Numerical and Experimental Determination of Aerodynamic Forces at a Long Span Bridge Girder

被引:0
|
作者
Sarkic, A. [1 ]
Neuhaus, Ch. [1 ]
Hoeffer, R. [1 ]
机构
[1] WIST, Fac Civil & Environm Engn, D-44780 Bochum, Germany
关键词
Flutter derivatives; Forced vibration test; CFD; Aeroelastic mass;
D O I
暂无
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
This paper presents a study of the aeroelastic characteristics of a common bridge deck section using experimental and numerical approaches. For this study sectional model tests have been carried out by means of forced vibration experiments, using force balance measurements in the wind tunnel. In addition, surface pressures around the bridge deck section at the middle of the model are measured. Obtained results have been used to improve a numerical model. By integration of the pressure measurements, aeroelastic forces are obtained independently from the force balance measurements. Results of the flutter derivatives obtained with all three approaches, using pressure measurements, force balance measurements and numerical simulations are compared. Taking the advantage of the approaches based on the pressure measurements and numerics, aeroelastic masses are evaluated.
引用
收藏
页码:3070 / 3076
页数:7
相关论文
共 50 条
  • [21] Longitudinal Seismic Forces of Long-span Bridge
    Bai, Bing
    Wu, Zeyu
    Deng, Xiaoshan
    ADVANCES IN CIVIL ENGINEERING, PTS 1-6, 2011, 255-260 : 1134 - +
  • [22] Experimental Investigation on Aerodynamic Behavior of a Long Span Cable-stayed Bridge Under Construction
    Ma, Cun-ming
    Duan, Qing-song
    Liao, Hai-li
    KSCE JOURNAL OF CIVIL ENGINEERING, 2018, 22 (07) : 2492 - 2501
  • [23] Aerodynamic improvement of one box girder for super long suspension bridge
    Tokoro, S
    Honda, A
    Masuda, I
    Nakashima, Y
    Murakoshi, J
    Fumoto, K
    PROCEEDINGS OF THE SECOND INTERNATIONAL SYMPOSIUM ON ADVANCES IN WIND & STRUCTURES (AWAS'02), 2002, : 235 - 242
  • [24] Aerodynamic characteristics of super long-span bridges with slotted box girder
    Sato, H
    Kusuhara, S
    Ogi, K
    Matsufuji, H
    WIND ENGINEERING INTO THE 21ST CENTURY, VOLS 1-3, 1999, : 1049 - 1054
  • [25] Aerodynamic characteristics of super long-span bridges with slotted box girder
    Sato, H
    Kusuhara, S
    Ogi, K
    Matsufuji, H
    JOURNAL OF WIND ENGINEERING AND INDUSTRIAL AERODYNAMICS, 2000, 88 (2-3) : 297 - 306
  • [26] Shaking Table Test of a Long-span Continuous Girder Bridge
    Chen, Yanjiang
    Zhou, Daxing
    Yan, Weiming
    Tang, Zhenyun
    TRENDS IN CIVIL ENGINEERING, PTS 1-4, 2012, 446-449 : 242 - 246
  • [27] Flutter suppression of long-span suspension bridge with truss girder
    Wang, Kai
    Liao, Haili
    Li, Mingshui
    WIND AND STRUCTURES, 2016, 23 (05) : 405 - 420
  • [28] Discussion of aerodynamic stability of long-span roofs based on unsteady aerodynamic forces
    Takadate Y.
    Uematsu Y.
    Journal of Wind Engineering, 2020, 45 (02): : 42 - 53
  • [29] Experimental Study on Flutter Performance of Long-Span Suspension Bridge with Double-Deck Truss Girder
    Lei Y.
    Li M.
    Sun Y.
    Li M.
    Xinan Jiaotong Daxue Xuebao/Journal of Southwest Jiaotong University, 2022, 57 (06): : 1224 - 1232
  • [30] Experimental research on flutter aerodynamic optimization measures of long-span steel truss suspension bridge
    Dong, Guochao
    Xu, Yusheng
    Han, Yan
    Li, Kai
    Peng, Yuancheng
    Journal of Railway Science and Engineering, 2021, 18 (04): : 949 - 956