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An advanced vehicle–slab track interaction model considering rail random irregularities

机译:考虑轨道随机违规的先进车平板轨道交互模型

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摘要

This paper investigates a more advanced vertical vehicle–slab track interaction model (VTIM) by considering the discontinuity of track slabs, besides, it can be degenerated to the traditional two-dimensional model conveniently. Moreover, a cyclic calculation method (CCM) is further developed to solve infinite length calculations. On this basis, the proposed dynamic model and CCM are validated by comparing with the more comprehensive three-dimensional train–track model and fixed-point excitation method. Then, from aspects of probability statistics and frequency analysis, an illustrative example is particularly conducted to comprehensively characterize the dynamic responses of vehicle–slab track systems, in which the representative and realistic rail irregularity sets simulated by the track irregularity probabilistic model are used as the loading inputs. Results show that, with a low consumption of computational time and computer memory, the dynamic results derived from VTIM and CCM have a high accuracy, which indicates that the proposed dynamic model and calculation method can be efficiently and accurately used to analyze train–slab track interactions.
机译:本文考虑了轨道板的不连续性,研究了一种更先进的垂直车辆-板-轨道相互作用模型(VTIM),该模型可以方便地退化为传统的二维模型。此外,还进一步发展了循环计算方法(CCM)来解决无限长计算。在此基础上,通过与更全面的三维列车轨道模型和定点激励方法的比较,验证了所提出的动力学模型和CCM。然后,从概率统计和频率分析的角度,以轨道不平顺概率模型模拟的具有代表性和真实性的轨道不平顺集作为加载输入,通过一个实例详细描述了车辆-板式轨道系统的动态响应。结果表明,在计算时间和计算机内存消耗较低的情况下,VTIM和CCM的动力学结果具有较高的精度,这表明所提出的动力学模型和计算方法可以高效、准确地用于分析列车-板-轨道相互作用。

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