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Direct hydrocarbon identification in shale oil reservoirs using fluid dispersion attribute based on an extended frequency-dependent seismic inversion scheme
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作者 Zhi-Qi Guo Tao Zhang Cai Liu 《Petroleum Science》 SCIE EI CAS CSCD 2023年第3期1532-1545,共14页
The identification of hydrocarbons using seismic methods is critical in the prediction of shale oil res-ervoirs.However,delineating shales of high oil saturation is challenging owing to the similarity in the elastic p... The identification of hydrocarbons using seismic methods is critical in the prediction of shale oil res-ervoirs.However,delineating shales of high oil saturation is challenging owing to the similarity in the elastic properties of oil-and water-bearing shales.The complexity of the organic matter properties associated with kerogen and hydrocarbon further complicates the characterization of shale oil reservoirs using seismic methods.Nevertheless,the inelastic shale properties associated with oil saturation can enable the utilization of velocity dispersion for hydrocarbon identification in shales.In this study,a seismic inversion scheme based on the fluid dispersion attribute was proposed for the estimation of hydrocarbon enrichment.In the proposed approach,the conventional frequency-dependent inversion scheme was extended by incorporating the PP-wave reflection coefficient presented in terms of the effective fluid bulk modulus.A rock physics model for shale oil reservoirs was constructed to describe the relationship between hydrocarbon saturation and shale inelasticity.According to the modeling results,the hydrocarbon sensitivity of the frequency-dependent effective fluid bulk modulus is superior to the traditional compressional wave velocity dispersion of shales.Quantitative analysis of the inversion re-sults based on synthetics also reveals that the proposed approach identifies the oil saturation and related hydrocarbon enrichment better than the above-mentioned conventional approach.Meanwhile,in real data applications,actual drilling results validate the superiority of the proposed fluid dispersion attribute as a useful hydrocarbon indicator in shale oil reservoirs. 展开更多
关键词 Shale oil Fluid dispersion attribute Hydrocarbon identification Frequency-dependent inversion Rock physics
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起伏海底界面上覆液相弹性介质的海底电缆数据正演模拟与波形分离方法(英文) 被引量:2
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作者 曲英铭 孙军治 +3 位作者 李振春 黄建平 李海鹏 孙文之 《Applied Geophysics》 SCIE CSCD 2018年第3期432-447,共16页
在海洋地震勘探中,海底电缆技术能够准确记录多分量地震波场。但地震波在海洋上覆液相弹性介质环境中的传播无法用单一的波动方程进行稳定地模拟,而且当海底界面为起伏构造时,常规有限差分格式无法准确地对声波波场传递到弹性波波场的... 在海洋地震勘探中,海底电缆技术能够准确记录多分量地震波场。但地震波在海洋上覆液相弹性介质环境中的传播无法用单一的波动方程进行稳定地模拟,而且当海底界面为起伏构造时,常规有限差分格式无法准确地对声波波场传递到弹性波波场的过程进行模拟。因此,提出了一种曲坐标系下的声弹耦合方程正演模拟及纵横波矢量分解方法。该方法将起伏海底界面的上覆液相弹性介质剖分为正交曲网格,并采用坐标旋转将笛卡尔坐标系下的起伏海底界面映射为曲坐标系下的水平海底界面,在上覆液相介质和下伏固相介质中分别采用曲坐标系下的声波方程和弹性波方程进行模拟,在起伏海底界面处,提出了一种曲坐标系下的声-弹耦合控制方程将两种方程的声压和应力结合起来。在数值离散时,引入了一种全交错网格机制提高数值模拟的稳定性。基于上述研究,推导了一种曲坐标系下分离的纵波方程和横波方程,实现了曲坐标系下纵横波矢量分解。分别采用理论推导和数值测试证明了该方法的正确性。 展开更多
关键词 IRREGULAR SEABED fluid-solid elastic media ocean BOTTOM cable data P-and S-WAVE separation curvilinear COORDINATES
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