Investigation of a vibration mitigation method based on crowd flow control on a footbridge

被引:8
|
作者
Zhu, Qiankun [1 ,2 ]
Yang, Wenbin [1 ]
Du, Yongfeng [1 ,2 ]
Zivanovic, Stana [3 ]
机构
[1] Lanzhou Univ Technol, Inst Earthquake Protect & Disaster Mitigat, Lanzhou 730050, Peoples R China
[2] Lanzhou Univ Technol, Western Ctr Disaster Mitigat Civil Engn, Minist Educ, Lanzhou 730050, Peoples R China
[3] Univ Exeter, Coll Engn Math & Phys Sci, North Pk Rd, Exeter EX4 4QF, Devon, England
基金
中国国家自然科学基金;
关键词
Footbridge; Social force model; Crowd flow control; Human-induced vibration; Vibration mitigation mechanism; Input energy; SOCIAL FORCE MODEL; BRIDGE DYNAMIC INTERACTION; HUMAN-BODY; DESIGN; SERVICEABILITY; RESONANCE; DAMPER; COST; LOAD;
D O I
10.1016/j.istruc.2021.05.034
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The vibration mitigation method based on crowd flow control is verified by comparing the numerical and experimental results of its damping performance. The pedestrian characteristics are simulated with the upgraded social force model to include the effects of obstacles on pedestrian commute in a blocking scenario. The coupling system's control equation is established by loading a mass-spring-damping (MSD) model on the structure and the crowd-footbridge vertical interaction is analyzed. In this regard, a large-span interior footbridge in a shopping mall was analyzed, which had been presented in a previous study. The numerical vibration mitigation efficiency of the crowd motion control to different loading conditions is compared to the experimental results of a laboratory footbridge and the percentage of maximum numerical error is 16.7%. The vibration mitigation mechanism is described from the energy perspective. The numerical results were found consistent with the experimental data, and the pedestrian motion data in the simulation environment has enough reliability. It was found that choosing the location of obstacles can effectively help mitigate the vibration of the system. The relationship between the vibration mitigation rates, the number of obstacles, and the pedestrian densities were statistically analyzed to discuss the crowd control system's performance. The analyses demonstrate that the mitigation rate is directly affected by the number of obstacles in a specific crowd density range. It can be concluded that the mitigation performance of the hybrid mitigation method with Layout 1 is significantly more effective than Layout 2 at high pedestrian density.
引用
收藏
页码:1495 / 1509
页数:15
相关论文
共 50 条
  • [21] Image processing for capturing motions of crowd and its application to pedestrian-induced lateral vibration of a footbridge
    Yoshida, Junji
    Fujino, Yozo
    Sugiyama, Toshiyuki
    SHOCK AND VIBRATION, 2007, 14 (04) : 251 - 260
  • [22] Multimodal and multivariable active vibration control for a footbridge - model-based design and experimental validation
    Bleicher, A.
    Schlaich, M.
    Schauer, T.
    PROCEEDINGS OF THE 8TH INTERNATIONAL CONFERENCE ON STRUCTURAL DYNAMICS, EURODYN 2011, 2011, : 1525 - 1532
  • [23] Investigation on Tonal Vibration Transmission Path Control Method Based on Multi-DOF Control
    Xie X.
    Ren M.
    Zhang Z.
    Jixie Gongcheng Xuebao/Journal of Mechanical Engineering, 2023, 59 (21): : 224 - 233
  • [24] Vibration absorption control for an elastic plate based on dimensionless power flow method
    School of Marine, Northwestern Polytechnical University, Xi'an 710072, China
    J Vib Shock, 2007, 7 (111-113+144): : 111 - 113
  • [25] Design and Experimental Analysis of an Externally Prestressed Steel and Concrete Footbridge Equipped with Vibration Mitigation Devices
    Dall'Asta, Andrea
    Ragni, Laura
    Zona, Alessandro
    Nardini, Luca
    Salvatore, Walter
    JOURNAL OF BRIDGE ENGINEERING, 2016, 21 (08)
  • [26] A method to calculate the vibration power flow in the feedback vibration control system
    School. of Mech. and Electron. Eng., Wuhan University of Technology, Wuhan 430070, China
    不详
    Chuan Bo Li Xue, 2009, 2 (298-304):
  • [27] A Crowd Movement Analysis Method Based on Radar Particle Flow
    Zhang, Li
    Cao, Lin
    Zhao, Zongmin
    Wang, Dongfeng
    Fu, Chong
    SENSORS, 2024, 24 (06)
  • [28] A classification method based on streak flow for abnormal crowd behaviors
    Wang, Xiaofei
    He, Xiaohai
    Wu, Xiaohong
    Xie, Chun
    Li, Yun
    OPTIK, 2016, 127 (04): : 2386 - 2392
  • [29] Investigation on vibration serviceability of long-span suspension footbridge under crosswind
    Tang J.-M.
    Xie X.
    Zhejiang Daxue Xuebao (Gongxue Ban)/Journal of Zhejiang University (Engineering Science), 2021, 55 (10): : 1903 - 1911
  • [30] Acceleration-based active vibration control of a footbridge using grey-box model identification
    Schauer, Thomas
    Liu, Xiaohan
    Jirasek, Robert
    Bleicher, Achim
    2017 IEEE INTERNATIONAL CONFERENCE ON ADVANCED INTELLIGENT MECHATRONICS (AIM), 2017, : 910 - 915