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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Elastic full-waveform inversion for VTI media: Methodology and sensitivity analysis
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Elastic full-waveform inversion for VTI media: Methodology and sensitivity analysis

机译:VTI介质的弹性全波形反演:方法和灵敏度分析

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摘要

Most existing implementations of full-waveform inversion (FWI) are limited to acoustic approximations. In this paper, we present an algorithm for time-domain elastic FWI in laterally heterogeneous VTI (transversely isotropic with a vertical symmetry axis) media. The adjoint-state method is employed to derive the gradients of the objective function with respect to the stiffness coefficients and then to a chosen set of VTI parameters. To test the algorithm, we introduce Gaussian anomalies in the Thomsen parameters of a homogeneous VTI medium and perform 2D FWI of multicomponent transmission data for two different model parameterizations. To analyze the sensitivity of the objective function to the model parameters, the Frechet kernel of FWI is obtained by linearizing the elastic wave equation using the Born approximation and employing the asymptotic Green's function. The amplitude of the kernel ("radiation pattern") yields the angle-dependent energy scattered by a perturbation in a certain model parameter. Then we convert the general expressions into simple approximations for the radiation patterns of P-and SV-waves in VTI media. These analytic developments provide valuable insight into the potential of multicomponent elastic FWI and help explain the numerical results for models with Gaussian anomalies in the VTI parameters.
机译:全波形反演(FWI)的大多数现有实现仅限于声学近似。在本文中,我们提出了一种在横向异构VTI(垂直对称轴为横向各向同性)介质中的时域弹性FWI算法。伴随状态方法用于推导目标函数相对于刚度系数的梯度,然后针对所选的VTI参数集。为了测试该算法,我们在均匀VTI介质的Thomsen参数中引入了高斯异常,并对两个不同的模型参数化执行了多分量传输数据的2D FWI。为了分析目标函数对模型参数的敏感性,通过使用Born逼近并采用渐近格林函数将弹性波方程线性化,从而获得FWI的Frechet核。核的振幅(“辐射方向图”)产生由特定模型参数中的扰动散布的与角度相关的能量。然后,我们将一般表达式转换为VTI介质中P波和SV波的辐射方向图的简单近似值。这些分析发展为多分量弹性FWI的潜力提供了宝贵的见识,并有助于解释在VTI参数中具有高斯异常的模型的数值结果。

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