[1] |
WU Jintao, ZHANG Lei, LIU Yingxian, et al.Effect of displacement pressure gradient on oil-water relative permeability:experiment, correction method, and numerical simulation[J].Processes, 2024, 12(2):330.
|
[2] |
桂小军, 张园春, 王前平, 等.苏里格地区致密砂岩覆压孔隙度、渗透率研究[J].低渗透油气田, 2014(2):59-62. GUI Xiaojun, ZHANG Yuanchun, WANG Qianping, et al.Studies of porosity and permeability under overburden pressure of tight sandstone in Sulige area[J].Low Permeability Oil & Gas Fields, 2014(2):59-62.
|
[3] |
陈少云, 杨勇强, 邱隆伟, 等.致密砂岩孔喉结构分析与渗透率预测方法:以川中地区侏罗系沙溪庙组为例[J].石油实验地质, 2024, 46(1):202-214.CHEN Shaoyun, YANG Yongqiang, QIU Longwei, et al.Pore throat structure analysis and permeability prediction method of tight sandstone:a case study of Jurassic Shaximiao Formation in central Sichuan Basin[J].Petroleum Geology & Experiment, 2024, 46(1):202-214.
|
[4] |
赵靖康, 侯亚伟, 申春生, 等.基于渗透率时变的砂岩油藏含水规律表征方法及数模研究[J].复杂油气藏, 2024, 17(2):201-207.ZHAO Jingkang, HOU Yawei, SHEN Chunsheng, et al.Characterization method and numerical simulation of water-cut law in sandstone reservoirs based on permeability time-change[J].Complex Hydrocarbon Reservoirs, 2024, 17(2):201-207.
|
[5] |
赵天逸, 宁正福, 陈刚, 等.致密砂岩储集层渗透率预测修正方法[J].新疆石油地质, 2020, 41(3):337-343.ZHAO Tianyi, NING Zhengfu, CHEN Gang, et al.Modified methods of permeability prediction for tight sandstone reservoirs[J].Xinjiang Petroleum Geology, 2020, 41(3):337-343.
|
[6] |
WANG Huimin, WANG Jianguo, WANG Xiaolin, et al.An improved relative permeability model for gas-water displacement in fractal porous media[J].Water, 2020, 12(1):27.
|
[7] |
YU Chunsheng, JIANG Qi, SU Na, et al.Predicting the permeability of tight sandstone utilizing experimental and mathematical modeling approaches[J].Journal of Energy Resources Technology, 2021, 143(2):023007.
|
[8] |
中华人民共和国国家质量监督检验检疫总局, 中国国家标准化管理委员会.天然气藏分类:GB/T 26979—2011[S].北京:中国标准出版社, 2012. General Administration of Quality Supervision, Inspection and Quarantine of the People’s Republic of China, National Standardization Administration.The classification of natural gas pool:GB/T 26979-2011[S].Beijing:Standards Press of China, 2012.
|
[9] |
朱秋影, 魏国齐, 刘锐娥, 等.致密砂岩气藏可动水层早期判识方法及矿场应用[J].大庆石油地质与开发, 2018, 37(1):171-174.ZHU Qiuying, WEI Guoqi, LIU Rui’e, et al.Early identifying methods of the movable aquifer in tight sandstone gas reservoirs and their field applications[J].Petroleum Geology and Oilfield Development in Daqing, 2018, 37(1):171-174.
|
[10] |
郭平, 黄伟岗, 姜贻伟, 等.致密气藏束缚与可动水研究[J].天然气工业, 2006, 26(10):99-101.GUO Ping, HUANG Weigang, JIANG Yiwei, et al.Research on the irreducible and movable water of tight sandstone gas reservoir[J].Natural Gas Industry, 2006, 26(10):99-101.
|
[11] |
游利军, 康毅力.热处理对致密岩石物理性质的影响[J].地球物理学进展, 2009, 24(5):1850-1854.YOU Lijun, KANG Yili.Effects of thermal treatment on physical property of tight rocks[J].Progress in Geophysics, 2009, 24(5):1850-1854.
|
[12] |
唐洪明, 朱柏宇, 王茜, 等.致密砂岩气层水锁机理及控制因素研究[J].中国科学:技术科学, 2018, 48(5):537-547.TANG Hongming, ZHU Boyu, WANG Qian, et al.Research on water lock mechanism and control factors of tight sandstone gas layer[J].Scientia Sinica Technologic, 2018, 48(5):537-547.
|
[13] |
王赞惟.鄂尔多斯盆地东缘临兴地区盒8段储层微观孔隙结构及渗流特征[J].非常规油气, 2020, 7(1):59-64.WANG Zanwei.Microscopic pore structure and the seepage characteristics in tight sandstone reservoir of the 8th member of Lower Shihezi Formation in Linxing area of east Ordos Basin[J].Unconventional Oil & Gas, 2020, 7(1):59-64.
|
[14] |
石立华, 师调调, 廖志昊, 等.低渗致密砂岩油藏水驱储层变化规律[J].特种油气藏, 2024, 31(3):106-115.SHI Lihua, SHI Tiaotiao, LIAO Zhihao, et al.The variation law of water flooding reservoir in low permeability tight sandstone reservoirs[J].Special Oil & Gas Reservoirs, 2024, 31(3):106-115.
|
[15] |
王文雄, 肖晖, 叶亮, 等.不同岩性致密砂岩水锁伤害深度实验研究[J].非常规油气, 2022, 9(4):71-77.WANG Wenxiong, XIAO Hui, YE Liang, et al.Experimental study on water blocking damage depth of tight sandstone with different lithology[J].Unconventional Oil & Gas, 2022, 9(4):71-77.
|
[16] |
李昊, 王昊, 张小冬.致密砂岩含水率对渗透率的影响研究[J].内蒙古石油化工, 2019, 45(7):117-118.LI Hao, WANG Hao, ZHANG Xiaodong.Research on influencing rules of water ratio in tight sandstone on the permeability[J].Inner Mongolia Petrochemical, 2019, 45(7):117-118.
|
[17] |
刘新菊, 刘同敬, 陈建文, 等.低渗透—致密砂岩油藏水相启动压力梯度实验测试方法[J].油气地质与采收率, 2023, 30(3):87-93.LIU Xinju, LIU Tongjing, CHEN Jianwen, et al.An experimental method for testing water-phase starting pressure gradient of low-permeability/tight sandstone reservoirs[J].Petroleum Geology and Recovery Efficiency, 2023, 30(3):87-93.
|
[18] |
赵俊威, 陈恭洋, 赵星, 等.川西新场地区须二段致密砂岩气藏气水分布特征及主控因素[J].断块油气田, 2024, 31(3):379-386.ZHAO Junwei, CHEN Gongyang, ZHAO Xing, et al.Gas-water distribution characteristics and main controlling factors of tight sandstone gas reservoir in the second Member of Xujiahe Formation in Xinchang area, western Sichuan[J].Fault-Block Oil & Gas Field, 2024, 31(3):379-386.
|
[19] |
李阳兵.川西坳陷新场构造带须二段致密砂岩储层特征及综合评价[J].断块油气田, 2024, 31(4):629-636.LI Yangbing.Characteristics and comprehensive evaluation of tight sandstone reservoirs in Xu 2 Member of Xinchang structural belt in western Sichuan Depression[J].Fault-Block Oil & Gas Field, 2024, 31(4):629-636.
|
[20] |
曾溅辉, 张亚雄, 张在振, 等.致密砂岩气藏复杂气—水关系形成和分布主控因素及分布模式[J].石油与天然气地质, 2023, 44(5):1067-1083.ZENG Jianhui, ZHANG Yaxiong, ZHANG Zaizhen, et al.Complex gas-water contacts in tight sandstone gas reservoirs:distribution pattern and dominant factors controlling their formation and distribution[J].Oil & Gas Geology, 2023, 44(5):1067-1083.
|
[21] |
李昊远, 庞强, 魏克颖, 等.致密砂岩储层孔隙结构分形特征对气水渗流规律的影响:以苏里格气田东南部桃2区块山1段为例[J].断块油气田, 2023, 30(2):177-185.LI Haoyuan, PANG Qiang, WEI Keying, et al.Influence of pore structure fractal features of tight sandstone reservoir on gas-water seepage law:a case study of Shan 1 Member in Tao 2 block of southeastern Sulige Gas Field[J].Fault-Block Oil & Gas Field, 2023, 30(2):177-185.
|
[22] |
苏玉亮, 李东升, 李蕾, 等.致密砂岩气藏地层水可动性及其影响因素研究[J].特种油气藏, 2020, 27(4):118-122.SU Yuliang, LI Dongsheng, LI Lei, et al.Formation water mobility and influencing factors in tight sandstone gas reservoir[J].Special Oil & Gas Reservoirs, 2020, 27(4):118-122.
|
[23] |
桂婷婷, 魏东, 王继平, 等.气藏束缚水饱和度实验测试与机理[J].大庆石油地质与开发, 2017, 36(1):81-84.GUI Tingting, WEI Dong, WANG Jiping, et al.Experimental test and mechanism of the irreducible water saturation for gas reservoirs[J].Petroleum Geology & Oilfield Development in Daqing, 2017, 36(1):81-84.
|
[24] |
陈科贵, 温易娜, 何太洪, 等.低孔低渗致密砂岩气藏束缚水饱和度模型建立及应用:以苏里格气田某区块山西组致密砂岩储层为例[J].天然气地球科学, 2014, 25(2):273-277.CHEN Kegui, WEN Yina, HE Taihong, et al.Irreducible water saturation models of tight sandstone gas reservoirs with low porosity and permeability and its application:taking a block of Shanxi formation tight sandstone reservoir in Sulige Gas Field as an example[J].Natural Gas Geoscience, 2014, 25(2):273-277.
|
[25] |
马云峰, 赵建国, 孙龙, 等.应力作用下气藏水体微观赋存特征及渗流规律:以鄂尔多斯盆地神木气田二叠系盒8段致密储层为例[J].石油实验地质, 2023, 45(3):466-473.MA Yunfeng, ZHAO Jianguo, SUN Long, et al.Microscopic occurrence characteristics and seepage law of water bodies in gas reservoir under stress:a case study of tight reservoirs in the eighth member of Permian Shihezi Formation, Shenmu Gas Field, Ordos Basin[J].Petroleum Geology & Experiment, 2023, 45(3):466-473.
|
[26] |
杜佳, 郭晶晶, 刘彦成, 等.临兴气田致密砂岩储层可动流体分布特征及主控因素[J].特种油气藏, 2024, 31(2):152-158.DU Jia, GUO Jingjing, LIU Yancheng, et al.Distribution characteristics and main controlling factors of movable fluid in tight sandstone reservoir of Linxing Gasfield[J].Special Oil & Gas Reservoirs, 2024, 31(2):152-158.
|
[27] |
中华人民共和国国家质量监督检验检疫总局, 中国国家标准化管理委员会岩心分析方法:GB/T 29172—2012[S].北京:中国标准出版社, 2013. General Administration of Quality Supervision, Inspection and Quarantine of the People’s Republic of China, National Standardization Administration.Practices for core analysis:GB/T 29172-2012[S].Beijing:Standards Press of China, 2013.
|
[28] |
武恒志, 叶泰然, 王志章, 等.复杂致密河道砂岩气藏开发精细描述技术[M].北京:中国石化出版社, 2018:21-47. WU Hengzhi, YE Tairan, WANG Zhizhang, et al.Fine description technology for the development of complex and dense channel sandstone gas reservoirs[M].Beijing:China Petrochemical Press, 2018:21-47.
|
[29] |
黎华继, 严焕榕, 詹泽东, 等.川西坳陷侏罗系致密砂岩气藏储层精细评价[J].天然气工业, 2019, 39(S1):129-135.LI Huaji, YAN Huanrong, ZHAN Zedong, et al.Fine evaluation of Jurassic tight sandstone gas reservoirs in the Western Sichuan Depression[J].Natural Gas Industry, 2019, 39(S1):129-135.
|
[30] |
李孟桥, 叶泰然, 丁蔚楠, 等.川西坳陷侏罗系隐蔽河道精细刻画技术及应用[J].油气藏评价与开发, 2023, 13(5):591-599.LI Mengqiao, YE Tairan, DING Weinan, et al.Fine characterization technique of concealed channel and its application in the Jurassic Formation of western Sichuan Depression[J].Petroleum Reservoir Evaluation and Development, 2023, 13(5):591-599.
|
[31] |
张岩, 王勇飞, 高伟, 等.川西坳陷致密气藏束缚水赋存状态与产出机理[J].石油地质与工程, 2020, 34(5):59-62.ZHANG Yan, WANG Yongfei, GAO Wei, et al.Occurrence state and production mechanism of bound water in tight gas reservoirs in Western Sichuan Depression[J].Petroleum Geology and Engineering, 2020, 34(5):59-62.
|
[32] |
刘雪乐, 李祖友, 严小勇, 等.新场气田地层水地球化学特征及成因初判[J].中外能源, 2016, 21(10):41-47.LIU Xuele, LI Zuyou, YAN Xiaoyong, et al.Geochemical characteristics and preliminary genesis judgment of formation water in Xinchang Gasfield[J].Sino-Global Energy, 2016, 21(10):41-47.
|
[33] |
颜学梅, 苏锦义, 王玲辉, 等.川西坳陷东坡沙溪庙组地层水对含水饱和度的影响[J].天然气技术与经济, 2022, 16(4):11-16.YAN Xuemei, SU Jinyi, WANG Linghui, et al.Influence of formation water on water saturation: an example from Shaximiao Formation, Western Sichuan Depression, Sichuan Basin[J].Natural Gas Technology and Economy, 2022, 16(4):11-16.
|
[34] |
潘中亮, 陈巍, 王正来, 等.海拉尔盆地乌南次凹南屯组致密储层黏土矿物特征及其地质意义[J].岩性油气藏, 2015, 27(1):21-25.PAN Zhongliang, CHEN Wei, WANG Zhenglai, et al.Characteristics of clay minerals of tight reservoir and its geological significance of Nantun Formation in Wunan Sub-sag of Hailar Basin[J].Lithologic Reservoirs, 2015, 27(1):21-25.
|
[35] |
颜其彬, 陈培元, 杨辉廷, 等.川东北普光3011-5井须家河组黏土矿物及胶结物特征[J].特种油气藏, 2013, 20(3):8-12.YAN Qibin, CHEN Peiyuan, YANG Huiting, et al.Characteristics of clay minerals and cements of the Xujiahe Formation in well Puguang 3011-5 in northeast Sichuan[J].Special Oil & Gas Reservoir, 2013, 20(3):8-12.
|
[36] |
张民志, 高山.松辽盆地北部黏土矿物的成岩演化类型[J].矿物岩石, 1997, 17(3):41-44.ZHANG Minzhi, GAO Shan.The diagenetic type of clay minerals in the north of Songliao Basin[J].Mineralogy and Petrology, 1997, 17(3):41-44.
|
[37] |
赵明, 陈小明, 季峻峰, 等.山东昌潍古近系原型盆地黏土矿物的成岩演化与古地温[J].岩石学报, 2006, 22(8):2195-2204.ZHAO Ming, CHEN Xiaoming, JI Junfeng, et al.Diagenetic and paleogeothermal evolution of the clay minerals in the Paleogene Changwei prototype basin of Shandong Province, China[J].Acta Petrologica Sinica, 2006, 22(8):2195-2204.
|
[38] |
吉利明, 邱军利, 夏燕青, 等.常见黏土矿物电镜扫描微孔隙特征与甲烷吸附性[J].石油学报, 2012, 33(2):249-256.JI liming, QIU Junli, XIA Yanqing, et al.Micro-pore characteristics and methane adsorption properties of common clay minerals by electron microscope scanning[J].Acta Petrolei Sinica, 2012, 33(2):249-256.
|
[39] |
许兴斌, 王昌勇, 刘满仓, 等.塔里木盆地库车坳陷东部上三叠统—中侏罗统物源特征及其地质意义[J].地球科学与环境学报, 2020, 42(2):172-187.XU Xingbin, WANG Changyong, LIU Mancang, et al.Provenance characteristics of Upper Triassic-Middle Jurassic in the eastern Kuqa Depression of Tarim Basin, China and their geological significance[J].Journal of Earth Sciences and Environment, 2020, 42(2):172-187.
|
[40] |
王德滋, 谢磊.光性矿物学[M].3版.北京:科学出版社, 2008:180-181. WANG Dezi, XIE Lei.Optical mineralogy[M].3rd ed.Beijing:Science Press, 2008:180-181.
|
[41] |
郭欣欣, 刘立, 曲希玉, 等.碱性地层水对火山碎屑岩改造作用的实验研究[J].石油实验地质, 2013, 35(3):314-319.GUO Xinxin, LIU Li, QU Xiyu, et al.Experimental study on reformation of volcanic clastic rocks by alkaline formation water[J].Petroleum Geology & Experiment, 2013, 35(3):314-319.
|
[42] |
吕正祥, 杨相, 卿元华, 等.川西坳陷中段沙溪庙组砂岩中水—岩—烃作用特征[J].石油与天然气地质, 2015, 36(4):545-554.LV Zhengxiang, YANG Xiang, QING Yuanhua, et al.Water-rock-hydrocarbon interactions in the Middle Jurassic Shaximiao Formation sandstones, western Sichuan[J].Oil & Gas Geology, 2015, 36(4):545-554.
|
[43] |
杨建鹏, 刘林玉, 赵亮.石鄂地区下二叠统碎屑岩黏土矿物特征及其成岩意义分析[J].长江大学学报自然科学版, 2013, 10(26):50-52.YANG Jianpeng, LIU Linyu, ZHAO Liang.Characteristics and diagenetic significance analysis of clay minerals in Lower Permian clastic rocks in the Shi’e region[J].Journal of Yangtze University (Natural Science Edition), 2013, 10(26):50-52.
|
[44] |
谢渊, 王剑, 李令喜, 等.鄂尔多斯盆地白垩系黏土矿物的分布特征及其沉积—成岩环境意义[J].地质通报, 2010, 29(1):93-104.XIE Yuan, WANG Jian, LI Lingxi, et al.Distribution of the Cretaceous clay minerals in Ordos Basin, China and its implication to sedimentary and diagenetic environment[J].Geological Bulletin of China, 2010, 29(1):93-104.
|
[45] |
贺静.碎屑岩薄片鉴定指南[M].北京:石油工业出版社, 2019:236-326. HE Jing.Guidelines for identification of thin sections of clastic rocks[M].Beijing:Petroleum Industry Press, 2019:236-326.
|
[46] |
张雪芬, 陆现彩, 刘庆, 等.东营凹陷沙河街组砂岩中自生高岭石特征及其成因探讨[J].南京大学学报(自然科学版), 2013, 49(3):331-342. ZHANG Xuefen, LU Xiancai, LIU Qing, et al.Characteristics and genetic of authigenic kaolinite in the sandstones of the Shahejie Formation in the Dongying Depression[J].Journal of Nanjing University(Natural Sciences), 2013, 49(3):331-342.
|
[47] |
金翠叶.蒙脱石黏土矿物形成和成岩演化的实例研究[D].南京:南京大学, 2011:4-18. JIN Cuiye.Case studies on the formation and diagenetic evolution of montmorillonite[D].Nanjing:Nanjing University, 2011:4-18.
|
[48] |
胡作维, 黄思静, 郜晓勇, 等.川东华蓥山二叠系/三叠系界线附近黏土层中黏土矿物的类型及成因[J].地质通报, 2008, 27(3):374-379.HU Zuowei, HUANG Sijing, GAO Xiaoyong, et al.Clay minerals in the clay beds near the Permian/Triassic boundary at Huaying Mountain, eastern Sichuan, China:their types and origin[J].Geological Bulletin of China, 2008, 27(3):374-379.
|
[49] |
王英华.阴极发光技术在地质学中的应用[M].北京:地质出版社, 1990:40-51. WANG Yinghua.Application of cathodoluminescence technology in geology[M].Beijing:Geology Press, 1990:40-51.
|
[50] |
李胜荣, 申俊峰, 董国臣, 等.成因矿物学:原理·方法·应用[M].北京:科学出版社, 2021:25-71. LI Shengrong, SHEN Junfeng, DONG Guochen, et al.Genetic mineralogy:principle·methodology·;application[M].Beijing:Science Press, 2021:25-71.
|