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Evolutionary structural optimisation based on boundary representation of NURBS. Part Ⅰ: 2D algorithms

机译:基于NURBS边界表示的演化结构优化。第一部分:二维算法

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This paper presents an evolutionary structural optimisation (ESO) approach based on the boundary element method. Non-uniform rational B-splines (NURBS) are used to define the geometry of the component and, since the shape of these B-splines is governed by a set of control points, use can be made of the locations of these control points as design variables. The developed algorithm creates NURBS-based internal cavities to accomplish topology changes. The optimum topologies evolve allowing cavities to merge between each other and to their closest outer boundary. Two-dimensional structural optimisation is investigated in detail exploring single and multiple load case elastic problems.
机译:本文提出了一种基于边界元方法的进化结构优化(ESO)方法。非均匀有理B样条曲线(NURBS)用于定义零部件的几何形状,并且由于这些B样条曲线的形状由一组控制点控制,因此可以将这些控制点的位置用作设计变量。所开发的算法可创建基于NURBS的内部空腔来完成拓扑更改。最佳拓扑不断发展,允许型腔彼此合并并最接近其外边界。详细研究了二维结构优化,探讨了单载荷和多载荷工况的弹性问题。

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