Discussion of Design Wind Loads on a Vaulted Free Roof

IF 1.3 4区 工程技术 Q3 CONSTRUCTION & BUILDING TECHNOLOGY Wind and Structures Pub Date : 2022-07-08 DOI:10.3390/wind2030026
W. Ding, Y. Uematsu
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引用次数: 3

Abstract

This paper discusses the wind loads for designing vaulted free roofs based on a wind tunnel experiment, in which the wind force coefficients for the main wind force resisting system and the peak wind force coefficients for cladding are considered. The focus is on the dynamic load effects of fluctuating wind pressures on the wind force coefficients. Wind pressure distributions on the top and bottom surfaces were measured in a turbulent boundary layer. The results indicated that the distributions of wind force coefficients changed significantly with wind direction. Then, the wind direction providing the maximum load effect on the structural frame was detected from a dynamic response analysis using the time histories of wind pressure coefficients. In the analysis, the focus was on the bending moment at the windward column base and the axial force in the leeward column as the most important load effects. The LRC method proposed by Kasperski was employed for evaluating the equivalent static wind force coefficients providing the maximum load effects. Based on the results, a model of design wind force coefficient was proposed in the framework of the conventional gust effect factor approach. Finally, positive and negative peak wind force coefficients for designing the cladding were proposed based on the most critical maximum and minimum peak wind force coefficients among all wind directions.
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自由拱顶设计风荷载的探讨
本文在风洞试验的基础上,考虑了主抗风体系的风荷载系数和包层的峰值风荷载系数,讨论了设计无拱顶的风荷载问题。重点研究了脉动风压对风力系数的动载效应。在紊流边界层中测量了顶、底表面的风压分布。结果表明,风速系数随风向变化显著。然后,利用风压系数时程进行动力响应分析,找出对结构框架产生最大荷载影响的风向。在分析中,重点考虑了迎风柱底部的弯矩和背风柱的轴力是最重要的荷载效应。采用卡巴斯基提出的LRC方法来评估提供最大载荷效应的等效静风力系数。在此基础上,提出了在常规阵风效应因子法框架下的设计风力系数模型。最后,根据各风向中最关键的最大和最小峰值风速系数,提出了包层设计的正、负峰值风速系数。
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来源期刊
Wind and Structures
Wind and Structures 工程技术-工程:土木
CiteScore
2.70
自引率
18.80%
发文量
0
审稿时长
>12 weeks
期刊介绍: The WIND AND STRUCTURES, An International Journal, aims at: - Major publication channel for research in the general area of wind and structural engineering, - Wider distribution at more affordable subscription rates; - Faster reviewing and publication for manuscripts submitted. The main theme of the Journal is the wind effects on structures. Areas covered by the journal include: Wind loads and structural response, Bluff-body aerodynamics, Computational method, Wind tunnel modeling, Local wind environment, Codes and regulations, Wind effects on large scale structures.
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