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Fast Multipole VBEM for Simulating 2-D Elastic Solid Containing Inclusions

机译:用于模拟含有夹杂物的2-D弹性固体的快速多极VBEM

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摘要

The fast multipole virtual boundary element method (VBEM) is used to simulate the 2-D elastic solid containing inclusions in this paper. Basic idea of fast multipole method (FMM) is changing the computational structure to enhance the speed and reduce storage capacity. By adopting the FMM and generalized minimal residual algorithm (GMRES) to solve the equations of VBEM, the operations and memory could be reduced to be of linear proportion to the degree of freedom. The results show that the complex problems can be effectively solved with the method on a common desktop, and the fast multipole VBEM has broad applied prospects in the design and parameters forecast of composite materials.
机译:快速的多极虚拟边界元方法(VBEM)用于模拟本文中的含有夹杂物的2-D弹性固体。 快速多极法(FMM)的基本思想正在改变计算结构,以提高速度并降低存储容量。 通过采用FMM和广义最小的残差算法(GMRES)来解决VBEM的方程,可以将操作和存储器减少为与自由度的线性比例。 结果表明,在普通桌面上的方法可以有效地解决了复杂问题,并且快速的多极VBEM在复合材料的设计和参数预测中具有广泛的应用前景。

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