拓扑优化
水平集方法
有限元法
多边形网格
拓扑(电路)
边界(拓扑)
数学优化
计算机科学
工程设计过程
集合(抽象数据类型)
水平集(数据结构)
接口(物质)
网络拓扑
匹配(统计)
扩展有限元法
数学
工程类
机械工程
数学分析
结构工程
人工智能
统计
计算机图形学(图像)
气泡
最大气泡压力法
并行计算
分割
操作系统
组合数学
程序设计语言
图像分割
作者
Sanne J. van den Boom,Jian Zhang,Fred van Keulen,Alejandro M. Aragón
标识
DOI:10.1007/s00158-020-02682-5
摘要
Abstract During design optimization, a smooth description of the geometry is important, especially for problems that are sensitive to the way interfaces are resolved, e.g., wave propagation or fluid-structure interaction. A level set description of the boundary, when combined with an enriched finite element formulation, offers a smoother description of the design than traditional density-based methods. However, existing enriched methods have drawbacks, including ill-conditioning and difficulties in prescribing essential boundary conditions. In this work, we introduce a new enriched topology optimization methodology that overcomes the aforementioned drawbacks; boundaries are resolved accurately by means of the Interface-enriched Generalized Finite Element Method (IGFEM), coupled to a level set function constructed by radial basis functions. The enriched method used in this new approach to topology optimization has the same level of accuracy in the analysis as the standard finite element method with matching meshes, but without the need for remeshing. We derive the analytical sensitivities and we discuss the behavior of the optimization process in detail. We establish that IGFEM-based level set topology optimization generates correct topologies for well-known compliance minimization problems.
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