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首页> 外文期刊>Computational Mechanics: Solids, Fluids, Fracture Transport Phenomena and Variational Methods >Arbitrary order 2D virtual elements for polygonal meshes: part I, elastic problem
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Arbitrary order 2D virtual elements for polygonal meshes: part I, elastic problem

机译:多边形网格的任意订单2D虚拟元素:第一部分,弹性问题

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The present work deals with the formulation of a virtual element method for two dimensional structural problems. The contribution is split in two parts: in part I, the elastic problem is discussed, while in part II (Artioli et al. in Comput Mech, 2017) the method is extended to material nonlinearity, considering different inelastic responses of the material. In particular, in part I a standardized procedure for the construction of all the terms required for the implementation of the method in a computer code is explained. The procedure is initially illustrated for the simplest case of quadrilateral virtual elements with linear approximation of displacement variables on the boundary of the element. Then, the case of polygonal elements with quadratic and, even, higher order interpolation is considered. The construction of the method is detailed, deriving the approximation of the consistent term, the required stabilization term and the loading term for all the considered virtual elements. A wide numerical investigation is performed to assess the performances of the developed virtual elements, considering different number of edges describing the elements and different order of approximations of the unknown field. Numerical results are also compared with the one recovered using the classical finite element method.
机译:目前的工作涉及用于二维结构问题的虚拟元素方法的制定。该贡献分为两部分:在第一部分中,讨论了弹性问题,而在第二部分(Artioli等人。在计算机制中,2017)延伸到材料非线性,考虑到材料的不同的非弹性响应。特别地,在第一部分中,解释了用于构建计算机代码中方法所需的所有条款的标准化过程。最初为具有在元件边界上的位移变量的线性近似的四边形虚拟元素的最简单情况下的过程。然后,考虑具有二次和甚至,甚至更高阶插值的多边形元素的情况。该方法的构造详细,导出了一致术语的近似,所需的稳定期和所有所考虑的虚拟元素的负载术语。考虑到描述了描述了未知字段的近似的不同数量的边缘,执行广泛的数值调查来评估发达的虚拟元件的性能。还将数值结果与使用经典有限元方法恢复的数值进行比较。

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