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Comparative analysis of strut-and-tie models using Smooth Evolutionary Structural Optimization

机译:使用平滑演化结构优化的拉杆-拉杆模型的比较分析

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The strut-and-tie models are widely used in certain types of structural elements in reinforced concrete and in regions with complexity of the stress state, called regions "D", where the distribution of deformations in the cross section is not linear. This paper introduces a numerical technique to determine the strut-and-tie models using a variant of the classical Evolutionary Structural Optimization, which is called Smooth Evolutionary Structural Optimization. The basic idea of this technique is to identify the numerical flow of stresses generated in the structure, setting out in more technical and rational members of strut-and-tie, and to quantify their value for future structural design. This paper presents an index performance based on the evolutionary topology optimization method for automatically generating optimal strut-and-tie models in reinforced concrete structures with stress constraints. In the proposed approach, the element with the lowest Von Mises stress is calculated for element removal, while a performance index is used to monitor the evolutionary optimization process. Thus, a comparative analysis of the strut-and-tie models for beams is proposed with the presentation of examples from the literature that demonstrates the efficiency of this formulation.
机译:支杆-拉杆模型广泛用于钢筋混凝土中的某些类型的结构元件以及应力状态复杂的区域(称为“ D”区域),在该区域横截面的变形分布不是线性的。本文介绍了一种使用经典进化结构优化的变体(称为“平滑进化结构优化”)的数值技术来确定支撑-拉杆模型。这项技术的基本思想是确定结构中产生的应力的数值流,列出更多技术和合理的支杆式结构,并量化其值,以用于未来的结构设计。本文提出了一种基于演化拓扑优化方法的指标性能,该方法可以自动生成具有应力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,将计算出具有最低冯·米塞斯应力的元素以进行元素去除,同时使用性能指标来监控进化优化过程。因此,提出了对梁的拉杆-拉杆模型的比较分析,并通过文献中的例子进行了演示,这些例子证明了这种公式的有效性。

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