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Experimental Investigations of a Liquid Desiccant Absorber

机译:液体干燥剂吸收器的实验研究

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A cross-flow internally-cooled plate-type heat and mass exchanger is developed and examined experimentally as a dehumidifier in a liquid desiccant System. The sorbent used is lithium Chloride (LiCI). The dehumidifier utilizes novel components and ideas in order to overcome the present obstacles such as the carryover of the sorbent into the air stream and the flow mal distribution of the sorbent over the exposed surfaces. The moisture removal rate was evaluated. The effects of the dehumidifier inlet parameters, including desiccant and water flow rates, air inlet temperature and humidity ratio were investigated. The air outlet temperature and humidity ratio were studied as a function of cooling water flow rate. The experimental results of the supply air adiabatic dehumidification show a consistent reduction in the air humidity ratio Δω> in the range of 1.5 to 4.8 g/kg, an increase in the air temperature ΔT in the range of 3 to 7 K and a reduction in the LiCI Solution mass fraction Δζ in the range of 0.01 to 0.05 kg/kg. The experimental results of non-adiabatic dehumidification with internal cooling show a reduction in the air humidity ratio Δω of about 6 g/kg, a decrease in the air temperature AT in the range of 0.5 to 3.5 K and a reduction in the LiCI Solution mass fraction Δω of about 0.06 kg/kg.
机译:通过在液体干燥剂系统中实验开发并在实验中通过实验检查和检查横流内部冷却板型热和质量换体。使用的吸附剂是氯化锂(Lici)。除湿器采用新的组件和思想,以克服本障碍物,例如吸附剂的携带进入空气流,并在暴露的表面上流动的吸附剂的流量分布。评估水分去除率。研究了除湿器入口参数,包括干燥剂和水流速,空气入口温度和湿度比的影响。为冷却水流速的函数进行了空气出口温度和湿度比。供水绝热除湿的实验结果表明,空气湿度比Δω>在1.5至4.8g / kg的范围内,空气温度ΔT的增加在3至7 k的范围内和减少LICI溶液质量分数δ1在0.01至0.05kg / kg的范围内。具有内部冷却的非绝热除湿的实验结果显示出约6g / kg的空气湿度比Δω的降低,空气温度下降0.5-3.5k,并且Lici溶液质量的降低差异Δω为约0.06kg / kg。

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