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Azimuthally anisotropic elastic impedance parameterisation and inversion for anisotropy in weakly orthorhombic media

机译:弱正式介质中各向异性各向异性的各向异性弹性阻抗参数化和反演

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摘要

A single set of vertically aligned fractures embedded in a horizontal fine layering may be considered a long-wavelength effective orthorhombic medium. Estimation of Thomsen anisotropic parameters and fracture weaknesses is of vital importance to characterise the orthorhombic anisotropy in orthorhombic media. Our goal is to demonstrate an azimuthally anisotropic elastic impedance parameterisation and Bayesian inversion approach to estimate orthorhombic anisotropy in a fractured reservoir. Previously derived reflection coefficient equations are limited to the assumption of a horizontally layered medium, which may be not suitable for orthorhombic media. Based on elastic inverse scattering theory, we first derive a linearised PP-wave reflection coefficient equation in terms of orthorhombic anisotropic parameters containing Thomsen anisotropic parameters and fracture weaknesses in a weakly orthorhombic medium. Using a new parameterisation for these orthorhombic anisotropic parameters, we derive an anisotropic elastic impedance equation variation with angles of incidence and azimuth. We perform anisotropic inversion in a Bayesian framework with the regularisation of Cauchy-sparse constraint and smoothing-model constraint. Using the nonlinear iteratively reweighted least squares algorithm, we iteratively estimate the orthorhombic anisotropy characterised by Thomsen anisotropic parameters and fracture weaknesses. Tests on both synthetic and real data validate the proposed approach.
机译:嵌入在水平细层中的单组垂直对齐的裂缝可以被认为是长波长有效的正交介质。 Thomsen各向异性参数和断裂弱点的估计至关重要,表征正交介质中的正交各向异性。我们的目标是展示方目的各向异性的弹性阻抗参数化和贝叶斯反演方法,以估算裂缝储层中的正交各向异性。之前衍生的反射系数方程仅限于水平分层介质的假设,这可能不适用于正交介质。基于弹性逆散射理论,我们首先在含有Thomsen各向异性参数的正交各向异性参数和弱正式介质中的断裂弱点来导出线性的PP波反射系数方程。使用新的参数来实现这些正交各向异性参数,我们得出具有入射角和方位角的各向异性弹性阻抗方程变化。我们在贝叶斯框架中进行各向异性反演,与Cauchy-稀疏约束和平滑模型约束的正则化。利用非线性迭代重新重量最小二乘算法,我们迭代地估计特征的正交各向异性参数和断裂弱点。对合成和实际数据的测试验证了所提出的方法。

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