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首页> 外文期刊>Gaceta Médica de Caracas >A fourth-order accurate finite-difference program for the simulation of SH-wave propagation in heterogeneous viscoelastic medium
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A fourth-order accurate finite-difference program for the simulation of SH-wave propagation in heterogeneous viscoelastic medium

机译:模拟SH波在非均质粘弹性介质中传播的四阶精确有限差分程序

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This article presents a staggered grid time-domain finite-difference (FD) program for the simulation of sH-wave propagation in a viscoelastic heteroge?neous medium. The incorporation of realistic damping in FD program is based on a rheological model widely known as generalized maxwell body (gmB-EK). The accuracy of implementation of realistic damping is validated by comparing the numerically computed frequency dependent quality factors and phase velocity with the same computed using gmB-EK rheological model and the Futterman’s relationship. The accuracy was also validated by comparing the numerically com?puted soil amplification at resonance frequency for different damping with the analytical solutions. The stability and grid dispersion are also studied in details.
机译:本文提出了一种交错网格时域有限差分(FD)程序,用于模拟sH波在粘弹性异质介质中的传播。在FD程序中结合实际阻尼是基于流变模型的,该流变模型被广泛称为广义麦克斯韦体(gmB-EK)。通过将数值计算的频率相关品质因数和相速度与使用gmB-EK流变模型和Futterman关系计算的品质因数和相速度进行比较,可以验证实现实际阻尼的准确性。通过比较在不同阻尼下的共振频率下的数值计算土壤放大率与分析解决方案,也验证了精度。还详细研究了稳定性和网格分散。

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