Dynamic Analysis of Suspension-Type Monorail Long-Span Cable-Stayed Bridge in a Wind-Vehicle-Bridge System

被引:0
作者
Bing Zhu
Chengran Zhang
Zhen Zhang
Lei Luo
Xiaozu Bai
机构
[1] Southwest Jiaotong University,School of Civil Engineering
来源
Urban Rail Transit | 2023年 / 9卷
关键词
Suspension-type monorail; Cable-stayed bridge; Wind-vehicle-bridge coupling system; Ride comfort quality; Multi-body dynamics;
D O I
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中图分类号
学科分类号
摘要
The suspension-type monorail (STM) is a new type of rail transit, currently developing rapidly in China. Due to its short construction duration and high terrain adaptability, STM can save large land resources. In particular, by supplementing the traffic systems in large and medium-sized cities, STM can contribute to green tourism projects. However, no systematic study is devoted to the STM transit system in China, and there is still a lack of relevant knowledge and exploration, especially for the special combination system monorail bridge. In view of the real STM bridge, namely a long-span (55 + 100 + 55)-m cable-stayed bridge in this paper, and by applying wind-vehicle-bridge coupling vibration theory, ANSYS finite element method software, and Universal Mechanism multi-body dynamics software, finite element models are established for the bridge and multi-body vehicle, respectively. Furthermore, a co-simulation method is adopted to analyze vehicle-bridge coupling vibrations and ride comfort quality. According to the results, the dynamic responses of the monorail bridge and vehicle are greatly affected by the variation in wind speed, and it is necessary to take measures to decrease system vibrations, thereby ensuring ride comfort quality for vehicle passengers.
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页码:19 / 30
页数:11
相关论文
共 72 条
[1]  
Timan PE(2015)Why monorail systems provide a great solution for metropolitan areas Urban Rail Transit 1 13-25
[2]  
Williams MJ(2013)High-speed rail: will it change the dynamics of us intercity passenger travel World Rev Intermodal Transp Res 4 73-95
[3]  
Rhoades DL(2014)Development and current status of suspended monorail vehicle Electric Drive Locomot 2 16-21
[4]  
Li F(1994)The new operating system of the H-train in dortmund Verk Tech 47 465-470
[5]  
Xu WC(1976)Suspended monorail systems in wuppertal changes over to aluminum cars Schweiz Alum Rundsch 26 152-156
[6]  
Boehm E(2001)New solution for urban traffic: small-typemonorail system Hitachi Rev 50 139-143
[7]  
Frisch H(2018)Experimental research on dynamic performance of suspended monorail train-bridge coupled system Tiedao Xuebao/J China Railw Soc 40 57-63
[8]  
Kehler WF(2019)Pier-beam integral analysis of suspended monorail traffic system Bridge Constr 49 36-41
[9]  
Kuwabara T(2020)Dynamic analysis of wind-vehicle-bridge coupling system for suspended monorail simply supported beam J Railw Eng Soc 37 53-58
[10]  
Hiraishi M(2013)Analysis on the adaptability of monorail transit Electric Locomot Mass Transit Veh 22 100309-151