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Optimum design of cold-formed steel portal frame buildings including joint effects and secondary members

机译:包括联合效应和次要构件的冷弯型钢门框建筑的优化设计

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摘要

In steel portal frames, cold-formed steel channel sections are increasingly used as the primary framing components, in addition to the secondary members e.g. purlins and side rails. For such framing systems, the stiffness of the joints at the eaves and apex affects the bending moment distribution, as well as the frame deflections. This paper investigates the influence of two joint configurations having full rigidity and semi-rigidity, respectively, on the optimum design of cold-formed steel portal frames. A real-coded genetic algorithm is used to search for the most cost-effective design. It is shown that through incorporating joint effects explicitly into the design process, a more appropriate balance between the joints and the member properties can be obtained, thus optimizing material use. The study then investigates the effect of secondary members on the optimum design. It is shown that incorporating the secondary members is important for portal frames having spans shorter than 12 m. For example, for a frame spacing less than 6 m, the material cost of the primary members can be reduced by up to 15%.
机译:在钢门式门架中,除了第二构件例如第二构件之外,冷成形的钢槽形截面被越来越多地用作主要框架构件。条和侧轨。对于这样的框架系统,屋檐和顶点处的关节刚度会影响弯矩分布以及框架挠度。本文研究了分别具有全刚度和半刚度的两种接头构型对冷弯型钢门架的优化设计的影响。使用实编码遗传算法来搜索最具成本效益的设计。结果表明,通过将接缝效果明确纳入设计过程,可以在接缝和构件特性之间获得更适当的平衡,从而优化材料的使用。然后,该研究调查了次要成员对最佳设计的影响。结果表明,对于跨度小于12 m的门框而言,合并辅助构件非常重要。例如,对于小于6 m的框架间距,主要部件的材料成本可降低多达15%。

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