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Structural shape and topology optimization based on level-set modelling and the element-propagating method

机译:基于水平集建模和元素传播方法的结构形状和拓扑优化

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摘要

This article introduces the element-propagating method to structural shape and topology optimization. Structural optimization based on the conventional level-set method needs to solve several partial differential equations. By the insertion and deletion of basic material elements around the geometric boundary, the element-propagating method can avoid solving the partial differential equations and realize the dynamic updating of the material region. This approach also places no restrictions on the signed distance function and the Courant-Friedrichs-Lewy condition for numerical stability. At the same time, in order to suppress the dependence on the design initialization for the 2D structural optimization problem, the strain energy density is taken as a criterion to generate new holes in the material region. The coupled algorithm of the element-propagating method and the method for generating new holes makes the structural optimization more robust. Numerical examples demonstrate that the proposed approach greatly improves numerical efficiency, compared with the conventional level-set method for structural topology optimization.
机译:本文将元素传播方法介绍给结构形状和拓扑优化。基于常规水平集方法的结构优化需要求解几个偏微分方程。通过在几何边界周围插入和删除基本材料元素,元素传播方法可以避免求解偏微分方程,实现材料区域的动态更新。这种方法也没有限制符号距离函数和数值稳定性的Courant-Friedrichs-Lewy条件。同时,为了抑制对二维结构优化问题的设计初始化的依赖,将应变能密度作为在材料区域中产生新孔的标准。元素传播方法与生成新孔的方法的耦合算法使结构优化更加可靠。数值算例表明,与传统的水平集法进行结构拓扑优化相比,该方法大大提高了数值效率。

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  • 来源
    《Engineering Optimization》 |2009年第6期|p.537-555|共19页
  • 作者

    Chungang Zhuang; Zhenhua Xiong;

  • 作者单位

    School of Mechanical Engineering, Shanghai Jiao Tong University, Shanghai, 200240, P. R. China;

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  • 正文语种 eng
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