一种不考虑灵敏度的无网格拓扑优化方法

M. Nguyen, T. Bui
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引用次数: 3

摘要

提出了一种基于无网格径向点插值法(RPIM)的不考虑灵敏度的最小柔度问题拓扑优化方法。基于比例拓扑优化(PTO)算法,仅利用目标函数(即弹性应变能)的信息进行材料分布。材料性能采用著名的固体各向同性材料惩罚法(SIMP)插值;然而,伪密度(设计变量)并不像通常基于有限元的方法那样定义在单元中心,而是定义在集成点上。由于在无网格分析中不存在任何元素,这将是一个自然的选择。更重要的是,积分点的数量通常大于元素或节点的数量,因此密度场的分辨率更高。通过几个数值算例,论证了该方法的可行性和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A meshfree-based topology optimization approach without calculation of sensitivity
This paper presents a novel topology optimization approach without calculation of sensitivity for the minimum compliance problems, based on the meshfree Radial Point Interpolation Method (RPIM). Relying on the algorithm of Proportional Topology Optimization (PTO), material is distributed using only information of the objective function (which is the elastic strain energy). Material properties are interpolated by the well-known Solid Isotropic Material with Penalization (SIMP) technique; however the pseudo density (design variables) are not defined on the element center as usually encountered in finite element-based approaches, but on integration points. Since no element exists in meshfree analysis, this would be a natural choice. More importantly, the number of integration points is in general larger than that of elements or that of nodes, resulting in higher resolution of the density field. The feasibility and efficiency of the proposed approach are demonstrated and discussed via several numerical examples.
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