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An open-source ABAQUS implementation of the scaled boundary finite element method to study interfacial problems using polyhedral meshes

机译:缩放边界有限元方法的开源ABAQUS实现,以研究使用多面体网格研究界面问题

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The scaled boundary finite element method (SBFEM) is capable of generating polyhedral elements with an arbitrary number of surfaces. This salient feature significantly alleviates the meshing burden being a bottleneck in the analysis pipeline in the standard finite element method (FEM). In this paper, we implement polyhedral elements based on the SBFEM into the commercial finite element software ABAQUS. To this end, user elements are provided through the user subroutine UEL. Detailed explanations regarding the data structures and implementational aspects of the procedures are given. The focus of the current implementation is on interfacial problems and therefore, element-based surfaces are created on polyhedral user elements to establish interactions. This is achieved by an overlay of standard finite elements with negligible stiffness, provided in the ABAQUS element library, with polyhedral user elements. By means of several numerical examples, the advantages of polyhedral elements regarding the treatment of non-matching interfaces and automatic mesh generation are clearly demonstrated. Thus, the performance of ABAQUS for problems involving interfaces is augmented based on the availability of polyhedral meshes. Due to the implementation of polyhedral user elements, ABAQUS can directly handle complex geometries given in the form of digital images or stereolithography (STL) files. In order to facilitate the use of the proposed approach, the code of the UEL is published open-source and can be downloaded from https://github.com/ShukaiYa/SBFEM-UEL. (C) 2021 Elsevier B.V. All rights reserved.
机译:缩放的边界有限元方法(SBFEM)能够产生具有任意数量的曲面的多面体元件。这种突出特征显着减轻了标准有限元方法(FEM)中分析管道中的围绕的啮合负担。在本文中,我们将基于SBFEM的多面体元素实施到商业有限元软件ABAQUS中。为此,通过用户子程序UEL提供用户元素。给出了关于程序的数据结构和实施方面的详细说明。当前实现的焦点是界面问题,因此,在多面体用户元素上创建基于元素的表面,以建立交互。这是通过在Abaqus元素库中提供的标准有限元件的标准有限元件的覆盖来实现,具有多面体用户元件。借助于若干数值示例,清楚地证明了关于非匹配界面的处理和自动网格产生的多面体元件的优点。因此,基于多面体网格的可用性来增强涉及界面的问题的ABAQUS的性能。由于多面体用户元素的实现,ABAQU可以直接以数字图像或立体化(STL)文件的形式给出的复杂几何形状。为了便于使用所提出的方法,UEL的代码已发布开源,可以从https://github.com/shukaiya/sbfem- ule下载。 (c)2021 elestvier b.v.保留所有权利。

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