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Nonlinear inversion of the SH wave equation in a half-space for density and shear modulus determination

机译:SH波方程在半空间中的非线性反演,用于密度和剪切模量的确定

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摘要

This paper deals with the problem of multi-parameter nonlinear inversion of the SH wave equation in an elastic half-space. A numerical approach combining Born iteration and a regularizing technique is presented for simultaneously reconstructing 2-D distributions of density and shear modulus in a scatterer embedded in a half-space. The well-to-well source-receiver scheme commonly used in geophysical exploration is considered in the model in which two incident frequencies are used to uncouple the parameters in frequency domain. The weighted residual method, along with bilinear interpolating functions, are used in the discretization procedure. Computer simulations have been conducted on several examples with different density and shear modulus configurations. The numerical results show that the approach proposed has a uniformly convergence for the given objects and has a feature of treating the limited-source well-to-well scheme that causes a more ill-conditioned equation in the inversion procedure.
机译:本文研究了弹性半空间中SH波方程的多参数非线性反演问题。提出了一种将Born迭代和正则化技术相结合的数值方法,用于同时重建嵌入半空间的散射体中的密度和剪切模量的二维分布。在该模型中考虑了地球物理勘探中常用的井间源接收器方案,该模型中使用两个入射频率来解耦频域中的参数。离散化过程中使用了加权残差法以及双线性插值函数。在具有不同密度和剪切模量配置的几个示例上进行了计算机模拟。数值结果表明,所提出的方法对于给定的对象具有一致的收敛性,并且具有处理有限源井到井方案的特征,该方案在反演过程中导致条件更为恶劣的方程式。

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