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Application of the nearly perfectly matched layer for seismic wave propagation in 2D homogeneous isotropic media

机译:几乎完美匹配的层在二维均质各向同性介质中地震波传播中的应用

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摘要

Numerical modelling plays an important role in helping us understand the characteristics of seismic wave propagation. The presence of spurious reflections from the boundaries of the truncated computational domain is a prominent problem in finite difference computations. The nearly perfectly matched layer has been proven to be a very effective boundary condition to absorb outgoing waves in both electromagnetic and acoustic media. In this paper, the nearly perfectly matched layer technique is applied to elastic isotropic media to further test the method's absorbing ability. The staggered-grid finite-difference method (fourth-order accuracy in space and second-order accuracy in time) is used in the numerical simulation of seismic wave propagation in 2D Cartesian coordinates. In the numerical tests, numerical comparisons between the nearly perfectly matched layer and the convolutional perfectly matched layer, which is considered the best absorbing layer boundary condition, is also provided. Three numerical experiments demonstrate that the nearly perfectly matched layer has a similar performance to the convolutional perfectly matched layer and can be a valuable alternative to other absorbing layer boundary conditions.
机译:数值建模在帮助我们理解地震波传播的特征方面起着重要作用。在有限差分计算中,来自截断的计算域边界的伪反射的存在是一个突出的问题。事实证明,几乎完美匹配的层是吸收电磁和声学介质中传出波的非常有效的边界条件。本文将近乎完美匹配的层技术应用于各向同性弹性介质,以进一步测试该方法的吸收能力。交错网格有限差分法(空间的四阶精度和时间的二阶精度)用于二维笛卡尔坐标系中地震波传播的数值模拟。在数值测试中,还提供了被认为是最佳吸收层边界条件的近似完美匹配层和卷积完美匹配层之间的数值比较。三个数值实验表明,几乎完全匹配的层与卷积完全匹配的层具有相似的性能,并且可以作为其他吸收层边界条件的有价值的替代方法。

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