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Method of Removing Fe Particulate Matters from Subway Environments

机译:从地铁环境中去除铁颗粒物的方法

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In subway environments, particulate matter is generated continuously by abrasion between wheels, rails and brake pads, and through contact between electric carlines and the pantograph. Particulate matter, 61-79% of which is composed of iron (Fe), is dispersed throughout subway stations, including platforms and waiting rooms, by train drafts. This study proposes a method for removal of Fe particulates from subway tunnels, which involves mounting magnetic dust collectors underneath operating subway trains. A mathematical model is developed to determine the size of dust collector needed and the minimum period required to remove all Fe particulate matter accumulated in subway tunnels. When the model was applied to Seoul Metropolitan Subway Line 7, which has an operational duration of 20 years, it was estimated that up to 3 years would be required to remove accumulated particulate matter if two collectors were mounted on all subway trains. After removal of accumulated particulate matter, the overall concentration of particulate matter in the tunnel was shown to decrease by 61.6% when dust collectors were mounted on 50% of subway trains.
机译:在地铁环境中,车轮,轨道和刹车片之间的磨损以及电动汽车的线路与受电弓之间的接触会不断产生颗粒物。颗粒物(其中61-79%由铁(Fe)组成)通过火车吃水散布在整个地铁站(包括站台和候车室)中。这项研究提出了一种从地铁隧道中去除铁颗粒的方法,该方法包括在运行中的地铁下方安装磁性集尘器。建立了数学模型,以确定所需的集尘器尺寸以及清除地铁隧道中累积的所有铁颗粒物所需的最短时间。当该模型应用于运营期限为20年的首尔地铁7号线时,如果在所有地铁列车上安装两个收集器,则估计最多需要3年时间才能清除累积的颗粒物。去除累积的颗粒物后,当在50%的地铁列车上安装集尘器时,隧道中的颗粒物总浓度降低了61.6%。

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