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A drop-in-replacement blend HFC-23/HCFC-22/HFC-152A for air/refrigerant equipment
ArticleAbstract: A performance evaluation of a newly developed blend of HFCs and HCFCs, as a substitute for CFC-12, CPalabras claves:Air/refrigerant equipment, Drop-in-replacement, Evaluation, performanceAutores:Samuel M. Sami, Tulej P.J.Fuentes:scopusForced convective condensation and boiling of ternary non‐azeotropic refrigerant mixtures inside water/refrigerant enhanced surface tubing
ArticleAbstract: In this paper, an experimental study on the heat transfer characteristics of two‐phase flow condensaPalabras claves:Boiling, Condensation, Enhanced surface, Refrigerant mixtures, Two‐phase flowAutores:Samuel M. Sami, Song B., Tulej P.J.Fuentes:scopusHeat transfer in forced convection boiling of oil–non‐azeotropic binary refrigerant mixtures
ArticleAbstract: In this paper, the results of the heat transfer, forced convection, boiling characteristics of non‐aPalabras claves:Boiling, Non‐azeotropic mixtures, Oil, Refrigerant mixturesAutores:Fang L., Samuel M. Sami, Tulej P.J.Fuentes:scopusPerformance analysis of a drop‐in‐replacement blend for CFC‐12, CFC‐502, and HCFC‐22
ArticleAbstract: In this paper, a performance evaluation of a newly developed blend of HFCs and HCFCs, as a substitutPalabras claves:blends, CFC alternatives, Experimental investigation, Performance Analysis, Vapour‐compressionAutores:Samuel M. Sami, Tulej P.J.Fuentes:scopusStudy of heat and mass characteristics of ternary nonazeotropic refrigerant mixtures inside air/refrigerant-enhanced surface tubing
Conference ObjectAbstract: In this paper, an experimental study on the heat transfer characteristics of two-phase flow condensaPalabras claves:Autores:Samuel M. Sami, Song B., Tulej P.J.Fuentes:scopus