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Experimental research into air distribution in a terminal subway station

机译:地铁终点站空气分布的实验研究

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The paper presents the findings of an in situ research into velocities of air flow initiated by piston effect at the terminal station Garin-Mikhailovsky's Square of the Novosibirsk Metro. The researchers calculate actual volume of the cold outdoor air inlet to the station and find the relationship between the air flow velocities and train speeds. It is shown that at the outdoor air temperature below -10 degrees C, the operating warm air curtains fail to ensure heating of the inlet cold outdoor air up to the rated temperature.Based on the full-scale experiment results, the network mathematical model of air flows is refined so that to take into account piston effect in a terminal subway station. The data of the computational exercises on the adjusted mathematical model of air distribution are provided, and the dependences of air volumes in the station entrance halls on the train speed in the Sibirskaya station Garin-Mikhailovsky's Square station tunnel are plotted. The most efficient method to reduce the cold outdoor air inlet at the station is to change speeds of the incoming and outgoing trains. In the recommended scenario, trains arrive at a speed of 60 km/h and depart at a speed of 30 km/h. In this case, the average velocity of the inlet cold outdoor air flow in the station entrance hall is decreased 2 times as compared with the air volume in the current speed mode of the subway trains. Furthermore, the power of the operating warm air curtains becomes sufficient to maintain the rated air temperature in the station entrance halls given the outdoor air temperature is -27 degrees C and above.
机译:本文介绍了对新西伯利亚地铁站Garin-Mikhailovsky广场终点站的活塞效应引发的气流速度进行原位研究的结果。研究人员计算出进入该站的室外冷空气的实际体积,并找出气流速度与列车速度之间的关系。结果表明,在室外空气温度低于-10摄氏度时,运行中的暖风幕无法确保将入口冷室外空气加热到额定温度。基于全面的实验结果,网络数学模型改善气流,以便考虑地铁站内的活塞效应。提供了有关调整后的空气分布数学模型的计算练习数据,并绘制了车站入口大厅的风量与Sibirskaya车站Garin-Mikhailovsky的Square车站隧道中火车速度的关系。减少车站室外冷空气入口的最有效方法是改变进出列车的速度。在推荐的情况下,火车以60 km / h的速度到达,然后以30 km / h的速度出发。在这种情况下,与地铁当前速度模式下的风量相比,车站入口大厅入口冷室外气流的平均速度降低了2倍。此外,假设室外空气温度为-27摄氏度或更高,则运行中的暖风帘的功率将足以维持车站入口大厅的额定空气温度。

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