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Adaptive analysis using scaled boundary finite element method in 3D

机译:3D中缩放边界有限元方法的自适应分析

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摘要

In this paper, an adaptive refinement technique using the scaled boundary finite element method (SBFEM) is proposed. The salient feature of this technique is that it is not required to regenerate the mesh for the whole model during the iterations. To this end, a local mesh refinement strategy is implemented based on a polytree algorithm in three dimensions, which can be applied to polyhedral elements with arbitrary number of nodes, edges and faces. These elements constructed by the SBFEM can be used in analysis with their boundaries discretized only, which reduce the difficulty to connect elements with different sizes. An explicit residual based error indicator is developed using the discontinuity of the stress field to guide the adaptive mesh refinement. The accuracy and efficiency of the proposed method are demonstrated using five numerical examples, including complex geometry and stress singularity. (C) 2020 Elsevier B.V. All rights reserved.
机译:本文提出了一种使用缩放边界有限元方法(SBFEM)的自适应细化技术。该技术的突出特征是在迭代期间不需要在整个模型中重新生成网格。为此,基于三维的多群算法来实现本地网格细化策略,其可以应用于具有任意数量的节点,边缘和面的多面体元件。由SBFEM构建的这些元素可以在分析中使用它们仅离散的边界,这减少了用不同尺寸连接元件的难度。使用应力字段的不连续性开发了一个显式的残差错误指示器,以指导自适应网格细化。使用五个数值示例来证明所提出的方法的准确性和效率,包括复杂的几何形状和应力奇点。 (c)2020 Elsevier B.v.保留所有权利。

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