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Safety assessment of underground vehicles passing over highly resilient straight tracks in the presence of a broken rail

机译:在断轨的情况下,通过高弹性直线轨道的地下车辆的安全性评估

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摘要

In this paper, vehicle-track interaction for a new slab track design, conceived to reduce noise and vibration levels has been analyzed, assessing the derailment risk for trains running on curved track when encountering a broken rail. Two different types of rail fastening systems with different elasticities have been analysed and compared.udNumerical methods were used in order to simulate the dynamic behaviour of the train-track interaction. Multibody system (MBS) modelling techniques were combined with techniques based on the finite element method (FEM). MBS modelling was used for modelling the vehicle and FEM for simulating the elastic track. The simulation model was validated by comparing simulated results to experimental data obtained in field testing.udDuring the simulations various safety indices, characteristic of derailment risk, were analysed. The simulations realised at the maximum running velocity of 110 km/h showed a similar behaviour for several track types. When reducing the running speed, the safety indices worsened for both cases. Although the worst behaviour was observed for the track with a greater elasticity, in none of the simulations did a derailment occur when running over the broken rail.
机译:在本文中,已经对旨在降低噪音和振动水平的新型平板轨道设计的车轨相互作用进行了分析,评估了遇到折断的铁路时在弯曲轨道上行驶的列车出轨的风险。分析和比较了两种具有不同弹性的不同类型的铁路扣件系统。 ud采用数字方法来模拟列车-轨道相互作用的动力学行为。多体系统(MBS)建模技术与基于有限元方法(FEM)的技术相结合。 MBS建模用于车辆建模,FEM用于模拟弹性轨道。通过将仿真结果与现场测试获得的实验数据进行比较,验证了仿真模型的有效性。 ud在仿真过程中,分析了各种安全指标,脱轨风险的特征。在110 km / h的最大行驶速度下实现的模拟对于几种轨道类型显示出相似的行为。降低运行速度时,两种情况的安全性指标都会恶化。尽管在具有较大弹性的轨道上观察到了最差的行为,但在模拟中都没有发生过在折断的轨道上行驶时脱轨的情况。

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