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地铁车辆段列车引起的地面及附近建筑物振动与噪声的测量。

Measurement of ground and nearby building vibration and noise induced by trains in a metro depot.

机构信息

School of Civil Engineering and Transportation, South China University of Technology, Guangzhou, China.

School of Civil Engineering and Transportation, South China University of Technology, Guangzhou, China.

出版信息

Sci Total Environ. 2015 Dec 1;536:761-773. doi: 10.1016/j.scitotenv.2015.07.123. Epub 2015 Aug 4.

Abstract

Metro depots are where subway trains are parked and where maintenance is carried out. They usually occupy the largest ground areas in metro projects. Due to land utilization problems, Chinese cities have begun to develop over-track buildings above metro depots for people's life and work. The frequently moving trains, when going into and out of metro depots, can cause excessive vibration and noise to over-track buildings and adversely affect the living quality of the building occupants. Considering the current need of reliable experimental data for the construction of metro depots, field measurements of vibration and noise on the ground and inside a nearby 3-story building subjected to moving subway trains were conducted in a metro depot at Guangzhou, China. The amplitudes and frequency contents of velocity levels were quantified and compared. The composite A-weighted equivalent sound levels and maximum sound levels were captured. The predicted models for vibration and noise of metro depot were proposed based on existing models and verified. It was found that the vertical vibrations were significantly greater than the horizontal vibrations on the ground and inside the building near the testing line. While at the throat area, the horizontal vibrations near the curved track were remarkably greater than the vertical vibrations. The attenuation of the vibrations with frequencies above 50 Hz was larger than the ones below 50 Hz, and the frequencies of vibration transmitting to adjacent buildings were mainly within 10-50 Hz. The largest equivalent sound level generated in the throat area was smaller than the testing line one, but the instantaneous maximum sound level induced by wheels squeal, contact between wheels and rail joints as well as turnout was close to or even greater than the testing line one. The predicted models gave a first estimation for design and assessment of newly built metro depots.

摘要

地铁站是地铁列车停放和进行维护的地方。它们通常占据地铁项目中最大的地面区域。由于土地利用问题,中国城市已开始在地铁站上方的轨道上方开发用于人们生活和工作的过轨建筑。当列车进出地铁站时,频繁移动的列车会对过轨建筑造成过度振动和噪声,并对建筑物居住者的生活质量产生不利影响。考虑到目前地铁车站建设对可靠实验数据的需求,在中国广州的一个地铁站,对受移动地铁列车影响的地面和附近 3 层建筑物内部的振动和噪声进行了现场测量。量化并比较了速度级别的幅度和频率内容。捕获了复合 A 加权等效声级和最大声级。根据现有模型提出了地铁车站振动和噪声的预测模型,并进行了验证。结果发现,地面和建筑物内部靠近测试线的垂直振动明显大于水平振动。而在咽喉区,靠近曲线轨道的水平振动明显大于垂直振动。频率高于 50 Hz 的振动衰减大于低于 50 Hz 的振动衰减,传递到相邻建筑物的振动频率主要在 10-50 Hz 之间。咽喉区产生的最大等效声级小于测试线的声级,但车轮尖叫、车轮与轨道接头接触以及道岔引起的瞬时最大声级接近或甚至大于测试线的声级。预测模型为新建造的地铁车站的设计和评估提供了初步估计。

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