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Optimization design of large span portal-rigid steel frame with tapered sections under wind-induced drift constraint

机译:风引起漂移约束下锥形截面大跨度门刚钢框架优化设计

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摘要

Large span portal-rigid frames with tapered sections in low-rise metal building system are often used in industrial and commercial buildings. The drift of such portal-rigid frames induced by the wind load needs to be smaller than a prescribed limit, and at the same time the frames should be as light as possible for cost-effectiveness. To this end, structural optimization of such portal-rigid frames subjected to the wind-induced drift constraint is required. However, little research for optimization of the large span portal-rigid frame with tapered sections has been reported. This paper proposed a procedure for structural optimization of such portal-rigid frames by adopting the Optimality Criteria (OC) method. Based on an aerodynamic database of the measured wind pressure from a wind tunnel test, several forms of the Equivalent Static Wind Load (ESWL) acting on a large-span portal-rigid frame were evaluated by the Gust Loading Factor (GLF), Load Response Correlation (LRC) and Proper Orthogonal Decomposition (POD) method. The method of virtual-work was utilized to construct the wind-induced drift or displacement. An effective iteration algorithm was derived for the minimum weight optimization of the frame while all wind-induced drift constraints were satisfied. The wind resistant structural optimization for the large-span rigid frame with taped section were conducted when it was bore by different forms of ESWL (GLF based, single objective and multiple objective ESWLs), and their optimized results were multi-compared in the form of the optimized total weight and the height of the optimized structural members. The effects of the connection stiffness at semi-rigid joints and the stiffness of support restraints on the optimized results are also investigated. Finally the global optimality property of the proposed OC method adopted for the optimized case in this paper was also discussed and verified. Optimized results show that the OC optimization procedure proposed in this paper is very effective for the optimization design of large-span portal-rigid steel frames with tapered sections under wind-induced drift constraints.
机译:在工业和商业建筑中通常用于低上层金属建筑系统中具有锥形部分的大跨度门静脉框架。由风负荷引起的这种门刚框架的漂移需要小于规定的极限,同时帧应尽可能光,以便成本效益。为此,需要经受风力诱导的漂移约束的这种门刚架的结构优化。然而,已经报道了具有锥形部分的大跨度门架刚性框架的优化的很少的研究。本文提出了一种通过采用最优标准(OC)方法来结构优化这种门静脉窄框架的过程。基于来自风洞试验的测量风压的空气动力学数据库,通过阵风载荷因子(GLF),荷载响应评估作用在大跨度门静脉架上的等效静电负荷(ESWL)的几种形式。相关性(LRC)和适当的正交分解(POD)方法。利用虚拟工作的方法来构建风引起的漂移或位移。导出有效的迭代算法,用于帧的最小权重优化,而所有风引起的漂移约束都满足。当通过不同形式的ESWL(基于GLF的单个物镜和多个物镜)进行时,对具有胶带部分的大跨度刚性框架的风力结构优化进行了折叠部分,并且它们的优化结果是多比较的优化的总重量和优化的结构构件的高度。还研究了连接刚度在半刚性接头处的影响以及对优化结果的支持约束的刚度。最后,还讨论并验证了本文所采用的拟议OC方法的全球最优性财产。优化结果表明,本文提出的OC优化程序对于具有风引起的漂移约束下的锥形截面的大跨度门刚钢框架的优化设计非常有效。

著录项

  • 来源
    《Engineering Structures》 |2019年第1期|396-405|共10页
  • 作者单位

    Guangzhou Univ Guangzhou Univ Tamkang Univ Joint Res Ctr Engn St Guangzhou 510006 Guangdong Peoples R China;

    Guangzhou Univ Guangzhou Univ Tamkang Univ Joint Res Ctr Engn St Guangzhou 510006 Guangdong Peoples R China;

    Guangzhou Univ Guangzhou Univ Tamkang Univ Joint Res Ctr Engn St Guangzhou 510006 Guangdong Peoples R China;

    Guangzhou Univ Guangzhou Univ Tamkang Univ Joint Res Ctr Engn St Guangzhou 510006 Guangdong Peoples R China;

    UNSW Sydney Ctr Infrastruct Engn & Safety Sydney NSW 2052 Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Portal-rigid steel frame with tapered section; Equivalent Static Wind Load; Wind-induced drift; Optimization design; Optimality Criteria;

    机译:门襟刚性钢框架;锥形部分;等效静电载荷;风诱导漂移;优化设计;最优标准;

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