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An innovative solar assisted desiccant-based evaporative cooling system for co-production of water and cooling in hot and humid climates

机译:一种创新的基于太阳能辅助干燥剂的蒸发冷却系统,用于在炎热和潮湿的气候中联合生产水和冷却

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摘要

Although evaporative coolers consume much lower electricity than the vapor compression systems, they are not applicable in humid climates. Combination of desiccant wheels and evaporative coolers, known as desiccant-based evaporative cooling systems, allows evaporative coolers to be used in humid climates, which provide significant energy and environmental advantages with respect to vapor compression systems. However, one of the main disadvantages of evaporative cooling is the high water. Regarding the global water crisis, a cooling system which saves both water and energy will be an attractive alternative to the current cooling systems. To this aim, this paper presents a novel desiccant-based evaporative cooling system for co-production of water and cooling. In this system, the moisture content of exhaust regeneration air is recycled to cover all of the evaporative cooler water consumption, and also part of the domestic water usage. To evaluate the system performance, dynamic hourly simulation of the proposed system as well as a reference vapor compression system was performed for a typical 60 m(2) building in hot and humid climate of Bandar Abbas, Iran. The simulation results show that the proposed system is able to provide comfort temperature and relative humidity in a hot and humid climate. Moisture harvesting produce about 590 L water during a week, which covers all of the evaporative cooler water consumption, and provides an excess amount of 289 L for domestic usage. Monthly integrated results indicate that electricity consumption of the proposed system is 60% lower than the reference system, while its natural gas consumption is 30% higher than VCS, which is due to the high regeneration temperature in some hours. In other worlds, this system replace electricity consumption, a high-exergy and expensive energy carrier, with heat consumption. This system leads to 18.7% saving of CO2 emissions over a month. Economic evaluation proves the economic feasibility of proposed system with a payback period of 3 years. In conclusion, proposed system provide a more environmental friendly cooling system for water, energy and carbon saving.
机译:尽管蒸发式冷却器的耗电量比蒸气压缩系统低得多,但不适用于潮湿的气候。干燥剂轮和蒸发冷却器的组合(称为基于干燥剂的蒸发冷却系统)使蒸发冷却器可用于潮湿的气候,相对于蒸汽压缩系统,这提供了显着的能源和环境优势。然而,蒸发冷却的主要缺点之一是高水。关于全球水危机,既节省水又节省能源的冷却系统将是当前冷却系统的有吸引力的替代方案。为此,本文提出了一种新型的基于干燥剂的蒸发冷却系统,用于水和冷却的联合生产。在该系统中,废气再生空气中的水分被回收,以覆盖蒸发式冷却器的所有用水量以及部分家用用水。为了评估系统性能,针对伊朗班达阿巴斯市炎热潮湿的典型60 m(2)建筑物,对建议的系统以及参考蒸气压缩系统进行了动态每小时模拟。仿真结果表明,所提出的系统能够在炎热和潮湿的气候下提供舒适的温度和相对湿度。水分收集一周可产生约590 L的水,这涵盖了蒸发式冷却器的所有耗水量,并且为家庭使用提供了289 L的过量水。每月的综合结果表明,拟议系统的电耗比参考系统低60%,而天然气的消费量比VCS高30%,这是由于某些小时的再生温度很高。在其他国家,该系统用热量消耗代替了电力消耗,一种高能和昂贵的能源载体。该系统可在一个月内节省18.7%的二氧化碳排放量。经济评估证明了该系统的经济可行性,投资回收期为3年。总之,所提出的系统为水,能源和碳的节省提供了更加环保的冷却系统。

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