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A polytree-based adaptive polygonal finite element method for multi-material topology optimization

机译:基于多树的自适应多边形有限元多材料拓扑优化方法

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This study presents a polytree-based adaptive methodology for multi-material topology optimization (MMTOP). Polytree data structure is introduced as a general recursive multi-level mesh that is automatically refined in processing based on error analysis. In order to resolve hanging nodes in element edges, the Wachspress coordinate is employed on a reference element before using a mapping scheme to obtain shape functions and their derivatives for any polygons. A new definition of filter radius is also proposed to improve the efficiency of filters and optimized results. The combination of polytree meshes and adaptive filters not only clarifies the interfaces between material phases (including void phase), but also decreases the computing time of the overall process in comparison to using the regular fine meshes. Several benchmark and practical problems are considered to show distinct features of the proposed method. (C) 2017 Elsevier B.V. All rights reserved.
机译:这项研究提出了一种基于多树的自适应方法,用于多材料拓扑优化(MMTOP)。 Polytree数据结构是作为一般的递归多级网格引入的,该网格在基于错误分析的处理中会自动进行优化。为了解析元素边缘中的悬挂节点,在使用映射方案获取任何多边形的形状函数及其导数之前,在参考元素上使用Wachspress坐标。还提出了滤波器半径的新定义,以提高滤波器的效率和优化结果。多树网格和自适应滤波器的结合不仅阐明了材料相(包括空隙相)之间的界面,而且与使用常规细网格相比,还减少了整个过程的计算时间。考虑了几个基准和实际问题,以显示所提出方法的独特功能。 (C)2017 Elsevier B.V.保留所有权利。

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