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首页> 外文期刊>Journal of Sound and Vibration >Contributions of longitudinal track unevenness and track stiffness variation to railway induced vibration
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Contributions of longitudinal track unevenness and track stiffness variation to railway induced vibration

机译:纵向轨道不均匀性和轨道刚度变化对铁路诱导振动的贡献

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摘要

Dynamic train-track interaction originates from excitation mechanisms such as longitudinal track unevenness, parametric excitation due to track stiffness variation and impact excitation due to wheel flats, wheel out-of-roundness and rail joints. Track stiffness variation can be regarded as longitudinal track unevenness in loaded condition, but for the mitigation of track geometry degradation it is important to distinguish between track unevenness in unloaded condition and track stiffness variation. This paper studies how longitudinal track unevenness and track stiffness variation contribute to railway induced vibration. A case study is performed for a railway line in Furet, Sweden. Based on measured track unevenness and stiffness data from the IMV 100 track recording car, the train-track interaction forces and free field vibrations are computed for each of these two excitation mechanisms separately, as well as for a combination of both. The computed free field vibrations are in good agreement with measured vibrations at the same site. The contribution of the track stiffness variation to the interaction forces and free field vibrations is much lower than the contribution of the longitudinal track unevenness. Track stiffness variation can also be modeled as equivalent track unevenness, leading to results slightly different from those obtained when track unevenness and track stiffness variation are modeled separately, and a poorer agreement with the measured vibrations. (C) 2018 Elsevier Ltd. All rights reserved.
机译:从激励机制动态列车轨道相互作用发源如纵向轨道不均匀性,参变激励由于轨道刚度变化和碰撞激发由于车轮单位,车轮外的圆度和轨缝。轨道刚度的变化可被视为在负载状态纵向轨道不均匀性,但对于轨道几何降解的减轻它在卸载状态和轨道不均匀区分轨道刚度的变化是重要的。本文研究如何纵向轨道不均匀和轨道刚度变化有助于铁路引起的振动。以苏州为例,在孚雷,瑞典铁路线进行。基于所测量的轨道不均匀和从IMV 100磁道记录车刚度数据,列车轨道的相互作用力和自由场的振动计算每个这两种激励机制分开,以及用于二者的组合。计算的自由场振动是在同一地点与测量的振动很好的一致性。轨道刚度变化的相互作用力和自由场振动的贡献大于所述纵向轨道不均匀性的贡献要低得多。轨道刚度变化也可以被建模为等效轨道不均匀,导致的结果从这些轨道时不均匀和轨道刚度的变化被分开建模,并利用所测量的振动的较差的协议略有不同。 (c)2018年elestvier有限公司保留所有权利。

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