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A new criterion for assessment of train derailment risk

机译:评估火车出轨风险的新标准

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A new criterion for prediction of train derailment is presented in this article. A three-degrees-of-freedom (3 DOF) wheelset model is used to identify the main dynamic parameters that affect wheelset derailment. Using these parameters and conventional definition of derailment coefficient, a new criterion for prediction of wheelset derailment is introduced. The proposed criterion, in addition to providing the required precision in prediction of wheel set derailment, requires measurements that are easy to perform. To evaluate the capability of the new criterion in prediction of derailment, a full wagon model with 48 DOF moving on a track with different random irregularities was used. The track is assumed to be mounted on a viscoelastic foundation. The wagon model is a three-dimensional, non-linear model of a train passenger car. The model includes non-linear elements for primary and secondary suspension systems. Friction and slack between elements, the centre pivot with kinematics constraints, forces between pads, and bolster are also included in this model.rnThe motion of the wagon on tangent and curved tracks is simulated for different travel speeds. Derailment coefficient and a new derailment criterion are used to investigate the possibility of wheelset derailment in each case. The study shows that the new criterion can very well predict wheelset derailment and can duplicate the predictions by conventional derailment coefficient (Y/Q).
机译:本文提出了一种预测列车出轨的新标准。使用三自由度(3 DOF)轮对模型来识别影响轮对脱轨的主要动态参数。利用这些参数和脱轨系数的常规定义,引入了一种新的轮对脱轨​​预测标准。除了在轮对脱轨的预测中提供所需的精度外,提出的标准还要求易于执行的测量。为了评估新标准在脱轨预测中的能力,使用了具有48个自由度在具有不同随机不规则性的轨道上移动的完整货车模型。假定轨道安装在粘弹性基础上。货车模型是火车客车的三维非线性模型。该模型包括用于一级和二级悬挂系统的非线性元件。该模型还包括元素之间的摩擦和松弛,带有运动学约束的中心枢轴,垫之间的力以及垫枕。rn针对不同的行驶速度,模拟了货车在切线和弯曲轨道上的运动。使用脱轨系数和新的脱轨标准来研究每种情况下轮对脱轨的可能性。研究表明,新标准可以很好地预测轮对脱轨,并且可以通过常规脱轨系数(Y / Q)来复制预测。

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