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Corner treatment by assigning dual tractions to every node for elastodynamics in TD-BEM

机译:通过为TD-BEM中的弹性力学的每个节点分配双重牵引力来进行拐角处理

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In this study, a corner treatment on the boundary for time domain boundary element method (TD-BEM) by assigning dual tractions to every node is proposed. The proposed corner treatment on boundary mimics the real mechanical situation on the physical boundary for elastodynamic problem, and the computation accuracy is good. Taking the rectangular boundary as an example, the numerical implementation of the proposed corner treatment on boundary by assigning dual tractions to every node is demonstrated. Two verification examples, one-dimensional rod in finite medium and two-dimensional circular cavity in infinite medium under dynamic loads are conducted, in which the results from the TDBEM, based on the proposed corner treatment on boundary, are compared with the results from the analytical solutions. Good agreement between the analytical results and the TDBEM results, based on the proposed corner treatment on boundary for TD-BEM, is achieved for the two verification examples. (C) 2016 Elsevier Inc. All rights reserved.
机译:在这项研究中,针对时域边界元方法(TD-BEM),提出了一种对边界进行角处理的方法,即为每个节点分配双牵引力。所提出的边界角处理模拟了弹性力学问题在物理边界上的真实力学情况,并且计算精度良好。以矩形边界为例,通过对每个节点分配双牵引力,说明了所提出的边界拐角处理的数值实现。进行了两个验证示例:动载荷下的有限介质中的一维杆和无限介质中的二维圆腔,其中将TDBEM的结果(基于拟议的边界边角处理)与结果进行了比较。分析解决方案。对于两个验证示例,基于对TD-BEM提出的边界边界处理建议,分析结果与TDBEM结果之间取得了良好的一致性。 (C)2016 Elsevier Inc.保留所有权利。

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