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Analysis of Interacting Cracks Using the Generalized Finite Element Method With Global-Local Enrichment Functions

机译:带有全局局部富集函数的广义有限元方法分析相互作用的裂纹

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摘要

This paper presents an analysis of interacting cracks using a generalized finite element method (GFEM) enriched with so-called global-local functions. In this approach, solutions of local boundary value problems computed in a global-local analysis are used to enrich the global approximation space through the partition of unity framework used in the GFEM. This approach is related to the global-local procedure in the FEM, which is broadly used in industry to analyze fracture mechanics problems in complex three-dimensional geometries. In this paper, we compare the effectiveness of the global-local FEM with the GFEM with global-local enrichment functions. Numerical experiments demonstrate that the latter is much more robust than the former. In particular, the GFEM is less sensitive to the quality of boundary conditions applied to local problems than the global-local FEM. Stress intensity factors computed with the conventional global-local approach showed errors of up to one order of magnitude larger than in the case of the GFEM. The numerical experiments also demonstrate that the GFEM can account for interactions among cracks with different scale sizes, even when not all cracks are modeled in the global domain.
机译:本文介绍了一种使用丰富的所谓全局局部函数的广义有限元方法(GFEM)对相互作用的裂纹进行分析。在这种方法中,通过在GFEM中使用统一框架的划分,使用在全局局部分析中计算出的局部边值问题的解决方案来丰富全局逼近空间。此方法与FEM中的全局局部过程相关,该过程在工业中广泛用于分析复杂三维几何形状中的断裂力学问题。在本文中,我们比较了具有全局局部富集功能的全局局部FEM和GFEM的有效性。数值实验表明,后者要比前者强得多。尤其是,GFEM对应用于局部问题的边界条件的质量不如全局局部FEM敏感。用传统的全局局部方法计算的应力强度因子显示出的误差比GFEM的误差大一个数量级。数值实验还表明,即使不是在全局域中对所有裂纹都进行了建模,GFEM仍可以解释具有不同尺度尺寸的裂纹之间的相互作用。

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