Feasibility and design studies for heat recovery from a refrigeration system with a canopus heat exchanger

S.C. Kaushik, M. Singh
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引用次数: 30

Abstract

This paper presents an investigation of the feasibility of heat recovery from the condenser of a vapour compression refrigeration (VCR) system through a Canopus heat exchanger (CHE) between the compressor and condenser components. The presence of the CHE makes it possible to recover the superheat of the discharged vapour and utilize it for increasing the temperature of the external fluid (water) removing heat from the condenser. The effects of the operating temperatures in the condenser and evaporator for different inlet water temperatures and mass flow rates on the heat recovery output and its distribution over the condenser and CHE (the fraction of the condenser heat available through the CHE), available outlet water temperature and heat recovery factor have all been studied and optimum operating parameters for feasible heat recovery have been ascertained. The parametric results obtained for different working fluids, such as R-22, R-12, R-717 and R-500, have been presented. It is found that, in general, a heat recovery factor of the order of 2.0 and 40% of condenser heat can be recovered through the Canopus heat exchanger for a typical set of operating conditions.

带顶盖换热器制冷系统热回收的可行性与设计研究
本文研究了蒸汽压缩制冷(VCR)系统中通过压缩机和冷凝器部件之间的Canopus热交换器(CHE)回收冷凝器热量的可行性。CHE的存在使回收排放蒸汽的过热成为可能,并利用它来提高外部流体(水)的温度,从冷凝器中除去热量。研究了不同进水温度和质量流量下冷凝器和蒸发器的工作温度对热回收输出及其在冷凝器和CHE上的分布(冷凝器通过CHE可获得的热量的比例)、有效出口水温和热回收系数的影响,并确定了可行热回收的最佳操作参数。给出了不同工质(R-22、R-12、R-717和R-500)的参数化结果。研究发现,在一组典型工况下,一般情况下,通过Canopus换热器可以回收40%的冷凝器热量,其热回收系数约为2.0。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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