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Characterization of PM and Microclimate in a Shanghai Subway Tunnel, China

机译:中国上海地铁隧道下午和微气门的特征

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A real-time monitoring campaign was conducted from November 11th to November 15th, 2013 in a Shanghai subway tunnel, consisting of temperature (T), relative humidity (RH) and PM!, PM_(2.5) and PM_(10). The objective was to characterize PM and microclimate in the subway tunnel. Results indicated that median values of T, RH, PM|, PM_(2.5)and PM_(10)were 29.4°C, 29.6%, 42 μg/m~3, 46 μg/m~3 and 58 μg/m~3, respectively. Air quality in the tunnel was comparatively good, with 76% of PM_(2.5) and 91% of PM_(10) reaching relative standards. Independent samples t-test verified that PM1, PM_(2.5) and PM_(10) presented significant statistical differences between peak hours and off-peak hours (p<0.05). Notable weekly variation emerged during monitoring periods, which of all particles was as following: Friday > Thursday > Monday, Tuesday > Wednesday. Ratios of PM1/PM_(10) and PM_(2.5)/PM_(10) were 0.49-1.00 and 0.56-1.00, respectively, which were high in outage and low in operation of trains. This phenomenon might result from plenty of coarse particles generated by mechanical grinding in the process of train driving.
机译:2013年11月11日至11月15日在上海地铁隧道中进行了实时监测活动,包括温度(T),相对湿度(RH)和PM!,PM_(2.5)和PM_(10)。目标是在地铁隧道中的PM和微气密表征。结果表明,T,RH,PM |,PM_(2.5)和PM_(10)的中值值为29.4℃,29.6%,42μg/ m〜3,46μg/ m〜3和58μg/ m〜3 , 分别。隧道中的空气质量相对较好,76%的PM_(2.5)和91%的PM_(10)达到相对标准。独立样品T检验验证PM1,PM_(2.5)和PM_(10)呈现高峰时段和偏心时间之间的显着统计差异(P <0.05)。监测期间出现的明显每周变化,所有粒子中的哪一个如下:星期五>星期四>星期一,星期二>周三。 PM1 / PM_(10)和PM_(2.5)/ PM_(10)的比例分别为0.49-1.00和0.56-1.00,在列车的中断和低于培训的情况下高。这种现象可能是由于火车驾驶过程中机械研磨产生的大量粗颗粒。

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