Multibody system dynamics modelling and simulation of a high-speed train for its suspension optimization

Yongming Wu, Shiping Liu, Dazhuo Wu, Wenlin Wang
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Abstract

Multibody system (MBS) dynamics modelling and simulation of high-speed train system is essential and meaningful in the context of train dynamics research and product design. In this work, MBS modelling of a CRH high-speed train is carried out, in the modelling process, nonlinear geometry of wheel-rail contact, nonlinear characteristics of the suspensions and nonlinear railroad irregularities are fully considered. With the obtained MBS model, simulation is performed and demonstrates that critical speed of the CRH train is 378 km/h, vertical ride comfort of the CRH train is in “Excellent” level and lateral ride comfort is in “Good” level, in addition, RMS derailment coefficient of the train is less than 0.5 which means curving performance of the train is good. Agreement of simulation result with actual test or running data validates the established MBS model, thus, the MBS model developed in this study is accurate and would be useful in the next step vibration analysis and suspension optimization of the CRH train.
高速列车悬架优化的多体系统动力学建模与仿真
高速列车多体系统动力学建模与仿真在列车动力学研究和产品设计中具有重要意义。本文对某高速列车进行了MBS建模,在建模过程中充分考虑了轮轨接触的非线性几何特性、悬架的非线性特性以及轨道的非线性不规则性。利用所建立的MBS模型进行仿真,结果表明,高铁列车的临界速度为378 km/h,列车的垂直平顺性为“优”级,横向平顺性为“良”级,列车的RMS脱轨系数小于0.5,列车的弯曲性能良好。仿真结果与实际试验或运行数据吻合,验证了所建立的MBS模型的准确性,为下一步高铁列车的振动分析和悬架优化提供了理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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