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Model-based investigation of a heat pump driven, internally cooled liquid desiccant dehumidification system

机译:基于模型的热泵驱动的内部冷却式液体干燥剂除湿系统的研究

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摘要

Liquid desiccant dehumidification system is regarded as a promising and energy-saving solution for dehumidification. A heat pump driven internally cooled desiccant dehumidification system is investigated in this paper. Dehumidifier and regenerator are both internally cooled/heated types compared to previous adiabatic ones, and heating and cooling capacities of a heat pump cycle are utilized for regeneration and dehumidification respectively. System model is established and validated to investigate system performance and effects of different influencing parameters. Its indicated that two main issues, which are restricting the system performance, are encountered, i.e. mismatching property among the three fluids inside the dehumidifier/regenerator and heat offset due to solutions circulating between dehumidifier and regenerator. Heat transfer mismatching ratio (x(t)) and mass transfer mismatching ratio (x(omega)) are defined to indicate the degree of mismatching property. A lower solution flow rate and a solution-solution heat exchanger with a better recovery efficiency are highly recommended to obtain a better system performance. Further, an improved system with external pre-cooler and pre-heater was proposed to improve the matching property among the three fluids, and COP(sys )is found to be increased from 5.96 to 6.68 with an increasing ratio of 12%. x(t) is found to be reduced from 0.357 to 0.168, and x(omega) from 0.282 to 0.127.
机译:液体干燥剂除湿系统被认为是一种有前途且节能的除湿解决方案。本文研究了一种热泵驱动的内部冷却干燥剂除湿系统。与以前的绝热装置相比,除湿器和蓄热器都是内部冷却/加热类型,并且分别利用热泵循环的加热和冷却能力进行再生和除湿。建立并验证了系统模型,以研究系统性能和不同影响参数的影响。其表明,遇到了两个主要问题,它们限制了系统的性能,即,除湿器/再生器内部的三种流体之间的失配特性以及由于除湿器和再生器之间循环的溶液而引起的热偏移。定义传热失配率(x(t))和传质失配率(x(ω))以指示失配性质的程度。强烈建议使用较低的溶液流速和具有较高回收效率的溶液-溶液热交换器,以获得更好的系统性能。此外,提出了一种改进的带有外部预冷器和预热器的系统,以改善三种流体之间的匹配特性,并且发现COP(sys)从5.96增加到6.68,增长率为12%。发现x(t)从0.357降低到0.168,x(ω)从0.282降低到0.127。

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