Acta Petrolei Sinica ›› 2022, Vol. 43 ›› Issue (8): 1107-1121.DOI: 10.7623/syxb202208006
Previous Articles Next Articles
Wang Bing1,2, Qiu Nansheng1,2, Wang Xiang3, Zhang Haizu3, Liu Yifeng4, Chang Jian1,2, Zhu Chuanqing1,2
Received:
2021-07-01
Revised:
2022-02-12
Online:
2022-08-25
Published:
2022-09-05
王冰1,2, 邱楠生1,2, 王祥3, 张海祖3, 刘一锋4, 常健1,2, 朱传庆1,2
通讯作者:
邱楠生,男,1968年7月生,1994年获中国科学院地质研究所构造地质学专业博士学位,现为中国石油大学(北京)地球科学学院教授,主要从事盆地构造-热演化和油气成藏机理教学与科研工作。Email:qiunsh@cup.edu.cn
作者简介:
王冰,男,1993年12月生,2016年获太原理工大学资源勘查工程专业学士学位,现为中国石油大学(北京)地球科学学院博士研究生,主要从事沉积盆地压力场研究。Email:503041865@qq.com
基金资助:
CLC Number:
Wang Bing, Qiu Nansheng, Wang Xiang, Zhang Haizu, Liu Yifeng, Chang Jian, Zhu Chuanqing. Identification and calculation of tectonic compression overpressure of Kelasu-Yiqikelike tectonic belt in Kuqa depression[J]. Acta Petrolei Sinica, 2022, 43(8): 1107-1121.
王冰, 邱楠生, 王祥, 张海祖, 刘一锋, 常健, 朱传庆. 库车坳陷克拉苏-依奇克里克构造带构造挤压型超压识别与计算[J]. 石油学报, 2022, 43(8): 1107-1121.
Add to citation manager EndNote|Ris|BibTeX
[1] OSBORNE M J,SWARBRICK R E.Mechanisms for generating overpressure in sedimentary basins:a reevaluation[J].AAPG Bulletin,1997,81(6):1023-1041. [2] SWARBRICK R E,OSBORNE M J,YARDLEY G S.Comparision of overpressure magnitude resulting from the main generating mechanisms[J].AAPG Memoir,2002,76:1-12. [3] 罗晓容.构造应力超压机制的定量分析[J].地球物理学报,2004,47(6):1086-1093. LUO Xiaorong.Quantitative analysis on overpressuring mechanism resulted from tectonic stress[J].Chinese Journal of Geophysics,2004,47(6):1086-1093. [4] 曾联波,刘本明.塔里木盆地库车前陆逆冲带异常高压成因及其对油气成藏的影响[J].自然科学进展,2005,15(12):1485-1491. ZENG Lianbo,LIU Benming.Origin of abnormal high pressure and its influence on oil and gas accumulation in Kuqa foreland thrust belt of Tarim Basin[J].Progress in Natural Science,2005,15(12):1485-1491. [5] BERTHELON J,BRVCH A,COLOMBO D,et al.Impact of tectonic shortening on fluid overpressure in petroleum system modelling:insights from the Neuquén Basin,Argentina[J].Marine and Petroleum Geology,2021,127:104933. [6] BURGREEN-CHAN B,MEISLING K E,GRAHAM S.Basin and petroleum system modelling of the East Coast Basin,New Zealand:a test of overpressure scenarios in a convergent margin[J].Basin Research,2016,28(4):536-567. [7] OBRADORS-PRATS J,ROUAINIA M,APLIN A C,et al.Assessing the implications of tectonic compaction on pore pressure using a coupled geomechanical approach[J].Marine and Petroleum Geology,2017,79:31-43. [8] 高志勇,崔京钢,冯佳睿,等.埋藏压实—侧向挤压过程对库车坳陷深层储层物理性质的改造机理[J].现代地质,2017,31(2):302-314. GAO Zhiyong,CUI Jinggang,FENG Jiarui,et al.Modification mechanism of physical properties of deeply-buried sandstone reservoir due to the burial compaction and lateral extrusion in Kuqa depression[J].Geoscience,2017,31(2):302-314. [9] 曾联波,周天伟,吕修祥.构造挤压对库车坳陷异常地层压力的影响[J].地质论评,2004,50(5):471-475. ZENG Lianbo,ZHOU Tianwei,LÜ Xiuxiang.Influence of tectonic compression on the abnormal formation pressure in the Kuqa depression[J].Geological Review,2004,50(5):471-475. [10] 张晓强.库车坳陷流体动力场模拟及分析[D].西安:西北大学,2017. ZHANG Xiaoqiang.Simulation and analysis of hydrodynamic field in Kuqa depression[D].Xi’an:Northwest University,2017. [11] 文晨曦.库车坳陷不同成因超压的识别与定量评价[D].西安:西北大学,2019. WEN Chenxi.Identification and quantitative evaluation of overpressure of different origin in Kuqa depression[D].Xi’an:Northwest University,2019. [12] 张凤奇,王震亮,宋岩,等.库车坳陷构造挤压增压定量评价新方法[J].中国石油大学学报:自然科学版,2011,35(4):1-7. ZHANG Fengqi,WANG Zhenliang,SONG Yan,et al.New method of quantitative evaluation on pressurization resulted from tectonic compression in Kuqa depression[J].Journal of China University of Petroleum,2011,35(4):1-7. [13] 周兴熙.塔里木盆地库车油气系统中、新生界的流体压力结构和油气成藏机制[J].地学前缘,2001,8(4):351-361. ZHOU Xingxi.The Mesozoic-Cenozoic fluid pressure structure and reservoir-forming machine process in the Kuqa petroleum system in the Tarim Basin[J].Earth Science Frontiers,2001,8(4):351-361. [14] 王震亮,张立宽,施立志,等.塔里木盆地克拉2气田异常高压的成因分析及其定量评价[J].地质论评,2005,51(1):55-63. WANG Zhenliang,ZHANG Likuan,SHI Lizhi,et al.Genesis analysis and quantitative evaluation on abnormal high fluid pressure in the Kela-2 gas field,Kuqa depression,Tarim Basin[J].Geological Review,2005,51(1):55-63. [15] 石万忠,陈红汉,何生.库车坳陷构造挤压增压的定量评价及超压成因分析[J].石油学报,2007,28(6):59-65. SHI Wanzhong,CHEN Honghan,HE Sheng.Quantitative evaluation on contribution of structural compression to overpressure and analysis on origin of overpressure in Kuqa depression[J].Acta Petrolei Sinica,2007,28(6):59-65. [16] JIA Chengzao,LI Qiming.Petroleum geology of Kela-2,the most productive gas field in China[J].Marine and Petroleum Geology,2008,25(4/5):335-343. [17] 王珂,杨海军,李勇,等.塔里木盆地库车坳陷北部构造带地质特征与勘探潜力[J].石油学报,2021,42(7):885-905. WANG Ke,YANG Haijun,LI Yong,et al.Geological characteristics and exploration potential of the northern tectonic belt of Kuqa depression in Tarim Basin[J].Acta Petrolei Sinica,2021,42(7):885-905. [18] 卢华复,贾东,陈楚铭,等.库车新生代构造性质和变形时间[J].地学前缘,1999,6(4):215-221. LU Huafu,JIA Dong,CHEN Chuming,et al.Nature and timing of the Kuqa Cenozoic structures[J].Earth Science Frontiers,1999,6(4):215-221. [19] 魏国齐,贾承造,施央申,等.塔里木新生代复合再生前陆盆地构造特征与油气[J].地质学报,2000,74(2):123-133. WEI Guoqi,JIA Chengzao,SHI Yangshen,et al.Tectonic characteristics and petroleum prospects of Cenozoic compound rejuvenated foreland basins in Tarim[J].Acta Geologica Sinica,2000,74(2):123-133. [20] 何登发,李德生,何金有,等.塔里木盆地库车坳陷和西南坳陷油气地质特征类比及勘探启示[J].石油学报,2013,34(2):201-218. HE Dengfa,LI Desheng,HE Jinyou,et al.Comparison in petroleum geology between Kuqa depression and Southwest depression in Tarim Basin and its exploration significance[J].Acta Petrolei Sinica,2013,34(2):201-218. [21] 史超群,许安明,魏红兴,等.构造挤压对碎屑岩储层破坏程度的定量表征——以库车坳陷依奇克里克构造带侏罗系阿合组为例[J].石油学报,2020,41(2):205-215. SHI Chaoqun,XU Anming,WEI Hongxing,et al.Quantitative characterization on the clastic reservoir destruction by tectonic compression:a case study of the Jurassic Ahe Formation in Yiqikelike structural belt,Kuqa depression[J].Acta Petrolei Sinica,2020,41(2):205-215. [22] 张仲培,林伟,王清晨.库车坳陷克拉苏—依奇克里克构造带的构造演化[J].大地构造与成矿学,2003,27(4):327-336. ZHANG Zhongpei,LIN Wei,WANG Qingchen.Progressive structural evolution of Kelasu-Yiqikelike structural belt in Kuqa depression[J]. Geotectonica et Metallogenia,2003,27(4):327-336. [23] HUANG Baochun,PIPER J D A,PENG Shoutao,et al.Magnetostratigraphic study of the Kuche depression,Tarim Basin,and Cenozoic uplift of the Tian Shan range,western China[J].Earth & Planetary Science Letters,2006,251(3/4):346-364. [24] 杨克基.库车坳陷中段盐构造差异变形及其控制因素研究[D].北京:中国石油大学,2017. YANG Keji.Differential structural deformations and controlling factors of salt tectonic in the Middle segment of the Kuqa depression[D].Beijing:China University of Petroleum,2017. [25] 王清晨,张仲培,林伟.库车盆地—天山边界的晚第三纪断层活动性质与应力状态[J].科学通报,2003,48(24):2553-2559. WANG Qingchen,ZHANG Zhongpei,LIN Wei.Tertiary fault active features and stress state in the boundary of Kuqa Basin and Tianshan[J]. Chinese Science Bulletin,2003,48(24):2553-2559. [26] 张仲培,王清晨.库车坳陷节理和剪切破裂发育特征及其对区域应力场转换的指示[J].中国科学:地球科学,2004,34(S1):63-73. ZHANG Zhongpei,WANG Qingchen.Development of joints and shear fractures in the Kuqa depression and its implication to regional stress field switching[J].Science China Earth Sciences,2004,34(S2):74-85. [27] QIU Nansheng,CHANG Jian,LI Jiawei,et al.New evidence on the Neogene uplift of South Tianshan:constraints from the (U-Th)/He and AFT ages of borehole samples of the Tarim Basin and implications for hydrocarbon generation[J].International Journal of Earth Sciences,2012,101(6):1625-1643. [28] 王清晨,李忠.库车—天山盆山系统与油气[M].北京:科学出版社,2007. WANG Qingchen,LI Zhong.The basin-range system of Kuqa depression and Tianshan and its petroleum significance[M].Beijing:Science Press,2007. [29] 李曰俊,吴根耀,雷刚林,等.新疆库车新生代前陆褶皱冲断带的变形特征、时代和机制[J].地质科学,2008,43(3):488-506. LI Yuejun,WU Genyao,LEI Ganglin,et al.Deformational features,ages and mechanism of the Cenozoic Kuqa foreland fold-and-thrust belt in Xinjiang[J].Chinese Journal of Geology,2008,43(3):488-506. [30] 李忠,张丽娟,寿建峰,等.构造应变与砂岩成岩的构造非均质性——以 塔里木盆地库车坳陷研究为例[J].岩石学报,2009,25(10): 2320-2330. LI Zhong,ZHANG Lijuan,SHOU Jianfeng,et al.Structural strain and structural heterogeneity of sandstone diagenesis:a case study for the Kuqa subbasin in the northern Tarim Basin[J].Acta Petrologica Sinica,2009,25(10):2320-2330. [31] 宋岩.库车坳陷异常高压成因与异常高压大气田成藏模式研究[D].贵阳:中国科学院地球化学研究所,2002. SONG Yan.Research on origin of abnoamal high pressure in the Keche depression and the modeling of generation of huge gas field[D].Guiyang:Institute of Geochemistry,Chinese Academy of Sciences,2002. [32] 郝芳,孙雄伟,石万忠,等.库车前陆盆地异常高压成因与分布规律[R].武汉:中国地质大学,2014. HAO Fang,SUN Xiongwei,SHI Wanzhong,et al.Origins and distribution of abnormal high pressure in Kuqa foreland basin[R].Wuhan:China University of Geosciences,2014. [33] GUO Xiaowen,LIU Keyu,JIA Chengzao,et al.Effects of early petroleum charge and overpressure on reservoir porosity preservation in the giant Kela-2 gas field,Kuqa depression,Tarim Basin,Northwest China[J].AAPG Bulletin,2016,100(2):191-212. [34] BOWERS G L.Pore pressure estimation from velocity data:accounting for overpressure mechanisms besides undercompaction[J].SPE Drilling & Completion,1995,10(2):89-95. [35] TINGAY M R P,MORLEY C K,LAIRD A,et al.Evidence for overpressure generation by kerogen-to-gas maturation in the northern Malay Basin[J].AAPG Bulletin,2013,97(4):639-672. [36] TINGAY M R P,HILLIS R R,SWARBRICK R E,et al.Origin of overpressure and pore-pressure prediction in the Baram province,Brunei[J].AAPG Bulletin,2009,93(1):51-74. [37] 樊洪海.异常地层压力分析方法与应用[M].北京:科学出版社,2016. FAN Honghai.Analysis methods and applications of abnormal formation pressures[M].Beijing:Science Press,2016. [38] 范昌育,王震亮,张凤奇.库车坳陷克拉苏冲断带传递型超压的识别、计算及其主控因素[J].中国石油大学学报:自然科学版,2014,38(3):32-38. FAN Changyu,WANG Zhenliang,ZHANG Fengqi.Identification,calculation and main controlling factors of overpressure transferred by fault in Kelasu thrust belt of Kuqa depression[J].Journal of China University of Petroleum,2014,38(3):32-38. [39] 赵靖舟,李军,徐泽阳.沉积盆地超压成因研究进展[J].石油学报,2017,38(9):973-998. ZHAO Jingzhou,LI Jun,XU Zeyang.Advances in the origin of overpressures in sedimentary basins[J].Acta Petrolei Sinica,2017,38(9):973-998. [40] 张凤奇,鲁雪松,卓勤功,等.准噶尔盆地南缘下组合储层异常高压成因机制及演化特征[J].石油与天然气地质,2020,41(5):1004-1016. ZHANG Fengqi,LU Xuesong,ZHUO Qingong,et al.Genetic mechanism and evolution characteristics of overpressure in the lower play at the southern margin of the Junggar Basin,northwestern China[J].Oil & Gas Geology,2020,41(5):1004-1016. [41] WEBSTER M,O'CONNOR S,PINDAR B,et al.Overpressures in the Taranaki Basin:distribution,causes,and implications for exploration[J].AAPG Bulletin,2011,95(3):339-370. [42] BOWERS G L,KATSUBE T J.The role of shale pore structure on the sensitivity of wire-line logs to overpressure[J].AAPG Memoir,2004,76:43-60. [43] 殷文,唐建云,朱剑兵,等.VSP时差分析及时深关系校正[J].地球物理学进展,2014,29(6):2823-2830. YIN Wen,TANG Jianyun,ZHU Jianbing,et al.Analysis of VSP travel-time difference and calibration of time-depth relationship[J].Progress in Geophysics,2014,29(6):2823-2830. [44] ZHANG Fengqi,LU Xuesong,BOTTERILL Scott,et al.Horizontal tectonic stress as a cause of overpressure in the southern margin of the Junggar Basin,Northwest China[J].Journal of Petroleum Science and Engineering,2021,205:108861. [45] ENGELDER T.Stress regimes in the lithosphere[M].Princeton:Princeton University Press,1993. [46] 王清晨,张仲培,林伟,等.库车-天山盆山系统新近纪变形特征[J].中国科学:地球科学,2004,34(S1):45-55. WANG Qingchen,ZHANG Zhongpei,LIN Wei,et al.The feature of Neogene deformation of Kuqa-Tianshan system[J].Science China Earth Sciences,2004,34(S1):45-55. [47] 曾联波,刘国平,朱如凯,等.库车前陆盆地深层致密砂岩储层构造成岩强度的定量评价方法[J].石油学报,2020,41(12):1601-1609. ZENG Lianbo,LIU Guoping,ZHU Rukai,et al.A quantitative evaluation method of structural diagenetic strength of deep tight sandstone reservoirs in Kuqa foreland basin[J].Acta Petrolei Sinica,2020,41(12):1601-1609. [48] 张立宽,王震亮,孙明亮,等.库车坳陷克拉2气田异常流体压力演化史[J].地质科学,2007,42(3):430-443. ZHANG Likuan,WANG Zhenliang,SUN Mingliang,et al.Evolution of abnormal fluid pressure in the Kela 2 gasfield,Kuqa depression[J].Chinese Journal of Geology,2007,42(3):430-443. [49] ZENG Lianbo,WANG Hongjun,GONG Lei,et al.Impacts of the tectonic stress field on natural gas migration and accumulation:a case study of the Kuqa depression in the Tarim Basin,China[J].Marine and Petroleum Geology,2010,27(7):1616-1627. [50] 卓勤功,赵孟军,李勇,等.膏盐岩盖层封闭性动态演化特征与油气成藏——以库车前陆盆地冲断带为例[J].石油学报,2014,35(5): 847-856. ZHUO Qingong,ZHAO Mengjun,LI Yong,et al.Dynamic sealing evolution and hydrocarbon accumulation of evaporite cap rocks:an example from Kuqa foreland basin thrust belt[J].Acta Petrolei Sinica,2014,35(5):847-856. [51] GOULTY N R.Relationships between porosity and effective stress in shales[J].First Break,1998,16(12):413-419. [52] HANTSCHEL T,KAUERAUF A I.Fundamentals of basin and petroleum systems modeling[M].Heidelberg:Springer-Verlag,2009. [53] MAGARA K.Compaction and fluid migration:practical petroleum geology[M].Amsterdam:Elsevier,1978. [54] 陈荷立.泥岩压实过程中孔隙流体异常高压的形成及其地质意义[J].石油地质科技情报,1982(1):1-23. CHEN Heli.Formation of abnormal overpressure of pore fluid and its geological significance during mudstone compaction[J].Petroleum Geology Science and Technology Information,1982(1):1-23. [55] SCHMALHOLZ S M,PODLADCHIKOV Y Y.Tectonic overpressure in weak crustal-scale shear zones and implications for the exhumation of high-pressure rocks[J].Geophysical Research Letters,2013,40(10):1984-1988. [56] HARROLD T W D,SWARBRICK R E,GOULTY N R.Pore pressure estimation from mudrock porosities in Tertiary basins,Southeast Asia[J].AAPG Bulletin,1999,83(7):1057-1067. [57] WANG H F.Theory of linear poroelasticity with applications to geomechanics and hydrogeology[M].New Jersey:Princeton University Press,2000. [58] JAEGER J C,COOK N G W,ZIMMERMAN R W.Fundamentals of rock mechanics[M].4th ed.Malden:Blackwell Publishing,2007. [59] 王平.含油盆地构造力学原理[M].北京:石油工业出版社,1993. WANG Ping.Tectonic mechanic principles of oil-bearing basins[M].Beijing:Petroleum Industry Press,1993. [60] 张明利,谭成轩,汤良杰,等.库车坳陷克拉2气藏异常高地层压力成因力学分析[J].地球科学,2004,29(1):93-95. ZHANG Mingli,TAN Chengxuan,TANG Liangjie,et al.An analysis on mechanical genesis of overpressure at Kala 2 gas pool in Kuqa down -warping region[J].Earth Science,2004,29(1):93-95. [61] 李军,王贵文,欧阳健.利用测井信息定量研究库车坳陷山前地区地应力[J].石油勘探与开发,2001,28(5):93-95. LI Jun,WANG Guiwen,OUYANG Jian.Using logging data to quantitatively study terrestrial-stress of Kuqa field[J].Petroleum Exploration and Development,2001,28(5):93-95. [62] 漆家福,张玮,余海波,等.库车前陆冲断带重点区带构造解析及中生界原型盆地研究[R].北京:中国石油大学,2015. QI Jiafu,Zhang Wei,YU Haibo,et al.Structural analysis of key areas and study of Mesozoic prototype basin of Kuqa foreland thrust belt[R].Beijing:China University of Petroleum,2015. [63] 杨海军,李勇,石万忠,等.库车前陆盆地异常高压成因与分布规律[M].北京:科学出版社,2018. YANG Haijun,LI Yong,SHI Wanzhong,et al.Genesis and distribution of abnormal high pressure in Kuqa foreland basin[M].Beijing:Science Press,2018. |
[1] | Wang Qinghua, Zhang Ronghu, Yang Xianzhang, Yu Chaofeng, Xu Zhenping, Zhou Lu, Wang Ke, Zhang Liang. Major breakthrough and geological significance of tight sandstone gas exploration in Jurassic Ahe Formation in Dibei area,eastern Kuqa depression [J]. Acta Petrolei Sinica, 2022, 43(8): 1049-1064. |
[2] | Wang Ke, Zhang Ronghu, Tang Yong, Yu Chaofeng, Yang Zhao, Tang Yang'gang, Zhou Lu. Structural diagenesis and reservoir prediction of Lower Jurassic Ahe Formation in the northern structural belt of Kuqa depression [J]. Acta Petrolei Sinica, 2022, 43(7): 925-940. |
[3] | Zhang Xiangtao, Li Jun, Xiang Xuhong, Zhao Jingzhou. Genetic mechanism of overpressure and its significance on petroleum exploration in Baiyun sag in the deep water zone of Pearl River Mouth Basin [J]. Acta Petrolei Sinica, 2022, 43(1): 41-57. |
[4] | Wei Guoqi, Zhang Ronghu, Zhi Fengqin, Wang Ke, Yu Chaofeng, Dong Caiyuan. Formation conditions and exploration directions of Mesozoic structural-lithologic stratigraphic reservoirs in the eastern Kuqa depression [J]. Acta Petrolei Sinica, 2021, 42(9): 1113-1125. |
[5] | Liu Chun, Chen Shijia, Zhao Jilong, Chen Ge, Su Zhou, Gao Qiao. Accumulation conditions and main controlling factors of far-source oil and gas reservoirs: a case study of Meso-Cenozoic reservoirs in the southern slope of Kuqa depression [J]. Acta Petrolei Sinica, 2021, 42(3): 307-318. |
[6] | Feng Jianwei, Zhao Libin, Wang Yandong. Controlling factors for productivity of ultra-deep tight reservoirs in Keshen gas field, Kuqa depression [J]. Acta Petrolei Sinica, 2020, 41(4): 478-488. |
[7] | Zhang Yue, Han Denglin, Yang Chengye, Yuan Rui, Wang Chenchen, Zhang Juan. Migration law of fracture filling fluid in ultra-deep clastic reservoirs: a case study of the Cretaceous Bashijiqike Formation in Keshen well block,Kuqa depression [J]. Acta Petrolei Sinica, 2020, 41(3): 292-300. |
[8] | Shi Chaoqun, Xu Anming, Wei Hongxing, Hu Chunlei, Zhang Xing, Zhang Wen, Mo Tao, Zhang Huifang, Zhou Lu, Shi Lingling, Zhu Wenhui, Chen Weili. Quantitative characterization on the clastic reservoir destruction by tectonic compression: a case study of the Jurassic Ahe Formation in Yiqikelike structural belt, Kuqa depression [J]. Acta Petrolei Sinica, 2020, 41(2): 205-215. |
[9] | Hou Zhiqiang, Zhang Shuping, Li Jun, Zhao Jingzhou, Liu Yun, Tian Lianhui, Zhong Xiao, Chen Mengna, Xu Zeyang. Genetic mechanism of overpressures in the west slope of central Xihu sag [J]. Acta Petrolei Sinica, 2019, 40(9): 1059-1068,1124. |
[10] | Guo Rongtao, Ma Dade, Zhang Yongshu, Liu Bo, Chen Xiaodong, Cui Jun, Wang Peng, Zhang Qinghui, Jiang Yinghai, Li Yafeng. Characteristics and formation mechanism of overpressure pore-fracture reservoirs for Upper Member of Xiaganchaigou Formation in the west of Yingxiong ridge, Qaidam Basin [J]. Acta Petrolei Sinica, 2019, 40(4): 411-422. |
[11] | Liu Tao, Liu Jingdong. Quantitative evaluation on overpressure generated from undercompaction and fluid expansion [J]. Acta Petrolei Sinica, 2018, 39(9): 971-979. |
[12] | Zhang Ronghu, Zou Weihong, Chen Ge, Zhao Jilong, Zhang Huiliang, Wu Jin, Li Xianjing. Characteristics and hydrocarbon exploration significance of the huge Lower Cretaceous lacustrine sand bar in the northern Tarim Basin [J]. Acta Petrolei Sinica, 2018, 39(8): 845-857. |
[13] | Gao Zhiyong, Wang Xiaoqi, Li Jianming, Cui Jinggang, Jin Xu, Zhou Chuanmin, Feng Jiarui, Shi Yuxin. Q uantitative characterization and distribution of pore throat assemblages of Cretaceous reservoir in the Kelasu tectonic belt,Kuqa depression [J]. Acta Petrolei Sinica, 2018, 39(6): 645-659. |
[14] | Lu Xuesong, Zhao Mengjun, Liu Keyu, Zhuo Qingong, Fan Junjia, Yu Zhichao, Gong Yanjie. Forming condition and mechanism of highly effective deep tight sandstone gas reservoir in Kuqa foreland basin [J]. Acta Petrolei Sinica, 2018, 39(4): 365-378. |
[15] | Li Wen, He Sheng, Zhang Baiqiao, He Zhiliang, Chen Manfei, Zhang Dianwei, Li Tianyi, Gao Jian. Characteristics of paleo-temperature and paleo-pressure of fluid inclusions in shale composite veins of Longmaxi Formation at the western margin of Jiaoshiba anticline [J]. Acta Petrolei Sinica, 2018, 39(4): 402-415. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||
Copyright © 2021 Editorial Office of ACTA PETROLEI SINICA
Address:No. 6 Liupukang Street, Xicheng District, Beijing, P.R.China, 100724
Tel: 86-010-62067128, 86-010-62067137, 86-010-62067139
Fax: 86-10-62067130
Email: syxb@cnpc.com.cn
Support byBeijing Magtech Co.ltd, E-mail:support@magtech.com.cn