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首页> 外文期刊>Journal of Petroleum Science & Engineering >Estimation of fluid indicator and dry fracture compliances using azimuthal seismic reflection data in a gas-saturated fractured reservoir
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Estimation of fluid indicator and dry fracture compliances using azimuthal seismic reflection data in a gas-saturated fractured reservoir

机译:估计流体指示器和干骨折在气饱和裂缝储层中使用方位置地震反射数据的顺应性促进

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摘要

Amplitude variation with offset and azimuth (AVOA) inversion is a powerful tool used to predict the fluid and fracture information by utilizing the observable seismic reflection amplitudes. Understanding the effect of in situ fluid and fracture characteristics on seismic response is significant in a fractured reservoir. Our goal is to demonstrate an AVOA inversion approach to utilize the observable azimuthal seismic reflection data to predict the fluid and fracture properties in a gas-saturated fractured reservoir. Starting from Gassmann's anisotropic poroelasticity theory and the linear-slip model, we first derive a linearized PP-wave reflection coefficient in terms of fluid, rigidity, density, and dry fracture compliance parameters based on the scattering function and perturbations in dry stiffness matrix of a horizontal transversely isotropic (HTI) rock containing a system of aligned vertical fractures. The derived equation builds a linearized relationship between the characteristics of fluid and fracture and the seismic response of azimuthal seismic reflection amplitudes. Incorporating the convolution model and Bayesian inversion, we propose a feasible Bayesian AVOA inversion method to estimate the fluid and fracture parameters directly. Cauchy and Gaussian probability distribution are used for the a priori information of model parameters and the likelihood function, respectively, and the nonlinear iteratively reweighted least squares (IRLS) strategy is finally utilized to solve the maximum a posteriori solutions of model parameters. The synthetic examples containing a moderate noise demonstrate the feasibility of inversion method, and the real data illustrates the inversion stabilities of fluid and fracture parameters in a gas-saturated fractured reservoir.
机译:偏移和方位角(AVOA)反演的幅度变化是一种强大的工具,用于通过利用可观察到的地震反射幅度来预测流体和裂缝信息。理解原位流体和裂缝特性对地震反应的影响在裂缝储层中具有重要意义。我们的目标是展示利用可观察到的方位置反射数据来预测气体饱和骨质储存器中的流体和断裂性能的AVOA反转方法。从Gassmann的各向异性孔弹性理论和线性滑移模型开始,我们首先基于流体,刚性,密度和干骨折顺应参数的线性化的PP波反射系数,基于A的干刚度矩阵中的散射功能和扰动水平横向各向同性(HTI)岩石,其含有对齐垂直骨折的系统。衍生方程构建了流体和裂缝特征与方位置地震反射幅度的地震反应之间的线性化关系。纳入卷积式模型和贝叶斯反演,我们提出了一种可行的贝叶斯禽类反演方法,直接估计流体和骨折参数。 Cauchy和高斯概率分布用于分别用于模型参数的先验信息和似然函数,并且最终利用非线性迭代重新重量最小二乘(IRLS)策略来解决模型参数的最大后验解。含有中等噪声的合成实例证明了反转方法的可行性,实际数据说明了气体饱和碎屑储层中的流体和裂缝参数的反转稳定性。

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