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Source Contribution Analysis for Exterior Noise of a High-Speed Train: Experiments and Simulations

机译:高速列车外部噪声的源贡献分析:实验与仿真

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This paper presents a detailed investigation into the contributions of different sound sources to the exterior noise of a high-speed train both experimentally and by simulations. The in situ exterior noise measurements of the high-speed train, including pass-by noise and noise source identification, are carried out on a viaduct. Pass-by noise characteristics, noise source localizations, noise source contributions of different regions, and noise source vertical distributions are considered in the data analysis, and it is shown how they are affected by the train speed. An exterior noise simulation model of the high-speed train is established based on the method of ray acoustics, and the inputs come from the array measurements. The predicted results are generally in good agreement with the measurements. The results show that for the high-speed train investigated in this paper, the sources with the highest levels are located at bogie and pantograph regions. The contributions of the noise sources in the carbody region on the pass-by noise increase with an increasing distance, while those in the bogie and train head decrease. The source contribution rates of the bogie and the lower region decrease with increasing train speed, while those of the coach centre increase. At a distance of 25 m, the effect of the different sound sources control on the pass-by noise is analysed, namely, the lower region, bogie, coach centre, roof region, and pantograph. This study can provide a basis for exterior noise control of high-speed trains.
机译:本文通过实验和仿真对不同声源对高速列车外部噪声的影响进行了详细研究。高速列车的现场外部噪声测量,包括通过噪声和噪声源识别,均在高架桥上进行。在数据分析中考虑了通过噪声特性,噪声源位置,不同区域的噪声源贡献以及噪声源垂直分布,并显示了它们如何受到列车速度的影响。基于射线声学的方法,建立了高速列车的外部噪声仿真模型,其输入来自阵列测量。预测结果通常与测量结果非常吻合。结果表明,对于本文研究的高速列车,具有最高水平的源位于转向架和受电弓区域。车身区域中的噪声源对通过噪声的贡献随着距离的增加而增加,而转向架和火车头中的噪声源的贡献则减小。转向架和下部区域的源贡献率随着火车速度的增加而降低,而教练中心的源贡献率则增加。在25μm的距离处,分析了不同声源控制对通过噪声的影响,即下部区域,转向架,长途汽车中心,屋顶区域和受电弓。该研究可为高速列车的外部噪声控制提供基础。

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