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沉积学报  2015 

不同成因类型致密砂岩气成藏过程及机理研究进展

DOI: 10.14027/j.cnki.cjxb.2015.05.017, PP. 1013-1022

Keywords: 低孔低渗,致密砂岩气,成藏过程,深盆气,封闭机理

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Abstract:

根据前人大量的研究成果,总结了致密砂岩气成藏过程和机理的研究进展。根据成因将其分为致密常规、致密深盆和致密复合砂岩气藏。致密深盆气和常规致密气成藏过程分别为储层致密化→气体充注→聚集成藏、烃源岩生排烃→运聚成藏→储层致密化→构造改善。而致密常规和深盆砂岩气在构造叠合作用下则形成致密复合砂岩气藏。常规油气藏的背斜、断层、水动力等封闭机理适用于常规致密砂岩气藏。致密深盆砂岩气成藏机理包括水体封闭、上浮受阻、侧向断层-垂向页岩封闭、地层-成岩作用复合封闭、动态平衡圈闭和驱动压差等成藏封闭机理。其中,学者们较为公认的是动态平衡封闭机理。这种机理实质上为力学平衡与物质平衡共同作用下的动态圈闭系统,但仍存在某些方面的不确定性。所以为了更清晰地认识与研究不同地区致密砂岩气成藏机制,结合实际地质演化的特殊性进行综合判断将为其勘探开发提供一定的理论依据与指导。

References

[1]  关德师,牛嘉玉,郭丽娜. 中国非常规油气地质[M]. 北京:石油工业出版社,1995. [Guan Deshi, Niu Jiayu, Guo Lina. Chinese Unconventional Oil and Gas Geology [M]. Beijing: Petroleum Industry Press, 1995.]
[2]  杨晓宁,张惠良,朱国华. 致密砂岩的形成机制及其地质意义-以塔里木盆地英南2井为例[J]. 海相油气地质,2005,10(1):31-36. [Yang Xiaoning, Zhang Huiliang, Zhu Guohua. Formation mechanism and geological implication of tight sandstones: A case of well YN-2 Tarim Basin [J]. Marine Origin Petroleum Geology, 2005, 10(1): 31-36.]
[3]  邹才能. 非常规油气地质[M]. 北京:地质出版社,2011. [Zou Caineng. Unconventional Oil and Gas Geology [M]. Beijing: Geological Publishing House, 2011.]
[4]  SY/T 6832-2011,致密砂岩气地质评价方法[S]. 北京:石油工业出版社,2011. [SY/T 6832-2011, Evaluation of sandstone gas geological density method [S]. Beijing: Petroleum Industry Press, 2011.]
[5]  杏福音,郭进,张伟杰. 致密砂岩含气区成藏条件与模式研究[J]. 延安大学学报:自然科学版,2013,31(4):63-67. [Xing Fuyin, Guo Jin, Zhang Weijie. Analysis on characteristics of tight sandstone gas regions in China[J]. Journal of Yan'an University: Natural Science Edition, 2013, 31(4): 63-67.]
[6]  康毅力,罗平亚. 中国致密砂岩气藏勘探开发关键工程技术现状与展望[J]. 石油勘探与开发,2007,34(2):239-245. [Kang Yili, Luo Pingya. Current status and prospect of key techniques for exploration and production of tight sandstone gas reservoirs in China [J]. Petroleum Exploration and Development, 2007, 34(2): 239-245.]
[7]  Duan Z, Davy C A, Agostini F, et al. Gas recovery potential of sandstones from tight gas reservoirs [J]. International Journal of Rock Mechanics and Mining Sciences, 2014, 65: 75-85.
[8]  Law B E. Basin-centered gas systems [J]. AAPG Bulletin, 2002, 86(11): 1891-1919.
[9]  章柏洋,朱建芳. 世界非常规天然气资源的利用与进展[J]. 中国石油和化工经济分析,2006(9):42-45. [Zhang Baiyang, Zhu Jianfang. Utilization of unconventional natural gas resources in the world [J]. Petroleum & Chemical, 2006(9): 42-45.]
[10]  蔡希源. 深层致密砂岩气藏天然气富集规律与勘探关键技术-以四川盆地川西坳陷须家河组天然气勘探为例[J]. 石油与天然气地质,2010,31(6):707-714. [Cai Xiyuan. Gas accumulation patterns and key exploration techniques of deep gas reservoirs in tight sandstone: An example from gas exploration in the Xujiahe Formation of the western Sichuan depression, the Sichuan Basin [J]. Oil & Gas Geology, 2010, 31(6): 707-714.]
[11]  章雄,潘和平,骆淼,等. 致密砂岩气层测井解释方法综述[J]. 工程地球物理学报,2005,2(6):431-436. [Zhang Xiong, Pan Heping, Luo Miao, et al. Summary of logging interpretation for gas-bearing tight sandstone [J]. Chinese Journal of Engineering Geophysics, 2005, 2(6): 431-436.]
[12]  董晓霞,梅廉夫,全永旺. 致密砂岩气藏的类型和勘探前景[J]. 天然气地球科学,2007,18(3):351-355. [Dong Xiaoxia, Mei Lianfu, Quan Yongwang. Types of tight sand gas accumulation and its exploration prospect [J]. Natural Gas Geoscience, 2007, 18(3): 351-355.]
[13]  姜振学, 林世国, 庞雄奇, 等. 两种类型致密砂岩气藏对比[J]. 石油实验地质, 2006, 28(3): 210-214. [Jiang Zhenxue, Lin Shiguo, Pang Xiongqi, et al. The comparison of two types of tight sand gas reservoir [J]. Petroleum Geology & Experiment, 2006, 28(3): 210-214.]
[14]  Byrnes A P, Sampath K, Randolph P L. Effect of pressure and water saturation on permeability of western tight sandstones[C]//Fifth annual department of energy symposium on enhanced oil and gas recovery and improved drilling technology. Tulsa, Oklahoma: Elsevier Science, 1979: 1-15.
[15]  Walls J D. Tight gas sands-permeability pore structure and clay [J]. Journal of Petroleum Technology, 1982, 34(11): 2708-2714.
[16]  Walls J D, Nur A M, Bourbie T. Effects of pressure and partial water saturation on gas permeability in tight sands: experimental results [J]. Journal of Petroleum Technology, 1982, 34(4): 930-936.
[17]  Masters J A. Lower Cretaceous oil and gas in western Canada [M]// AAPG Memoir 38: Elmworth: Case Study of a Deep Basin Gas Field. US: AAPG, 1984: 1-33.
[18]  杨克明,庞雄奇. 致密砂岩气藏形成机制与预测方法-以川西拗陷为例[M]. 北京:科学出版社,2012. [Yang Keming, Pang Xiongqi. Forming Mechanism and Prediction Method of Tight Sandstone Gas in West of Sichuan Depression[M]. Beijing: Science Press, 2012.]
[19]  姜福杰,庞雄奇,武丽. 致密砂岩气藏成藏过程中的地质门限及其控气机理[J]. 石油学报,2010,31(1):49-54. [Jiang Fujie, Pang Xiongqi, Wu Li. Geologic thresholds and its gas-controlling function during forming process of tight sandstone gas reservoir [J]. Acta Petrolei Sinica, 2010, 31(1): 49-54.]
[20]  Gies R M. Lateral trapping mechanisms in deep basin gas trap, Western Canada: ABSTRACT [J]. AAPG Bulletin, 1981, 65(5): 930.
[21]  Gies R M. Case history for a major Alberta deep basin gas trap: the Cadomin Formation [M]// AAPG Memoir 38: Elmworth: Case Study of a Deep Basin Gas Field. US: AAPG, 1984: 115-140.
[22]  Brown C A, Smagala T M, Haefele G R. Southern Piceance Basin Model-Cozzette, Corcoran and Rollins Sandstones [M]// AAPG Studies in Geology 24: Geology of Tight Gas Reservoirs. US: AAPG, 1986: 207-219.
[23]  陈涛涛,贾爱林,何东博,等. 川中地区须家河组致密砂岩气藏气水分布形成机理[J]. 石油与天然气地质,2014,35(2):218-223. [Chen Taotao, Jia Ailin, He Dongbo, et al. Mechanisms of gas-water distribution in tight sandstone gas reservoirs of Xujiahe Formation, central Sichuan Basin [J]. Oil & Gas Geology, 2014, 35(2): 218-223.]
[24]  李振生,刘德良,陶士振. 顺层断层对原岩层封闭能力的增强作用[J]. 中国科学技术大学学报,2007,37(3):296-302. [Li Zhensheng, Liu Deliang, Tao Shizhen. Enhancement effect of bedding faults on the sealing capacity of original rocks [J]. Journal of University of Science and Technology of China, 2007, 37(3): 296-302.]
[25]  罗群,孙宏智. 断裂活动与油气藏保存关系研究[J]. 石油实验地质,2000,22(3):225-231. [Luo Qun, Sun Hongzhi. Relationship between faulting and the preservation of oil and gas accumulation [J]. Experimental Petroleum Geology, 2000, 22(3): 225-231.]
[26]  Jones R M. Basinal isostatic adjustment faults and their petroleum significance [J]. Bulletin of Canadian Petroleum Geology, 1980, 28(2): 211-251.
[27]  Montgomery S L, Robinson J W. Jonah Field, Sublette County, Wyoming: gas production from overpressured Upper Cretaceous Lance sandstones of the Green River Basin [J]. AAPG Bulletin, 1997, 81(7): 1049-1062.
[28]  Warner E M. Structural geology and pressure compartmentalization of Jonah Field, Sublette County, Wyoming [C]// Slatt R M. Compartmentalized reservoirs in Rocky Mountain basins. Denver: Rochy Mountain Association of Geologist, 1998: 29-46.
[29]  Gies R M. Basic physical principles of conventional and deep basin gas Entrapment: ABSTRACT [J]. AAPG Bulletin, 1982, 66(5): 572.
[30]  Cant D J. Spirit river formation: a stratigraphic-diagenetic gas trap in the deep basin of Alberta [J]. AAPG Bulletin, 1983, 67(4): 577-587.
[31]  Roberts W H. Design and function of oil and gas traps [M]// AAPG Studies in Geology 10: Problems of Petroleum Migration. US: AAPG, 1980: 217-240.
[32]  米敬奎,张水昌,李新虎. 深盆气藏形成机理实验模拟[J]. 天然气地球科学,2005,16(3):302-305. [Mi Jingkui, Zhang Shuichang, Li Xinhu. Experimental simulation for the forming mechanism of deep basin gas trap [J]. Natural Gas Geoscience, 2005, 16(3): 302-305.]
[33]  肖芝华,钟宁宁,黄志龙,等. 从模拟实验看致密砂岩储层的石油成藏条件[J]. 石油与天然气地质,2008,29(6):721-725. [Xiao Zhihua, Zhong Ningning, Huang Zhilong, et al. A study on hydrocarbon pooling conditions in tight sandstones through simulated experiments [J]. Oil & Gas Geology, 2008, 29(6): 721-725.]
[34]  Spencer C W. Hydrocarbon generation as a mechanism for overpressuring in Rocky Mountain region [J]. AAPG Bulletin, 1987, 71(4): 368-388.
[35]  Berkenpas P G. The Milk River shallow gas pool: Role of the updip water trap and connate water in gas production from the pool [C]//SPE Annual Technical Conference and Exhibition. Society of Petroleum Engineers, 1991: 371-975.
[36]  Silver C. The occurrence of gas in the Cretaceous rocks of the San Juan Basin[C]//Kelley V C, Beaumont E C, Silver C. New Mexico and Colorado proceedings of the New Mexico Geological Society First Field Conference. San Juan Basin, 1950: 109-123.
[37]  Masters J A. Deep basin gas trap, western Canada [J]. AAPG Bulletin, 1979, 63(2): 152-181.
[38]  马中振,吴河勇,戴国威. 深盆气成藏机理研究进展[J]. 大庆石油地质与开发,2009,28(6):57-61. [Ma Zhongzhen, Wu Heyong, Dai Guowei. Progress of study on reservoir forming mechanism of deep basin gas [J]. Petroleum Geology and Oilfield Development in Daqing, 2009, 28(6): 57-61.]
[39]  Holditch S A. Tight gas sands [J]. Journal of Petroleum Technology, 2006, 58(6): 86-93.
[40]  Welte D H, Schaefer R G, Radke M, et al. Origin, migration, and entrapment of natural gas in Alberta deep basin: Part 1: ABSTRACT [J]. AAPG Bulletin, 1982, 66(5): 642.
[41]  Khavari-khorasani G. Free hydrocarbons in Uinta Basin, Utah [J]. AAPG Bulletin, 1984, 68(9): 1193-1197.
[42]  柳广弟,张厚福. 石油地质学[M]. 第四版. 北京:石油工业出版社,2009. [Liu Guangdi, Zhang Houfu. Petroleum Geology [M]. 4th ed. Beijing: Petroleum Industry Press, 2009.]
[43]  Welte D H, Schaefer R G, Stoessinger W, et al. Gas generation and migration in the deep basin of western Canada [M]// AAPG Memoir 38: Elmworth: Case Study of a Deep Basin Gas Field. US: AAPG, 1984: 35-47.
[44]  Law B E, Dickinson W W. Conceptual model for origin of abnormally pressured gas accumulations in low-permeability reservoirs [J]. AAPG Bulletin, 1985, 69(8): 1295-1304.
[45]  Surdam R C. A new paradigm for gas exploration in anomalously pressured" Tight Gas Sands" in the Rocky Mountain Laramide Basins [M]// AAPG Memoir 67: Seals, Traps, and the Petroleum System. US: AAPG, 1997: 283-298.
[46]  张金川,张杰. 深盆气成藏平衡原理及数学描述[J]. 高校地质学报,2003,9(3):458-465. [Zhang Jinchuan, Zhang Jie. Equilibrium principle and mathematic description for source-contacting gas accumulation [J]. Geological Journal of China Universities, 2003, 9(3): 458-465.]
[47]  金之钧,张金川. 深盆气成藏机理[J]. 地学前缘,2002,9(3):10. [Jin Zhijun, Zhang Jinchuan. Mechanism of deep basin gas accumulation [J]. Earth Science Frontiers, 2002, 9(3): 10.]
[48]  庞雄奇,金之钧,姜振学,等. 深盆气成藏门限及其物理模拟实验[J]. 天然气地球科学,2003,14(3):207-214. [Pang Xiongqi, Jin Zhijun, Jiang Zhenxue, et al. Critical condition for gas accumulation in the deep basin trap and physical modeling [J]. Natural Gas Geoscience, 2003, 14(3): 207-214.]
[49]  戴家权,王勇,冯恩民,等. 深盆气成藏机理及动态分布的定量研究[J]. 石油学报,2003,24(1):39-43. [Dai Jiaquan, Wang Yong, Feng Enming, et al. Numerical simulation of dynamic distribution and accumulation mechanism of deep basin gas [J]. Acta Petrolei Sinica, 2003, 24(1): 39-43.]
[50]  张金亮,张金功,常象春. 深盆气成藏机制及潜力评价[C]//2001年全国沉积学大会摘要论文集. 北京:中国地质学会,2001:161-162.[Zhang Jinliang, Zhang Jingong, Chang Xiangchun. Deep basin gas accumulation mechanism and potential evaluation [C]//The national congress of sedimentology. Beijing: Geological Society of China, 2001: 161-162.]
[51]  Fall A, Eichhubl P, Cumella S P, et al. Testing the basin-centered gas accumulation model using fluid inclusion observations: Southern Piceance Basin, Colorado [J]. AAPG Bulletin, 2012, 96(12): 2297-2318.
[52]  庞雄奇,周新源,董月霞,等. 含油气盆地致密砂岩类油气藏成因机制与资源潜力[J]. 中国石油大学学报:自然科学版,2013,37(5):28-37,56. [Pang Xiongqi, Zhou Xinyuan, Dong Yuexia, et al. Formation mechanism classification of tight sandstone hydrocarbon reservoirs in petroliferous basin and resources appraisal[J]. Journal of China University of Petroleum: Edition of Natural Science, 2013, 37(5): 28-37, 56.]
[53]  金之钧,张金川,王志欣. 深盆气成藏关键地质问题[J]. 地质论评,2003,49(4):400-407. [Jin Zhijun, Zhang Jinchuan, Wang Zhixin. Some remarks on deep basin gas accumulation [J]. Geological Review, 2003, 49(4): 400-407.]
[54]  张金川,金之钧. 深盆气成藏机理及分布预测[M]. 北京:石油工业出版社,2005. [Zhang Jinchuan, Jin Zhijun. Accumulation mechanism and distribution prediction of deep basin gas [M]. Beijing: Petroleum Industry Press, 2005.]
[55]  Dickinson W R. Interpreting provenance relations from detrital modes of sandstones [M]//Zuffa G G. Provenance of Arenites. Berlin: Springer Netherlands, 1985: 333-361.
[56]  姜福杰,庞雄奇,姜振学,等. 致密砂岩气藏成藏过程的物理模拟实验[J]. 地质论评,2007,53(6):844-849. [Jiang Fujie, Pang Xiongqi, Jiang Zhenxue, et al. Physical simulation experiment of gas charging in tight sandstone [J]. Geological Review, 2007, 53(6): 844-849.]
[57]  Berry F A F. Hydrodynamics and geochemistry of the Jurassic and Cretaceous systems in the San Juan Basin, northwestern New Mexico and southwestern Colorado [D]. California: Stanford University, 1959.

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