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Energy Performance of Solar Assisted Desiccant Enhanced Evaporative Cooling Air conditioning System

机译:太阳能辅助干燥剂的能量性能增强蒸发冷却空调系统

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The desiccant enhanced evaporative cooling system is proposed as a promising energy-saving air-conditioning (A/C) scheme. It consists of hybrid liquid desiccant dehumidifier and indirect evaporative cooler. The hot and humid air is firstly dehumidified by liquid desiccant dehumidifier (LDD) and then sensibly cooled by regenerative indirect evaporative cooler (RIEC). The LDD-RIEC system operates without electricity-intensive compressor but with low-power-consumption solution pumps and water pumps. The heat captured by the solar collector is used for regenerating the desiccant solution. The solar collector model, LDD model and RIEC model were established separately to facilitate the hybrid system simulation in a closed-loop. The influence of solar collector area is analyzed. The energy saving potential of the proposed system is quantitatively evaluated with respect to the mechanical vapor compressor refrigeration (MVCR) system. The results show that both the moisture remove rate and cooling capacity improves with the increase of solar collector area. The LDD-RJEC A/C system saves 47% energy consumption compared with MVCR system in Hong Kong summer days.
机译:提出了干燥剂增强的蒸发冷却系统作为有前途的节能空调(A / C)方案。它包括杂化液体干燥剂除湿器和间接蒸发冷却器。湿热空气首先通过液体干燥剂除湿器(LDD),然后明智地通过再生间接蒸发冷却器(RIEC)冷却除湿。 LDD-reiC系统无需电力密集型压缩机,而是使用低功耗 - 消耗液泵和水泵。太阳能收集器捕获的热量用于再生干燥剂溶液。 Solar收集器模型,LDD模型和rIEC模型是单独建立的,以便于闭环中的混合系统仿真。分析了太阳能收集器区域的影响。所提出的系统的节能电位相对于机械蒸汽压缩机制冷(MVCR)系统定量评估。结果表明,随着太阳能收集器区域的增加,水分去除率和冷却能力都会提高。 LDD-RJEC A / C系统可节省47%的能耗与香港夏季的MVCR系统相比。

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