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Analysis of wave propagation and soil-structure interaction using a perfectly matched layer model

机译:使用完全匹配层模型分析波传播和土-结构相互作用

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摘要

This paper presents an application of a perfectly matched layer as an absorbing condition for solution of linear wave equations for unbounded domains. The perfectly matched layer can be combined with different numerical methods. In this particular case, a frequency dependent finite element formulation has been pursued. What is most significant is that it utilizes a newly established requirement for definition of the perfectly matched layer, which improves the accuracy and efficiency of the method. In this study, different definitions of the attenuation were considered to optimize the performance of the radiation condition. They were verified in comparison with an exact solution of wave propagation in a half-plane. This analysis was used later to establish a requirement for definition of minimum layer depth as an accuracy prerequisite. Similar requirements are presented for the other nonphysical attenuation parameters. The advantages of the proposed model for a rigid foundation over a half-plane are shown in comparison to other solutions from the literature, but also to exact analytical result. The importance of well-defined boundary condition is best demonstrated when compared to a model with viscous damper boundary. In fact, even if a perfectly matched layer is a rigorous boundary condition, it performs much better, reducing the computational time in half by using fewer elements. Moreover, an application of the approach is presented where the kinematic effects of vibrating foundation for different ground conditions are evaluated. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文提出了一个完全匹配层的应用作为吸收条件的无界域线性波动方程的求解。完美匹配的图层可以与不同的数值方法结合使用。在这种特定情况下,已经追求了频率相关的有限元公式。最重要的是,它利用新建立的要求来定义完美匹配的层,从而提高了方法的准确性和效率。在这项研究中,考虑了不同的衰减定义以优化辐射条件的性能。通过与半平面波传播的精确解进行比较,对它们进行了验证。稍后使用此分析来确定定义最小层深度的要求,以此作为精度前提。对于其他非物理衰减参数也提出了类似的要求。与文献中的其他解决方案相比,所提出的模型在半平面上的刚性基础的优点已显示出来,但与精确的分析结果相比也有所显示。与具有粘性阻尼器边界的模型相比,最好地证明了定义良好的边界条件的重要性。实际上,即使完美匹配的层是严格的边界条件,它的性能也要好得多,通过使用更少的元素可以将计算时间减少一半。此外,提出了该方法的应用,其中评估了不同地面条件下振动基础的运动学效果。 (C)2015 Elsevier Ltd.保留所有权利。

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