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Element-free Galerkin method using directed graph and its application to creep problems

机译:有向图的无元素Galerkin方法及其在蠕变问题中的应用

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The element-free Galerkin method (EFGM) is one of the meshless methods proposed by Belytschko et al. Since node-element connectivities used in the finite element method (FEM) are not needed in the EFGM, the EFGM is expected to be applied to many problems of the continuum mechanics and to be utilized for a tool in a CAE system instead of the FEM. However the EFGM requires more CPU time to search nodes of the MLSM than the FEM. In this paper, the method of the directed graph and the Delaunay triangulation are respectively used for searching nodes and the division of the integral domain respectively. These techniques are useful for saving the CPU time and the simplification of the analysis for the EFGM. Furthermore, the EFGM has not been applied to nonlinear problems such as creep problems under elevated temperature. In this paper, the EFGM using the method of the directed graph and the Delaunay triangulation is applied to several creep problems. The CPU times for the analyses are reduced by the proposed EFGM. The results obtained from the EFGM analyses agree well with those of the FEM.
机译:无元素伽勒金方法(EFGM)是Belytschko等人提出的无网格方法之一。由于在EFGM中不需要使用有限元方法(FEM)中的节点连接,因此EFGM有望应用于连续力学的许多问题,并且将用于CAE系统中的工具而不是FEM。 。但是,与FEM相比,EFGM需要更多的CPU时间来搜索MLSM的节点。本文分别采用有向图的方法和Delaunay三角剖分的方法分别搜索节点和积分域的划分。这些技术对于节省CPU时间和简化EFGM的分析很有用。此外,EFGM还没有应用于非线性问题,例如高温下的蠕变问题。在本文中,使用有向图的方法和Delaunay三角剖分的EFGM被应用于几个蠕变问题。提议的EFGM减少了分析的CPU时间。从EFGM分析获得的结果与FEM的结果非常吻合。

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