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Thermodynamic analysis of an R744–R717 cascade refrigeration system
Authors:H.M. Getu  P.K. Bansal  
Affiliation:aDepartment of Mechanical Engineering, The University of Auckland, Private Bag 92019, Auckland, New Zealand
Abstract:
A thermodynamic analysis of carbon dioxide–ammonia (R744–R717) cascade refrigeration system is presented in this paper to optimize the design and operating parameters of the system. The design and operating parameters considered in this study include (1) condensing, subcooling, evaporating and superheating temperatures in the ammonia (R717) high-temperature circuit, (2) temperature difference in the cascade heat exchanger, and (3) evaporating, superheating, condensing and subcooling in the carbon dioxide (R744) low-temperature circuit. A multilinear regression analysis was employed in terms of subcooling, superheating, evaporating, condensing, and cascade heat exchanger temperature difference in order to develop mathematical expressions for maximum COP, an optimum evaporating temperature of R717 and an optimum mass flow ratio of R717 to that of R744 in the cascade system.
Keywords:Refrigeration system   Compression system   Cascade system   Ammonia   Carbon dioxide   R744   Calculation   Performance   OptimizationMots clé  s: Systè  me frigorifique   Systè  me à   compression   Systè  me en cascade   Ammoniac   Dioxyde de carbone   R744   Calcul   Performance   Optimisation
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