Analysis of intake air temperature effect on performance of portable atmospheric water generation (PAWG) systems with heat sink angle orientation of 75o

Muhamad Jafri, Ben Vasco Tarigan, Hairman Sahrudin Lanae
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Abstract

The increasing demand for clean water and the diminishing supply of clean water sources can result in a clean water crisis. Air is a ubiquitous, inexpensive, and clean water source. Using Atmospheric Water Generators (AWG), the water contained in the air can be extracted. This study's objective was to determine the effect of inlet air temperature and air heater power variations on tool performance and PAWG condensate water production at a condenser angle of 75 degrees. The procedure utilized is experimental on three PAWG boxes. Each box has a distinct temperature at its entrance. The variation of inlet air temperature is accomplished by heating the air before it enters the box with an air heater; the applied power variations are 0.484 Watt, 0.964 Watt, and 1.702 Watt. The results demonstrated that variations in air heater power and inlet air temperature affected system performance and condensate water production. Maximum water discharge and PAWG performance were achieved when the air heating power was 0.48 watts and the water discharge was 1.166 milli liters per hour. At 0.0084 ml/h/W, the PSys system performance had the highest value. The variable air heating power of 0.946 Watt represents the utmost COP value of PAWG. This power variable has a high temperature difference and influences the COP value at high levels.
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进气温度对吸热角为750°的便携式大气产水系统性能的影响分析
对清洁水需求的增加和清洁水源供应的减少可能导致清洁水危机。空气是一种无处不在、廉价且清洁的水源。使用大气水发生器(AWG),可以提取空气中的水分。本研究的目的是确定在冷凝器角度为75度时,进口空气温度和空气加热器功率变化对工具性能和PAWG冷凝水产量的影响。所采用的程序是实验性的三个PAWG箱。每个盒子的入口都有不同的温度。进气温度的变化是通过在空气进入箱体之前用空气加热器加热空气来实现的;应用功率变化分别为0.484瓦、0.964瓦和1.702瓦。结果表明,空气加热器功率和进风温度的变化会影响系统性能和冷凝水产量。当空气加热功率为0.48瓦,排水量为1166毫升/小时时,排水量和PAWG性能达到最大。在0.0084 ml/h/W时,PSys体系性能最高。变量空气加热功率为0.946瓦特,代表PAWG的最大COP值。该功率变量具有很高的温差,并在高水平上影响COP值。
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