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Numerical computation of wheel-rail impact noises with considering wheel flats based on the boundary element method

机译:基于边界元法的轮轨冲击噪声的数值计算

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摘要

When a wheel rolls to a flat, it can generate the impact force several multiples larger than that generated at the common time. The paper established a wheel-rail coupling vibration model with wheel flat, and vibration acceleration responses of the rail was computed. The computational result was then compared with the experimental result. Good consistency between simulation and experiment indicated that the finite element model is reliable. Then, based on the finite element model and boundary element model, the paper established a structural-acoustic coupling boundary element model and computed the radiation noise of wheel-rail under effects of wheel flats. Results show that: the wheel flats were an important reason for wheel rail impact noises, impact noises of wheel flats were mainly concentrated in frequency bands of over 250 Hz, and impact noises of wheel flats were closely related with wheel flat length, quantity of wheel flats as well as running speeds. With the increase of these parameters, the radiation noise of wheel flats would be increased correspondingly.
机译:当一个轮子滚到平坦时,它可以产生比在常用时间产生的倍数大的次倍数。本文建立了一个带轮平板的轮轨联轴器振动模型,并计算了轨道的振动加速响应。然后将计算结果与实验结果进行比较。仿真与实验之间的良好一致性表明有限元模型可靠。然后,基于有限元模型和边界元模型,该纸张建立了结构声耦合边界元模型,并计算了轮轨的辐射噪声下轮平面的影响。结果是轮轨冲击噪声的一个重要原因,车轮单位的冲击噪声主要集中在超过250赫兹的频段,车轮单位的冲击噪声与车轮平整长度密切相关,轮公寓以及运行速度。随着这些参数的增加,车轮平面的辐射噪声将相应地增加。

著录项

  • 作者

    Kai Cui; Xiaotong Qin;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 入库时间 2022-08-20 22:02:33

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