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Comparisons of Aerodynamic Noise Results Between Computations and Experiments for a High-Speed Train Pantograph

机译:空气动力学噪声的比较导致高速列车Pantograph的计算和实验

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Aerodynamic noise induced by interaction with the air flow becomes particularly important as train speeds increase. For modern electric high-speed trains, one of the main aerodynamic noise sources is the pantograph which normally sits in a cavity on the train roof. A component-based model, based on empirical constants obtained from available literature, is applied in this paper to predict pantograph noise in realistic conditions. The predictions are compared with field measurements obtained by using a microphone array. Comparisons are made for two types of train fitted with different pantographs, running at different speeds. Good agreement of the far-field noise spectrum with the measurements are obtained for both pantographs. The individual contributions from the pan-head and knee-joint are analysed. The dominant source is found at the panhead whereas the knee-joint is of less importance. In addition, through the model, a detailed component spectral analysis is presented for the first pantograph.
机译:与空气流相互作用引起的空气动力学噪声变得尤为重要,因为火车速度增加。对于现代电动高速列车,其中一个主要的空气动力噪声源是Pantograin,其通常坐在火车屋顶上的腔体中。基于从可用文献中获得的经验常数的基于组分的模型应用于本文以预测现实条件下的受电弓噪声。将预测与通过使用麦克风阵列获得的现场测量进行比较。对两种类型的火车进行比较,适用于不同的受电弓,以不同的速度运行。对于两个受电弓获得测量的远场噪声谱的良好一致。分析了泛头和膝关节的各个贡献。在Panhead找到主导来源,而膝关节的重要性则不太重要。另外,通过该模型,给出了第一个接地仪的详细组分光谱分析。

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