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Efficient isoparametric trimmed-hexahedral elements with explicit shape functions

机译:高效的等托卡造型饰边 - 六面体元素,具有明确的形状函数

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In this study, we develop isoparametric trimmed-hexahedral (TH) elements with explicit shape functions for finite element analysis using trimmed meshes. TH elements are placed at the boundary of a trimmed mesh generated by cutting a regular hexahedral mesh with a geometric surface. Master TH elements are defined based on the marching cubes algorithm for an isoparametric mapping from the reference coordinates to the physical coordinates. Shape function values at the support points of master TH elements are precomputed by solving Laplace's equation with appropriate boundary conditions. Explicit shape functions for master TH elements are constructed by interpolating the precomputed shape function values at the support points of master TH elements. The present explicit shape functions satisfy the required properties of FEM, and significantly reduce the computational cost compared with the previously developed polyhedral shape functions. (C) 2020 Elsevier B.V. All rights reserved.
机译:在这项研究中,我们使用修剪网格开发具有明确的形状函数的异常形状函数,用于使用修剪网格进行有限元分析。将元件放置在通过用几何表面切割常规六半面滤网产生的修剪网格的边界。基于从参考坐标到物理坐标的基于ISoparametric映射的行进多维数据集算法来定义母部元素。通过在适当的边界条件下解决LAPLACE的等式来预先计算母部元素的支持点处的形状函数值。通过在母部元素的支持点处插入预先计算的形状函数值来构建母部元素的显式形状函数。本发明的显式形状功能满足FEM所需的特性,并且与先前显影的多面体形状功能相比,显着降低计算成本。 (c)2020 Elsevier B.v.保留所有权利。

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