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Hybrid Model for Prediction of Impact Noise Generated at Railway Crossings

机译:铁路交叉口产生冲击噪声的混合模型

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A hybrid model for the prediction of impact noise at railway crossings is presented. The hybrid model combines the simulation of vertical wheel-rail contact force in the time domain and the prediction of sound pressure level using a linear frequency-domain model. The time-domain model uses moving Green's functions for the vehicle and track models (accounting for wheel flexibility and a discretely supported rail with space-variant beam properties) and a non-Hertzian wheel-rail contact model. The time-domain and frequency-domain models are coupled based on the concept of an equivalent roughness spectrum. The model is demonstrated by investigating the influence of axle load, vehicle speed and wheel profile on generated impact noise levels. A negligible influence on impact noise is observed for axle loads in the interval 15-25 tonnes. On the other hand, increasing vehicle speed from 80 to 150 km/h, or comparing a nominal S1002 wheel profile with a severely hollow worn profile, result in substantially higher levels of impact noise; for the given wheel and track conditions the differences are in the order of 10 dB(A).
机译:提出了一种用于预测铁路交叉处的冲击噪声的混合模型。混合模型在时域中的垂直轮轨接触力模拟和使用线性频率域模型的声压级预测。时域模型使用移动绿色的车辆和轨道模型的功能(用于车轮柔性和带空间 - 变形梁属性的离散的支撑轨道)和非赫斯轮轨道接触型号。时域和频域模型基于等效粗糙度频谱的概念耦合。通过研究轴载,车速和轮廓对产生的冲击噪声水平的影响来证明该模型。对于间隔15-25吨的间隔,观察到对轴载的对冲击噪声的影响忽略不计。另一方面,从80到150 km / h增加车速,或者将标称S1002轮廓与严重空心的磨损轮廓进行比较,导致较高水平的冲击噪声;对于给定轮子和轨道条件,差异为10dB(a)的顺序。

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