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Stable Generalized Finite Element Method and associated iterative schemes; application to interface problems

机译:稳定的广义有限元方法和相关的迭代方案;界面问题的应用

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摘要

The Generalized Finite Element Method (GFEM) is an extension of the Finite Element Method (FEM), where the standard finite element space is augmented with a space of non-polynomial functions, called the enrichment space. The functions in the enrichment space mimic the local behavior of the unknown solution of the underlying variational problem. GFEM has been successfully applied to a wide range of problems. However, it often suffers from bad conditioning, i.e., its conditioning may not be robust with respect to the mesh and in fact, the conditioning could be much worse than that of the standard FEM. In this paper, we present a numerical study that shows that if the "angle" between the finite element space and the enrichment space is bounded away from 0, uniformly with respect to the mesh, then the GFEM is stable, i.e., the conditioning of GFEM is not worse than that of the standard FEM. A GFEM with this property is called a Stable GFEM (SGFEM). The last part of the paper is devoted to the derivation of a robust iterative solver exploiting this angle condition. It is shown that the required "wall-clock" time is greatly reduced compared to popular GFEMs used in the literature. (C) 2016 Elsevier B.V. All rights reserved.
机译:广义有限元方法(GFEM)是有限元方法(FEM)的扩展,其中标准有限元空间被称为多项式函数的非多项式函数空间所扩展。富集空间中的功能模仿了潜在变分问题未知解的局部行为。 GFEM已成功应用于各种问题。然而,它经常遭受不良的调理,即,其调理相对于网格可能不稳健,并且实际上,调理可能比标准FEM的情况差很多。在本文中,我们进行了一项数值研究,表明如果有限元空间和富集空间之间的“角度”相对于网格均匀地从0出发,则GFEM是稳定的,即条件为GFEM并不比标准FEM差。具有此属性的GFEM称为稳定GFEM(SGFEM)。本文的最后一部分专门介绍了利用该角度条件的鲁棒迭代求解器的推导。结果表明,与文献中常用的GFEM相比,所需的“挂钟”时间大大减少了。 (C)2016 Elsevier B.V.保留所有权利。

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