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Evolutionary methods for topology optimisation of continuous structures with design dependent loads

机译:依赖设计的连续结构拓扑优化的进化方法

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摘要

Evolutionary structural optimisation (ESO) method is based on the idea that by gradually removing inefficient materials, the structure evolves towards an optimum. Bi-directional ESO (BESO) allows for adding efficient materials in the evolution. This paper investigates the ESO and BESO methods in solving the topology optimisation of continua structures with a constraint on the global stiffness. Based on the work on stiffness optimisation with fixed load conditions, this paper focuses on problems considering design dependent loads. The dependence can be due to transmissible loads, inclusions of structural self weight and surface loads. Sensitivity analysis and evolutionary procedure for problems of fixed load conditions are modified to accommodate the load variation condition. A number of examples are presented for verification. The results demonstrate that ESO and BESO are effective in solving the optimisation with design dependent loads. BESO has the flexibility of balancing solution quality and computing time.
机译:进化结构优化(ESO)方法基于这样的思想,即逐渐去除效率低下的材料,结构会朝着最优方向发展。双向ESO(BESO)允许在演进过程中添加有效的材料。本文研究了求解整体刚度约束的连续结构拓扑优化的ESO和BESO方法。基于在固定载荷条件下进行刚度优化的工作,本文重点研究考虑设计相关载荷的问题。这种依赖性可能是由于可传递的载荷,包括结构自重和表面载荷在内的结果。修改了固定载荷条件下的敏感性分析和演化过程,以适应载荷变化条件。给出了许多示例进行验证。结果表明,ESO和BESO可以有效地解决与设计有关的载荷的优化问题。 BESO具有在解决方案质量和计算时间之间取得平衡的灵活性。

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