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Falling film evaporation in a rectangular channel with different depth

机译:在具有不同深度的矩形通道中脱落膜蒸发

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This paper describes the results of experimental tests carried out to study falling film evaporation on a heated flat plate with countercurrent air flowing in a rectangular channel. Experimental tests have been run with different channel depths with respect to a previous facility configuration in order to evaluate the effect of this parameter on the measured heat and mass transfer rates. The present work is then focused on the analysis of the effect that developing flow conditions may have on the evaporation of the falling water film. Three different values of the length over the hydraulic diameter ratio of the channel have been considered: L/D=l 1.83, 20.86 and 33.88. Series of dry tests with 45° inclined channel were investigated with inlet nominal velocities of 1, 2.5, 5, 7.5, 9 m/s and with nominal heated plate temperature of 70 °C and 90 °C. Corresponding wet tests were investigated with nominal film flow rate at 60 and 100 g/s, with the same nominal inlet velocities but with a temperature of the heated plate of 70 °C. The obtained results point out interesting parametric trends that provide greater insight into the considered phenomena and support the use of the heat and mass transfer analogy for predicting evaporation rates in the considered range of parameters.
机译:本文介绍了在矩形通道中流动的逆流空气在加热平板上研究脱落膜蒸发的实验试验结果。对于先前的设施配置,使用不同的通道深度运行实验测试,以便评估该参数对测量的热量和质量传递速率的影响。然后,本作本作的重点是分析显影流动条件可能对落水膜的蒸发的影响。已经考虑了通道的液压直径比的三个不同值的长度:L / D = 1 1.83,20.86和33.88。采用45°倾斜通道的一系列干燥试验,入口标称速度为1,2.5,5,7.5,9m / s,标称加热板温度为70°C和90℃。在60和100g / s的标称膜流速下研究了相应的湿试验,具有相同的标称入口速度,但具有70℃的加热板的温度。所获得的结果指出了有趣的参数趋势,为所考虑的现象提供更大的洞察力,并支持使用热量和传质类比来预测所考虑的参数范围内的蒸发速率。

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