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Experimental study of the film thickness in the dehumidifier of a liquid desiccant air conditioning system

机译:液体干燥剂空调系统除湿机中膜厚的实验研究

摘要

A liquid desiccant air conditioning system is one possible substitute for the high energy consumption of the conventional system. The dehumidifier performance is of great importance as it is the key component of such systems. Film thickness plays a vital role in determining the heat and mass transfer performance of a falling film dehumidifier. However, no experimental studies on the liquid film thickness of the dehumidifier within liquid desiccant air conditioning systems have been conducted. Therefore, the film thickness of LiCl solution flow in a single channel dehumidifier is chosen to be investigated in this study. It was found that the mean film thickness without air flow followed the same trend as that predicted by the Nusselt relation, but was about 20% greater. The opposite air flow exerted a shear force on the liquid film to increase the mean film thickness non-linearly. The mean and changing film thickness over time are studied and comparisons made between the lower and upper points of the film. When no air flow existed, the mean film thickness at the lower point was found to be about 10.7%-16.3% thicker than at the upper point. An increase of the air velocity enhanced the wave at both the upper and lower points. The falling film statistical characteristics are also analyzed, and the probability density of the film thickness was found to effectively describe the flow condition. It was also shown that an increase in both the solution flow rate and air velocity enhanced the surface wave velocity.
机译:液体干燥剂空调系统可以替代常规系统的高能耗。除湿机的性能非常重要,因为它是此类系统的关键组件。膜厚在决定降膜除湿机的传热和传质性能中起着至关重要的作用。然而,尚未对液体干燥剂空调系统中的除湿机的液膜厚度进行实验研究。因此,本研究选择单通道除湿机中LiCl溶液流动的膜厚进行研究。发现没有空气流动的平均膜厚度遵循与由Nusselt关系预测的趋势相同的趋势,但是增加了约20%。相反的气流在液膜上施加剪切力以非线性地增加平均膜厚度。研究了平均膜厚和随时间变化的膜厚,并比较了膜的上下两点。当不存在空气流时,发现在较低点的平均膜厚度比在较高点的平均膜厚约10.7%-16.3%。空气速度的增加使波浪在上下两点都增强了。分析了降膜的统计特性,发现了膜厚的概率密度可以有效地描述流动条件。还显示出溶液流速和空气速度的增加都提高了表面波速度。

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