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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >An unsplit convolutional perfectly matched layer improved at grazing incidence for the seismic wave equation
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An unsplit convolutional perfectly matched layer improved at grazing incidence for the seismic wave equation

机译:地震波方程在掠入射时改善了未分裂的卷积完美匹配层

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摘要

The perfectly matched layer (PML) absorbing boundary condition has proven to be very efficient from a numerical point of view for the elastic wave equation to absorb both body waves with nongrazing incidence and surface waves. However, at grazing incidence the classical discrete PML method suffers from large spurious reflections that make it less efficient for instance in the case of very thin mesh slices, in the case of sources located close to the edge of the mesh, and/or in the case of receivers located at very large offset. We demonstrate how to improve the PML at grazing incidence for the differential seismic wave equation based on an unsplit convolution technique. The improved PML has a cost that is similar in terms of memory storage to that of the classical PML. We illustrate the efficiency of this improved convolutional PML based on numerical benchmarks using a finite-difference method on a thin mesh slice for an isotropic material and show that results are significantly improved compared with the classical PML technique. We also show that, as the classical PML, the convolutional technique is intrinsically unstable in the case of some anisotropic materials.
机译:从数值的观点来看,对于弹性波方程来说,完美匹配层(PML)的吸收边界条件非常有效,它可以吸收非掠入射的体波和表面波。但是,在掠入射时,经典的离散PML方法会受到大的杂散反射的影响,例如,在非常薄的网格切片的情况下,在靠近网格边缘的源和/或在网格中的情况下,效率较低。接收器位于非常大的偏移量的情况。我们演示了如何基于未分裂卷积技术来改善微分地震波方程在掠入射时的PML。改进的PML在存储器存储方面的成本与传统PML相似。我们使用有限差分方法,在各向同性材料的薄网格切片上,基于数值基准说明了这种改进的卷积PML的效率,并表明与经典PML技术相比,结果得到了显着改善。我们还表明,作为经典的PML,在某些各向异性材料的情况下,卷积技术本质上是不稳定的。

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