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首页> 外文期刊>International Journal of Refrigeration >Mathematical model and performance analysis of a novel outside evaporative cooling liquid desiccant dehumidifier
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Mathematical model and performance analysis of a novel outside evaporative cooling liquid desiccant dehumidifier

机译:新型外部蒸发冷却液干燥剂除湿器的数学模型及性能分析

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A numerical model of a novel outside evaporative cooling liquid desiccant dehumidifier (OECD) was developed and the effects of inlet parameters, including the inlet temperature and relative humidity of dehumidified air and evaporative cooling (EC) air, as well as the inlet mass flow rate of solution and so on, on the device performances were investigated in this paper. The results show that as the inlet temperature of solution increased from 31 to 42 degrees C, the moisture removal rates of OECD were increased by 14.0-18.0% and 31.1-101.5% compared to the non-evaporative cooling dehumidifier (NECD) and the adiabatic dehumidifier respectively, whereas the dehumidification rate was only decreased by about 1.6% with increase in the inlet temperature of LiCl solution from 24 to 44 degrees C. All these results can provide guidance for the structural design and performance analysis of the dehumidifier in the future. (C) 2017 Elsevier Ltd and IIR. All rights reserved.
机译:开发了一种新型外部蒸发冷却液干燥剂Dehumidifier(OECD)的数值模型,以及入口参数的影响,包括进样空气和蒸发冷却(EC)空气的入口温度和相对湿度,以及入口质量流量 解决方案等,在本文中研究了器件性能。 结果表明,随着溶液的入口温度从31〜42℃增加,与非蒸发冷却除湿剂(NECD)和绝热相比,OECD的水分去除率增加14.0-18.0%和31.1-101.5% 除湿剂分别,除了24至44摄氏度的LiCl溶液的入口温度增加,除湿率仅降低约1.6%。所有这些结果都可以为未来除湿机的结构设计和性能分析提供指导。 (c)2017年Elsevier Ltd和IIR。 版权所有。

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