Protective effect of railway bridge wind barriers on moving trains: An experimental study

被引:25
|
作者
Xiang, Huoyue [1 ,2 ]
Hu, Hao [1 ]
Zhu, Jin [1 ,2 ]
He, Peng [1 ]
Li, Yongle [1 ,2 ]
Han, Bing [3 ]
机构
[1] Southwest Jiaotong Univ, Dept Bridge Engn, Chengdu 610031, Peoples R China
[2] Wind Engn Key Lab Sichuan Prov, Chengdu 610031, Sichuan, Peoples R China
[3] Shudao Investment Grp Co Ltd, Chengdu, Sichuan, Peoples R China
基金
中国国家自然科学基金; 中国博士后科学基金;
关键词
Wind barrier; Protective effect; Moving train; Wind tunnel test; Aerodynamic characteristic; HIGH-SPEED TRAIN; AERODYNAMIC CHARACTERISTICS; VEHICLES; OPTIMIZATION; PERFORMANCE; FORCES; FIELD;
D O I
10.1016/j.jweia.2021.104879
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
ABSTR A C T Wind barriers are an important wind protection facility that has been commonly used in high-speed railways to ensure the ride comfort and driving safety of high-speed trains in wind-prone areas. This paper presents an experimental study on the protective effect of wind barriers on the moving head and tail train vehicles under crosswinds for the first time. This study utilized a novel wind tunnel test device of a moving train model. The effects of the wind speed and the height and porosity of the wind barriers on the protective effect for moving trains were investigated considering the aerodynamic characteristics of the moving train. The protective effects of the wind barrier on the head and tail vehicles were compared, and the relationship between the vehicle aerodynamic characteristics with and without employing the porous wind barrier was discussed to simplify the test conditions and improve the evaluation efficiency of the protective effect of the wind barrier. The results indicated that the protective effect of the wind barriers on the moving train varied with different yaw angles. In addition, the height and porosity of the wind barriers significantly affected the protective effect of the wind barriers. Furthermore, the relationship between the vehicle overturning moment coefficient, an important in-dicator for vehicle safety evaluation, with and without employing the porous wind barrier, is quantified via a wind speed reduction coefficient. The wind speed reduction coefficient enables fast prediction of the vehicle overturning moment coefficient after the installation of porous wind barrier at any given yaw angle beta, without conducting additional wind tunnel tests.
引用
收藏
页数:15
相关论文
共 50 条
  • [21] Numerical study on optimal height of wind barriers and mechanism on high-speed railway bridge with double lines
    Xiang, Chaoqun
    Guo, Wenhua
    Zhang, Jiawen
    Zhongnan Daxue Xuebao (Ziran Kexue Ban)/Journal of Central South University (Science and Technology), 2014, 45 (08): : 2891 - 2898
  • [22] Effects of wind barriers on running safety of trains for urban rail cable-stayed bridge
    He, Wei
    Guo, Xiang-Rong
    Zhu, Zhi-hui
    Deng, Pengru
    He, Xu-hui
    WIND AND STRUCTURES, 2020, 31 (01) : 43 - 57
  • [23] Feasibility study on wind energy harvesting system implementation in moving trains
    Nurmanova, Venera
    Bagheri, Mehdi
    Phung, Toan
    Panda, Sanjib Kumar
    ELECTRICAL ENGINEERING, 2018, 100 (03) : 1837 - 1845
  • [24] Feasibility study on wind energy harvesting system implementation in moving trains
    Venera Nurmanova
    Mehdi Bagheri
    Toan Phung
    Sanjib Kumar Panda
    Electrical Engineering, 2018, 100 : 1837 - 1845
  • [25] Feasibility Study on Wind Energy Harvesting System Implementation in Moving Trains
    Nurmanova, Venera
    Bagheri, Mehdi
    Sultanbek, Adilet
    Hekmati, Arsalan
    Bevrani, Hassan
    2017 INTERNATIONAL SIBERIAN CONFERENCE ON CONTROL AND COMMUNICATIONS (SIBCON) PROCEEDINGS, 2017,
  • [26] Study on the wind load shape coefficients of railway noise barriers
    Zheng, Shixiong
    Wang, Linming
    Zhongguo Tiedao Kexue/China Railway Science, 2009, 30 (04): : 46 - 50
  • [27] Experimental Study of Noise Barriers for High-Speed Trains
    Belingard, P.
    Poisson, F.
    Bellaj, S.
    NOISE AND VIBRATION MITIGATION FOR RAIL TRANSPORTATION SYSTEMS, 2012, 118 : 495 - +
  • [28] Experimental study on wind resistance of main bridge of Jinhai Bridge
    He, Xuhui
    Tan, Lingfei
    Jing, Haiquan
    Liu, Qiqing
    Li, Diping
    Journal of Railway Science and Engineering, 2021, 18 (08) : 2081 - 2088
  • [29] Experimental Study on the Wind Stability of Tongtai Bridge
    Xun, J. C.
    Zhao, Q.
    Gao, H. J.
    PROCEEDINGS OF THE 2016 5TH INTERNATIONAL CONFERENCE ON CIVIL, ARCHITECTURAL AND HYDRAULIC ENGINEERING (ICCAHE 2016), 2016, 95 : 646 - 654
  • [30] Numerical study on effect of wind barriers on aerodynamic performance of high-speed train on bridge
    Xiang, Chaoqun
    Guo, Wenhua
    Chen, Tao
    Zhang, Jiawen
    Zhongguo Tiedao Kexue/China Railway Science, 2014, 35 (05): : 113 - 120