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首页> 外文期刊>International Journal for Numerical Methods in Engineering >Explicit finite element perfectly matched layer for transient three-dimensional elastic waves
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Explicit finite element perfectly matched layer for transient three-dimensional elastic waves

机译:瞬态三维弹性波的显式有限元完美匹配层

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摘要

The use of a perfectly matched layer (PML) model is an efficient approach toward the bounded-domain modelling of wave propagation On unbounded domains. This paper formulates a three-dimensional PML for elastic waves by building upon previous work by the author and implements it in a displacement-based finite element setting. The novel contribution of this paper over the previous work is in making this finite element implementation Suitable for explicit time integration, thus making it practicable for use in large-scale three-dimensional dynamic analyses. An efficient method of calculating the strain terms in the PML is developed in order to take advantage of the lack of the overhead of solving equations at each time step. The PML formulation is studied and validated first for a semi-infinite bar and then for the classical soil-structure interaction problems of a square flexible footing on a (i) half-space, (ii) layer on a half-space and (iii) layer on a rigid base. Numerical results for these problems demonstrate that the PML models produce highly accurate results with small bounded domains and at low computational cost and that these models are long-time stable, with critical time step sizes similar to those of corresponding fully elastic models. Copyright (C) 2008 John Wiley & Sons, Ltd.
机译:完美匹配层(PML)模型的使用是对波在无界域上进行有界域建模的有效方法。本文以作者先前的工作为基础,为弹性波制定了三维PML,并将其实现在基于位移的有限元设置中。本文对先前工作的新颖贡献在于使该有限元实现适合于显式时间积分,因此使其可用于大规模三维动态分析。为了充分利用每个时间步解方程的开销,开发了一种在PML中计算应变项的有效方法。首先研究和验证了PML公式,它适用于半无限条形,然后针对(i)半空间,(ii)半空间上的层和(iii)上的方形柔性立脚的经典土壤-结构相互作用问题。 )层放在刚性底座上。这些问题的数值结果表明,PML模型可以在较小的有界域内以较低的计算成本生成高度准确的结果,并且这些模型具有长期稳定性,其关键时间步长类似于相应的完全弹性模型。版权所有(C)2008 John Wiley&Sons,Ltd.

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