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A simple analytical method to estimate all exit parameters of a cross-flow air dehumidifier using liquid desiccant

机译:一种使用液体干燥剂估算横流空气除湿机所有出口参数的简单分析方法

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摘要

The dehumidifier is a key component in liquid desiccant air-conditioning systems. Analytical solutions have more advantages than numerical solutions in studying the dehumidifier performance parameters. This paper presents the performance results of exit parameters from an analytical model of an adiabatic cross-flow liquid desiccant air dehumidifier. Calcium chloride is used as desiccant material in this investigation. A program performing the analytical solution is developed using the engineering equation solver software. Good accuracy has been found between analytical solution and reliable experimental results with a maximum deviation of +6.63% and −5.65% in the moisture removal rate. The method developed here can be used in the quick prediction of the dehumidifier performance. The exit parameters from the dehumidifier are evaluated under the effects of variables such as air temperature and humidity, desiccant temperature and concentration, and air to desiccant flow rates. The results show that hot humid air and desiccant concentration have the greatest impact on the performance of the dehumidifier. The moisture removal rate is decreased with increasing both air inlet temperature and desiccant temperature while increases with increasing air to solution mass ratio, inlet desiccant concentration, and inlet air humidity ratio.
机译:除湿机是液体干燥剂空调系统中的关键组件。在研究除湿机性能参数方面,解析解决方案比数值解决方案更具优势。本文介绍了绝热错流液体除湿空气除湿器的分析模型出口参数的性能结果。在此研究中,氯化钙用作干燥剂。使用工程方程求解器软件开发了执行分析解决方案的程序。在分析解决方案和可靠的实验结果之间发现了良好的精度,水分去除率的最大偏差为+ 6.63%和-5.65%。这里开发的方法可以用于除湿机性能的快速预测。在诸如空气温度和湿度,干燥剂温度和浓度以及空气与干燥剂流速之类的变量的影响下评估除湿机的出口参数。结果表明,湿热空气和干燥剂浓度对除湿机的性能影响最大。水分去除率随着空气入口温度和干燥剂温度的增加而降低,而随着空气与溶液质量比,入口干燥剂浓度和入口空气湿度比的增加而增加。

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