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A level set method for shape and topology optimization of both structure and support of continuum structures

机译:用于结构和连续体结构支撑的形状和拓扑优化的水平集方法

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We present a level set method for the shape and topology optimization of both structure and support. Two level set functions are used to implicitly represent a structure. The traction free boundary and the Dirichlet boundary are represented separately and are allowed to be continuously changed during the optimization. The optimization problem of minimum compliance is considered. The shape derivatives of both boundaries are derived by using a Lagrangian function and the adjoint method. The finite element analysis is done by modifying a fixed background mesh, and we do not use the artificial weak material. Numerical examples in two dimensions are investigated.
机译:我们为结构和支撑的形状和拓扑优化提供了一种水平集方法。两个级别集函数用于隐式表示结构。自由牵引力边界和Dirichlet边界分别表示,并且在优化过程中可以连续更改。考虑最小合规性的优化问题。通过使用拉格朗日函数和伴随方法可以导出两个边界的形状导数。有限元分析是通过修改固定的背景网格来完成的,我们不使用人工的弱材料。研究了二维的数值示例。

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