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Harmony search algorithm based optimum detailed design of reinforced concrete plane frames subject to ACI 318-05 provisions

机译:符合ACI 318-05规定的基于和谐搜索算法的钢筋混凝土平面框架的最佳详细设计

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This paper presents the application of the harmony search based algorithm to the optimum detailed design of special seismic moment reinforced concrete (RC) frames under earthquake loads based on American Standard specifications. The objective function is selected as the total cost of the frame which includes the cost of concrete, formwork and reinforcing steel for individual members of the frame. The modular sizes of members, standard reinforcement bar diameters, spacing requirements of reinforcing bars, architectural requirements and other practical requirements in addition to relevant provisions are considered to obtain directly constructible designs without any further modifications. For the RC columns, predetermined section database is constructed and arranged in order of resisting capacity. The produced optimum design satisfies the strength, ductility, serviceability and other constraints related to good design and stated in the relevant specifications. The lateral seismic forces are calculated according to ASCE 7-05 and it is updated in each iteration. Number of design examples is considered to demonstrate the efficiency of the optimum design algorithm proposed. It is concluded that the developed optimum design model can be used in design offices for practical designs and this study is the first application of the harmony search method to the optimization of RC frames and also the optimization of special seismic moment RC frames to date.
机译:本文介绍了基于和声搜索的算法在基于美国标准规范的地震荷载作用下的特殊地震矩钢筋混凝土框架的优化设计中的应用。选择目标函数作为框架的总成本,其中包括框架各个构件的混凝土,模板和钢筋的成本。除相关规定外,还考虑了构件的模块化尺寸,标准钢筋直径,钢筋间距要求,建筑要求和其他实际要求,以便无需任何进一步修改即可获得可直接构造的设计。对于RC柱,按抵抗能力的顺序构建和排列预定截面数据库。产生的最佳设计满足强度,延展性,可维修性和其他与良好设计有关的限制,并在相关规格中说明。横向地震力是根据ASCE 7-05计算的,并在每次迭代中进行更新。考虑了许多设计实例,以证明所提出的最佳设计算法的效率。结论是,所开发的最佳设计模型可用于设计室进行实际设计,该研究是和声搜索方法在钢筋混凝土框架的优化以及特殊地震矩钢筋混凝土框架的优化中的首次应用。

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