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XIE Xi-nong, WANG Zeng-ming. Dynamics of Basin Fluid and Its Advances[J]. Acta Sedimentologica Sinica, 2003, 21(1): 19-23.
Citation: XIE Xi-nong, WANG Zeng-ming. Dynamics of Basin Fluid and Its Advances[J]. Acta Sedimentologica Sinica, 2003, 21(1): 19-23.

Dynamics of Basin Fluid and Its Advances

  • Received Date: 2002-12-26
  • Rev Recd Date: 2003-01-10
  • Publish Date: 2003-03-10
  • Dynamics of basin fluid is a synthetical discipline to study the flow processes of fluid and kinetic and dynamic processes of fluid-rock interaction in sedimentary basin by the integrated geological, geophysical and geochemical means and computer modeling techniques, which focuses on the integrated research of history of temperature, pressure and geochemistry fields under the framework of fluid carrier network. Basin fluid system pays a very important role on the variation of mineral composition and redistribution of energy in sedimentary basin, which also controls the process of generation, migration and accumulation of hydrocarbon, and the formation of ore deposits. Hence, the study on dynamics of basin fluid has been paid attention to by a lot of scientists at home and a broad. For last 10 years, some important advances in dynamics of basin fluid include flow patterns, carrier network, fluid-rock interaction, analysis means tracing fluid flow, and computer modeling in sedimentary basin. With the application of new theories and technology, the study on basin fluid will bring a greater increase in resource exploration.
  • [1] [1]Dickinson W R. The dynamics of sedimentary basins[M]. USGS, Na tional Academy.Press,1997.43

    [2]李思田,王华,路凤香等. 盆地动力学-基本思路与若干研究方法[M].武汉: 中国地质大学出版社,1999[Li Sitian, Wang Hua, Lu Fengxiang, et al. Basin ge odynamics-fundamental idea and some approaches[M]. Wuhan: China University of Geosciences Press, 1999

    [3]Wood D C, Hewett T A. Forced fluid and diagenesis in porous reservoirs controls on spatial distribution[A]. Roles of organic matter in sediment diage nesis[C]. SEPM, 1984.73~83

    [4]Garven G. Continental scale groundwater flow and geological processes[ J]. Annual Review of Earth and Planetary Sciences, 1995, 23: 89~117

    [5]Corbet T F, Bethke C M. Disequilibrium Fluid Pressures and Groundwater f low in the Western Canada sedimentary basin[J]. Journal of Geophysical Researc h, 1992, 97: 7203~7217

    [6]康永尚,张一伟.油气成藏流体动力学[M]. 北京:地质出版社,1999[Kang Yo ngshang, Zhang Yiwei. Petroleum migration - accumulation fluids dynamics[M]. B eijing: Geological Publishing House, 1999

    [7]Knipe R J,Jones G, Fisher O J. Faulting,fault sealing and fluid flow in hydrocarbon reservoirs[C]. Geological Society,Special Publication,1998. 4 7

    [8]Moretti I. The role of faults in hydrocarbon migration[J]. Petroleum Geosciences, 1998, 4:81~94

    [9]Aydin A. Fractures,faults,and hydrocarbon entrapment,migration and f low[J]. Marine and Petroleum Geology,2000,17:797~814

    [10]Hooper E C D. Fluid migration along growth faults in compacting sediments[J ]. Journal of Petroleum Geology, 1991, 14(2): 161~180

    [11]Roberts S J, Nunn J A. Episodic fluid expulsion from geopressured sediments [J]. Marine and Petroleum Geology, 1995,12:195~204

    [12]Roberts S J, Nunn J A. Expulsion of abnormally pressured fluids along faults [J]. Journal of Geophysical Research, 1996, 101(B12): 28231~28252

    [13]Xie Xinong, Li Sitian, Dong Weiliang, Hu Zhongliang. Evidence for hot fluid flow along faults near diapiric structure of the Yinggehai basin, South China Sea[J]. Marine and Petroleum Geology, 2001,18(6): 715~728

    [14]Cartwright J A. Episodic basin-wide fluid expulsion from geopressured shale sequences in the North Sea basin[J]. Geology, 1994, 22: 447~450

    [15]Xie Xinong, Li Sitian, Dong Weiliang, Zhang Qiming. Overpressure development and hydrofracturing in the Yinggehai basin, South China Sea[J]. Journal of Pe troleum Geology, 1999, 22(4): 437~454

    [16]Wang Chi-Yuen, Xie Xinong. Hydrofracturing and episodic fluid flow in shale -rich basins - a numerical study[J]. AAPG Bulletin, 1998, 82(10):1857-1869

    [17]解习农,刘晓峰,胡祥云,秦成岗. 超压盆地中泥岩的流体压裂与幕式排烃作用[J]. 地质科技情报,1998,17(4): 59~64[Xie Xinong, Liu Xiaofeng, Hu Xiangyun, Qin Chenggang. Hydrofracturing and associated episodic hydrocarbon-expulsion of mud stones in overpressured basin[J]. Geological Science and Technology Informatio n, 1998, 17(4): 59~64]

    [18]Burley S D, Clarke S, Dodds A, et al. New insights on petroleum migratio n from the application of 4D basin modeling in oil and gas exploration[J]. Jou rnal of Geochemical Exploration,2000,69-70:465~470

    [19]Schneider F, Wolf S. Quantitative HC potential evaluation using 3D basin mod elling: application to Franklin structure, Central Graben, North Sea, UK[J]. M arine and Petroleum Geology, 2000, 17(7): 841~856

    [20]Parnell J. Geofluids: origin, migration and evolution of fluids in sedimenta ry basins[J]. Geological Society, London, Special Publication, 1994,(7):

    [21]Land L S. Na-Ca-Cl saline formation waters, Frio Formation (Oligocene), so uth Texas, USA: Products of diagenesis[J]. Geochimica et Cosmochimica Acta, 19 95, 59(11): 2163~2174

    [22]Davisson M L, Criss R E. Na-Ca-Cl relations in basinal fluids[J]. Geochi mica et Cosmochimica Acta, 1996, 60(15): 2743~2752

    [23]Fisher J B, Boles J R. Water-rock interaction in Tertiary sandstones, San Joaquin basin, California, USA: diagenetic controls on water composition[J]. C hemical Geology, 1990, 82: 83~101

    [24]Surdam R C. Seals, traps, and the petroleum system[A]. AAPG Memoir,1997, 6 7:317

    [25]Kharaka Y K, Lungedard P D, Ambats G, et al. Generation of aliphatic aci d anions and carbon dioxide by hydrous pyrolysis of crude oils[J]. Applied Geo chemistry, 1993, 8: 317~324

    [26]Land L S, Macpherson G L. Origin of saline formation waters, Cenozoic sectio n, Gulf of Mexico sedimentary basin[J]. AAPG Bulletin, 1992, 76: 1344~1362

    [27]蔡春芳,梅博文,马亭等.塔里木盆地流体-岩石相互作用研究[M]. 北京:地质出版社, 1997[Cai Chunfang, Mei Bowen, Ma Ting, et al. Approach to fluid-rock i nteraction in Tarim basin[M]. Beijing: Geological Publishing House, 1997

    [28]Lee M K, Bethke C M. Groundwater flow, late cementation, and petroleum accum ulation in the Permian Lyons sandstone, Denver basin[J]. AAPG Bulletin, 1994, 78: 217~237

    [29]解习农,李思田,董伟良,张敏强,杨计海.热流体示踪标志及其地质意义-以莺歌海盆地为例[J]. 地球科学,1999,24(2):183~188[Xie Xinong, Li Sitian, Dong Weiliang , Zhang Minqiang, Yang Jihai. Trace marker of hot fluid flow and their geologica l implications - a case study of Yinggehai basin[J]. Earth Science, 1999,24(2 ):183~188

    [30]Varsanyi I, Kovacs L O. Chemical evolution of groundwater in the River Danub e deposits in the southern part of the Pannonian Basin (Hungary)[J]. Applied G eochemistry, 1997, 12: 625~636.

    [31]Xie Xinong, Jiao Jiujiu, Li Sitian, Cheng Jianmei. Salinity variation of for mation water and diagenesis reaction in abnormally pressured environments[J]. Science in China,D Seris,2003,45(3)

    [32]施继锡.有机包裹体及其与油气的关系[J].中国科学(B), 1987, (3): 318~325[S hi Jixi. Organic inclusion and relationship with hydrocarbon[J]. Science in Ch ina, B Seris, 1987, (3): 318~325

    [33]刘德汉.包裹体研究-盆地流体追踪的有力工具[J].地学前缘, 1995, 2(4): 149~ 154[Liu Dehan. Fluid inclusion studies-an effective means for basin fluid inv estigation[J]. Earth Science Frontiers, 1995, 2(4): 149~154

    [34]Crawford M L, Kraus D W, Hollister L S. Petrologic and fluid inclusion stud y of calc-silicate rocks, Prince Rupert, British Columbia[J]. American Journa l of Science, 1979, 9: 1135~1159

    [35]Roedder E, Bodnor R J. Geologic pressure determinating from fluid inclusions studies[J]. Ann Rev Earth Planet Science, 1980, 8: 263~301

    [36]Kharaka Y K, Gunter W D, Aggarwal P K, et al. SOLMINEQ 88: a computer pr ogram for geochemical modeling of water-rock interactions[R]. U. S. Geologica l Survey Water-resources Inves. Report 88-4227, 1988. 1~120

    [37]Gouze P, Coudrain-Ribstein A. Chemical reaction and porosity changes during sedimentary diagenesis[J]. Applied Geochemistry,2002,17:39~47
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  • Received:  2002-12-26
  • Revised:  2003-01-10
  • Published:  2003-03-10

Dynamics of Basin Fluid and Its Advances

Abstract: Dynamics of basin fluid is a synthetical discipline to study the flow processes of fluid and kinetic and dynamic processes of fluid-rock interaction in sedimentary basin by the integrated geological, geophysical and geochemical means and computer modeling techniques, which focuses on the integrated research of history of temperature, pressure and geochemistry fields under the framework of fluid carrier network. Basin fluid system pays a very important role on the variation of mineral composition and redistribution of energy in sedimentary basin, which also controls the process of generation, migration and accumulation of hydrocarbon, and the formation of ore deposits. Hence, the study on dynamics of basin fluid has been paid attention to by a lot of scientists at home and a broad. For last 10 years, some important advances in dynamics of basin fluid include flow patterns, carrier network, fluid-rock interaction, analysis means tracing fluid flow, and computer modeling in sedimentary basin. With the application of new theories and technology, the study on basin fluid will bring a greater increase in resource exploration.

XIE Xi-nong, WANG Zeng-ming. Dynamics of Basin Fluid and Its Advances[J]. Acta Sedimentologica Sinica, 2003, 21(1): 19-23.
Citation: XIE Xi-nong, WANG Zeng-ming. Dynamics of Basin Fluid and Its Advances[J]. Acta Sedimentologica Sinica, 2003, 21(1): 19-23.
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