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高架桥运行地铁车辆的车内噪声与振动现场研究:以广州为例

Field Study of the Interior Noise and Vibration of a Metro Vehicle Running on a Viaduct: A Case Study in Guangzhou.

机构信息

School of Civil Engineering, Central South University, Changsha 410075, China.

National Engineering Laboratory for High Speed Railway Construction, Changsha 410075, China.

出版信息

Int J Environ Res Public Health. 2020 Apr 19;17(8):2807. doi: 10.3390/ijerph17082807.

Abstract

The interior noise and vibration of metro vehicles have been the subject of increasing concern in recent years with the development of the urban metro systems. However, there still is a lack of experimental studies regarding the interior noise and vibration of metro vehicles. Therefore, overnight field experiments of the interior noise and vibration of a standard B-type metro train running on a viaduct were conducted on metro line 14 of Guangzhou (China). Both the A-weighted sound pressure level and linear sound pressure level were used to evaluate the interior noise signals in order to revel the underestimation of the low-frequency noise components. The results show that the interior noise concentrates in the low-to-middle frequency range. Increasing train speeds have significant effects on the sound pressure level inside the vehicle. However, two obvious frequency ranges (125-250 Hz and 400-1000 Hz) with respective corresponding center frequencies (160 Hz and 800 Hz) of the interior noise are nearly independent of train speed. The spectrum analysis of the vehicle body vibration shows that the frequency peak of the floor corresponds to the first frequency peak of the interior noise spectrum. There are two frequency peaks around 40 Hz and 160 Hz of the sidewall's acceleration level. The frequency peaks of the acceleration level are also independent of the train speeds. It hopes that the field measurements in this paper can provide a data set for researchers for further investigations and can contribute to the countermeasures for reducing interior noise and vibration of a metro vehicle.

摘要

近年来,随着城市地铁系统的发展,地铁车辆的内部噪声和振动问题越来越受到关注。然而,对于地铁车辆的内部噪声和振动,仍然缺乏实验研究。因此,在广州地铁 14 号线的高架桥轨道上,对一列标准 B 型地铁列车进行了夜间现场实验,测量了其内部噪声和振动。采用 A 计权声压级和声压级对内部噪声信号进行了评价,以揭示低频噪声分量的低估问题。结果表明,内部噪声集中在中低频范围内。列车速度的增加对车内声压级有显著影响。然而,内部噪声有两个明显的频率范围(125-250Hz 和 400-1000Hz),各自对应的中心频率(160Hz 和 800Hz)几乎与列车速度无关。车体振动的频谱分析表明,地板的频率峰值对应于内部噪声频谱的第一个频率峰值。侧壁加速度水平有两个频率峰值,约为 40Hz 和 160Hz。加速度水平的频率峰值也与列车速度无关。希望本文中的现场测量能为研究人员提供一个数据集,以进一步进行研究,并为降低地铁车辆内部噪声和振动提供对策。

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