首页> 外文期刊>Journal of Computational and Nonlinear Dynamics >Spectral Distribution of Derailment Coefficient in Non-Linear Model of Railway Vehicle-Track System With Random Track Irregularities
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Spectral Distribution of Derailment Coefficient in Non-Linear Model of Railway Vehicle-Track System With Random Track Irregularities

机译:轨道不平顺的铁路车辆—轨道系统非线性模型中脱轨系数的频谱分布

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Improving the running safety and reducing the risk of derailments are the key objectives in the assessment of the running characteristics of railway vehicles. The present study of the safety against derailment is focused on the effect of wheelset hunting on the derailment coefficient Y/Q and, especially, how it is reflected in the power spectral density (PSD) of Y/Q. The lateral Y and vertical Q forces at the wheel/rail contact are obtained in numerical simulations for a four-axle railway vehicle moving at a constant velocity along a tangent track with random geometrical irregularities. The PSD of Y/Q, calculated as a function of spatial frequency, is found to have a characteristic structure with three peaks for the leading wheelsets and one peak for the trailing wheelsets of the front and rear bogies. The positions of the PSD maxima remain unchanged with increasing ride velocity, while their magnitudes and shapes evolve. One of the PSD peaks occurs for all wheelsets at the same spatial frequency corresponding to the wheelset hunting, while an additional peak at the double hunting frequency is found for the leading wheelsets. Such a peak structure is also found in the PSD of Y/Q determined in simulations with modified parameters of the vehicle primary suspension and for different track sections. The peak at the double hunting frequency is shown, by a detailed analysis of the contact forces, the flange angles and their PSDs, to result from the nonlinear geometry of the wheel/rail contact leading to the second-harmonic term in Y/Q. The emergence of this peak is also closely related to the phase difference between the hunting oscillations of the wheelset lateral displacement and the oscillations of its yaw angle, for which the difference is significantly smaller for the leading wheelset than for the trailing one. Finally, the effect of wheelset hunting is also shown to manifest itself in the strong dependence of the running average of Y/Q, which is used in the railway technical safety standards for the assessment of the safety against derailment (with the Nadal criterion), on the applied window width.
机译:在评估铁路车辆的行驶特性时,提高行驶安全性和降低出轨风险是关键目标。当前的防脱轨安全性研究集中于轮对摆动对脱轨系数Y / Q的影响,尤其是如何在Y / Q的功率谱密度(PSD)中反映出来。在数值模拟中,对于四轴铁路车辆以恒定的速度沿切线轨道以随机的几何不规则性运动,可以得到轮/轨接触处的横向Y力和垂直Q力。根据空间频率的函数计算得出的Y / Q PSD具有一种特征结构,前转向架和后转向架的前轮组有三个峰值,后轮组有一个峰值。 PSD最大值的位置随着行驶速度的增加而保持不变,而其大小和形状则不断变化。 PSD峰值之一出现在所有轮对,且都对应于轮对摆动,而空间频率相同,而前轮对则在双摆动频率处发现了另一个峰值。这种峰值结构也出现在通过修改的车辆主悬架参数以及针对不同的路段的模拟确定的Y / Q PSD中。通过对接触力,法兰角及其PSD的详细分析,显示了双摆动频率处的峰值,这是由于轮轨接触的非线性几何形状导致了Y / Q中的二次谐波项所致。该峰值的出现还与轮对侧向位移的摆动振荡和其偏航角振荡之间的相位差密切相关,对于前导轮对,该差明显小于后轮对。最后,轮对摆动的影响还表现出对Y / Q行驶平均值的强烈依赖性,该平均值在铁路技术安全标准中用于评估防脱轨安全性(采用纳达尔标准),在应用的窗口宽度上

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