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Optimal design of cold-formed steel portal frames for stressed-skin action using genetic algorithm

机译:基于遗传算法的冷弯型钢门架优化设计

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摘要

This paper describes a stressed-skin diaphragm approach to the optimal design of the internal frame of a cold-formed steel portal framing system, in conjunction with the effect of semi-rigid joints. Both ultimate and serviceability limit states are considered. Wind load combinations are included. The designs are optimized using a real-coded niching genetic algorithm, in which both discrete and continuous decision variables are processed. For a building with two internal frames, it is shown that the material cost of the internal frame can be reduced by as much as 53%, compared with a design that ignores stressed-skin action.
机译:本文结合半刚性接头的影响,描述了一种应力蒙皮隔膜法,用于优化冷弯型钢门框系统内部框架的设计。极限状态和可使用性极限状态都被考虑。包括风荷载组合。该设计使用实码小生境遗传算法进行了优化,其中离散和连续决策变量均得到处理。对于具有两个内部框架的建筑物,与忽略应力作用的设计相比,内部框架的材料成本可降低多达53%。

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