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Complex Frequency Shifted Perfectly Matched Layer Boundary Conditions for Frequency-Domain Elastic Wavefield Simulations

机译:复频移位完全匹配的频域弹性波场模拟层边界条件

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摘要

To absorb unwanted seismic reflections caused by the truncated boundaries, various absorbing boundary conditions have been developed for seismic numerical modeling in both time and frequency domains. Among the various types of perfectly matched layer (PML) boundary conditions, complex frequency shifted PML (CFS-PML) has attracted much attention in time-domain wavefield simulations because it can better handle evanescent and grazing waves. In this paper, we extend the CFS-PML boundary condition to frequency-domain finite-difference seismic modeling, which has several advantages over time-domain modeling including the convenient implementation of multiple sources and a straightforward extension of adding attenuation factors. A comparison with an analytical solution is used to investigate the validity of the proposed CFS-PML algorithm. CFS-PML shows better absorbing behavior than the classical PML boundary condition in our model tests. We further implement CFS-PML for seismic wavefield simulations in an elongated elastic model and a complex model (Marmousi-II) with a free surface boundary condition.
机译:为了吸收由截头边界引起的不需要的地震反射,已经开发了各个时间和频率域的地震数值建模的各种吸收边界条件。在各种类型的完美匹配层(PML)边界条件中,复频移位的PML(CFS-PML)在时域波场模拟中引起了很多关注,因为它可以更好地处理渐逝和放牧波。在本文中,我们将CFS-PML边界条件扩展到频域有限差异地震建模,其与时域建模的几个优点包括方便的多种来源的实现和添加衰减因子的直接扩展。使用与分析解决方案的比较来研究所提出的CFS-PML算法的有效性。 CFS-PML显示比我们模型测试中的经典PML边界条件更好的吸收行为。我们进一步在细长的弹性模型中实现了用于地震波场模拟的CFS-PML,以及具有自由表面边界条件的复杂模型(MARMOUSI-II)。

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