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A smoothed finite element method for octree-based polyhedral meshes with large number of hanging nodes and irregular elements

机译:具有大量悬挂节点和不规则元素的基于八叉树的多面网格的平滑有限元方法

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Techniques are now available to generate high-quality polyhedral elements offering a good alternative way for accurate stress analysis for solids. However, distorted polyhedral elements cannot be effectively used in standard finite element methods (FEM) without extra complicated treatments, due to the hanging nodes on the element edges and complex shape of polyhedral elements. On the contrary, the hanging nodes and complex shape of the elements can be naturally dealt with in the smoothed finite element method (S-FEM). This paper, utilizes the octree method to automatically and efficiently generate unstructured polyhedral meshes, using the standard tessellation language (STL). We develop three S-FEM models for octree meshes, using all existing node-based, edge-based and face-based smoothing domains. A subdomain smoothing technique is developed to re-cut the smoothing domain (SD), which simplifies the process of smoothing domain formation. The shapes of the subdomains have some common geometries that are much easier to handle, making use of the good features offered by the S-FEM formulation. The introduction of subdomains does not affect the results of the calculations, and the properties of the three S-FEMs are still preserved. Several demonstration examples are presented to verify the efficiency of the present S-FEM models. (C) 2019 Elsevier B.V. All rights reserved.
机译:现在可以使用生成高质量多面体元素的技术,这是对固体进行精确应力分析的一种很好的替代方法。但是,由于单元边缘上的悬挂节点和多面体元素的复杂形状,变形的多面体元素无法在没有额外复杂处理的情况下有效地用于标准有限元方法(FEM)。相反,可以通过平滑有限元方法(S-FEM)自然处理单元的悬挂节点和复杂形状。本文利用八叉树方法,使用标准镶嵌语言(STL)自动高效地生成非结构化多面体网格。我们使用所有现有的基于节点,基于边缘和基于面的平滑域,为八叉树网格开发了三种S-FEM模型。开发了一种子域平滑技术来重新切割平滑域(SD),从而简化了平滑域形成的过程。子域的形状具有一些通用的几何形状,这些几何形状更易于处理,这利用了S-FEM公式提供的良好功能。引入子域不会影响计算结果,并且仍然保留了三个S-FEM的属性。提供了几个演示示例,以验证当前S-FEM模型的效率。 (C)2019 Elsevier B.V.保留所有权利。

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