首页> 外文会议>International Mechanical Engineering Congress and Exposition 2007 >EXPERIMENTAL STUDY OF THE FLOW STRUCTURE IN FIRE-INDUCED WHIRLWINDS DOWNWIND OF A FIRE USING PARTICLE IMAGE VELOCIMETRY
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EXPERIMENTAL STUDY OF THE FLOW STRUCTURE IN FIRE-INDUCED WHIRLWINDS DOWNWIND OF A FIRE USING PARTICLE IMAGE VELOCIMETRY

机译:火灾诱导的旋风下风流结构的颗粒图像比对试验研究

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The flow structure of fire-induced whirlwinds that occur downwind of a 90-cm-diameter methanol flame was investigated using particle image velocimetry (PIV) and a flow visualization technique. The PIV images showed that the whirlwinds occurred as counter-rotating vortices on both sides of a reverse flow downwind of the flame that moved toward it near the floor. The whirlwinds started near the floor and extended upwards, with a lower tangential velocity near the floor. The radius of the forced vortex region in the whirlwinds increased above a height of M cm. Whirlwinds downwind of the 90-cm-diameter methanol flame behaved the same as whirlwinds downwind of a 3-cm-diameter flame that were investigated in a previous study.
机译:使用粒子图像测速仪(PIV)和流动可视化技术研究了直径为90 cm的甲醇火焰顺风发生的火旋风的流动结构。 PIV图像显示,旋风是在火焰逆风的两侧在地面附近朝着火焰的逆流旋涡发生的。旋风开始于地面附近并向上延伸,在地面附近具有较低的切向速度。旋风中强迫涡流区域的半径增加到超过M cm的高度。在先前的研究中,直径为90厘米的甲醇火焰的旋风顺风与直径为3厘米的甲醇的旋风顺风相同。

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