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Scaling nonreactive cross flow over a heated plate to simulate forest fires

机译:缩放加热板上的非反应性错流以模拟森林大火

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The paper reports visualization of the flow of smoke over a flat surface inside of a low-speed wind tunnel. A heating plate flush mounted on the wind tunnel floor simulated a spreading line fire that produces uniform heat flux under constant wind speed condition. A paper-thin cloth was soaked with commercially available Vaseline and placed on top of the heating plate; when it is heated, it produced thick white smoke, ideal for flow visualization. Two sides and top of the wind tunnel were made of a transparent acrylic sheet that enabled LED and laser sheet light illumination of the flow. A still camera with a full-frame CMOS sensor was used to record time-series images of illuminated smoke flow patterns from different angles. From these images, the following four flow structures were identified: organized horizontal vortex flows, weak vortex flow interactions, strong vortex flow interactions (also described as the 'transition regime'), and, turbulent flows. Previously developed scaling laws on forest fires were applied to find similarity in flow structures created by the current small-scale convective heat-transfer experiments and the USDA's mid-scale wind tunnel fire experiments. (C) 2018 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:该论文报告了低速风洞内部平坦表面上烟流的可视化。齐平安装在风洞地板上的加热板模拟了蔓延线火灾,在恒定风速条件下产生均匀的热通量。用市售的凡士林浸泡一块薄纸,放在加热板上。加热时会产生浓厚的白烟,非常适合流量可视化。风洞的两侧和顶部由透明的丙烯酸板制成,可以使LED和激光板对流进行照明。具有全画幅CMOS传感器的静态相机用于记录不同角度照明的烟雾流向的时间序列图像。从这些图像中,可以识别出以下四个流动结构:组织的水平涡流,弱涡流相互作用,强涡流相互作用(也称为“过渡态”)以及湍流。应用先前制定的森林火灾比例定律,以发现当前小规模对流传热实验和美国农业部中规模风洞火灾实验所产生的流动结构的相似性。 (C)2018年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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