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The scaled boundary finite element method for computational homogenization of heterogeneous media

机译:异构媒体计算均匀化的缩放边界有限元方法

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摘要

Materials exhibit macroscopic properties that are dependent on the underlying components at lower scales. Computational homogenization using the finite element method (FEM) is often used to determine the effective mechanical properties based on the microstructure. However, the use of FEM might suffer from several difficulties such as mesh generation, application of periodic boundary conditions or computations in presence of material interfaces, and further discontinuities. In this paper, we present an alternative approach for computational homogenization of heterogeneous structures based on the scaled boundary finite element method (SBFEM). Based on quadtrees, we are applying a simple meshing strategy to create polygonal elements for arbitrary complex microstructures by using a relatively small number of elements. We show on selected numerical examples that the proposed computational homogenization technique represents a suitable alternative to classical FEM approaches capable of avoiding some of the mentioned difficulties while accurately and effectively calculating the macroscopic mechanical properties. An example of a two-scale semiconcurrent coupling between FEM and SBFEM is presented, illustrating the complementarity of both approaches.
机译:材料表现出宏观性质,其取决于较低尺度的下层组分。使用有限元方法(FEM)的计算均匀化通常用于基于微结构来确定有效的机械性能。然而,FEM可能遭受若干困难,例如网格产生,周期性边界条件或在存在材料界面存在的计算,以及进一步的不连续性。本文基于缩放边界有限元法(SBFEM),介绍了一种替代方法,用于基于缩放边界有限元法(SBFEM)的异构结构的计算均匀化。基于四轮车,我们通过使用相对少量的元素来应用简单的网格策略来创建任意复杂微结构的多边形元素。我们在所选择的数值示例中展示所提出的计算均化技术代表能够避免一些提到的困难的典型有限元方法的合适替代方案,同时精确且有效地计算宏观力学性能。呈现了有限元和SBFEM之间的两尺度半流耦合的示例,示出了两种方法的互补性。

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