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低地板有轨电车乘坐舒适性恶化机理及对策研究

Research on the mechanism and measures of riding comfort deterioration in a low floor tram.

作者信息

Wang Huansheng, Chi Maoru, Cai Wubin, Xie Yuchen, Sun Jianfeng, Dai Liangcheng

机构信息

State Key Laboratory of Rail Transit Vehicle System, Southwest Jiaotong University, Chengdu, 610031, China.

School of Mechanical Engineering, Southwest Jiaotong University, Chengdu, 610031, China.

出版信息

Sci Rep. 2024 Oct 4;14(1):23064. doi: 10.1038/s41598-024-74626-8.

Abstract

With the global widespread preference for low-floor trams, the expectation for tram riding comfort has been increasingly heightened. This paper identifies an abnormal riding comfort problem (ARCP, characterized by an excessive and W-shaped distribution of riding comfort) during dynamic field tests on a low-floor tram. To address ARCP, a multi-body dynamics model of the tram was constructed and validated its accuracy through dynamic field tests. By integrating track irregularities and wheel-rail contact analysis, the riding comfort index was assessed and reproduced the ARCP phenomenon. Linearization and time-domain integration studies were conducted on the mechanisms and measures to resolve the ARCP. The research findings reveal that the primary cause of the deterioration in the mean comfort index is the large amplitude of the track irregularity and the low equivalent conicity of the wheel-rail contact relationship. The main reason for the W-shaped distribution of riding comfort is the weaker inter-vehicle constraints and the lack of lateral energy-absorbing devices. Finally, optimization measures were proposed, including reducing the lateral stiffness of the second suspension, altering the carbody structural parameters, and modifying the inter-vehicle connection devices. This research enriches the study of tram dynamic performance and offers insights that may contribute to the resolution of ARCP.

摘要

随着全球对低地板有轨电车的广泛青睐,人们对有轨电车乘坐舒适性的期望日益提高。本文在对一辆低地板有轨电车进行动态现场测试时,发现了一个异常乘坐舒适性问题(ARCP,其特征为乘坐舒适性呈过度且呈W形分布)。为了解决ARCP问题,构建了有轨电车的多体动力学模型,并通过动态现场测试验证了其准确性。通过整合轨道不平顺和轮轨接触分析,评估了乘坐舒适性指标并再现了ARCP现象。对解决ARCP的机理和措施进行了线性化和时域积分研究。研究结果表明,平均舒适性指标恶化的主要原因是轨道不平顺的大振幅以及轮轨接触关系的低等效锥度。乘坐舒适性呈W形分布的主要原因是车辆间约束较弱且缺乏横向能量吸收装置。最后,提出了优化措施,包括降低二系悬挂的横向刚度、改变车体结构参数以及修改车辆间连接装置。本研究丰富了有轨电车动态性能的研究,并为解决ARCP问题提供了可能有帮助的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/755e/11452503/f3fde14096fb/41598_2024_74626_Fig1_HTML.jpg

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