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Reducing temperature fluctuation of refrigeration system by incorporating nano-phase change materials

机译:通过纳入纳米相变材料降低制冷系统的温度波动

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Currently India is facing the problem of a power outage and its effects on food quality. Also, it damages the refrigerator compressor because of voltage fluctuation. This paper explores the performance improvement of the refrigeration system by using Nano-enhanced Phase Change Material (Nano-PCM). In this experimental work, an attempt has been made to reduce the temperature fluctuation occurred by a power cut OFF as well as because of frequently opening and closing the door of system. The main objective of this research is to improve the cooling performance by prolonging the cut OFF period of the compressor, and also maintain a constant temperature inside the system by using Nano-PCM, viz. (CuO + KCl and CuO + NaCl) by considering water as a base fluid. The usage of Nano-PCM enhances the heat transfer rate of the evaporator side thus improves the Coefficient of Performance (COP) of the refrigeration system. The experiment shows that the evaporator temperature remains constant and is maintained between 3 to 9°C for 5 to 7 hours after power cut OFF when Nano-PCM is used. While there is a continuous rise in evaporator outlet temperature up to 18 to 24°C after a power cut off without using Nano-PCM.
机译:目前印度正面临出停电的问题及其对食品质量的影响。此外,由于电压波动,它会损坏冰箱压缩机。本文探讨了使用纳米增强相变材料(纳米PCM)的制冷系统的性能改善。在该实验工作中,已经尝试降低电力切断的温度波动以及由于经常打开和关闭系统门而发生的温度波动。本研究的主要目的是通过延长压缩机的切断时段来提高冷却性能,并通过使用纳米PCM,VIZ保持系统内的恒定温度。 (CuO + KCl和CuO + NaCl)通过考虑水作为基础流体。纳米PCM的使用增强了蒸发器侧的传热速率,从而提高了制冷系统的性能系数(COP)。实验表明,蒸发器温度保持恒定,并且在使用纳米PCM时,在纳米PCM截止后,在3至9℃的5至7小时之间保持恒定。虽然在电源切断后,蒸发器出口温度的连续上升至18至24°C而不使用纳米PCM。

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