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姜振学 教授/副院长

发布日期:2019-05-21 

姜振学,男,吉林梨树人,19634生。教授,博士生导师,中国石油大学(北京)非常规天然气研究院副院长。中国石油学会会员,第八届中国石油学会石油地质专业委员会油气运移学组副组长,国家能源局页岩气标准化委员会委员。1986年毕业于大庆石油学院勘探系,1998年获中国地质大学(北京)博士学位,1998—2000年石油大学(北京)博士后工作;2000—现今,中国石油大学(北京)工作。主要从事含油气盆地分析、常规和非常规油气形成与分布、常规和非常规油气资源评价科研和教学工作。在致密砂岩气成藏机制与类型划分、页岩气储层组构和孔隙结构特征与页岩气富集的主控因素、油气生排聚散物质平衡模型建立与油气运聚门限控藏模式等方面取得了重要成果。发表论文(第12作者)200余篇(其中SCIEI收录60),合著专著9部;先后参加国家自然科学基金、国家“973”、国家八五九五十五攻关项目、国家重大专项和局级项目四十余项;获省部级科技进步一等奖11项、二等奖3项、三等奖2项。

联系方式:86-10-89733328

通讯地址:北京昌平中国石油大学非常规天然气研究院;邮编:102249

邮箱:jiangzx@cup.edu.cnjiangzhenxue@qq.com

          
一、近期主持的课题(代表性课题):

    1.国家自然科学基金项目:页岩非均质性和微-纳米孔喉结构对含气性的控制机理(批准号:41472112),2015.1-2018.12,负责人;

    2.国家自然科学基金项目:叠合盆地油气藏深埋过程中油气组分和相态演化机制(批准号:40972088),2009.1-2012.12;负责人;

    3. 国家“973”课题:中国西部叠合盆地深部油气复合成藏机制与分布模式(2011CB201105),2011.1-2015.12 20 ,副负责人;

    4. 国家“973”课题:陆相页岩油资源潜力与分布规律(2014CB239105), 2014.1-2018.8,骨干;

    5. 国家重大专项:中生界陆相不同盆地类型页岩气赋存方式与富集规律研究(2016ZX05034-001),2016.1-2020.12,任务负责人;

    6.国家重大专项:五峰-龙马溪组富有机质页岩储层精细描述与页岩气成藏机理(2017ZX05035-02),2017.1-2020.12,课题负责人;

    7.国家重大专项:盆地致密砂岩气成藏机制及识别标志(2011ZX05008-004),2011.1-2015.9,骨干;

    8.国家重大专项:典型前陆盆地致密储层天然气藏形成机理与成藏模式(2011ZX05003-001),2011.7-2014.12,专题负责人;

    9.国家重大专项:页岩气成藏主控因素研究(2011ZX05018-02), 2011.1-2015.12,骨干;

    10. 国土资源部项目:西北区页岩气资源调查评价与选区,国土资源部,2011.3-2013.3,项目负责人;

    11. 国土资源部项目:典型富有机质页岩储集能力及其控制因素研究(工作项目编码:12120114046701),2014.1-2018.12,负责人。

 

二、主要获得的科研奖励:

    1.2016年. 叠合盆地复杂油气藏成因机制与预测方法及应用成效, 中国石油和化学工业协会,科技进步一等奖;

    2. 2015年, 地震成藏学理论及其应用实践,中国石油和化工自动化应用协会,科技进步一等奖;

    3. 2014年,叠复连续型致密砂岩气藏成因机制、预测方法及其在库车坳陷的重大发现,中国石油和化学工业协会,科技进步一等奖;

    4. 2014年,渤海湾地区油气形成富集与分布规律,中国产学研合作促进会,产学研合作创新成果一等奖;

    5. 2014年, 全国页岩气资源潜力调查评价及有利区优选, 国土资源部,科学技术奖一等奖;

    6.2012年,油气临界成藏理论、评价方法与重大勘探成效,北京市,科学技术一等奖;

    7. 2012年,复杂油气藏相控预测及其重大应用成效,教育部,科技进步一等奖;

    8. 2011年,陆相盆地断裂控藏机理与模式,教育部,科技进步一等奖;

    9. 2011年,陆相盆地断裂控藏机理与模式, 中国石油和化学工业协会,科技进步一等奖;

    10.2005年,济阳坳陷下第三系油气运聚成藏与挖潜勘探,教育部,科技进步一等奖;

    11.1996年,延吉盆地断层封闭性及断块圈闭评价,黑龙江省教委,科技进步一等奖。

          

三、代表性论著

    1.姜振学,唐相路,李卓,等.中国典型海相和陆相页岩储层孔隙结构及含气性,科学出版社,2018,P388.

    2.姜振学,饶丹,柳广弟,等.西北区页岩气(油)资源调查评价与选区,科学出版社2016,P259;

    3.  姜振学,庞雄奇,杨海军,等.库车拗陷致密砂岩气成因机制与分布预测,科学出版社,2015,P169;

    4.庞雄奇,罗晓容,姜振学,等.中国典型叠合盆地油气聚散机理与定量模拟.北京:科学出版社,2007,P212;

    5.罗群,姜振学,庞雄奇.断裂控藏机理及模式,石油工业出版社,2006,P318;

    6.庞雄奇,邱楠生,姜振学.油气成藏过程定量模拟,石油工业出版社,2005,P353;

    7. 金之钧,庞雄奇,姜振学.油气成藏定量模式,石油工业出版社,2003,P169;

    8.黄志龙,姜振学.吐哈盆地油气成藏机理及定量评价,石油工业出版社,2000,P148;

    9.  Zhenxue Jiang, Xianglu Tang, Lijun Cheng,et al. Characterization and origin of the Silurian Wufeng-Longmaxi Formation shale multiscale heterogeneity in southeastern Sichuan Basin, China. Interpretation, 2015, 3(2): SJ61-SJ74.

    10.  Zhen-Xue Jiang, Zhuo Li, Feng Li,et al. Tight sandstone gas accumulation mechanism and development models. Petroleum Science,2015,12(4):587–605.

    11.  Jiang Zhenxue, Pang Xiongqi, Li Zhuo, et al. An improved multi-parameter-constrained Pareto model for hydrocarbon resource assessment and its application in Bozhong Sag, Eastern China. Bulletin of Canadian Petroleum Geology, 2012, 60(3): 209-217.

    12.  Jiang Zhenxue, Yang Haijun, Li Zhuo, et al. Differences of Hydrocarbon Enrichment between the Upper and the Lower Structural Layers in the Tazhong Paleouplift. Acta Geologica Sinica, 2010, 84(5): 1116-1127.

    13.  Jiang Zhenxue, Pang Xiongqi, Yang Haijun, et al. Hydrocarbon enrichment characteristics and difference analysis in the TZ1-TZ4 well block of the Tarim Basin. Petroleum Science, 2010, 7(2): 201-210.

    13.    Jiang Zhenxue, Pang Xiongqi, Liu Luofu, Quantitative studies of hydrocarbon loss of the silurian bitumen sandstone in the Tarim Basin. Sci China Ser D-Earth Sci,2008,51(Supp.Ⅱ):101-107.

    14.   Jiang Zhenxue, Dong Yuexia, Li Hongyi.The limitation of fault-sealing and its control on hydrocarbon accumulation—?an example from the Laoyemiao Oilfield of Nanpu Sag.Petroleum Science,2008,5(4):295-301.

    15.  Jiang Zhenxue,Chen Dongxia, Pang Xiongqi,et al. Oil saturation of surrounding rock controls on lithological reservoirs.Petroleum Science,2006,3(2):1-5.

    16.  Jiang Zhenxue,Pang Xiongqi,Jin Zhijun,Division of Gas Accumulation System and Laws Controling Distribution of Natural Gas in Typical Petroliferous Basins of China. Journal of Chain of Geosciences. 2002,13(4);306-312.

    17. Tang X, Jiang Z, Jiang S, et al. Characteristics and origin of in-situ gas desorption of the Cambrian Shuijingtuo Formation shale gas reservoir in the Sichuan Basin, China[J]. Fuel, 2017, 187:285-295.

    18. Tang X, Jiang Z, Li Z, et al. Factors controlling organic matter enrichment in the lower Cambrian niutitang formation shale on the eastern shelf margin of the Yangtze block, China[J]. Interpretation, 2017, 5(3):1-41.

    19. Li T, Jiang Z, Li Z, et al. Continental shale pore structure characteristics and their controlling factors: A case study from the lower third member of the Shahejie Formation, Zhanhua Sag, Eastern China[J]. Journal of Natural Gas Science & Engineering, 2017, 45.

    20. Li T, Jiang Z, Xu C, et al. Effect of sedimentary environment on shale lithofacies in the lower third member of the Shahejie formation, Zhanhua Sag, eastern China[J]. Interpretation, 2017, 5(4):1-50.

    21. Li T, Jiang Z, Xu C, et al. Effect of pore structure on shale oil accumulation in the lower third member of the Shahejie formation, Zhanhua Sag, eastern China: Evidence from gas adsorption and nuclear magnetic resonance[J]. Marine & Petroleum Geology, 2017.

    22. Chen L, Jiang Z, Liu K, et al. Pore structure characterization for organic-rich Lower Silurian shale in the Upper Yangtze Platform, South China: A possible mechanism for pore development[J]. Journal of Natural Gas Science & Engineering, 2017, 46.

    23. Chen L, Jiang Z, Liu K, et al. Application of low-pressure gas adsorption to nanopore structure characterisation of organic-rich lower Cambrian shale in the Upper Yangtze Platform, South China[J]. Australian Journal of Earth Sciences, 2017:1-13.

    24. CHEN Lei, Jiang Zhenxue, Liu Keyu et al.       Application of Langmuir and Dubinin-Radushkevich models to estimate methane sorption capacity on two shale samples from the Upper Triassic Chang 7 Member in the southeastern Ordos Basin, China[J]. Energy Exploration & Exploitation, 2017.

    25. Chen L, Jiang Z, Liu K, et al. Relationship between pore characteristics and occurrence state of shale gas: A case study of Lower Silurian Longmaxi shale in the Upper Yangtze Platform, South China[J]. Interpretation, 2017, 5(3):1-41.

    26.Chen L, Jiang Z, Liu K, et al. A Combination of N2 and CO2 Adsorption to Characterize Nanopore Structure of Organic-Rich Lower Silurian Shale in the Upper Yangtze Platform, South China: Implications for Shale Gas Sorption Capacity[J]. 地质学报:英文版, 2017, 91(4):1380-1394.

    27. Wang P, Jiang Z, Yin L, et al. Lithofacies classification and its effect on pore structure of the Cambrian marine shale in the Upper Yangtze Platform, South China: Evidence from FE-SEM and gas adsorption analysis[J]. Journal of Petroleum Science & Engineering, 2017, 156:307-321.

    28. Ning C, Jiang Z, Gao Z, et al. Characteristics and controlling factors of reservoir space of mudstone and shale in Es3x in the Zhanhua Sag[J]. Marine & Petroleum Geology, 2017, 88.

    29. Zhang K, Jiang Z, Yin L, et al. Controlling functions of hydrothermal activity to shale gas content-taking lower Cambrian in Xiuwu Basin as an example[J]. Marine & Petroleum Geology, 2017, 85.

    30. Siyuan Su1, Zhenxue Jiang, Zhiye Gao1, et al. A new method for continental shale oil enrichment evaluation. 2017,5(2):T209-T217Interpretation.

    31. Xiong F, Jiang Z, Li, P, et al. Pore structure of transitional shales in the Ordos Basin, NW China: Effects of composition on gas storage capacity[J]. Fuel, 2017, 206:504-515.

    32. TANG Xianglu, JIANG Zhenxue, JIANG Shu, et al. Effects of organic matter and mineral compositions on pore structures of shales A comparative study of lacustrine shale in Ordos Basin and Marine Shale in Sichuan Basin, China.       Energy & Fuel, 2017.

    33. Xianglu Tang, Zhenxue Jiang, Hexin Huang, et al. Lithofacies characteristics and its effect on gas storage of the Silurian Longmaxi Marine Shale in the southeast Sichuan Basin, China. Journal of Natural Gas Science and Engineering, 2016, 28: 338-346.

    34. Fengyang Xiong, Zhenxue Jiang, Jianfa Chen, et al. The role of the residual bitumen in the gas storage capacity of mature lacustrine shale: A case study of the Triassic Yanchang shale, Ordos Basin, China. Marine and Petroleum Geology, 2016,(69):205-215.

    35. Peng Li, Zhenxue Jiang, Min Zheng, et al. Estimation of shale gas adsorption capacity of the Longmaxi Formation in the Upper Yangtze Platform, China. Journal of Natural Gas Science and Engineering, 2016, 34: 034-1043.

    36. Peng Li, Zhenxue Jiang, Min Zheng, et al. Prediction model for gas adsorption capacity of the Lower Ganchaigou Formation in the Qaidam Basin, China. Journal of Natural Gas Science and Engineering, 2016, 31: 493-502.

    37. Pengfei Wang, Zhenxue Jiang, Wenming Ji, et al. Heterogeneity of intergranular, intraparticle and organic pores in Longmaxi shale in Sichuan Basin, South China: Evidence from SEM digital images and fractal and multifractal geometries. Marine and Petroleum Geology, 2016, 72:122-138.

    38. Jianliang Liu, Zhenxue Jiang, Keyu Liu,et al. Hydrocarbon sources and charge history in the Southern Slope Region, Kuqa Foreland Basin, northwestern China. Marine and Petroleum Geology, 2016, 74:26-46.

    39. BI He, JIANG Zhenxue, LI Jianzhong, LI Peng, CHEN Lei, PAN Qinghua, WU Yongxin. The Ono–Kondo model and an experimental study on supercritical adsorption of shale gas: A case study of on Longmaxi shale in southeastern Chongqing, China. Journal of Natural Gas Science and Engineering,2016,35:114-121.

    40. TANG Xianglu, JIANG Zhenxue, JIANG Shu, WANG Pengfei, XIANG Caifu. Effect of Organic Matter and Maturity on Pore Size Distribution and Gas Storage Capacity in High-Mature to Post-Mature Shales. Energy & fuels, 2016, 10.1021/acs.energyfuels.6b01499.

    41. TANG Xianglu, JIANG Zhenxue, JIANG Shu, LI Zhuo. Heterogeneous nanoporosity of the Silurian Longmaxi Formation shale gas reservoir in the Sichuan Basin using the QEMSCAN, FIB-SEM,and nano-CT methods. Marine and Petroleum Geology, 2016, 78:99-109.

    42. WANG Pengfei, JIANG Zhenxue, CHEN,Lei, et al. Pore structure characterization for the Longmaxi and Niutitang shales in the Upper Yangtze Platform, South China: Evidence from focused ion beam–He ion microscopy, nano-computerized tomography and gas adsorption analysis. Marine and Petroleum Geology, 2016,77:1323-1337.

    43. Xianglu Tang,Zhenxue Jiang, Zhuo Li, et al. The effect of the variation in material composition on the heterogeneous pore structure of high-maturity shale of the Silurian Longmaxi formation in the southeastern Sichuan Basin, China. Journal of Natural Gas Science and Engineering, 2015, 23: 464-473.

    44. Fengyang Xiong, Zhenxue Jiang, Xianglu Tang,et.al. Characteristics and origin of the heterogeneity of the Lower Silurian Longmaxi marine shale in southeastern Chongqing, SW China. Journal of Natural Gas Science and Engineering, 2015, doi:10.1016/j.jingse.2015.10.003.

    45. CHEN Lei, JIANG Zhenxue ,JI Wenming, et al.     Characterization of Microscopic Pore Structures and Its Effect on Methane Adsorption Capacity in Continental Shales. Acta Geologica Sinica (English Edition), 2015,89(s1):11-11.

    46. Junqing Chen,Zhenxue Jiang,Hong Pang,et al.Lateral Migration of Petroleum in the Jurassic Toutunhe Formation in the Fudong Slope,Junggar Basin,China.RESOURCE GEOLOGY,2014,64(1):35-46.

    47. Pang Xiongqi, Jiang Zhenxue, Li Zhuo, et al. A statistical method for determining the hydrocarbon accumulation coefficient and its application to assessment of hydrocarbon resources in Huanghekou Sag, Bohai Bay Basin, Eastern China. Bulletin of Canadian Petroleum Geology, 2012, 60(3): 1-9.

    48. 姜振学,唐相路,李卓,. 川东南地区龙马溪组页岩孔隙结构全孔径表征及其对含气性的控制. 地学前缘,2016,02:126-134.

    49. 姜振学,李峰,杨海军,.库车坳陷迪北地区侏罗系致密储层裂缝发育特征及控藏模式. 石油学报,2015,S2:102-111.

    50. 姜振学,庞雄奇.油气资源评价的多参数约束改进油气田(藏)规模序列法及其应用.海相油气地质,2009143):53-59

    51.  姜振学,庞雄奇,刘洛夫,等.塔里木盆地志留系沥青砂破坏烃量定量研究.中国科学D 辑:地球科学,200838(增刊):89-94

    52. 姜振学,田丰华,夏淑华.砂体回弹物理模拟实验.地质学报,2007,81(2)244-249.

    53. 姜振学,庞雄奇,王显东,等,塔里木盆地志留系沥青砂岩有效厚度的确定方法.地质学报,200680(3)418-423.

    54. 姜振学,王显东,庞雄奇,等.塔北地区志留系典型油气藏古油水界面恢复. 地球科学-中国地质大学学报,2006,31(2)201-206.

    55. 姜振学,林世国,庞雄奇,等.两种类型致密砂岩气藏对比.石油实验地质.2006283):210-214.

    56. 姜振学,庞雄奇,曾溅辉,等.油气优势运移通道的类型及其物理模拟实验研究.地学前缘,2005,124):507-516.

    57. 姜振学,庞雄奇,金之钧,等.地层抬升过程中的砂体回弹作用及其油气成藏效应.地球科学中国地质大学学报,2004294):420-426

    58. 姜振学,陈冬霞,邱桂强等. 应用层次分析法研究透镜状砂体成藏主控因素.石油勘探与开发,200330(3)44-47.

    59. 姜振学,庞雄奇,金之钧,门限控烃作用及其在有效烃源岩判别中的应用. 地球科学中国地质大学学报. 2002,276):689-695.

    60. 姜振学,庞雄奇,黄志龙.叠合盆地油气运聚期次研究方法及应用.石油勘探与开发,2000274):22-25

    61. 姜振学,庞雄奇,张金川,等.深盆气研究现状综述.地球科学进展,2000153):289-292

    62. 原园,姜振学,喻宸,. 高丰度低演化程度湖相页岩储层特征——以柴达木盆地北缘中侏罗统为例. 地质学报,2016,03:541-552.

    63. 唐相路,姜振学,李卓,. 渝东南地区龙马溪组高演化页岩微纳米孔隙非均质性及主控因素. 现代地质,2016,01:163-171.

    64. 宋泽章,姜振学,原 园,等.“相控测井曲线标准化的应用— ——以鄂尔多斯盆地下寺湾地区延长组湖相泥页岩TOC评价为例. 中国矿业大学学报,2016,452):283-291

    65. 刘建良,姜振学、刘可禹,.库车前陆盆地羊塔克地区流体包裹体特征及油气成藏过程地球科学,2016,41(7):10.3799/dqkx.2016.096,EI

    66. 原园,姜振学,李卓,.柴达木盆地西部地区古近系下干柴沟组咸化湖相泥页岩储集层特征. 古地理学报,2015,03:381-392.

    67. 陈磊,姜振学,纪文明,.川西坳陷须五段页岩微观孔隙结构发育控制因素及其成藏意义. 煤炭学报,2015,S2:449-457.

    68. 罗枭,姜振学,李卓,等.英买力地区中生界新生界油气藏石油包裹体特征及成藏期次.石油学报,2015361):60-66

    69. 李 峰,姜振学,李 卓,等.库车坳陷迪北地区下侏罗统天然气富集机制. 地球科学中国地质大学学报,2015,409):1538-1548

    70. 唐相路,姜振学,张莺莺,等.渝东南地区页岩气富集区差异性分布成因.西安石油大学学报( 自然科学版)2015,303):24-35

    71. 李峰,姜振学,李卓,等.库车坳陷迪那2气藏成因类型及成藏机制.中南大学学报(自然科学版),2015464):1345-1352

    72. 刘建良,姜振学,刘可禹,等.库车前陆盆地牙哈构造带油气成藏过程研究.天然气地球科学,2015261):43-53

    73. 李卓,姜振学,李峰.塔里木盆地塔中16石炭系低含油饱和度油藏成因机理.地球科学中国地质大学学报,2014395).557-564.

    74. 庞雄奇,姜振学,黄捍东,等.叠复连续油气藏成因机制、发育模式及分布预测.石油学报,2014355):795-828

    75. 李卓,姜振学,庞雄奇,等.塔里木盆地库车坳陷致密砂岩气藏成因类型.地球科学(中国地质大学学报),2013381):156-164

    76. 李卓,姜振学,李峰.应用定量颗粒荧光技术恢复塔中地区石炭系油气充注历史.石油学报,2013343):427-434

    77. 李卓,姜振学,李峰.古油层和残余油层的定量颗粒荧光响应.光谱学与光谱分析,20123211):3073-3077

    78. 渠冬芳,姜振学,刘惠民,等.关键成藏期碎屑岩储层古孔隙度恢复方法.石油学报,2012333):404-413

    79. 李宏义,姜振学,董月霞,等.断层封闭能力的有限性研究及模拟实验.石油实验地质,2010326):583-587

    80. 田丰华,姜振学,夏淑华.砂体回弹在大庆油田形成过程中的贡献.中国石油大学学报(自然科学版),2008322):16-20.(第1资助)

    81. 田丰华,姜振学.剥蚀减压过程中的砂体回弹作用及其成藏效应研究综述.地质科技情报,2008271):64-68.(第1资助)

    82. 王显东,姜振学,庞雄奇.塔里木盆地志留系古油藏规模探讨.西南石油大学学报(自然科学版),2008303):13-16

    83. 姜福杰,姜振学,庞雄奇.东营凹陷油气成藏体系的划分及定量评价.地球科学,2008335):651-660

    84. 田丰华,姜振学,夏淑华.砂体回弹在大庆油田形成过程中的贡献.中国石油大学学报(自然科学版),2008322):16-20

    85. 李宏义,姜振学,庞雄奇,等.柴北缘断裂上、下盘油气差异性聚集及成因.石油勘探与开发,2006335):586-590

    86. 李宏义,姜振学,庞雄奇,等.柴北缘油气运移优势通道特征及其控油气作用.地球科学-中国地质大学学报,2006312):214-220

    87. 张 洪,姜振学,庞雄奇.克拉2气田超压成因的物理模拟实验研究.石油学报,2006274):59-62

    88. 王显东,姜振学,庞雄奇.古油气水界面恢复方法综述.地球科学进展,2003183):412-419

    89. 付广,姜振学.盖层烃浓度封闭能力评价方法探讨.石油学报,1997181):39-43

          

四、授权发明专利

    1. 姜振学,李卓,庞雄奇,等.致密深盆气成藏预测方法和装置.发明专利,ZL201410646008.5

        2.姜振学,冯洁,唐相路,等.页岩气储层的地质参数确定方法和装置.发明专利,ZL201410818237.0

    3. 姜振学,李卓,唐相路,等. 页岩全孔径孔隙体积的表征方法.发明专利,ZL201510785013.9

             4.  原园,姜振学,喻宸,等.页岩孔隙结构的表征方法.发明专利,ZL201510111926.2

    5. 黄河鑫,姜振学,李卓,等.恢复页岩含气量的方法.发明专利,ZL201510699029.8

    6. 唐相路,姜振学,郝进,等.页岩气储层特性预测方法和装置.发明专利,ZL201410815590.3

    7. 唐相路;姜振学;冯洁,等.页岩油气储层的微观地质特征确定方法和装置.发明专利,ZL201510862762.7

    8. 高之业,姜振学,杨柳.自发渗吸测量装置及其实验方法.发明专利,ZL 2015107450422

    9. 白永强,郝进,姜振学,等. 泥页岩含气量检测用解析罐、检测装置及检测系统.发明专利,ZL201410160441.8

                10. 李卓,巩文龙,姜振学,等.纳米CT样品制备装置和制备方法.发明专利,ZL201710201705.3

    11. 李卓,张瀛涵,姜振学,等. 页岩裂缝吸水扩展实验装置.发明专利,ZL201710183292.0

    12. 庞雄奇,郭迎春,姜振学,.确定连续型致密砂岩气藏分布范围的模拟实验装置及方法.发明专利,ZL 201310589131.3

    13. 庞雄奇,郭迎春,姜振学,等.确定浮力作用下限及动力平衡的物理模拟实验装置以及确定浮力作用下限及动力平衡的方法.发明专利,ZL 201210511391.4.