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Seismic inversion for underground fractures detection based on effective anisotropy and fluid substitution 被引量:12

Seismic inversion for underground fractures detection based on effective anisotropy and fluid substitution
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摘要 Underground fractures play an important role in the storage and movement of hydrocarbon fluid. Fracture rock physics has been the useful bridge between fracture parameters and seismic response. In this paper, we aim to use seismic data to predict subsurface fractures based on rock physics. We begin with the construction of fracture rock physics model. Using the model, we may estimate P-wave velocity, S-wave velocity and fracture rock physics parameters. Then we derive a new approximate formula for the analysis of the relationship between fracture rock physics parameters and seismic response, and we also propose the method which uses seismic data to invert the elastic and rock physics parameters of fractured rock. We end with the method verification, which includes using well-logging data to confirm the reliability of fracture rock physics effective model and utilizing real seismic data to validate the applicability of the inversion method. Tests show that the fracture rock physics effective model may be used to estimate velocities and fracture rock physics parameters reliably, and the inversion method is resultful even when the seismic data is added with random noise. Real data test also indicates the inversion method can be applied into the estimation of the elastic and fracture weaknesses parameters in the target area. Underground fractures play an important role in the storage and movement of hydrocarbon fluid. Fracture rock physics has been the useful bridge between fracture parameters and seismic response. In this paper, we aim to use seismic data to predict subsurface fractures based on rock physics. We begin with the construction of fracture rock physics model. Using the model, we may estimate P-wave velocity, S-wave velocity and fracture rock physics parameters. Then we derive a new approximate formula for the analysis of the relationship between fracture rock physics parameters and seismic response, and we also pro- pose the method which uses seismic data to invert the elastic and rock physics parameters of fractured rock. We end with the method verification, which includes using well-logging data to confirm the reliability of fracture rock physics effective model and utilizing real seismic data to validate the applicability of the inversion method. Tests show that the fracture rock physics effective model may be used to estimate velocities and fracture rock physics parameters reliably, and the inversion method is resultful even when the seismic data is added with random noise. Real data test also indicates the inversion method can be ap- plied into the estimation of the elastic and fracture weaknesses parameters in the target area.
出处 《Science China Earth Sciences》 SCIE EI CAS CSCD 2015年第5期805-814,共10页 中国科学(地球科学英文版)
基金 supported by the National Basic Research Program of China(Grant Nos.2013CB228604,2014CB239201) the National Oil and Gas Major Projects of China(Grant No.2011ZX05014-001-010HZ) CNPC Innovation Foundation(Grant No.2011D-5006-0301) the Fundamental Research Funds for the Central Universities in China(Grant No.14CX06015A) SINOPEC Key Laboratory of Geophysics
关键词 有效各向异性 地震反演 裂缝检测 流体 岩石物理模型 岩石物理参数 断裂参数 地震数据 rock physics, fractures, seismic inversion, anisotropy
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