快速排采对低渗透煤层气井产能伤害的机理研究[J]. 山东科技大学学报( 自然科学版),2008,27(3):27-31.
Zhao Qun, Wang Hongyan, Li Jingming, et al . Study on mechanism of harm to CBM well capability in low permeability seam with quick drainage method [J]. Journal of Shandong University of Science and Technology (Natural Science), 2008,27(3):27-31.
[31] 李金海,苏现波,林晓英,等. 煤层气井排采速率与产能的关系[J].煤炭学报,2009,34(3):376-380.
Li Jinhai, Su Xianbo, Lin Xiaoying, et al . Relationship between discharge rate and productivity of coalbed methane wells [J]. Journal of China Coal Society, 2009,34(3):376-380.
[32] 刘升贵,张新亮,袁文峰,等. 煤层气井煤粉产出规律及排采管控实践[J]. 煤炭学报,2012,37( 增刊2):412-415.
Liu Shenggui, Zhang Xinliang, Yuan Wenfeng, et al . Regularity of coal powder production and concentration control method during CBM well drainage [J]. Journal of China Coal Society, 2012,37(S2): 412-415.
[33] Gao Lijun, Tang Dazhen, Xu Hao, et al . Geologically controlling factors on coal bed methane (CBM) productivity in Liulin [J]. Journal of Coal Science and Engineering,2012,18(4):362-367.
[34] 陶树,汤达祯,许浩,等. 沁南煤层气井产能影响因素分析及开发建议[J]. 煤炭学报,2011,36(2):194-198.
Tao Shu, Tang Dazhen, Xu Hao, et al . Analysis on influence factors of coalbed methane wells productivity and development proposals in southern Qinshui Basin [J]. Journal of China Coal Society, 2011,36(2):194-198.
[35] 吴亚红,赵仁保,刘清华. 低渗储层敏感性实验方法及评价研究[J].钻采工艺,2009,32(5):87-89.
Wu Yahong, Zhao Renbao, Liu Qinghua. Sensitivity experimental solution and its evaluation study of low permeability reservoir [J]. Drilling & Production Technology, 2009,32(5):87-89.
[36] 庞涛,黄军平,周越骑,等. 低煤阶煤层气井排采初期压降幅度研究[J]. 中国煤炭地质,2015,27(3):20-23.
Pang Tao, Huang Junping, Zhou Yueqi, et al . Study on pressure drop extent during initial drainage stage in low rank coal CBM wells [J]. Coal Geology of China, 2015,27(3):20-23.
[37] 孟召平,侯安琪,张鹏,等. 沁水盆地典型煤矿区煤的流速敏感性实验及控制机理[J]. 煤炭学报,2017,42(10):2649-2656.
Meng Zhaoping, Hou Anqi, Zhang Peng, et al . Experimental study on flow rate sensitivity of coal in typical coal mining area of Qinshui Basin and its control mechanism [J]. Journal of China Coal Society, 2017,42(10):2649-2656.
[38] Tao Shu, Tang Dazhen, Xu Hao, et al . Fluid velocity sensitivity of coal reservoir and its effect on coalbed methane well productivity: a case of Baode Block, northeastern Ordos Basin, China [J]. Journal of Petroleum Science and Engineering,2017,152:229-237.
[39] 陈振宏,王一兵,孙平. 煤粉产出对高煤阶煤层气井产能的影响及其控制[J]. 煤炭学报,2009,34(2):229-232.
Chen Zhenhong, Wang Yibing, Sun Ping. Destructive influences and effectively treatments of coal powder to high rank coalbed methane production [J]. Journal of China Coal Society, 2009,34(2):229-232.
[40] 白建梅,陈浩,祖世强,等. 煤层气多分支水平井煤粉形成机理初步认识[C]//2010 年全国煤层气学术研讨会论文集. 苏州:全国煤层气学术研讨会,2010.
Bai Jianmei, Chen Hao, Zu Shiqiang, et al . Preliminary understanding of coal powder formation mechanism in coalbed methane multi-branch horizontal wells [C]//Proceedings of the 2010 National Coalbed Methane Academic Seminar. Suzhou: National Coalbed Methane Academic Seminar, 2010.
[41] 冯文光. 煤层气藏工程[M]. 北京:科学出版社,2009.
Feng Wenguang. Coalbed methane reservoir engineering [M]. Beijing: Science Press, 2009.
[42] 冯其红,张先敏,胡爱梅,等. 煤层气藏工程[M]. 东营:中国石油大学出版社,2016.
Feng Qihong, Zhang Xianmin, Hu Aimei, et al . Coalbed methane reservoir engineering [M]. Dongying: China University of Petroleum Press, 2016.
[43] 石军太,李相方,徐兵祥,等. 煤层气解吸扩散渗流模型研究进展[J].中国科学:物理学 力学 天文学,2013,43(12):1548-1557.
Shi Juntai, Li Xiangfang, Xu Bingxiang, et al . Research progress on desorption diffusion seepage models of coalbed methane[J]. Scientia Sincia: Physics, Mechanics & Astronomica, 2013, 43(12):1548-1557.
[44] 胡爱梅,陈东. 煤层气开采基础理论[M]. 北京:科学出版社,2015.
Hu Aimei, Chen Dong. Fundamental theory of coalbed methane extraction [M]. Beijing: Science Press, 2015.
[45] Sun Zheng, Shi Juntai, Wang Ke, et al . The gas-water two phaseflow behavior in low-permeability CBM reservoirs with multiplemechanisms coupling [J]. Journal of Natural Gas Science and Engineering, 2018,52:82-93.
[46] 李相方,石军太,杜希瑶,等. 煤层气藏开发降压解吸气运移机理[J].石油勘探与开发,2012,39(2):203-213.
Li Xiangfang, Shi Juntai, Du Xiyao, et al . Transport mechanism of desorbed gas in coalbed methane reservoirs [J]. Petroleum Exploration and Development, 2012,39(2):203-213.
[47] 李相方,蒲云超,孙长宇,等. 煤层气与页岩气吸附/ 解吸的理论再认识[J]. 石油学报,2014,35(6):1113-1129.
Li Xiangfang, Pu Yunchao, Sun Changyu, et al . Recognition of absorption/desorption theory in coalbed methane reservoir and shale gas reservoir [J]. Acta Petrolei Sinica, 2014,35(6):1113-1129.
[48] 中国国家标准化管理委员会. 煤和岩石物理力学性质测定方法第9部分:煤和岩石三轴强度及变形参数测定方法:GB/T 23561.9—2009[S]. 北京:中国标准出版社,2009.
The Standardization Administration of China. Methods for determining the physical and mechanical properties of coal and rock—Part 9: methods for determining the triaxial strength and deformation parameters of coal and rock: GB/T 23561.9—2009[S]. Beijing: Standards Press of China, 2009.
[49] 油气田开发专业标准化委员会. 储层敏感性流动实验评价方法:SY/T 5358—2010[S]. 北京:石油工业出版社,2010.
Standardization Committee for Oil and Gas Field Development.Formation damage evaluation by flow test: SY/T 5358—2010[S]. Beijing: Petroleum Industry Press, 2010.
[50] Dong J J, Hsu J Y, Wu W J, et al . Stress-dependence of the permeability and porosity of sandstone and shale from TCDP Hole-A [J]. International Journal of Rock Mechanics and Sciences, 2010,47(7):1141-1157.
[51] Shi J, Wang S, Zhang H, et al . A novel method for formation evaluation of undersaturated coalbed methane reservoirs using dewatering data [J]. Fuel. 2018,229:44-52.
[52] Shi J, Wang S, Wang K, et al . An accurate method for permeability evaluation of undersaturated coalbed methane reservoirs using early dewatering data [J]. International Journal of Coal Geology. 2019,202:147-160.
[53] Shi J, Hou C, Wang S, et al . The semi-analytical productivity equations for vertically fractured coalbed methane wells considering pressure propagation process, variable mass flow, and fracture conductivity decrease [J]. Journal of Petroleum Science and Engineering. 2019,178:528-543.
[54] Shi J, Jia Y, Wu J, et al . Dynamic performance prediction of coalbed methane wells under the control of bottom-hole pressure and casing pressure [J]. Journal of Petroleum Science and Engineering. 2021,196:107799.
[55] 王美楠,蔡晖,何新容,等. 应力敏感特低渗气藏绝对无阻流量计算新方法[J]. 油气井测试,2024,33(1):67-71.
Wang Meinan, Cai Hui, He Xinrong, et al . A new method for calculating absolute open flow rate of stress sensitive ultra-low permeability gas reservoirs [J]. Well Testing, 2024,33(1):67-71.
[56] Morrow C, Shi L, Byerlee J. Permeability of fault gouge under confining pressure and shear stress [J]. Journal of Geophysical Research. 1984, 89: 3193-3200.
[57] Shi T, Wang C. Pore pressure generation in sedimentary basins: overloading versus aquathermal [J]. Journal of Geophysical Research. 1986,91(B2):2153-2162.
[58] Ghabezloo S, Sulem J, Gue′don S, et al . Effective stress law for the permeability of a limestone [J]. International Journal of Rock Mechanics & Mining Sciences. 2009,46(2):297-306.
[59] Shi J, Li X, Li Q, et al . Gas permeability model considering rock deformation and slippage in low permeability waterbearing gas reservoirs [J]. Journal of Petroleum Science & Engineering. 2014,120:61-72.
[60] 张杜杰. 超深致密砂岩气藏应力敏感性实验研究[J]. 复杂油气藏,2024,17(2):217-224.
Zhang Dujie. Experimental study on stress sensitivity of ultradeep tight sandstone gas reservoirs [J]. Complex Hydrocarbon Reservoirs, 2024,17(2):217-224.
[61] 郑玲丽,王思慧,肖文联, 等. 四川盆地南部地区须家河组致密砂岩应力敏感性特征[J/OL]. 油气地质与采收率,1-10.
Zheng Lingli, Wang Sihui, Xiao Wenlian, et al . Stress sensitivity characteristics of tight sandstone of Xujiahe Formation in southern part of Sichuan Basin [J/OL]. Petroleum Geology and Recovery Efficiency, 1-10.
[62] 李冬梅,李会会,朱苏阳. 大尺度离散裂缝的渗透率应力敏感研究:以顺北油田为例[J]. 断块油气田,2024,31(1):147-153.
Li Dongmei, Li Huihui, Zhu Suyang. Study of permeability stress sensitivity of large-scale discrete fracture: a case study of Shunbei Oil Field [J]. Fault-block Oil & Gas Fields, 2024,31(1):147-153.
[63] 胡雄,邬长武,杨秀春,等. 低渗透煤层微观孔隙结构与煤层气解吸规律[J]. 特种油气藏,2024,31(2):129-135.
Hu Xiong, Wu Changwu, Yang Xiuchun,et al .Microscopic pore structure and coalbed methane desorption law in lowpermeability coal seams [J]. Special Oil & Gas Reservoirs,2024,31(2):129-135.
[64] 兰林,康毅力,陈一健,等. 储层应力敏感性评价实验方法与评价指标探讨[J]. 钻井液与完井液,2005,(3):1-4,79.
Lan Lin, Kang Yili, Chen Yijian, et al . Experimental methods and evaluation criteria for reservoir stress sensitivity assessment [J]. Drilling Fluid & Completion Fluid, 2005,(3):1-4,79.
[65] 石军太,吴嘉仪,房烨欣,等. 考虑煤粉堵塞影响的煤储层渗透率模型及其应用[J]. 天然气工业,2020,40(6):78-89.
Shi Juntai, Wu Jiayi, Fang Yexin, et al . A new coal reservoir permeability model considering the influence of pulverized coal blockage and its application [J]. Natural Gas Industry,2020,40(6):78-89. |