Dynamic characteristics of cable vibrations in a steel cable-stayed bridge using nonlinear enhanced MECS approach

被引:0
|
作者
Wu, Qingxiong [1 ]
Takahashi, Kazuo [2 ]
Chen, Baochun [1 ]
机构
[1] Fuzhou Univ, Coll Civil Engn, Fuzhou 350002, Fuijan, Peoples R China
[2] Nagasaki Univ, Fac Engn, Dept Civil Engn, Nagasaki 852, Japan
关键词
stay cable; parametric vibrations; cable-stayed bridge; nonlinear enhanced MECS approach; approximate approach; finite element method;
D O I
10.12989/sem.2008.30.1.037
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
This paper focuses on the nonlinear vibrations of stay cables and evaluates the dynamic characteristics of stay cables by using the nonlinear enhanced MECS approach and the approximate approach. The nonlinear enhanced MECS approach is that both the girder-tower vibrations and the cable vibrations including parametric cable vibrations are simultaneously considered in the numerical analysis of cable-stayed bridges. Cable finite element method is used to simulate the responses including the parametric vibrations of stay cables. The approximate approach is based on the assumption that cable vibrations have a small effect on girder-tower vibrations, and analyzes the local cable vibrations after obtaining the girder-tower responses. Under the periodic excitations or the moderate ground motion, the differences of the responses of stay cables between these two approaches are evaluated in detail. The effect of cable vibrations on the girder and towers are also discussed. As a result, the dynamic characteristics of the parametric vibrations in stay cables can be evaluated by using the approximate approach or the nonlinear enhanced MECS approach. Since the different axial force fluctuant of stay cables in both ends of one girder causes the difference response values between two approach, it had better use the nonlinear enhanced MECS approach to perform the dynamic analyses of cable-stayed bridges.
引用
收藏
页码:37 / 66
页数:30
相关论文
共 50 条
  • [21] Dynamic tests of the Santarem cable-stayed bridge
    Rodrigues, J
    PROCEEDINGS OF IMAC-XIX: A CONFERENCE ON STRUCTURAL DYNAMICS, VOLS 1 AND 2, 2001, 4359 : 1146 - 1152
  • [22] Dynamic study of the Barqueta cable-stayed bridge
    Escuela Superior de Ingenieros, Universidad de Sevilla, Camino de los Descubrimientos s/n, 41092 Seville, Spain
    Conf. Proc. Soc. Exp. Mech. Ser.,
  • [23] Dynamic tests on large cable-stayed bridge
    Cunha, A.
    Caetano, E.
    Delgado, R.
    Journal of Bridge Engineering, 2001, 6 (01) : 54 - 62
  • [24] DYNAMIC STABILITY OF CABLE-STAYED BRIDGE PYLONS
    Michaltsos, G. T.
    Raftoyiannis, I. G.
    Konstantakopoulos, T. G.
    INTERNATIONAL JOURNAL OF STRUCTURAL STABILITY AND DYNAMICS, 2008, 8 (04) : 627 - 643
  • [25] Dynamic testing of a large cable-stayed bridge
    Ren, WX
    Harik, IE
    PROCEEDINGS OF THE SEVENTH INTERNATIONAL SYMPOSIUM ON STRUCTURAL ENGINEERING FOR YOUNG EXPERTS, VOLS 1 AND 2, 2002, : 775 - 780
  • [26] Dynamic investigation of a repaired cable-stayed bridge
    Politecnico di Milano, Milan, Italy
    Earthquake Eng Struct Dyn, 1 (41-59):
  • [27] MODELING OF A CABLE-STAYED BRIDGE FOR DYNAMIC ANALYSIS
    WILSON, JC
    GRAVELLE, W
    EARTHQUAKE ENGINEERING & STRUCTURAL DYNAMICS, 1991, 20 (08): : 707 - 721
  • [28] Dynamic performance of a curved cable-stayed bridge
    Brownjohn, JMW
    Lee, J
    Cheong, B
    ENGINEERING STRUCTURES, 1999, 21 (11) : 1015 - 1027
  • [29] Dynamic investigation of a repaired cable-stayed bridge
    Gentile, C
    Cabrera, FMY
    EARTHQUAKE ENGINEERING & STRUCTURAL DYNAMICS, 1997, 26 (01): : 41 - 59
  • [30] Effect of cable stiffness on a cable-stayed bridge
    Wang, YC
    STRUCTURAL ENGINEERING AND MECHANICS, 1999, 8 (01) : 27 - 38