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Topology optimization of strut-and-tie models in reinforced concrete structures using an evolutionary procedure

机译:钢筋混凝土结构中拉杆-拉杆模型的拓扑优化

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摘要

This paper presents a performance based evolutionary topology optimization method for automatically generating optimal strut-and-tie models in reinforced concrete structures with displacement constraints. In the proposed approach, the element virtual strain energy is calculated for element removal, while a performance index is used to monitor the evolutionary optimization process. By systematically removing elements that have the least contribution to the stiffness from the discretized concrete member, the load transfer mechanism in the member is gradually characterized by the remaining elements. The optimal topology of the strut-and-tie model is determined from the performance index history, based on the optimization criterion of minimizing the weight of the structure while the constrained displacements are within acceptable limits. Several examples are provided to demonstrate the capability of the proposed method in finding the actual load transfer mechanism in concrete members. It is shown that the proposed optimization procedure can produce optimal strut-and-tie models that are supported by the existing analytical solutions and experimental evidence, and can be used in practice, especially in the design of complex reinforced concrete members where no previous experience is available.
机译:本文提出了一种基于性能的演化拓扑优化方法,该方法可以自动生成具有位移约束的钢筋混凝土结构中的最佳支撑模型。在提出的方法中,计算元素虚拟应变能以去除元素,同时使用性能指标来监控进化优化过程。通过从离散混凝土构件中有系统地去除对刚度贡献最小的元素,该构件中的载荷传递机制逐渐由其余元素来表征。基于性能指标历史记录,基于在约束位移处于可接受范围内时将结构重量最小化的优化标准,确定了拉杆-拉杆模型的最佳拓扑。提供了几个示例来说明所提出的方法在混凝土构件中寻找实际载荷传递机制的能力。结果表明,所提出的优化程序可以产生最优的拉杆-拉杆模型,并得到现有的分析解决方案和实验证据的支持,并且可以在实践中使用,尤其是在没有以往经验的复杂钢筋混凝土构件的设计中可用。

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