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An engineering perspective to the virtual element method and its interplay with the standard finite element method

机译:虚拟元素方法的工程视角及其与标准有限元方法的相互作用

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In this manuscript we thoroughly study the behavior of the virtual element method (VEM) in the context of two-dimensional linear elasticity problems for an engineering audience versed in standard FEM. Through detailed convergence studies we show the accuracy and the convergence rates recovered by VEM, and we compare them to those obtained by the h- and p-versions of the finite element method (FEM). We also demonstrate the mixability between FEM and VEM; in particular, applications of VEM for coupling non-conforming discretizations and for local refinement are presented, showing higher versatility compared to FEM. Computer implementation aspects in displacement-based finite element codes are thoroughly explained, remarking on the main differences with respect to standard FEM. (C) 2019 The Author(s). Published by Elsevier B.V.
机译:在这份手稿中,我们针对精通标准FEM的工程学观众,在二维线性弹性问题的背景下彻底研究了虚拟元素方法(VEM)的行为。通过详细的收敛研究,我们显示了VEM恢复的准确性和收敛速度,并将它们与通过有限元方法(FEM)的h和p版本获得的结果进行了比较。我们还演示了FEM和VEM之间的可混合性。特别是,提出了VEM在耦合不合格离散化和局部细化方面的应用,与FEM相比,具有更高的通用性。充分说明了基于位移的有限元代码中的计算机实现方面,并指出了与标准FEM的主要区别。 (C)2019作者。由Elsevier B.V.发布

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