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Optimum weight design of steel space frames with semi-rigid connections using harmony search and genetic algorithms

机译:使用和谐搜索和遗传算法使用半刚性连接的钢空间框架最佳重量设计

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摘要

In this paper, an optimization process using MATLAB-SAP2000 Open Application Programming Interface (OAPI) is presented for optimum design of space frames with semi-rigid connections. A specified list including W-profiles taken from American Institute of Steel Construction (AISC) is used in the selection of suitable sections. The stress constraints as indicated in load and resistance factor design of AISC, lateral displacement constraints being the top- and inter-storey drift and geometric constraints are considered in the optimization process. Genetic algorithm method based on biological principles and harmony search algorithm method based on the processes of musical harmony are used for optimum designs. Two different space frames are solved for the cases of rigid and semi-rigid connections, separately. A computer program is coded in MATLAB for the purpose interacting with SAP2000 OAPI. Results obtained from the analyses show that type of semi-rigid connections plays a crucial role in the optimization of steel space frames and increases the optimum weight.
机译:在本文中,提出了使用MATLAB-SAP2000开放式应用程序编程接口(OAPI)的优化过程,以实现具有半刚性连接的空间框架的最佳设计。在选择合适的部分中使用包括从美国钢铁建筑研究所(AISC)的W-Caples的指定清单。在优化过程中考虑了AISC的负载和电阻因子设计中的应力限制,横向位移约束是顶部和层间漂移和几何约束。基于生物学原理和和声搜索算法方法的基于音乐和谐过程的遗传算法方法用于优化设计。为刚性和半刚性连接的情况下解决了两个不同的空间框架。计算机程序在MATLAB中编码,用于与SAP2000 OAPI交互。从分析中获得的结果表明,半刚性连接的类型在钢空间框架的优化中起着至关重要的作用,并增加了最佳重量。

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