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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Fracture detection and fluid identification based on anisotropic Gassmann equation and linear-slip model
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Fracture detection and fluid identification based on anisotropic Gassmann equation and linear-slip model

机译:基于各向异性Gassmann方程和线性滑移模型的断裂检测与流体识别

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Detection of fracture and fluid properties from subsurface azimuthal seismic data improves our abilities to characterize the saturated porous reservoirs with aligned fractures. Motivated by the fracture detection and fluid identification in a fractured porous medium, we have developed a feasible approach to perform a rock physics model-based amplitude variation with offset and azimuth (AVOAz) inversion for the fracture and fluid parameters in a horizontal transversely isotropic (HTI) medium using the PP-wave angle gathers along different azimuths. Based on the linear-slip model, we first use anisotropic Gassmann's equation to derive the expressions of saturated stiffness components and their perturbations of first-order approximation in terms of elastic properties of an isotropic porous background and fracture compliances induced by a single set of rotationally invariant fractures. We then derive a linearized PP-wave reflection coefficient in terms of fluid modulus, dry-rock matrix term, porosity, density, and fracture compliances or quasi-compliances for an interface separating two weakly HTI media based on the Born scattering theory. Finally, we solve the AVOAz inverse problems iteratively constrained by the Cauchy-sparse regularization and the low-frequency regularization in a Bayesian framework. The results demonstrate that the fluid modulus and fracture quasi-compliances are reasonably estimated in the case of synthetic and real seismic data containing moderate noise in a gas-filled fractured porous reservoir.
机译:从地下方形抗震数据中检测骨折和流体性质提高了具有对齐骨折的饱和多孔储层的能力。裂缝多孔介质中的断裂检测和流体鉴定,我们开发了一种可行的方法,可以在水平横向各向同性( HTI)介质使用PP波角度沿不同的方位角收集。基于线性滑移模型,首先使用各向异性Gassmann的方程来导出饱和刚度分量的表达及其在各向同性多孔背景和由一组旋转诱导的断裂求征的弹性特性方面的一阶近似的扰动不变的骨折。然后,我们在流体模量,干岩基质术语,孔隙度,密度,密度和裂缝促进或准合物中获得线性化的PP波反射系数,用于基于出生的散射理论分离两个弱HTI媒体的界面。最后,我们解决了Cauchy-稀疏正则化和贝叶斯框架中的低频正则化迭代地限制的AvoAZ逆问题。结果表明,在含有填充填充骨折多孔储层中的适度噪声的合成和实际地震数据的情况下,流体模量和裂缝准合理估计。

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