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Analysis of Heat and Smoke Flow according to Platform Screen Door and Fan Conditions on Fire in Underground Platform

机译:地下平台火灾时根据平台屏蔽门和风机状况分析的热烟流量

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In this study, a three-dimensional flow analysis of underground subway station was conducted by applying ventilation mode in operation and platform screen door (PSD) opening and closing conditions on fire in underground platform. In order to analyze optimal smoke control and heat removal conditions, the whole underground subway station was set as a model, and a total of eight cases were analyzed by changing the operating conditions of fans for each area under the opening and closing conditions of the PSDs. The analysis results confirmed that the operation mode of supply fan in platform E and I areas located at the third floor underground is more effective than that of exhaust fan in the event of a fire in underground subway station when the PSD is closed. The amount of CO entering a waiting room increased, and the overall CO distribution in the underground subway station was also increased when the PSD is opened. In addition, the CO distributions due to the opening and closing of the PSD were similar to one another when a fire occurred on the platform, which suggests that the operating conditions of the fan affects the formation of CO distribution in the underground subway station rather than the discharge of CO.
机译:在这项研究中,对地下地铁站进行了三维流动分析,方法是在操作中采用通风方式,对地下平台的火灾采用平台屏蔽门的开启和关闭条件。为了分析最佳烟气控制和排热条件,以整个地下地铁站为模型,通过在PSD的打开和关闭条件下改变每个区域的风扇运行条件,分析了总共八种情况。分析结果证实,在关闭​​PSD的地下地铁站着火的情况下,位于地下三楼的E和I站台的供气扇的运行方式要比排气扇的运行方式更为有效。当PSD打开时,进入候车室的CO量增加,并且地下地铁站中的CO总分布也增加了。此外,当平台发生火灾时,由于PSD的打开和关闭导致的CO分布彼此相似,这表明风扇的运行状况会影响地下地铁站中CO分布的形成,而不是影响一氧化碳的排放

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