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Finite element implementation of efficient absorbing layers for time harmonic elastodynamics of unbounded domains

机译:有效吸收层的有限元实现,用于无限域的时间谐波弹性动力学

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摘要

An alternative approach to local transmitting boundaries for wave propagation problems in unbounded media is the application of the Perfectly Matched Layers (PML) around the finite region of interest. The PML model consists of absorbing layers that absorb almost perfectly propagating waves of all non-tangential angels-of-incident and all non-zero frequencies. This paper presents and verifies the concept of FE/PML methodology on the basis of two different formulations for the PML model in the context of time harmonic wave propagation analysis. A finite element numerical scheme is developed in which both PML formulations are successfully implemented as a macro-finite element in a commercial FEM program. Moreover, the parameters that influence the performance of the FE/PML method are extensively discussed and recommendations are given for the proper selection. Classical soil-structure interaction problems of surface or embedded rigid footing on homogeneous or heterogeneous half-plane containing layers and tunnels are investigated and the high accuracy and the easy implementation of FE/PML computational tool is demonstrated.
机译:解决无边界介质中波传播问题的局部传输边界的另一种方法是在感兴趣的有限区域周围应用完全匹配层(PML)。 PML模型由吸收层组成,这些吸收层吸收几乎所有非切向入射天使和所有非零频率的几乎完美传播的波。本文在时间谐波传播分析的背景下,基于两种不同的PML模型公式,提出并验证了FE / PML方法的概念。开发了一种有限元数值方案,其中两种PML公式都已成功地实现为商业FEM程序中的宏有限元。此外,对影响FE / PML方法性能的参数进行了广泛讨论,并提出了适当选择的建议。研究了均质或非均质半平面含土层和隧道上表面或埋入式刚性基础的经典土-结构相互作用问题,并证明了FE / PML计算工具的高精度和易实现性。

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