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Rock physics modeling of heterogeneous carbonate reservoirs: porosity estimation and hydrocarbon detection

机译:非均质碳酸盐岩储层岩石物理建模:孔隙度估计与油气探测

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摘要

In heterogeneous natural gas reservoirs, gas is generally present as small patch-like pockets embedded in the water-saturated host matrix. This type of heterogeneity, also called "patchy saturation", causes significant seismic velocity dispersion and attenuation. To establish the relation between seismic response and type of fluids, we designed a rock physics model for carbonates. First, we performed CT scanning and analysis of the fluid distribution in the partially saturated rocks. Then, we predicted the quantitative relation between the wave response at different frequency ranges and the basic lithological properties and pore fluids. A rock physics template was constructed based on thin section analysis of pore structures and seismic inversion. This approach was applied to the limestone gas reservoirs of the right bank block of the Amu Darya River. Based on poststack wave impedance and prestack elastic parameter inversions, the seismic data were used to estimate rock porosity and gas saturation. The model results were in good agreement with the production regime of the wells.
机译:在非均质天然气储层中,天然气通常以嵌入水饱和主体基质中的小块状口袋形式存在。这种类型的非均质性,也称为“斑块饱和”,会导致显着的地震速度色散和衰减。为了确定地震响应与流体类型之间的关系,我们设计了一个碳酸盐岩的岩石物理模型。首先,我们对部分饱和岩石中的流体分布进行了CT扫描和分析。然后,预测了不同频率范围内的波响应与基本岩性和孔隙流体之间的定量关系。基于孔隙构造薄片分析和地震反演,构建了岩石物理模板。这种方法被应用于阿姆河右岸区块的石灰岩气藏。基于堆后波阻抗和堆前弹性参数反演,利用地震数据估算岩石孔隙度和气体饱和度。模型结果与油井的生产情况吻合良好。

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