Vehicle suspension tuning for bridge-friendliness and influence on coupled vehicle-bridge system frequency

被引:0
|
作者
Jin, Shibo [1 ]
Tan, Chin An [2 ]
Lu, Huancai [1 ]
机构
[1] Zhejiang Univ Technol, Sound & Vibrat Lab, Hangzhou 310014, Peoples R China
[2] Wayne State Univ, Dept Mech Engn, Detroit, MI 48202 USA
基金
中国国家自然科学基金;
关键词
Vehicle -bridge interaction; Semi -active suspension tuning; Time -varying transmissibility; Extended fixed points principle; Bridge; -friendliness; Frequency variation; VIBRATION CONTROL; CONTROL STRATEGY; DESIGN;
D O I
10.1016/j.engstruct.2024.117649
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
A novel study on the mitigation of bridge response via tuning of vehicle suspension parameters is presented. The coupled vehicle-bridge interaction (VBI) system consists of a quarter car model with a semi-active skyhook suspension. Transmissibility functions of the time-varying VBI system are derived and an extended fixed points principle is applied to obtain optimally tuned values of the vehicle suspension parameters for bridge-friendliness. Performances of both the optimally tuned passive and semi-active suspensions are assessed in terms of the dynamic responses, energetics and interacting force of the VBI system, and are shown to achieve excellent bridgefriendliness. Effects of vehicle suspension parameters on the temporal variation of the coupled bridge frequency are also studied. It is found that the bridge frequency depends strongly on two key physical parameters: vehiclebridge frequency ratio and vehicle damping ratio. Moreover, variations of the bridge frequency during the vehicle passage are small when the tuned suspensions are used. This new finding may have critical implications in future research in bridge frequency identification using a moving vehicle.
引用
收藏
页数:11
相关论文
共 50 条
  • [1] Vehicle suspension tuning for bridge-friendliness and influence on coupled vehicle-bridge system frequency
    Jin, Shibo
    Tan, Chin An
    Lu, Huancai
    [J]. Engineering Structures, 2024, 304
  • [2] Effect of suspension form on the vehicle-bridge coupled vibration of the maglev vehicle
    Zhang, Min
    Yuan, Cheng
    Ma, Weihua
    Luo, Shihui
    [J]. VEHICLE SYSTEM DYNAMICS, 2024, 62 (02) : 511 - 532
  • [3] Coupled Vibration Analysis of Vehicle-Bridge System for Jinsha River Bridge
    Han, Xing
    Zhu, Bing
    Wang, Junping
    Liu, Guiman
    [J]. SUSTAINABLE CITIES DEVELOPMENT AND ENVIRONMENT PROTECTION, PTS 1-3, 2013, 361-363 : 1194 - 1198
  • [4] Review on Evaluation Criteria for Vehicle-Bridge Coupled System
    Zhang, Nan
    [J]. RAILWAY DEVELOPMENT, OPERATIONS, AND MAINTENANCE: PROCEEDINGS OF THE FIRST INTERNATIONAL CONFERENCE ON RAIL TRANSPORTATION 2017 (ICRT 2017), 2018, : 871 - 879
  • [5] EFFECT OF NONLINEAR SUSPENSION SYSTEM ON VEHICLE-BRIDGE COUPLING VIBRATION
    Ren, W.
    Chen, R. F.
    Song, Y. F.
    He, S. H.
    [J]. ENVIRONMENTAL VIBRATIONS: PREDICTION, MONITORING, MITIGATION AND EVALUATION, VOLS I AND II, 2009, : 1158 - 1163
  • [6] Evolutionary random response problem of a coupled vehicle-bridge system
    J.-Q. Li
    X.-L. Leng
    T. Fang
    [J]. Archive of Applied Mechanics, 2002, 72 : 536 - 544
  • [7] Dynamic Response of a Vehicle-Bridge Expansion Joint Coupled System
    Zhang, Lu
    Wang, Shaohua
    Li, Bing
    [J]. SHOCK AND VIBRATION, 2022, 2022
  • [8] Evolutionary random response problem of a coupled vehicle-bridge system
    Li, JQ
    Leng, XL
    Fang, T
    [J]. ARCHIVE OF APPLIED MECHANICS, 2002, 72 (6-7) : 536 - 544
  • [9] Coupling vibration of vehicle-bridge system
    Chen Yan
    Huang Xiao-qing
    Ma You-fa
    [J]. Applied Mathematics and Mechanics, 2004, 25 (4): : 390 - 395
  • [10] COUPLING VIBRATION OF VEHICLE-BRIDGE SYSTEM
    陈炎
    黄小清
    马友发
    [J]. Applied Mathematics and Mechanics(English Edition), 2004, (04) : 390 - 395