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A reaction diffusion-based level set method using body-fitted mesh for structural topology optimization

机译:基于反应扩散的水平设定方法,用于结构拓扑优化的体拟合网格

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The level set method can express smooth boundaries in structural topology optimization with the level set function's zero-level contour. However, most applications still use rectangular/hexahedral mesh in finite element analysis, which results in zig-zag interfaces between the void and solid phases. We propose a reaction diffusion-based level set method using the adaptive triangular/tetrahedral mesh for structural topology optimization in this work. Besides genuinely expressing smooth boundaries, such a body-fitted mesh can increase finite element analysis accuracy. Unlike the traditional upwind algorithm, the proposed method breaks through the constraint of Courant-Friedrichs-Lewy stability condition with an updating scheme based on finite element analysis. Numerical examples for minimum mean compliance and maximum output displacement at specified positions, in both 2D and 3D, converge within dozens of iterations and present elegant structures. (C) 2021 Elsevier B.V. All rights reserved.
机译:LEVEL SET方法可以在结构拓扑优化中表达平稳边界,使用级别设置函数的零级轮廓。然而,大多数应用程序仍然在有限元分析中使用矩形/六面体网格,这导致虚空和固态之间的Zig-Zag接口。我们提出了一种使用自适应三角形/四面体网的基于反应扩散的水平设定方法,在这项工作中进行结构拓扑优化。除了真正表达平稳的边界外,这种身体拟合网格可以提高有限元分析精度。与传统的UPWIND算法不同,所提出的方法通过基于有限元分析的更新方案来突破傅立兽 - 弗里德里希稳定性条件的约束。在2D和3D中,在2D和3D中的最小平均顺应性和最大输出位移的数值示例在数十个迭代中收敛并呈现优雅的结构。 (c)2021 elestvier b.v.保留所有权利。

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