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Performance-Based Optimization of Reinforced Ductile Concrete Frames with Asymmetric Reinforcement in Columns Using the ISR Analogy

机译:使用ISR类比基于柱增强型韧带混凝土框架的性能优化

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Aims/ Objectives: The present work exposes the design of optimization procedures both with the?“Particle Swarm Optimization” (PSO) algorithm and the “Genetic Algorithm” (GA) for the design?of reinforced concrete frames, making comparisons in cost, weight of the structure and predicted?damage. The optimization procedures are built up using the “Idealized Smeared Reinforcement”?(ISR) analogy for each element of the structural model frames considered for this work.Study Design: Descriptive Cross-sectional study.?Place and Duration of Study: Graduate Engineering Department, Autonomous University of?Queretaro, Santiago de Quertaro, Quertaro, Mxico, August 2021. Methodology: Two different numerical structural plane-frame models were created for the application and comparison of the performance of the optimization design procedures hereby proposed. The optimization procedures were mono-objective with a cost-objective function, taking on account steel reinforcement and concrete for the cost computation. Two different design approaches were carried on for this work, one proposing asymmetrical reinforcement for columns and the other with symmetrical reinforcement. In order to compute the damage indices considered for this study a non-linear Pushover structural analysis is performed. Results: Results show that asymmetrical reinforcement in columns may reduce concrete volumes, although such reduction in material might not be quite proportional with construction cost, given that asymmetric reinforcement in columns is more expensive than symmetrical, per unit-cost. The bigger the structure, the more likely is to obtain lighter structures by using asymmetrical reinforcement. Regarding damage of the structure, results show that when using asymmetrical reinforcement in columns, it is more likely to obtain smaller values for the expected damage with no great difference on the estimated collapse Safety Factors for the seismic loads. In general, the proposed methodology hereby proposed enhances quite good optima results, requiring only a few adjustments of clash-free and slap reinforcement after the optimization procedure terminates. Conclusion: When designing reinforced concrete frames with asymmetric reinforcement in columns, an increase in construction costs of as much as 25% as that obtained for symmetric reinforcement could be enhanced. In general, with the proposed methodology to optimally design reinforced concrete frames, savings of as much as 20% in construction costs from an initial structural proposal can be reached.
机译:目标/目标:目前的工作揭示了诸如α“粒子群优化”(PSO)算法和“遗传算法”(GA)设计的优化程序设计?钢筋混凝土框架,成本比较,重量结构和预测?损坏。优化程序是利用“理想化的涂抹增强”(ISR)类比为此工作所考虑的结构模型框架的每个元素而建立.Sutudy设计:描述性横断面研究。?以及研究持续时间:研究生署,自主大学?Queretaro,Santiago de Quertaro,Quertaro,墨西哥,8月2021。方法:为应用程序创建了两种不同的数值结构平面框架模型,并对优化设计程序的性能进行了比较。优化程序是单一目标,采用成本客观函数,采用算盘钢材加固和成本计算混凝土。对此作品进行了两种不同的设计方法,一个提出了柱子的不对称加强,具有对称加强。为了计算本研究考虑的损坏指数,进行非线性推动结构分析。结果:结果表明,柱子中的不对称加固可能会减少混凝土体积,尽管材料的减少可能与施工成本不相当成比例,但鉴于柱子中的不对称增强比对称,每单位成本更昂贵。结构越大,越可能通过使用不对称的加强来获得更轻的结构。关于结构的损伤,结果表明,当在柱中使用不对称加强时,更有可能获得预期损坏的较小值,对地震载荷的估计崩溃安全因子没有很大差异。通常,拟议的方法特此提出增强了相当良好的最佳结果,在优化程序终止后,只需要几乎没有碰撞和振动加固的调整。结论:在柱子中使用不对称加固的钢筋混凝土框架时,可以提高施工成本的增加,因为对称加强件获得的25%。通常,通过提出的方法来实现钢筋混凝土框架,可以达到初始结构提案的施工成本高达20%的节省。

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