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Performance enhancement of air-cooled chillers with water mist : experimental and analytical investigation

机译:带有水雾的风冷式冷水机组的性能增强:实验和分析研究

摘要

This paper investigates how water mist evaporative pre-cooling can be applied to air-cooled chillers to improve the chiller efficiency by on-site experimental studies. There is a lack of detailed experimental studies on the application of water mist system on air-cooled chillers. The experiment was conducted on a chiller plant with water mist system in a subtropical climate. The experimental results showed that the dry bulb temperature (DBT) of entering condenser air with water mist pre-cooling could drop by up to 9.4 K from the ambient air temperature, and the approach could be as low as 0.5 K. A thermal effectiveness of up to 0.91 was obtained in using the water mist system. The pre-cooled condenser air enabled a drop of the condensing temperature by up to 7.2 K, and the chiller coefficient of performance (COP) could be improved in varying degrees by up to 18.6%. This study demonstrates that the water mist system coupled to air-cooled chillers is an energy-efficient and environment friendly technique, which has significant potential to improve the efficiency of air-cooled chillers and reduce the electricity demand for the commercial and industrial sector.
机译:本文通过现场实验研究了如何将水雾蒸发式预冷应用于风冷式冷水机组,以提高冷水机组的效率。缺少关于在水冷式冷水机上应用水雾系统的详细实验研究。该实验是在亚热带气候下的带有水雾系统的冷水机组上进行的。实验结果表明,经过水雾预冷后进入冷凝器空气的干球温度(DBT)可以比环境空气温度下降9.4 K,该方法的温度可以低至0.5K。使用水雾系统可获得高达0.91的水。预冷的冷凝器空气可使冷凝温度降低多达7.2 K,并且冷却器性能系数(COP)可以不同程度地提高高达18.6%。这项研究表明,与风冷式冷水机耦合的水雾系统是一种节能环保的技术,在提高风冷式冷水机的效率并减少工商业用电方面具有巨大潜力。

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