A 3D pseudospectral method for SH-wave simulation in heterogeneous media

Junxiao Li, K. Innanen, G. Tao
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引用次数: 3

Abstract

The second order velocity-displacement SH-wave equation in VTI media is reduced to first order equations. During SH-wave simulation, the spatial derivatives of the new developed first order SH-wave equations are transformed into wavenumber domain and a staggeredgrid Fourier pseudospectral time-domain method is used to obtain discretized forms of these wavenumber operators, which in turn, effectively eliminates the Gibbs phenomenon. The first order velocitydisplacement SH-wave equations also make it possible to set hybrid perfectly matched layers around computational boundaries to mitigate artificial reflections. This new scheme is applied for wavefield modeling in two-layer heterogeneous media. Comparisons of simulation results with pseudo-spectral method using second-order SH-wave equation further verify its accuracy. Finally, SH wavefield simulation in a three-dimensional over-thrust model is illustrated.
非均质介质中sh波模拟的三维伪谱方法
将VTI介质中的二阶速度-位移sh波方程简化为一阶方程。在sh波模拟中,将新建立的一阶sh波方程的空间导数转换为波数域,并采用交错网格傅立叶伪谱时域方法得到这些波数算子的离散形式,从而有效地消除了吉布斯现象。一阶速度位移sh波方程也使得在计算边界周围设置混合完美匹配层以减轻人工反射成为可能。将该方法应用于两层非均质介质的波场模拟。与二阶sh波方程拟谱法的模拟结果比较,进一步验证了其精度。最后进行了三维逆冲断层模型的SH波场模拟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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