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时移地震监测天然气水合物开采可行性分析 被引量:12

Feasibility analysis of the gas hydrate exploitation by time-lapse seismic monitoring
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摘要 时移地震储藏监测是一种提高油气采收率的有效技术,但该技术应用需要满足一定的储藏条件,因此时移地震的可行性研究非常有必要.天然气水合物的开采过程,主要是通过有关措施(加温、降压、注入化学材料等)使沉积物中的固态水合物变成气体开采出来,这将改变水合物储层的物理性质和地震反射特性,原理上为进行时移地震监测提供了条件.本文通过数值模拟分析发现:扩散型水合物藏在开采过程中有明显的地震信号变化,可以用时移地震对这类水合物藏的开采进行监测;渗漏型水合物藏的时移地震监测是否可行与其所含气体含量大小有关,气体含量低的可以用时移地震进行检测,气体含量高的是否能用时移地震进行检测要视具体情况而定. Time-lapse seismic monitoring has been proved an effective tool for enhanced oil recovery. But this technology requires certain reservoir conditions, so it's rather necessary to study its feasibility before application. In the process of extracting gas hydrate, the solid hydrate in sediments is transformed into gas and extracted mainly through the relevant measures (heating, decompression, injection of chemical materials, etc. ). This can change the physical properties of the hydrate reservoir and its seismic reflection character, so itrs possible to carry out time lapse seismic monitoring in principle. In this paper, we found significant change of seismic signal in the process of extracting seeping type hydrates by the analysis of numerical simulation, so time-lapse seismic technology monitoring can be used in extracting this gas hydrate. For diffusing type hydrates, the feasibility of time lapse seismic technology monitoring is influenced by its gas content. The hydrates of low gas content can be detected using time-lapse seismic, but for the hydrates of high gas content it depends on the actual situation.
出处 《地球物理学报》 SCIE EI CAS CSCD 北大核心 2010年第9期2213-2221,共9页 Chinese Journal of Geophysics
基金 国家重点基础研究发展计划(973计划)研究课题(2009CB219503)资助
关键词 岩石物理 时移地震监测 天然气水合物开采 Rock physics, Time-lapse seismic monitoring, Extracting gas hydrate
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  • 1Sloan E D.Clathrate Hydrates of Natural Gases.2nd Ed.New York:Marcel Dekker,1998. 被引量:1
  • 2Tréhu A M,Ruppel C,Holland M,et al.Gas hydrates in marine sediments:Lessons from Scientific Ocean Drilling.Oceanography,2006,19(4):124-142. 被引量:1
  • 3Bily C,Dick J W L.Naturally occurring gas hydrates in the Mackenzie Delta,N.W.T.Bulletin of Canadian Petroleum Geology,1974,22:340-352. 被引量:1
  • 4Uchida T,Dallimore S,Nixon M,et al.Occurrences of gas hydrates obtained from the JAPEX/JNOC/GSC Mallik 2L-38 research well.Proceedings of the International Symposium on Methane Hydrates:Resources in the Near Future,1998.371-378. 被引量:1
  • 5Klauda J B,Sandler S I.Global distribution of methane hydrates in ocean sediment.Energy & Fuels,2005,19(2):459-470. 被引量:1
  • 6Kvenvolden K A.Gas hydrate as a potential energy resource:a review of their methane content.In:Howell D G ed.The Future of Energy Gases.Geology Survey Professional Paper.U S,1993,1570:555-561. 被引量:1
  • 7Kvenvolden K A.International conference on natural gas hydrate.Acad.Sci,1994,715:232-246. 被引量:1
  • 8Ginsburg G D,Soloviev V A.On quantitative evaluation of suber-marine gas hydrates,geology and mineral resources of the world ocean.St.Petersburg VNIIOK Eangelolgia,1995. 被引量:1
  • 9Claypool G E,Presley B J,Kaplan I R.In initial report of the Deep Sea Drilling Project.Government Printing Office,Washington,U S,1973.19. 被引量:1
  • 10Kvenvolden K A.Worldwide distribution of subaquatic gas hydrate.Geo-Marine Letters,V B,1993.21- 40. 被引量:1

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