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Study on the Effect of the Jet Speed of Air Curtain on Smoke Control in Tunnel

机译:气幕喷射速度对隧道烟雾控制的影响研究

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The corresponding physical model was established by using a tunnel, and the appropriate fire source power was selected. The minimum export momentum was calculated by the minimum export momentum method, and the minimum outlet jet velocity of the air curtain is given as umin = 14m/s. The change of the concentration of CO, visibility and temperature in the same fire environment under the influence of piston wind was analyzed by CFD simulation software under different jet velocity of air curtain, comparison of the concentration of CO, visibility and temperature at different jet speed of air curtain changes with time simultaneously, to study the effect of jet velocity of air curtain on the spread characteristics of flue gas of tunnel fire. The results show that when the jet velocity of air curtain is 14m/s, it can control the smoke best.
机译:通过使用隧道建立相应的物理模型,选择适当的火源电源。 通过最小的出口动量方法计算最小的出口动量,空气幕的最小出口喷射速度作为umin = 14m / s。 CFD仿真软件在空气幕上的不同喷射速度下分析了在活塞风的影响下,在活塞风中的影响下的CO,可见性和温度的变化,不同喷射速度的浓度,不同喷射速度的浓度的比较 空气幕同时随着时间的变化,研究空气窗帘喷射速度对隧道火烟气扩散特性的影响。 结果表明,当空气窗帘的喷射速度为14米/秒时,它可以控制烟雾。

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