首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >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:用粒子图像速度测速器向火灾引起的旋风旋风下风的实验研究

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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:使用颗粒图像速度(PIV)和流动可视化技术研究了发生90厘米直径甲醇火焰的驱动的火诱导旋风的流动结构。 PIV图像显示,旋转旋转发生在反向流动的两侧的反向旋转涡流,使其朝向其附近移动的火焰。旋风上靠近地板,向上延伸,在地板附近的切向速度较低。旋风中强制涡旋区域的半径增加高于M厘米的高度。旋风沿着90厘米直径的甲醇火焰的顺风表现形式与旋风顺风在先前的研究中调查的3厘米直径的火焰顺风相同。

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