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首页> 外文期刊>International journal of structural stability and dynamics >A Comparative Study on the Beam and Continuum Finite Element Models for the Rail-Wheel Vibration
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A Comparative Study on the Beam and Continuum Finite Element Models for the Rail-Wheel Vibration

机译:轨道轮振动梁和连续式有限元模型的比较研究

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The rail wheel interaction can induce train and track vibrations and consequently lead to noise impact, passengers' discomfort, high maintenance cost, etc. Due to the complexity of the rail wheel interaction and the high cost of field tests, as well as the difficulties in data collection, numerical analyses have been widely resorted to for predicting the train and track vibrations, for which numerous numerical models have been developed. According to track modeling approaches, numerical models can be generally divided into two categories, i.e. beam models and continuum finite element (FE) models. In this paper, these two models are systematically compared and discussed. First, a typical beam model of Wu and Thompson [T. X. Wu and D. Thompson, On the parametric excitation of the wheel/track system, J. Sound Vib. 278(4) (2004) 725-747.] is introduced, based on which a modified model is then established. Secondly, a plane continuum FE model with high mesh quality is established, in which the transition mesh generation, contact treatment and element size determination are presented. Numerical tests are conducted to validate the proposed plane FE model. Finally, both the beam and the plane continuum FE models are examined through typical rail wheel interaction examples, in which the linear response of the track as well as the rail wheel vibrations under both a single rolling wheel and two rolling wheels are analyzed. The results show that most of the vibration trends obtained from the two models agree well with each other. Nevertheless, it is noteworthy that the continuum FE model has superiorities, especially for analyzing vibrations at higher frequencies. The present study can be of considerable help for designers and engineers in the railway industry to achieve the trade-off between the simulation demands and the computational cost.
机译:轨道互动可以诱导火车和跟踪振动,从而导致噪音影响,乘客的不适,高维护成本等由于轨道轮的复杂性和现场测试的高成本以及诸如难度的难度数据收集,数值分析已被广泛采用预测列车和轨道振动,其中开发了许多数值模型。根据轨道建模方法,数值模型通常可以分为两类,即梁模型和连续式有限元(FE)型号。在本文中,系统地比较和讨论了这两种模型。首先,吴和汤普森的典型光束模型[T. X. Wu和D. Thompson,关于车轮/轨道系统的参数激励,J.Sound Vib。第278(4)(2004)(2004)725-747。]是基于哪个修改模型建立。其次,建立了具有高网格质量的平面连续u型Fe模型,其中提出了过渡网格产生,接触处理和元素尺寸确定。进行数值测试以验证所提出的平面Fe模型。最后,通过典型的轨道轮相互作用示例检查光束和平面连续型Fe模型,其中分析了轨道的线性响应以及单个滚轮和两个滚轮下的轨道轮振动。结果表明,两种模型中获得的大多数振动趋势彼此相一致。然而,值得注意的是,连续uum Fe模型具有优越性,特别是在较高频率下分析振动。目前的研究对于铁路行业的设计者和工程师来说可以是相当大的帮助,以实现模拟需求与计算成本之间的权衡。

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