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An experimental study on buoyant spilled thermal plume temperature profile from over-ventilated enclosure fires in a reduced air pressure

机译:过度通风外壳浮动溢出热羽毛温度曲线的实验研究

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To investigate the effect of a reduced air pressure condition on buoyant spilled thermal plume temperature profile from over-ventilated enclosure fires, the same scale model experiments were performed correspondingly in both Hefei city (altitude: 50 m, ambient pressure: 1 atm) and Lhasa city (altitude: 3650 m, ambient pressure: 0.64 atm). Comparative experimental results for both the lateral (normal to facade) and vertical (along facade) spilled plume temperature profile show that the lateral decay of temperature in the reduced air pressure is much faster than that in the normal air pressure condition. Meanwhile, the normalized spilled thermal plume temperature near the facade wall is much higher in the reduced pressure atmosphere than that in the normal pressure condition at the same height, indicating possibly weaker air entrainment of the buoyant spill plume in reduced pressure. These results reveal that fire safety regulations to counteract the vertical fire spread to upper floors need to be specified more rigorous at high altitude.
机译:为了研究降低空气压力条件对来自过通路的外壳燃烧的浮力溢出的热流量曲线的影响,相同的比例模型实验在合肥市(海拔高度:50米,环境压力:1 ATM)和Lhasa中进行了相应的城市(海拔高度:3650米,环境压力:0.64瓦)。横向(正常到外立面)和垂直(沿外墙)溢出的羽状温度分布的比较实验结果表明,在减小的空气压力下的温度横向衰减比正常气压状况的横向衰减要快得多。同时,在外墙壁附近的归一化溢出的热羽温度在减压气氛中远高于相同高度的正常压力条件下的高得多,表明浮力溢出羽流的较弱的空气夹带减压。这些结果表明,需要在高海拔地区抵消向上层铺设到上层的垂直火灾的消防安全法规。

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