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A Case Study of Dynamic Response Analysis and Safety Assessment for a Suspended Monorail System

机译:悬架单轨系统动力响应分析与安全评估的案例研究

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摘要

A suspended monorail transit system is a category of urban rail transit, which is effective in alleviating traffic pressure and injury prevention. Meanwhile, with the advantages of low cost and short construction time, suspended monorail transit systems show vast potential for future development. However, the suspended monorail has not been systematically studied in China, and there is a lack of relevant knowledge and analytical methods. To ensure the health and reliability of a suspended monorail transit system, the driving safety of vehicles and structure dynamic behaviors when vehicles are running on the bridge should be analyzed and evaluated. Based on the method of vehicle-bridge coupling vibration theory, the finite element method (FEM) software ANSYS and multi-body dynamics software SIMPACK are adopted respectively to establish the finite element model for bridge and the multi-body vehicle. A co-simulation method is employed to investigate the vehicle-bridge coupling vibration for the transit system. The traffic operation factors, including train formation, track irregularity and tire stiffness, are incorporated into the models separately to analyze the bridge and vehicle responses. The results show that the coupling of dynamic effects of the suspended monorail system between vehicle and bridge are significant in the case studied, and it is strongly suggested to take necessary measures for vibration suppression. The simulation of track irregularity is a critical factor for its vibration safety, and the track irregularity of A-level road roughness negatively influences the system vibration safety.
机译:悬挂式单轨运输系统是城市轨道交通的一种,可有效缓解交通压力和预防伤害。同时,具有成本低廉,施工时间短的优点,悬挂式单轨运输系统具有巨大的发展潜力。但是,悬架式单轨铁路在中国还没有得到系统的研究,缺乏相关的知识和分析方法。为了确保悬挂式单轨运输系统的健康和可靠性,应分析和评估车辆在桥梁上行驶时的行驶安全性和结构动态行为。基于车桥耦合振动理论的方法,分别采用有限元软件(ANSYS)和多体动力学软件SIMPACK建立桥梁和多体车辆的有限元模型。联合仿真方法用于研究运输系统的车桥耦合振动。包括列车编队,轨道不平顺性和轮胎刚度在内的交通运营因素分别纳入模型中,以分析桥梁和车辆的响应。结果表明,在所研究的情况下,悬架式单轨系统在车辆与桥梁之间的动力效应耦合非常重要,强烈建议采取必要的措施来抑制振动。轨道不平整度的模拟是影响其振动安全的关键因素,A级道路不平整度的轨道不平度会对系统的振动安全性产生负面影响。

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