中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Carbonate fractured gas reservoir prediction based on P-wave azimuthal anisotropy and dispersion

文献类型:期刊论文

作者Cao,Zhanning1,2; Li,Xiang-Yang1,3,4; Liu,Jun5; Qin,Xilin1,3; Sun,Shaohan6; Li,Zongjie5; Cao,Zhanyuan7
刊名Journal of Geophysics and Engineering
出版日期2018-06-26
卷号15期号:5
关键词rock physics carbonate seismic anisotropy reservoir description fluid detection
ISSN号1742-2132
DOI10.1088/1742-2140/aabe58
英文摘要Abstract Carbonate fractured gas reservoir detection is very significant for the process of oil-gas exploration. It is difficult to characterize the reservoirs properly by traditional post-stack seismic attributes, because of the complexity of mineralogical composition and fluid type. Based on rock physics, it becomes possible to effectively solve this problem. In this paper, we combine seismic azimuthal anisotropy analysis and P-wave (primary wave) dispersion inversion based on the appropriate rock physics model in order to provide a method for carbonate fractured gas reservoir prediction. Firstly, referring to the geology and logging data of a carbonate fractured reservoir in the S area of Tarim basin in western China, we introduce the Voigt–Reuss–Hill theory into the Chapman model and set up an appropriate model which includes the influences of lithology and physical and fluid properties. Then, through seismic forward modeling and inversion based on this model, we find that attenuation azimuthal anisotropy is very sensitive to fracture density, and P-wave dispersion is closely linked to fluid type. By comprehensive analysis of these two attributes, we can characterize the reservoirs well. Finally, both attributes were applied to analysis of seismic field data for carbonate gas reservoir discrimination in the S area of the Tarim basin. The results show that zones with strong attenuation anisotropy and intense P-wave dispersion are likely to be favorable gas reservoirs. This is consistent with trial production data, hence demonstrating the great advantages of our method in carbonate gas exploration.
语种英语
WOS记录号IOP:1742-2132-15-5-AABE58
出版者IOP Publishing
源URL[http://ir.iggcas.ac.cn/handle/132A11/90307]  
专题地质与地球物理研究所_兰州油气中心
作者单位1.State Key Laboratory of Petroleum Resources and Prospecting, China University of Petroleum, Beijing 102249, People’s Republic of China
2.Tianjin Center, China Geological Survey, Tianjin 300170, People’s Republic of China
3.CNPC Key Laboratory of Geophysical Prospecting, China University of Petroleum, Beijing 102249, People’s Republic of China
4.British Geological Survey, The Lyell Centre, Research Avenue South, Edinburgh EH14 4AP, United Kingdom
5.Search Institute of Exploration and Development, Northwest Company, SINOPEC, Urumqi 830011, People’s Republic of China
6.Geophysical Technology Research Center, BGP Inc. of CNPC, Zhuozhou 072751, People’s Republic of China
7.Key Laboratory of Petroleum Resources, Gansu Province/Key Laboratory of Petroleum Resources Research, Institute of Geology and Geophysics, Chinese Academy of Sciences, Lanzhou 730000, People’s Republic of China
推荐引用方式
GB/T 7714
Cao,Zhanning,Li,Xiang-Yang,Liu,Jun,et al. Carbonate fractured gas reservoir prediction based on P-wave azimuthal anisotropy and dispersion[J]. Journal of Geophysics and Engineering,2018,15(5).
APA Cao,Zhanning.,Li,Xiang-Yang.,Liu,Jun.,Qin,Xilin.,Sun,Shaohan.,...&Cao,Zhanyuan.(2018).Carbonate fractured gas reservoir prediction based on P-wave azimuthal anisotropy and dispersion.Journal of Geophysics and Engineering,15(5).
MLA Cao,Zhanning,et al."Carbonate fractured gas reservoir prediction based on P-wave azimuthal anisotropy and dispersion".Journal of Geophysics and Engineering 15.5(2018).

入库方式: OAI收割

来源:地质与地球物理研究所

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