Influence of levitation bogie structure aerodynamic loads on the dynamic performance of 600 km/h EMS maglev train

被引:1
|
作者
Feng, Yang [1 ]
Zhao, Chunfa [1 ]
Peng, Yeye [1 ]
Zhang, Wenzhao [1 ]
Yu, Dalian [2 ,3 ]
Liang, Xin [2 ,3 ]
机构
[1] Southwest Jiaotong Univ, State Key Lab Tract Power, Chengdu 610031, Sichuan, Peoples R China
[2] CRRC QINGDAO SIFANG CO LTD, Qingdao 266111, Shandong, Peoples R China
[3] State Key Lab High Speed Maglev Transportat Techno, Qingdao 266111, Shandong, Peoples R China
基金
中国国家自然科学基金;
关键词
High speed maglev train; Aerodynamic loads on levitation bogie; Running safety at 600 km/h; Passing through tunnel; Levitation and guidance gap; VEHICLE;
D O I
10.1016/j.jweia.2025.106070
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
As the operating speed of EMS high-speed maglev trains increases to 600 km/h, aerodynamic effects significantly impact running safety and stability. However, most studies considering aerodynamic loads by applying them to the carbody's mass center, overlooking the aerodynamic loads effects on bogie structures, such as skirt boards and levitation/guiding electromagnets. This study examines the dynamic performance of a Chinese 600 km/h maglev train. An aerodynamic model of a three-car trainset was developed to simulate running conditions at 600 km/h, both in open-line and tunnel scenarios. Aerodynamic loads on skirt boards, levitation, and guidance electromagnets were innovatively analyzed and applied to a maglev train dynamics model considering the skirt board. The findings reveal that aerodynamic loads on the levitation bogie at the train's front and rear are most significant, with lift and lateral forces posing potential running safety risks. During open-line operation, these loads exert minimal impact. However, in tunnels running condition, significant fluctuations occur during entry and pressure wave interactions, increasing dynamic responses and potentially compromising safety and levitation stability, and even bring levitation instability problem.
引用
收藏
页数:15
相关论文
共 41 条
  • [31] Influence of new airbag structure on aerodynamic performance of high-speed train in crosswind
    Zhang J.
    Xu A.
    Yue W.
    Wang Z.
    Huang F.
    Gao G.
    Zhongnan Daxue Xuebao (Ziran Kexue Ban)/Journal of Central South University (Science and Technology), 2024, 55 (05): : 1745 - 1757
  • [32] Influence of geometry accuracy of track structure on dynamic performance of the coupled medium-low speed maglev train-rail-bridge system
    Ao, Jianan
    Wei, Gaoheng
    Ma, Weihua
    Zhou, Ce
    Luo, Shihui
    Yu, Yao
    Journal of Railway Science and Engineering, 2020, 17 (11) : 2738 - 2747
  • [33] A study on the dynamic performance of the 200km/h Korean tilting train by means of roller rig test
    Kim, Nam-Po
    Park, Tae-Won
    JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY, 2009, 23 (04) : 910 - 913
  • [34] Propagation characteristics of initial compression wave in cave and portal micro-pressure waves characteristics when 600 km•h-1 maglev train entering tunnels
    Mei, Yuan-Gui
    Li, Mian-Hui
    Hu, Xiao
    Du, Jun-Tao
    Jiaotong Yunshu Gongcheng Xuebao/Journal of Traffic and Transportation Engineering, 2021, 21 (04): : 150 - 162
  • [35] A study on the dynamic performance of the 200km/h Korean tilting train by means of roller rig test
    Nam-Po Kim
    Tae-Won Park
    Journal of Mechanical Science and Technology, 2009, 23 : 910 - 913
  • [36] Influence of the track structure on the vertical dynamic interaction analysis of the low-to-medium-speed maglev train-bridge system
    Wang, Dangxiong
    Li, Xiaozhen
    Liang, Lin
    Qiu, Xiaowei
    ADVANCES IN STRUCTURAL ENGINEERING, 2019, 22 (14) : 2937 - 2950
  • [37] Research on aerodynamic experiment and dynamic performance of new developed V500 pantograph at 400 km/h or higher
    Mei, Guiming
    Wang, Jiangwen
    Zhao, Chen
    Jiang, Yanan
    Zou, Dong
    Li, Ruiping
    Chen, Zhenbao
    Chen, Mingguo
    Li, Jun
    Song, Dongli
    Zhou, Ning
    Zhang, Weihua
    DYNAMICS OF VEHICLES ON ROADS AND TRACKS, 2016, : 919 - 926
  • [38] Train-track-bridge interaction: Influence of track typology on structure dynamic performance
    Bruni, S.
    Collina, A.
    Corradi, R.
    Structural Dynamics - EURODYN 2005, Vols 1-3, 2005, : 1063 - 1068
  • [39] Investigation on the concrete strength performance of underlying tunnel structure subjected to train-induced dynamic loads at an early age
    Zheng, Yuchao
    Yang, Jianfeng
    Liao, Baolin
    Ma, Shuqi
    Zhong, Heng
    Lei, Jianyong
    CONSTRUCTION AND BUILDING MATERIALS, 2022, 337
  • [40] Influence of bridge structure stiffness on the dynamic performance of high-speed train-track-bridge coupled system
    Zhai, Wanming
    Wang, Shaolin
    Zhongguo Tiedao Kexue/China Railway Science, 2012, 33 (01): : 19 - 26