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Combining finite element and finite difference methods for isotropic elastic wave simulations in an energy-conserving manner

机译:组合有限元和有限差分方法以节能态的各向同性弹性波模拟

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摘要

We consider numerical simulation of the isotropic elastic wave equations arising from seismic applications with non-trivial land topography. The more flexible finite element method is applied to the shallow region of the simulation domain to account for the topography, and combined with the more efficient finite difference method that is applied to the deep region of the simulation domain. We demonstrate that these two discretization methods, albeit starting from different formulations of the elastic wave equation, can be joined together smoothly via weakly imposed interface conditions. Discrete energy analysis is employed to derive the proper interface treatment, leading to an overall discretization that is energy-conserving. Numerical examples are presented to demonstrate the efficacy of the proposed interface treatment. (C) 2018 Elsevier Inc. All rights reserved.
机译:我们考虑与非琐差陆地地形采用地震应用引起的各向同性弹性波方程的数值模拟。 更灵活的有限元方法应用于模拟域的浅区域,以考虑地形,并与施加到模拟域的深区域的更有效的有限差分方法。 我们证明这两种离散化方法尽管从弹性波方程的不同配方开始,可以通过弱施加的界面条件平滑地连接在一起。 采用离散能量分析来衍生适当的界面处理,导致总体离散化是节能的。 提出了数值例以证明所提出的界面处理的功效。 (c)2018年Elsevier Inc.保留所有权利。

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