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Frequency domain finite-element and spectral-element acoustic wave modeling using absorbing boundaries and perfectly matched layer

机译:使用吸收边界和完美匹配层的频域有限元和光谱元件波模型

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摘要

Wave propagation modeling as a vital tool in seismology can be done via several different numerical methods among them are finite-difference, finite-element, and spectral-element methods (FDM, FEM and SEM). Some advanced applications in seismic exploration benefit the frequency domain modeling. Regarding flexibility in complex geological models and dealing with the free surface boundary condition, we studied the frequency domain acoustic wave equation using FEM and SEM. The results demonstrated that the frequency domain FEM and SEM have a good accuracy and numerical efficiency with the second order interpolation polynomials. Furthermore, we developed the second order Clayton and Engquist absorbing boundary condition (CE-ABC2) and compared it with the perfectly matched layer (PML) for the frequency domain FEM and SEM. In spite of PML method, CE-ABC2 does not add any additional computational cost to the modeling except assembling boundary matrices. As a result, considering CE-ABC2 is more efficient than PML for the frequency domain acoustic wave propagation modeling especially when computational cost is high and high-level absorbing performance is unnecessary.
机译:波传播建模作为地震学中的重要工具可以通过其中几种不同的数值方法来完成,它们是有限差分,有限元和光谱 - 元件方法(FDM,FEM和SEM)。地震勘探中的一些高级应用有益于频域建模。关于复杂地质模型的灵活性并处理自由表面边界条件,我们研究了FEM和SEM的频域声波方程。结果表明,频域FEM和SEM具有良好的准确性和数值效率,具有二阶插值多项式。此外,我们开发了二阶克莱顿和engquist吸收边界条件(CE-ABC2),并将其与频域FEM和SEM的完美匹配的层(PML)进行比较。尽管PML方法,除了组装边界矩阵之外,CE-ABC2不会为建模添加任何额外的计算成本。结果,考虑到CE-ABC2比对于频域声波传播建模的PML更有效,特别是当计算成本高而且不需要高电平的吸收性能时。

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