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Optimum detailed design of reinforced concrete frames using genetic algorithms

机译:基于遗传算法的钢筋混凝土框架结构优化设计。

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This article presents the application of the genetic algorithm to the optimum detailed design of reinforced concrete frames based on Indian Standard specifications. The objective function is the total cost of the frame which includes the cost of concrete, formwork and reinforcing steel for individual members of the frame. In order for the optimum design to be directly constructible without any further modifications, aspects such as available standard reinforcement bar diameters, spacing requirements of reinforcing bars, modular sizes of members, architectural requirements on member sizes and other practical requirements in addition to relevant codal provisions are incorporated into the optimum design model. The produced optimum design satisfies the strength, serviceability, ductility, durability and other constraints related to good design and detailing practice. The detailing of reinforcements in the beam members is carried out as a sub-level optimization problem. This strategy helps to reduce the size of the optimization problem and saves computational time. The proposed method is demonstrated through several example problems and the optimum results obtained are compared with those in the available literature. It is concluded that the proposed optimum design model can be adopted in design offices as it yields rational, reliable, economical, time-saving 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框架的最佳详细设计中的应用。目标函数是框架的总成本,其中包括框架各个构件的混凝土,模板和钢筋的成本。为了使最佳设计可以直接进行构建而不进行任何进一步的修改,除了相关的条款规定外,诸如可用的标准钢筋直径,钢筋的间距要求,构件的模块化尺寸,构件尺寸的结构要求以及其他实际要求等方面被纳入最佳设计模型。产生的最佳设计满足强度,可维修性,延展性,耐用性以及其他与良好设计和细部设计相关的限制。梁构件中钢筋的详细说明是作为子级优化问题来进行的。此策略有助于减小优化问题的大小并节省计算时间。通过几个示例问题证明了所提出的方法,并将获得的最佳结果与现有文献进行了比较。结论是,提出的最佳设计模型可以在设计部门采用,因为它可以产生合理,可靠,经济,省时和实用的设计。

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