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Seismic wave modeling in viscoelastic VTI media using spectral element method

机译:粘弹性VTI介质中地震波的谱元法建模

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Abstract Spectral element method (SEM) for elastic media is well known for its great flexibility and high accuracy in solving problems with complex geometries. It is an advanced choice for wave simulations. Due to anelasticity of earth media, SEM for elastic media is no longer appropriate. On fundamental of the second-order elastic SEM, this work takes the viscoelastic wave equations and the vertical transversely isotropic (VTI) media into consideration, and establishes the second-order SEM for wave modeling in viscoelastic VTI media. The second-order perfectly matched layer for viscoelastic VTI media is also introduced. The problem of handling the overlapped absorbed corners is solved. A comparison with the analytical solution in a two-dimensional viscoelastic homogeneous medium shows that the method is accurate in the wave-field modeling. Furtherly, numerical validation also presents its great flexibility in solving wave propagation problems in complex heterogeneous media. This second-order SEM with perfectly matched layer for viscoelastic VTI media can be easily applied in wave modeling in a limited region.
机译:摘要弹性介质的光谱元素法(SEM)因其解决复杂几何问题的灵活性和高精度而闻名。它是波浪模拟的高级选择。由于土介质的无弹性,因此不再适合于弹性介质的SEM。在二阶弹性SEM的基础上,这项工作考虑了粘弹性波方程和垂直横向各向同性(VTI)介质,并建立了用于在粘弹性VTI介质中进行波建模的二阶SEM。还介绍了粘弹性VTI介质的二阶完美匹配层。解决了重叠的吸收角的处理问题。与二维粘弹性均质介质中的解析解进行比较表明,该方法在波场建模中是准确的。此外,数值验证在解决复杂非均质介质中的波传播问题上也表现出极大的灵活性。这种具有完美匹配层的二阶SEM用于粘弹性VTI介质,可以轻松地在有限区域内进行波建模。

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