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首页> 外文期刊>Computer Methods in Applied Mechanics and Engineering >A new approach for computing hyper-singular interface stresses in IIBEM for solving multi-medium elasticity problems
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A new approach for computing hyper-singular interface stresses in IIBEM for solving multi-medium elasticity problems

机译:IIBEM中计算超奇异界面应力的新方法,用于解决中等弹性问题

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In this paper, a single stress integral equation is presented for solving multi-medium elasticity problems, and by using a newly proposed method for treating arbitrarily high order of singular boundary integrals, a new method is developed for computing the stresses on the interfaces of multi-media. Comparing to conventional multi-domain boundary element methods, the presented Interface Integral BEM (IIBEM) is more efficient in computational time, data preparing, and program coding. However, a big issue is encountered in IIBEM when computing the stresses on interfaces since the commonly used traction-recovery method in computing outer boundary stresses cannot be applied on the interfaces. Therefore, a direct method for handling a hyper-singular stress interface integral equation has to be used to obtain the interface stresses. In the direct method used in the paper, singularities are analytically removed by expressing the non-singular part of the integration kernel as a power series in a local distance defined on a projection line/plane, and the stresses on the interfaces can be evaluated precisely. Numerical examples are given to verify the correctness of the derived boundary-interface integral equations. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文提出了一个单应力积分方程来解决多介质弹性问题,并通过使用一种新提出的任意高阶奇异边界积分的处理方法,开发了一种计算多界面弹性应力的新方法。 -媒体。与传统的多域边界元方法相比,本文提出的接口集成BEM(IIBEM)在计算时间,数据准备和程序编码方面效率更高。但是,IIBEM在计算界面应力时会遇到一个大问题,因为无法在界面上应用通常用于计算外边界应力的牵引恢复方法。因此,必须使用处理超奇异应力界面积分方程的直接方法来获得界面应力。在本文中使用的直接方法中,通过将积分核的非奇异部分表示为在投影线/平面上定义的局部距离中的幂级数,将奇异性进行分析去除,并且可以精确评估界面上的应力。数值例子验证了导出的边界界面积分方程的正确性。 (C)2015 Elsevier B.V.保留所有权利。

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