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Non-Reflecting Regions for Finite Difference Methods in Modeling of Elastic Wave Propagation in Plates

机译:板弹性波传播建模中有限差分法的非反射区域

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摘要

Solution of the wave equation using techniques such as finite difference or finite element methods can model elastic wave propagation in solids. This requires mapping the physical geometry into a computational domain whose size is governed by the size of the physical domain of interest and by the required resolution. This computational domain, in turn, dictates the computer memory requirements as well as the calculation time. Quite often, the physical region of interest is only a part of the whole physical body, and does not necessarily include all the physical boundaries. Reduction of the calculation domain requires positioning an artificial boundary or region where a physical boundary does not exist. It is important however that such a boundary, or region, will not affect the internal domain, i.e., it should not cause reflections that propagate back into the material. This paper concentrates on the issue of constructing such a boundary region.
机译:使用诸如有限差分或有限元方法之类的波动方程的求解可以对弹性波在固体中的传播进行建模。这就要求将物理几何图形映射到一个计算域中,该计算域的大小取决于目标物理域的大小和所需的分辨率。反过来,此计算域决定了计算机的内存需求以及计算时间。通常,感兴趣的物理区域只是整个身体的一部分,并不一定包括所有物理边界。减少计算域需要将人工边界或不存在物理边界的区域定位。然而,重要的是,这样的边界或区域将不会影响内部区域,即,它不应引起反射传播回材料中。本文着重于构建这样的边界区域的问题。

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