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Experimental investigations of atmospheric water extraction device under different climatic conditions

机译:不同气候条件下大气抽水装置的实验研究

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To help address this emergency, an atmospheric water extracting (AWE) device is developed and investigated as a part of present work. The AWE device is working on vapour compression refrigeration cycle. The air moisture condenses over the evaporator coil. The amount of condensate depends on psychrometric condition of incoming air. In this paper, the performance investigations are presented of an AWE device under different climatic conditions. The machine is integrated with a climatic chamber to from different climatic conditions in the laboratory to obtain the performance characteristics of AWE device. Total seven different climatic conditions were replicated as: humid and warm, humid and mild, humid and cold, dry and warm, dry and mild, mild and the last was mild humid and warm. The results indicated that the minimum energy intensity is found as 0.75 kWh per liter of water at the rate of 1.78 L per hour for warm- humid condition and maximum energy intensity is found as 4.71 kWh per liter of water at the rate of 0.28 L per hour for mild and dry condition. The present study concludes that AWE devices are most effective in hot and humid regions.
机译:为了帮助解决这一紧急情况,作为当前工作的一部分,开发并研究了一种大气水提取(AWE)设备。 AWE设备正在蒸气压缩制冷循环中工作。空气中的水分凝结在蒸发器盘管上。冷凝物的量取决于进入空气的湿度测定条件。本文介绍了在不同气候条件下AWE设备的性能研究。该机器与一个气候箱集成在一起,可以在实验室中从不同的气候条件获得AWE设备的性能特征。总共复制了七个不同的气候条件:潮湿和温暖,潮湿和温和,潮湿和寒冷,干燥和温暖,干燥和温和,温和,最后一个是温和潮湿和温暖。结果表明,在温暖潮湿的条件下,最低能量强度为每小时每升水0.75千瓦时,每小时为1.78 L,最大能量强度为0.28 L,每小时每升水为4.71 kWh。小时用于温和干燥的情况。本研究得出结论,AWE设备在炎热和潮湿的地区最有效。

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