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Optimum detailed design of reinforced concrete continuous beams using Genetic Algorithms

机译:基于遗传算法的钢筋混凝土连续梁优化设计。

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This paper presents the application of Genetic Algorithms for the optimum detailed design of reinforced concrete continuous beams based on Indian Standard specifications. The produced optimum design satisfies the strength, serviceability, ductility, durability and other constraints related to good design and detailing practice. While most of the approaches reported in the literature consider the steel reinforcement as a variable, the cross-sectional dimensions of the beam alone are considered as the variables in the present optimum design model. The areas of longitudinal steel obtained from the design are converted into a least weight detailing of steel reinforcements. This is achieved by generating a database of reinforcement templates containing different available reinforcement bar diameters in a pre-specified pattern, satisfying the user specified bar rules and other bar spacing requirements. The optimum design results are compared with those in the available literature. An example problem is illustrated and the results are presented. It is concluded that the proposed optimum design model yields rational, reliable, economical and practical designs.
机译:本文介绍了遗传算法在基于印度标准规范的钢筋混凝土连续梁的最佳详细设计中的应用。产生的最佳设计满足了强度,可维修性,延展性,耐用性以及与良好设计和细部设计相关的其他限制。尽管文献中报道的大多数方法都将钢筋加固视为变量,但在当前的最佳设计模型中,仅将梁的横截面尺寸视为变量。从设计中获得的纵向钢的面积转换为钢筋最小重量的细部。这是通过生成钢筋模板数据库来实现的,该数据库包含以预定模式包含不同可用钢筋直径的钢筋模板,以满足用户指定的钢筋规则和其他钢筋间距要求。将最佳设计结果与现有文献进行比较。说明了一个示例问题,并给出了结果。结论是,所提出的最佳设计模型产生了合理,可靠,经济和实用的设计。

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