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An improved multiscale eigenelement method of periodical composite structures

机译:一种改进的周期性复合结构多尺度特征化方法

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Multiscale eigenelement method (MEM) proposed by the authors and co-workers is based on the eigenvector expansion method and substructure approach. Using the idea of perturbation, two methods are proposed to improve the accuracy of the multiscale eigenelement method. One method is choosing a few interior nodes from the micro model of unit cell as additional macro nodes of eigenelement; the other is taking the first m modes of the unit cell with clamped edges into account in the displacement functions of eigenelement. The computational cost of MEM is compared with that of asymptotic expansion homog-enization method. Numerical comparisons are conducted to validate the high accuracy of the improved MEM for static and dynamic problems.
机译:作者和同事提出的多尺度特征化方法(MEM)是基于特征向量展开法和子结构方法的。利用摄动思想,提出了两种方法来提高多尺度特征化方法的精度。一种方法是从晶胞的微观模型中选择一些内部节点作为附加的本征宏节点。另一种方法是在特征生成的位移函数中考虑具有夹紧边的晶胞的前m个模式。将MEM的计算成本与渐近展开同质化方法的计算成本进行了比较。进行了数值比较,以验证改进的MEM对静态和动态问题的高精度。

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