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Heat Transfer of Impacting Water Mist on High Temperature Metal Surfaces

机译:冲击水雾在高温金属表面上的传热

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Experimental studies were conducted to reveal the heat transfer mechanism of impacting water mist on high temperature metal surfaces. Local heat transfer coefficients were measured in the film-boiling regime at various air velocities and liquid mass fluxes. The test conditions of water mist cover the variations of air velocity from 0 to 50.3 m/s, liquid mass flux from 0 to 7.67 kg/m~2 s, and surface temperature of stainless steel between 525℃ and 500℃. Radial heat transfer distributions were measured at different liquid mass fluxes. The tests revealed that the radial variation of heat transfer coefficients of water mist has a similar trend to the air jet cooling. At the stagnation point, heat transfer coefficient increases with both the air velocity and the liquid mass flux. The convective air heat transfer is consistent with the published correlation in the literature. The heat transfer contribution due to the presence of water increases almost linearly with the liquid mass flux. The total heat transfer coefficient can be established as two separable effects, which is the summation of the heat transfer coefficient of air and of liquid mass flux, respectively. This study shows that with a small amount of water added in the impacting air jet, the heat transfer is dramatically increased. The Leidenfrost temperature under water mist cooling was also measured. The Leidenfrost temperature increased with both the air velocity and the liquid mass flux.
机译:进行实验研究以揭示冲击水雾在高温金属表面上的传热机理。在各种空气速度和液体质量通量下,在薄膜沸腾状态下测量局部传热系数。水雾的测试条件包括风速从0到50.3 m / s,液体质量通量从0到7.67 kg / m〜2 s的变化以及不锈钢的表面温度在525℃至500℃之间的变化。在不同的液体质量通量下测量径向传热分布。试验表明,水雾的传热系数的径向变化与喷气冷却具有相似的趋势。在停滞点,传热系数随着空气速度和液体质量通量的增加而增加。对流空气的热传递与文献中已发表的相关性一致。由于水的存在,传热的贡献几乎随液体质量通量线性增加。总传热系数可以建立为两个可分离的效应,分别是空气和液体质量通量的传热系数之和。这项研究表明,在冲击空气射流中添加少量水后,传热会大大增加。还测量了在水雾冷却下的莱顿弗罗斯特温度。莱顿弗罗斯特温度随着空气速度和液体质量通量的增加而增加。

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