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Predictions of moisture removal rate and dehumidification effectiveness for structured liquid desiccant air dehumidifier

机译:结构化液体干燥剂空气除湿机除湿率和除湿效果的预测

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In hot and humid climates such as in the Sultanate of Oman, the humidity puts extra load on the electric vapor-compression air conditioning (VAC) systems. Liquid and solid desiccants can reduce the moisture content of humid air and thus reduce the latent load imposed on the VAC systems. In the present work, the performance of air dehumidifiers using triethylene glygol (TEG) as desiccant was investigated. Three differently structured packing densities were used (77, 100 and 200 m~2/m~3). The performance of the dehumidifier was evaluated and expressed in terms of the moisture removal rate (m_(cond)) and the dehumidifier effectiveness (ε_y). The experimental work was undertaken to study the effects of several influencing design factors on this performance. The design factors covered included the air and TEG flow rates, air and TEG inlet temperatures, inlet air humidity and the inlet TEG concentration. The desiccant flow rate investigated was much less than that covered in previous studies and the range of the inlet temperatures of air and desiccant was significantly wider. The objective this study was to use the multiple regression method and the principal component analysis to obtain statistical prediction models for the water condensation rate and the dehumidification effectiveness in terms of these design factors. The results of both techniques agree with each other affirmed that the desiccant flow rate, desiccant inlet concentration and air inlet temperature are the most significant variables in predicting m_(cond), whereas desiccant flow rate, air inlet temperature and packing density are the most significant variables in predicting ε_y.
机译:在炎热和潮湿的气候中,例如在阿曼苏丹国,湿度给电动蒸汽压缩空调(VAC)系统带来了额外的负担。液体和固体干燥剂可以减少湿空气中的水分含量,从而减少施加在VAC系统上的潜在负荷。在目前的工作中,研究了使用三甘醇乙二醇(TEG)作为干燥剂的空气除湿机的性能。使用了三种不同结构的堆积密度(77、100和200 m〜2 / m〜3)。评价除湿器的性能,并以除湿率(m_(cond))和除湿器效率(ε_y)表示。进行了实验工作,以研究几种影响设计因素对此性能的影响。涵盖的设计因素包括空气和TEG流量,空气和TEG入口温度,入口空气湿度和入口TEG浓度。所研究的干燥剂流速远小于以前的研究,并且空气和干燥剂的入口温度范围明显更大。这项研究的目的是使用多元回归方法和主成分分析来获得针对这些设计因素的水凝结率和除湿效果的统计预测模型。两种技术的结果相互一致,这表明干燥剂流速,干燥剂入口浓度和进气温度是预测m_(cond)的最重要变量,而干燥剂流速,空气入口温度和填充密度是最重要的变量预测ε_y的变量。

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