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首页> 外文期刊>International Journal for Numerical Methods in Engineering >Analysis of three-dimensional fracture mechanics problems: A two-scale approach using coarse-generalized FEM meshes
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Analysis of three-dimensional fracture mechanics problems: A two-scale approach using coarse-generalized FEM meshes

机译:三维断裂力学问题分析:使用粗糙广义有限元网格的两尺度方法

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摘要

This paper presents a generalized finite element method (GFEM) based on the solution of interdependent global (structural) and local (crack)-scale problems. The local problems focus on the resolution of fine-scale features of the solution in the vicinity of three-dimensional cracks, while the global problem addresses the macro-scale structural behavior. The local solutions are embedded into the solution space for the global problem using the partition of unity method. The local problems are accurately solved using an hp-GFEM and thus the proposed method does not rely on analytical solutions. The proposed methodology enables accurate modeling of three-dimensional cracks on meshes with elements that are orders of magnitude larger than the process zone along crack fronts. The boundary conditions for the local problems are provided by the coarse global mesh solution and can be of Dirichlet, Neumann or Cauchy type. The effect of the type of local boundary conditions on the performance of the proposed GFEM is analyzed. Several three-dimensional fracture mechanics problems aimed at investigating the accuracy of the method and its computational performance, both in terms of problem size and CPU time, are presented.
机译:本文提出了一种基于相互依赖的整体(结构)和局部(裂纹)规模问题的解决方案的广义有限元方法(GFEM)。局部问题集中在三维裂缝附近解决方案的精细尺度特征的解析,而全局问题则针对宏观尺度的结构行为。使用统一方法的划分,将局部解决方案嵌入到全局问题的解决方案空间中。使用hp-GFEM可以准确解决局部问题,因此所提出的方法不依赖于解析解决方案。所提出的方法能够对网格上的三维裂纹进行精确建模,其元素的数量级大于沿裂纹前沿的加工区。局部问题的边界条件由粗糙的整体网格解决方案提供,可以是Dirichlet,Neumann或Cauchy类型。分析了局部边界条件类型对所提出的GFEM性能的影响。提出了几个三维断裂力学问题,旨在从问题大小和CPU时间两个方面研究该方法的准确性及其计算性能。

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