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Effect of a through-building gap on wind-induced loading and dynamic responses of a tall building

机译:贯穿建筑物的缝隙对高层建筑的风荷载和动力响应的影响

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摘要

Many tall buildings possess through-building gaps at middle levels of the building elevation. Some of these floors are used as sky gardens, or refuge floors, through which wind can flow with limited blockage. It has been reported in the literature that through-building gaps can be effective in reducing across-wind excitation of tall buildings. This paper systematically examines the effectiveness of two configurations of a through-building gap, at the mid-height of a tall building, in reducing the wind-induced dynamic responses of the building. The two configurations differ in the pattern of through-building opening on the gap floor, one with opening through the central portion of the floor and the other with opening on the perimeter of the floor around a central core. Wind forces and moments on the building models were measured with a high-frequency force balance from which dynamic building responses were computed. The results show that both configurations of a through-building gap are effective in reducing the across-wind excitation with the one with opening around the perimeter of the floor being significantly more effective. Wind pressures were measured on the building faces with electronic pressure scanners to help understand the generation of wind excitation loading. The data suggest that the through-building gap reduces the fluctuating across-wind forces through a disturbance of the coherence and phase-alignment of vortex excitation.
机译:许多高层建筑物在建筑物标高的中间水平处具有贯穿建筑物的间隙。这些地板中有一些用作空中花园或避难所地板,风可以在有限的阻碍下流过。据文献报道,穿越建筑物的间隙可以有效减少高层建筑的横风激励。本文系统地研究了高层建筑中间高度处的贯穿建筑缝隙的两种配置在减少建筑物的风致动力响应方面的有效性。两种配置的不同之处在于,隔间地板上的贯通建筑物开口的方式不同,一种穿过地板的中央部分开口,另一种则在围绕中心芯的地板周边开口。用高频力平衡测量建筑模型上的风力和弯矩,从中计算出动态建筑响应。结果表明,贯穿建筑物缝隙的两种构型均能有效地减小横风激励,其中围绕地板周边的开口显着更有效。使用电子压力扫描仪测量建筑物表面的风压,以帮助了解风激发载荷的产生。数据表明,贯穿建筑物的间隙通过扰动涡流的相干性和相位对齐而减少了横向风的波动。

著录项

  • 来源
    《Wind & structures》 |2012年第6期|531-553|共23页
  • 作者单位

    Ove Arup & Partners Hong Kong Ltd, 5/F, Festival Walk, Tat Chee Avenue, Kowloon Tong, Hong Kong;

    Department of Civil Engineering, The University of Hong Kong, Pokfulam Road, Hong Kong;

    Department of Civil Engineering, The University of Hong Kong, Pokfulam Road, Hong Kong;

    State Key Laboratory of Subtropical Architecture Science, South China University of Technology, Guangzhou 510641, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    through-building opening; wind loading; wind pressure; vortex shedding; across-wind excitation;

    机译:贯穿建筑物的开口;风荷载风压涡旋脱落横风激励;

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