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Study on the critical velocity for smoke control in a subway tunnel cross- passage

机译:地铁隧道穿越烟气控制临界速度研究

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The critical velocity of subway tunnel cross-passage was investigated since the smoke control mode is different from that of road tunnel and larger blockage effect of train need to be given priority. In order to ensure an effective smoke control and safe evacuation, numerical simulation and experimental study were conducted to investigate the critical velocity of subway cross-passage. On the basis of exiting critical Froude model, the influence of tunnel shape, fire location and train blocking on critical condition were analyzed. The results indicate that the blockage of train has a great influence on the critical velocity. With the shorter distance between train and cross-passage, the ventilation velocity through cross-passage dramatically increases. In addition, critical velocity with rectangular tunnel is obvious larger than that with shield tunnel. As the fire source location is closer to the cross-passage, the critical velocity would be greater and the corresponding Froude number would become smaller.
机译:由于烟气控制方式与公路隧道的烟气控制方式不同,需要优先考虑较大的火车阻塞效应,因此研究了地铁隧道交叉通过的临界速度。为了保证有效的排烟和安全疏散,进行了数值模拟和实验研究,以研究地铁穿越通道的临界速度。在退出临界弗洛德模型的基础上,分析了隧道形状,火灾位置和列车阻塞对临界状态的影响。结果表明,列车的阻塞对临界速度有很大的影响。随着火车和交叉通道之间距离的缩短,穿过交叉通道的通风速度显着提高。另外,矩形隧道的临界速度明显大于屏蔽隧道的临界速度。当火源位置更靠近交叉通道时,临界速度将更大,并且相应的弗洛德数将变得更小。

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