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Wave Propagation in Irregularly Layered Elastic Models: A Boundary Element Approach with a Global Reflection/Transmission Matrix Propagator

机译:不规则分层弹性模型中的波传播:具有全局反射/透射矩阵传播器的边界元方法

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摘要

A direct boundary element method that uses the full-space Green’s function is proposed for calculating elastic wave propagation in two-dimensional irregularly stratified models. The global matrix equation becomes larger as the number of layers increases. These equations are usually solved by improved block Gaussian elimination, conjugate gradient algorithms, or other approaches based on different approximations. In this article, we adopt the global generalized reflection/transmission matrix method (Chen, 1990, 1995, 1996) to solve this problem. This method can prevent excessive requirement of both computer memory and CPU time. The method is validated by comparing its results with those obtained using the finite- difference method.
机译:提出了一种使用全空间格林函数 的直接边界元方法来计算二维不规则 分层模型中的弹性波传播。随着层数的增加,全局矩阵方程变大 。这些方程通常通过改进的块高斯消除,共轭梯度 算法或其他基于不同近似值的方法来求解。 在本文中,我们采用全局通用反射/透射 矩阵方法(Chen,1990,1995,1996)来解决这个问题。 该方法可以防止对两台计算机的过度需求。 sup>内存和CPU时间。通过将其 结果与使用有限差分法获得的结果进行比较来验证该方法。

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