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RECORD NUMBER: 23 OF 23

OLS Field Name OLS Field Data
Main Title Thermodynamic Performance Limit and Evaporator Design Considerations for NARM-Based Domestic Refrigerator-Freeze Systems.
Author Smith, M. K. ; Heun, M. C. ; Crawford, R. R. ; Newell, T. A. ;
CORP Author Illinois Univ. at Urbana-Champaign. Dept. of Mechanical and Industrial Engineering.;Environmental Protection Agency, Research Triangle Park, NC. Air and Energy Engineering Research Lab.
Publisher 1990
Year Published 1990
Report Number EPA-R-816206; EPA/600/A-92/213;
Stock Number PB93-106821
Additional Subjects Refrigerants ; Refrigerators ; Freezers ; Pollution control ; Evaporation ; Thermodynamic properties ;
Holdings
Library Call Number Additional Info Location Last
Modified
Checkout
Status
NTIS  PB93-106821 Most EPA libraries have a fiche copy filed under the call number shown. Check with individual libraries about paper copy. NTIS 06/08/1993
Collation 14p
Abstract
The paper gives results of an investigation of non-azeotropic refrigerant mixtures (NARMs) for a two-temperature-level heat exchange process found in a domestic refrigerator-freezer. Ideal (constant air temperature) heat exchange processes are assumed. The results allow the effects of intercooling between the evaporator refrigerant stream and the condenser outlet stream to be examined systematically. Three refrigerant pairs, R22/R142b, R22/R123, and R32/R142b, were studied, but the results for only R22/R123 are presented because of its unique temperature glide curvature. Practical implementation of a Lorenz cycle constrains evaporator design. An evaporator module design is presented which meets the NARM system constraints.