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Experimental research on spray evaporative cooling system applied to air-cooled chiller condenser

机译:喷雾蒸发冷却系统应用于风冷冷冻机冷凝器的实验研究

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This study investigates the performance of a refrigeration unit by applying a spray evaporative cooling system to an air-cooled chiller. Experiments are conducted in the temperate monsoon climate region by combining the spray evaporative cooling system with the air-cooled chiller. Moreover, this study adopts a new gas–liquid two-phase swirl nozzle, which is independently developed and characterized by high atomization quality and low energy consumption. The experimental results show that the power of the compressor is reduced, while the COP (Coefficient of Performance) of the air-cooled chiller increases by 4%–8% after the intervention of the spray evaporative cooling system. The spray cooling system contributes to an electricity savings of 2.37%–13.53% in air-cooled chiller systems. If a more reasonable spray evaporative cooling mode is used, such as controlling the water flows according to the cooling capacity and arranging the nozzle positions and angles reasonably, the COP of the air-cooled unit will be further improved.
机译:本研究通过将喷雾蒸发冷却系统应用于风冷的冷却器来研究制冷单元的性能。通过将喷涂蒸发冷却系统与空气冷却冷却器组合,在温带季风气候区进行实验。此外,该研究采用了一种新的气液两相旋流喷嘴,其独立地开发和以高雾化质量和低能耗为特征。实验结果表明,在喷涂蒸发冷却系统的干预后,气冷冷却器的淘风器(性能系数)的功率降低,而气温冷却器的淘气冷却器的淘气(性能系数)增加了4%-8%。喷雾冷却系统在风冷的冷却器系统中有助于2.37%-13.53%的电力节省。如果使用更合理的喷涂蒸发冷却模式,例如根据冷却能力控制水流并合理地布置喷嘴位置和角度,则将进一步提高空气冷却单元的COP。

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