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Parametric optimization of steel floor system cost using Evolver

机译:钢板系统的参数优化使用Evolver

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This paper examines the application of Evolver, a genetic algorithm (GA) solving program, in a three-parameter optimization of a steel truss floor system with a concrete slab floor deck. The floor system is comprised of truss girders supporting beams running in a direction perpendicular to the truss girders with a composite floor deck along the top. Using Evolver, three parameters are optimized for two truss girder topologies in order to find the least cost floor system. The weight of the structural members is correlated to the expenses of material, labor, equipment, overhead, and profit required for the construction of the floor through information given by Means Building Construction Cost Data and interviews with steel fabricators. This procedure may be modified to optimize the cost of any floor area that may use different truss girder topologies, beam sections, and connections. Parametric optimization is defined in this paper as the combination of configuration, size, and topology optimization of a truss girder, the size optimization of beams, and the optimization of the spacings of both beams and truss girders in the system.
机译:本文介绍了Evolver,遗传算法(GA)求解程序,在钢桁架地板系统的三个参数优化中的应用。地板系统由支撑梁在垂直于桁架梁的方向上的桁架支撑梁构成,沿着顶部的复合地板甲板。使用Evolver,针对两个桁架梁拓扑进行了优化三个参数,以找到最低的成本楼层系统。结构构件的重量与通过借助于建筑成本数据和钢制造商访谈的信息建造地板所需的材料,劳动,设备,开销和利润的费用。可以修改该过程以优化任何可以使用不同桁架梁拓扑,光束部分和连接的楼层区域的成本。本文将参数优化定义为桁架梁的配置,尺寸和拓扑优化的组合,梁的尺寸优化,以及系统中梁和桁架梁的间距的优化。

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