Wind-induced responses of super-large cooling towers

被引:0
|
作者
柯世堂 [1 ,2 ]
葛耀君 [2 ]
赵林 [2 ]
陈少林 [1 ]
Y.Tamura [3 ]
机构
[1] Department of Civil Engineering,Nanjing University of Aeronautics and Astronautics
[2] State Key Laboratory for Disaster Reduction in Civil Engineering (Tongji University)
[3] Wind Engineering Research Center,Tokyo Polytechnic University
基金
中国国家自然科学基金;
关键词
super-large cooling towers; wind-induced responses; wind vibration coefficients; aero-elastic model; consistent coupled method;
D O I
暂无
中图分类号
TU991.42 [水温降低设备];
学科分类号
0815 ;
摘要
Traditional gust load factor(GLF)method,inertial wind load(IWL)method and tri-component method(LRC+IWL)cannot accurately analyze the wind-induced responses of super-large cooling towers,so the real combination formulas of fluctuating wind-induced responses and equivalent static wind loads(ESWLSs)were derived based on structural dynamics and random vibration theory.The consistent coupled method(CCM)was presented to compensate the coupled term between background and resonant response.Taking the super-large cooling tower(H=215 m)of nuclear power plant in Jiangxi Province,China,which is the highest and largest in China,as the example,based on modified equivalent beam-net design method,the aero-elastic model for simultaneous pressure and vibration measurement of super-large cooling tower is firstly carried out.Then,combining wind tunnel test and CCM,the effects of self-excited force on the surface pressures and wind-induced responses are discussed,and the wind-induced response characteristics of background component,resonant component,coupled term between background and resonant response,fluctuating responses,and wind vibration coefficients are discussed.It can be concluded that wind-induced response mechanism must be understood to direct the wind resistant design for super-large cooling towers.
引用
收藏
页码:3216 / 3228
页数:13
相关论文
共 50 条
  • [21] Stability analysis of super-large steel hyperbolic cooling towers
    Zhao, Xiaolei
    IASS 60TH ANNIVERSARY SYMPOSIUM (IASS SYMPOSIUM 2019) - 9TH INTERNATIONAL CONFERENCE ON TEXTILE COMPOSITES AND INFLATABLE STRUCTURES (STRUCTURAL MEMBRANES 2019), 2019, : 2480 - 2487
  • [22] Analysis of buckling bearing capacity for super-large cooling towers subjected to random wind loading
    Xu, Ya-Zhou
    Bai, Guo-Liang
    Tumu Jianzhu yu Huanjing Gongcheng/Journal of Civil, Architectural and Environmental Engineering, 2011, 33 (04): : 60 - 64
  • [23] Characteristics of wind-induced displacement of super-large cooling tower based-on continuous medium model wind tunnel test
    Zou, Yun-feng
    He, Xu-hui
    Jing, Hai-quan
    Zhou, Shuai
    Niu, Hua-wei
    Chen, Zheng-qing
    JOURNAL OF WIND ENGINEERING AND INDUSTRIAL AERODYNAMICS, 2018, 180 : 201 - 212
  • [24] Wind tunnel investigation on wind-induced interference effects for supre large cooling towers
    Zhao, Lin
    Ge, Yao-Jun
    Xu, Lin-Shan
    Wu, Zhan-Ke
    Gongcheng Lixue/Engineering Mechanics, 2009, 26 (01): : 149 - 154
  • [25] Wind-induced collapse mode and mechanism of super-large hyperbolic steel reticulated shell cooling tower with stiffening rings
    Zhao, Xiaolei
    Zhao, Lin
    Qian, Jihong
    Chen, Yiyi
    ENGINEERING STRUCTURES, 2024, 321
  • [26] Wind-induced collapse mechanism and failure criteria of super-large cooling tower based on layered shell element model
    Li, Wenjie
    Ke, Shitang
    Yang, Jie
    Wu, Hongxin
    Wang, Feitian
    Han, Guangquan
    JOURNAL OF WIND ENGINEERING AND INDUSTRIAL AERODYNAMICS, 2022, 221
  • [27] Wind-induced internal pressure effect within a novel super-large cylindrical-conical steel cooling tower
    Ke, Shitang
    Du, Lingyun
    Ge, Yaojun
    STRUCTURAL DESIGN OF TALL AND SPECIAL BUILDINGS, 2018, 27 (15):
  • [28] Comparison of wind-induced dynamic property of super-large cooling tower considering different four-tower interferences
    Wang, Hao
    Ke, Shitang
    Wang, Tongguang
    Ge, Yaojun
    Zhu, Rongkuan
    STRUCTURAL DESIGN OF TALL AND SPECIAL BUILDINGS, 2020, 29 (11):
  • [29] Aerodynamic and aero-elastic performances of super-large cooling towers
    Zhao, Lin
    Chen, Xu
    Ke, Shitang
    Ge, Yaojun
    WIND AND STRUCTURES, 2014, 19 (04) : 443 - 465
  • [30] Collapse Process Analysis of Reinforced Concrete Super-Large Cooling Towers Induced by Failure of Columns
    Gu, Xiang-Lin
    Yu, Qian-Qian
    Li, Yi
    Lin, Feng
    JOURNAL OF PERFORMANCE OF CONSTRUCTED FACILITIES, 2017, 31 (05)