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Performance analyses of a new system for water harvesting from moist air that combines multi-stage desiccant wheels and vapor compression cycles

机译:潮湿空气采集新系统的性能分析,包括多级干燥车轮和蒸汽压缩循环的潮湿空气

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摘要

This paper discusses effective ways to harvest water from air for residential use in dry climate area. An air handling process was proposed to humidify the air through multi-stage desiccant wheels before being dehumidified by the evaporator to harvest water. This approach not only increases the evaporating temperature but also increases the water harvesting rate (WHR) greatly. Two configurations of multi-stage desiccant wheels were compared, and proper desiccant wheel structure, length and number of stages were suggested. As for the energy system, two configurations of heat pump system (HPS) were compared and heat recovery is highly recommended, which can increase the system performance by around 70%. Effects of condensing temperature and outlet humidity ratio of air after water harvesting on WHR and water harvesting efficiency (WHE) were studied. When the ambient condition is 40 degrees C and 5 g.kg(-1), it is suggested to be operated under the condition that omega(reg,out) is 6 g.kg(-1) and tc is 90 degrees C. WHR and WHE can reach 32.5 kgh(-1) and 1.26 kg.kWh(-1), respectively. Performances of the system, which adopts MSDW-2 and HPS-2, under different ambient conditions were studied and con, ut ranges with high WHE were summarized for different ranges of omega(ambi).
机译:本文讨论了从空气中收获水中的有效方法,以便在干燥气候区域中使用。提出了一种空气处理过程,以通过多级干燥剂轮子将空气加湿,然后通过蒸发器除湿以收获水。这种方法不仅增加了蒸发温度,而且大大增加了水收集率(WHR)。比较了两种多级干燥车轮的配置,提出了适当的干燥剂轮结构,长度和阶段的数量。至于能量系统,比较了两种热泵系统(HPS)配置,强烈建议使用热回收,这可以将系统性能提高约70%。研究水收获后的空气冷凝温度和出口湿度比的影响及其采伐效率(WHE)。当环境条件为40度C和5 G.kg(-1)时,建议在ω(reg,Out)为6 g.kg(-1)和Tc为90℃时操作。 WHR和WHE分别可以达到32.5 kgh(-1)和1.26 kg.kwh(-1)。在不同的环境条件下,采用MSDW-2和HPS-2的系统的性能进行了研究,并符合高WHE的uMEGA(AMBI)的不同范围。

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