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Innovative Methodology for Heavy Haul Train-Track Interaction Dynamics Issues

机译:重载型火车轨道交互动态问题的创新方法

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摘要

With the introduction of higher axleload wagons and higher traction locomotives in Australia, more rail damage can be observed. To investigate rail damage due to wheel-rail dynamic interactions, a new method is introduced which uses a two-way co-simulation technique to link a detailed infinitely long track model that is written in FORTRAN and a detailed locomotive or wagon model that is developed using the GENSYS software package. The original finite length track model has been evolved into an infinite one by using the method described in [1], considering rails, fasteners, sleepers, ballast, and subgrade. The locomotive or wagon model considers the carbody, bogie frames and wheelsets. Traction motors and gear boxes are considered in the locomotive model. As the track model and vehicle model can run mostly independently, a parallel computing technique is applied to improve the simulation speed as well as to simplify the model integration process. The co-simulation method can be applied to understand the dynamic performance characteristics of high axleload wagons and high adhesion locomotives to give an accurate evaluation and assessment of rail damage based on simulation results. One simulation case is used to demonstrate the method's effectiveness.
机译:随着澳大利亚更高的Axleload货车和更高的牵引力机车,可以观察到更多的轨道损坏。为了调查由于轮轨动态相互作用引起的轨道损伤,介绍了一种使用双向共模技术的新方法,以将详细的无限长的轨道模型与开发的详细的机车或无盖货车模型联系起来使用Gensys软件包。通过使用[1]中描述的方法,原始有限长度轨道模型已经进化为无限的轨道模型。机车或马车模型考虑了车身,转向架框架和轮子。在机车模型中考虑牵引电机和齿轮箱。由于轨道模型和车辆模型可以大多独立运行,因此应用了并行计算技术来提高模拟速度,并简化模型集成过程。共仿真方法可以应用于了解高轴上货车的动态性能特性和高粘附机车,为基于仿真结果的轨道损伤提供准确的评估和评估。一个模拟案例用于展示该方法的有效性。

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