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首页> 外文期刊>Aerosol and Air Quality Research >Performance Estimation of a Louver Dust Collector Attached to the Bottom of a Subway Train Running in a Tunnel
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Performance Estimation of a Louver Dust Collector Attached to the Bottom of a Subway Train Running in a Tunnel

机译:附在地铁隧道中的百叶窗式集尘器的性能评估

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In underground tunnels, friction between the wheels and rails of subway trains creates particles, which are spread by the wind generated when trains pass by. A louver dust collector was attached to the bottom of a T-car of Seoul Subway Line 5 train in an effort to remove PM10 inside tunnels, and obtain data when it was in actual operation. It made several round trips during which differential pressure of the louver dust collector was measured in relation to train speed. By comparing and verifying the differential pressure estimated by simulation and that actually measured, it was possible to estimate average flow of air that went into the louver dust collector. Furthermore, by comparing and verifying the measurement results on collection efficiency of a lab-scale louver dust collector in a wind tunnel, along with the results of numerical analysis, it was possible to estimate the collection efficiency in relation to subway train speed. As a result, it was confirmed that higher running speeds of subway trains increased the flow of air going into the louver dust collector and subsequently decreased the particle size corresponding to 50% collection efficiency. In other words, the cut-off size was estimated to be 9.7 µm at the lowest speed of 5 km h–1, and 4.9 µm at the top speed of 65 km h–1, in normal speed range for the Seoul Subway Line 5 trains.
机译:在地下隧道中,地铁列车的车轮与轨道之间的摩擦会产生颗粒,这些颗粒会随着火车经过时产生的风而散布开来。在首尔地铁5号线的T车底部安装了百叶窗式除尘器,目的是清除隧道内的PM10,并在实际运行时获取数据。它进行了几次往返,在此期间测量百叶窗式集尘器的压差与列车速度的关系。通过比较和验证模拟估算的压差和实际测量的压差,可以估算进入百叶窗式集尘器的平均空气流量。此外,通过比较和验证风洞中实验室规模的百叶窗式集尘器的收集效率的测量结果,以及数值分析的结果,可以估计与地铁速度有关的收集效率。结果,证实了地铁列车的较高运行速度增加了进入百叶窗式集尘器的空气流,并随后减小了与50%的收集效率相对应的粒径。换句话说,在首尔地铁5号线的正常速度范围内,最低速度为5 km h-1时的截断尺寸为9.7 µm,最高速度为65 km h-1时的截断尺寸为4.9 µm。火车。

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