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Energy performance of an innovative liquid desiccant dehumidification system with a counter-flow heat and mass exchanger using potassium formate

机译:具有甲酸钾逆流热质交换器的创新液体干燥剂除湿系统的能源性能

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An innovative micro-scale liquid desiccant dehumidification system is numerically investigated. The liquid desiccant dehumidification unit employs a counter-flow low-cost and efficient heat and mass exchange core, improving the thermal performance and eliminating desiccant carryover with the process air. An environmentally friendly, non-corrosive, nontoxic and chemically stable HCOOK potassium formate liquid desiccant solution was employed in the unit. A set of governing differential equations was established for the dehumidification system operation allowing the development of a numerical model to predict and simulate the energy performance and various output parameters of the dehumidifier. A numerical case study was considered for a micro-liquid desiccant dehumidification system using potassium formate and a dehumidification and cooling capacity of around 11.32 kW was attained with about 59% humidity effectiveness and 62% enthalpy effectiveness. In addition, a parametric study was performed to investigate the effect of various operational parameters on the overall performance of the liquid desiccant dehumidifier. Utilizing the developed numerical model, it was shown that the dehumidifier effectiveness is directly proportional to the intake air temperature, intake air relative humidity and liquid desiccant flow rate where the effectiveness is inversely proportional to the intake air velocity and the heat exchanger airchannel height.
机译:数值研究了一种创新的微型液体干燥剂除湿系统。液体干燥剂除湿单元采用逆流低成本高效的热质交换核心,提高了热性能,并消除了干燥剂对工艺空气的残留。该装置采用了环保,无腐蚀,无毒和化学稳定的HCOOK甲酸钾液体干燥剂溶液。为除湿系统的运行建立了一套控制微分方程,从而允许开发一个数值模型来预测和模拟除湿器的能量性能和各种输出参数。考虑了使用甲酸钾的微液体干燥剂除湿系统的数值案例研究,获得了约11.32 kW的除湿和冷却能力,其中湿度效率约59%,焓效率约62%。另外,进行了参数研究,以研究各种操作参数对液体干燥剂除湿机整体性能的影响。利用开发的数值模型表明,除湿机的效率与进气温度,进气相对湿度和液体干燥剂流量成正比,而效率与进气速度和热交换器风道高度成反比。

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