Comparisons Between Braking Experiments and Longitudinal Train Dynamics Using Friction Coefficient and Braking Pressure Modeling in a Freight Train

Q3 Social Sciences
D. Choi, R. Jeong, Yongkook Kim, Jangbom Chai
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引用次数: 5

Abstract

The simulation of longitudinal train dynamics of a freight train uses the time integration method of EN 14531. For reasonable simulation results, the characteristics of the train and brake equipment must be considered. For the train characteristics, specifications provided by the vehicle manufacturer are used. The braking characteristics are analyzed by friction coefficient tests and a braking pressure model. The friction coefficients of a locomotive and wagons are tested with a dynamo test bench and statistically expanded to account for variability. Freight trains should take into account the braking delay time. To reflect this in the simulation, the brake cylinder pressure pattern model uses pressures and exponential empirical equations measured at selective positions in a train of 50 vehicles. The simulation results are validated in comparison with those of the braking tests of a freight train consisting of 1 locomotive and 20 wagons.
基于摩擦系数和制动压力模型的货运列车制动试验与列车纵向动力学比较
货运列车纵向列车动力学仿真采用EN 14531的时间积分方法。为了获得合理的模拟结果,必须考虑列车和制动设备的特性。对于列车特性,使用车辆制造商提供的规范。通过摩擦系数试验和制动压力模型分析了制动特性。机车和货车的摩擦系数用发电机试验台进行测试,并进行统计扩展以考虑可变性。货运列车应考虑制动延迟时间。为了在模拟中反映这一点,制动缸压力模式模型使用了在50辆车的列车中的选择性位置测量的压力和指数经验方程。仿真结果与由1台机车和20节车厢组成的货运列车的制动试验结果进行了比较验证。
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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来源期刊
Open Transportation Journal
Open Transportation Journal Social Sciences-Transportation
CiteScore
2.10
自引率
0.00%
发文量
19
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