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Topological evolutionary computing in the optimal design of 2D and 3D structures

机译:2D和3D结构优化设计中的拓扑进化计算

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摘要

An application of evolutionary algorithms and the finite-element method to the topology optimization of 2D structures (plane stress, bending plates, and shells) and 3D structures is described. The basis of the topological evolutionary optimization is the direct control of the density material distribution (or thickness for 2D structures) by the evolutionary algorithm. The structures are optimized for stress, mass, and compliance criteria. The numerical examples demonstrate that this method is an effective technique for solving problems in computer-aided optimal design.
机译:描述了进化算法和有限元方法在2D结构(平面应力,弯曲板和壳)和3D结构的拓扑优化中的应用。拓扑进化优化的基础是通过进化算法直接控制密度材料分布(或2D结构的厚度)。结构针对应力,质量和顺应性标准进行了优化。数值算例表明,该方法是解决计算机辅助优化设计问题的有效方法。

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