Source Journal for Chinese Scientific and Technical Papers
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Volume 52 Issue 11
Nov.  2022
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Article Contents
XUE Hao, LIU Jinyang, LUO Zheng, XUE Jianyang, GE Hongpeng. Parameter Analysis on Damping Effect of a Novel Viscously-Damped Outrigger[J]. INDUSTRIAL CONSTRUCTION, 2022, 52(11): 189-193. doi: 10.13204/j.gyjzG21111515
Citation: XUE Hao, LIU Jinyang, LUO Zheng, XUE Jianyang, GE Hongpeng. Parameter Analysis on Damping Effect of a Novel Viscously-Damped Outrigger[J]. INDUSTRIAL CONSTRUCTION, 2022, 52(11): 189-193. doi: 10.13204/j.gyjzG21111515

Parameter Analysis on Damping Effect of a Novel Viscously-Damped Outrigger

doi: 10.13204/j.gyjzG21111515
  • Received Date: 2021-11-15
  • Taking a practical super high-rise building as a case study, the improved viscous damping outrigger scheme which contains a lever mechanism installed at the end of the truss was proposed to amplify the deformation of the dampers in conventional viscous damping outrigger in earthquakes. The comparative analysis of damping effect of the two different damping schemes was carried out, and the main parameters (damper parameters and leverage ratio) affecting the energy dissipation efficiency of the newly-proposed viscous damping outrigger scheme were studied. The results indicated that the newly-proposed viscous damping outrigger scheme could amplify the deformation and velocity of dampers effectively, and the amplification factor was approximately equal to the leverage ratio of the T-shaped rigid arm; as the lever ratio increased, the optimal damping coefficient of the newly-proposed viscously damped outrigger decreased gradually. The product of the optimal damping coefficient and the leverage ratio in the newly-proposed viscous damping outrigger was approximately equal to the optimal damping coefficient of the conventional viscously damped outrigger.
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  • [1]
    马良喆,陈永祁.油阻尼器与黏滞阻尼器的性能差异探讨[J].工业建筑,2013,43(增刊1):203-210.
    [2]
    SMITH R,WILLFORD M.The damped outrigger concept fortall buildings[J].The Structural Design of Tall and Special Buildings,2007,16(4):501-517.
    [3]
    丁洁民, 吴宏磊. 黏滞阻尼技术工程设计与应用[M]. 北京:中国建筑工业出版社, 2017.
    [4]
    吴宏磊, 丁洁民, 崔剑桥, 等. 超高层建筑结构加强层耗能减震技术及连接节点设计研究[J]. 建筑结构学报, 2014,35(3):8-15.
    [5]
    薛建阳, 张崇新, 隋龙天, 等. 黏滞阻尼伸臂对超高层框架-核心筒结构抗震性能的影响研究[J]. 建筑结构,2021,51(3):83-89.
    [6]
    薛建阳, 张崇新, 韦亮陆, 等. 附设黏滞阻尼器超高层结构的减震效果分析[J]. 西安建筑科技大学学报(自然科学版),2020,52(1):21-29.
    [7]
    陈建兴, 包联进, 汪大绥. 乌鲁木齐绿地中心黏滞阻尼器结构设计[J]. 建筑结构, 2017, 47(8):54-58.
    [8]
    周建龙. 超高层建筑结构设计与工程实践[M].上海:同济大学出版社,2017.
    [9]
    李爱群,陈敏,曾德民,等.基于减隔震技术的某既有钢筋混凝土框架医疗建筑抗震性能提升[J].工业建筑,2019,49(5):184-188.
    [10]
    日本隔震结构协会.被动减震结构设计·施工手册[M].蒋通,译.北京:中国建筑工业出版社, 2008:44-50.
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