On Site Measurement and Evaluation of Environmental Vibration Caused by Ordinary Speed Train Operation

Xin Zheng, Shunfeng Chen, Hengyan Xie
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Abstract

: In order to study the environmental vibration characteristics and evaluation of the saturated soil site in the cold northern region caused by the train, vibration observation was carried out on a saturated soil site in a near railway area of the Harbin-Manzhouli Railway, and the environmental vibration caused by different trains at different operating speeds was analyzed in the time and frequency domains. The observation results were evaluated by using the 1/3 octave vibration acceleration level and the maximum weighted plumb vibration level as evaluation index. The results show that the acceleration decreases with the increase of distance, and the acceleration decreases rapidly from 10 m to 30 m, and slowly after 30 m. The vibration energy of the measurement points at 10 m and 20 m is concentrated in 15 - 60 Hz, and the vibration energy of the measurement points after 30 m is concentrated in 15 - 20 Hz. With the increase of the distance from the center of the track, the 1/3 octave vibration acceleration level and the maximum weighted plumb vibration level all show a trend of attenuation. The maximum weighted plumb vibration levels at 30 m are 70.8 dB and 71.3 dB for upward and downward trains, and 77.4 dB and 71.4 dB for upward and downward freight trains, respectively, which are greater than the weighted plumb vibration level limit for special residential buildings. The maximum value of vibration acceleration level at the 10 m measurement point is 88.6 dB, which exceeds the limit by 9.5 dB, and that of 30 m measurement point is 69.8 dB, which meets the specification requirements. The results of the study can provide basic data for the environmental vibration characterization of saturated soil sites caused by train operation and the environmental vibration design of residential, agricultural and water conservancy infrastructures in the near-railway area.
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现场测量和评估普通速度列车运行引起的环境振动
:为了研究列车引起的北方寒冷地区饱和土壤场地的环境振动特征和评价,对哈尔滨至满洲里铁路附近的饱和土壤场地进行了振动观测,并对不同列车在不同运行速度下引起的环境振动进行了时域和频域分析。观测结果以 1/3 倍频程振动加速度水平和最大加权垂线振动水平作为评价指标。结果表明,加速度随距离的增加而减小,10 m 至 30 m 处加速度减小较快,30 m 后减小较慢;10 m 和 20 m 处测点的振动能量集中在 15 - 60 Hz,30 m 后测点的振动能量集中在 15 - 20 Hz。随着与轨道中心距离的增加,1/3 倍频程振动加速度水平和最大加权垂线振动水平均呈衰减趋势。上行列车和下行列车在 30 米处的最大加权垂线振动级分别为 70.8 分贝和 71.3 分贝,上行货运列车和下行货运列车的最大加权垂线振动级分别为 77.4 分贝和 71.4 分贝,均大于特殊住宅建筑的加权垂线振动级限值。10 m 测点的振动加速度水平最大值为 88.6 dB,超出限值 9.5 dB,30 m 测点的振动加速度水平最大值为 69.8 dB,满足规范要求。研究结果可为列车运行引起的饱和土壤场地环境振动特征描述,以及铁路附近地区住宅、农业和水利基础设施的环境振动设计提供基础数据。
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