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首页> 外文期刊>The structural design of tall buildings >RESEARCH SUMMARY ON LONG-SPAN CONNECTED TALL BUILDING STRUCTURE WITH VISCOUS DAMPERS
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RESEARCH SUMMARY ON LONG-SPAN CONNECTED TALL BUILDING STRUCTURE WITH VISCOUS DAMPERS

机译:粘性阻尼器的大跨度高层建筑结构研究综述

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摘要

The HUBα-Sightseeing Gate in Guangzhou, which is a connected tall building structure, is composed of two main frame-shear wall towers, which are 86.5 m high, and two steel galleries at top and bottom, respectively. The top gallery is a 120 m long-span steel truss. Vicious dampers are set in the two main towers and the top gallery. It is an ultra-limit structure with complicated structural shape and hybrid structure system. Design idea of performance-based seismic design is presented in this paper. Seismic performance of the structure under different levels of ground motion is analysed and verified by different methods, such as elastic analysis under frequent earthquake, unyielding and elastic check of structure element under medium earthquake and inelastic dynamic time history analysis under rare earthquake. Taking the result of shaking table test as a reference, reasonable enhanced measures of seismic design are suggested. Meanwhile, wind-induced vibration time history analysis under different directions based on wind tunnel test is applied in this paper, and comfortableness problem can be well resolved. The control effects of vicious dampers on internal force, deformation, acceleration and energy dissipation of the structure are also studied. By means of the analysis methods mentioned above, and other analyses such as whole structure stability, temperature effect, floor vibration and so on, relevant measures of ultra-limit structure design are suggested, and the performance objective of the structure can be well realized.
机译:广州的HUBα观光门是一个相连的高层建筑结构,由两个主框架剪力墙塔组成,两个塔高86.5 m,顶部和底部分别有两个钢廊。顶廊是一个120 m长跨度的钢桁架。在两个主塔和顶层画廊中装有恶性阻尼器。它是一种具有复杂结构形状和混合结构体系的超极限结构。提出了基于性能的抗震设计思想。通过不同的地震作用分析,多次地震作用下结构单元的屈服和弹性检查,罕见地震作用下的非动态时程分析等方法,对结构在不同水平地震作用下的抗震性能进行了分析和验证。以振动台试验结果为参考,提出合理的抗震设计措施。同时,本文基于风洞试验应用了不同方向的风振时程分析,可以很好地解决舒适性问题。还研究了恶性阻尼器对结构的内力,变形,加速度和能量耗散的控制效果。通过上述分析方法,以及整体结构稳定性,温度效应,地板振动等分析,提出了超极限结构设计的相关措施,可以很好地实现结构的性能指标。

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  • 来源
    《The structural design of tall buildings》 |2010年第4期|P.439-456|共18页
  • 作者

    XUE-WEI CHEN; XIAO-LEI HAN;

  • 作者单位

    Tall Building Structure Research Institute, South China University of Technology, Guangzhou 510640, China South China University of Technology, Room 301, Construction Training Building, Wu Shan Street, Galaxy District, Guangzhou, CN 510640, China;

    rnTall Building Structure Research Institute, South China University of Technology, Guangzhou 510640, China State Key Laboratory of Subtropical Architecture Science, South China University of Technology, Guangzhou 510640, China;

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