Title of article :
Performance of a finned-tube evaporator optimized for different refrigerants and its effect on system efficiency
Author/Authors :
Domanski، نويسنده , , Piotr A. and Yashar، نويسنده , , David and Kim، نويسنده , , Minsung، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Pages :
8
From page :
820
To page :
827
Abstract :
This paper presents a comparable evaluation of R600a (isobutane), R290 (propane), R134a, R22, R410A, and R32 in an optimized finned-tube evaporator, and analyzes the impact of evaporator effects on the system coefficient of performance (COP). The study relied on a detailed evaporator model derived from NISTʹs EVAP-COND simulation package and used the ISHED1 scheme employing a non-Darwinian learnable evolution model for circuitry optimization. In the process, 4500 circuitry designs were generated and evaluated for each refrigerant. The obtained evaporator optimization results were incorporated in a conventional analysis of the vapor compression cycle. For a theoretical cycle analysis without accounting for evaporator effects, the COP spread for the studied refrigerants was as high as 11.7%. For cycle simulations including evaporator effects, the COP of R290 was better than that of R22 by up to 3.5%, while the remaining refrigerants performed approximately within a 2% COP band of the R22 baseline for the two condensing temperatures considered.
Keywords :
R600a , R32 , Propane , R32 , R134a , comparison , R22 , Conditionnement dיair , R22 , Système frigorifique , comparaison , ةvaporateur , air conditioning , tube aileté , Refrigerating system , Modélisation , Evaporator , Optimisation , finned tube , R600a , Modelling , R410A , optimization , Propane , R410A , R134a
Journal title :
International Journal of Refrigeration
Serial Year :
2005
Journal title :
International Journal of Refrigeration
Record number :
1339969
Link To Document :
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