首页> 外文期刊>Mathematics and mechanics of solids: MMS >Compact second-order time-domain perfectly matched layer formulation for elastic wave propagation in two dimensions
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Compact second-order time-domain perfectly matched layer formulation for elastic wave propagation in two dimensions

机译:紧凑的二阶时间域具有完美匹配的层配方,用于两个维度的弹性波传播

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摘要

A new second-order formulation is obtained for elastic wave propagation in 2D media bounded by a perfectly matched layer (PML). The formulation uses a complex coordinate stretching approach with a two-parameter stretch function. The final system, consisting of just two second-order displacement equations along with four auxiliary equations, is smaller than existing formulations, thereby simplifying the problem and reducing the computational cost. With the help of a plane-wave analysis, the stability of the continuous formulation is examined. It is shown that by increasing the scaling parameter in the stretch function, any existing instability is moved to higher spatial frequencies. Since discrete models cannot resolve frequencies beyond a certain limit, this can lead to significant computational stability improvements. Numerical results are shown to validate our formulation and to illustrate the improved stability that can be achieved with certain anisotropic media that have known issues.
机译:获得了通过完美匹配的层(PML)限定的2D介质中的弹性波传播的新的二阶制剂。该配方使用具有双参数拉伸功能的复杂坐标拉伸方法。最终系统,由两个二阶位移方程组成,以及四个辅助方程,小于现有制剂,从而简化了问题并降低了计算成本。借助平面波分析,检查了连续配方的稳定性。结果表明,通过增加拉伸函数中的缩放参数,将任何现有的不稳定性移动到更高的空间频率。由于离散模型无法解析超出特定限制的频率,因此这可能导致显着的计算稳定性改进。示出了数值结果来验证我们的配方,并说明具有已知问题的某些各向异性介质可以实现的改善的稳定性。

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