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THEORETICAL STUDIES ON THE APPLICATION OF PULSATING HEAT PIPE IN VAPOUR COMPRESSION REFRIGERATION SYSTEM

机译:脉动热管在蒸汽压缩制冷系统中的应用的理论研究

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This paper proposes a simplified theoretical model of Pulsating Heat Pipe (PHP) employed in a vapour compression refrigeration system. The model developed is mainly based on well known physical equations and partially based on empirical correlation. The present theoretical investigation of PHP is focused to explore its suitability as a heat exchanger in the condenser of vapour compression refrigeration system. A parametric analysis is carried out to design the vapour compression refrigeration system with PHP as the condenser. The performance of the system is evaluated for different PHP diameters, working fluids, evaporator and condenser temperatures and evaporator and condenser lengths. The effect of super heating and sub cooling the refrigerant are also studied. The results showed an increase in performance of the system at higher evaporator and lower condenser temperatures. The best results are obtained with R-12 as the working fluid. Also there is an increase in the COP of the system due to decrease in pressure drop in the condenser.
机译:本文提出了一种在蒸汽压缩制冷系统中采用的脉动热管(PHP)的简化理论模型。该模型主要基于众所周知的物理方程,并部分地基于经验相关性。 PHP的本发明的理论研究集中于探讨其在蒸汽压缩制冷系统冷凝器中的热交换器的适用性。进行参数分析以设计具有PHP作为冷凝器的蒸汽压缩制冷系统。评估系统的性能,对不同的PHP直径,工作流体,蒸发器和冷凝器温度和蒸发器和冷凝器长度进行评估。还研究了制冷剂超级加热和副冷却的效果。结果表明,在较高的蒸发器和更低的冷凝器温度下系统的性能增加。用R-12作为工作流体获得最佳结果。由于冷凝器中的压降减小,系统的COP也有增加。

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