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A numerical Green's function and dual reciprocity BEM method to solve elastodynamic crack problems

机译:求解格林动力裂纹问题的数值格林函数和双互易BEM方法

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A computational model based on the numerical Green's function (NGF) and the dual reciprocity boundary element method (DR-BEM) is presented for the study of elastodynamic fracture mechanics problems. The numerical Green's function, corresponding to an embedded crack within the infinite medium, is introduced into a boundary element formulation, as the fundamental solution, to calculate the unknown external boundary displacements and tractions and in post-processing determine the crack opening displacements (COD). The domain inertial integral present in the elastodynamic equation is transformed into a boundary integral one by the use of the dual reciprocity technique. The dynamic stress intensity factors (SIF), computed through crack opening displacement values, are obtained for several numerical examples, indicating a good agreement with existing solutions. (c) 2005 Elsevier Ltd. All rights reserved.
机译:提出了一种基于数值格林函数(NGF)和对等边界元方法(DR-BEM)的计算模型,用于研究弹塑性断裂力学问题。格林函数的数值,对应于无限大介质中的嵌入裂纹,被引入边界元素公式中,作为基本解决方案,以计算未知的外部边界位移和牵引力,并在后处理中确定裂纹开口位移(COD) 。弹性动力学方程中存在的区域惯性积分通过使用对等互易技术转换为边界积分。通过几个数值示例获得了通过裂缝位移值计算出的动应力强度因子(SIF),表明与现有解决方案有很好的一致性。 (c)2005 Elsevier Ltd.保留所有权利。

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