Heat transfer and pressure drop of condensation of hydrocarbons in tubes
Author:
Publisher
Springer Science and Business Media LLC
Subject
Fluid Flow and Transfer Processes,Condensed Matter Physics
Link
http://link.springer.com/article/10.1007/s00231-018-2318-2/fulltext.html
Reference14 articles.
1. Cavallini A, Censi G, Del Col D, Doretti L, Longo GA, Rossetto L (2001) Experimental investigation on condensation heat transfer and pressure drop of new HFC refrigerants (R134a, R125, R32, R410A, R236ea). Int J Refrig 24:73–87
2. Garimella S, Macdonald M (2016) Hydrocarbon condensation in horizontal tubes. Part I – measurements. Int J Heat Mass Transf 93:75–85
3. Cavallini A, Zecchin R (1974) A dimensionless correlation for heat transfer in forced convection condensation. 6th Int. Heat Transfer Conference, Tokyo
4. Cavallini A, Censi G, Del Col D, Doretti L, Longo GA, Rossetto L (2002) Condensation of halogenated refrigerants inside smooth tubes. HVAC R Res 8:429–451
5. Cavallini A, Del Col D, Doretti L, Matkovic M, Rossetto L, Zilio C, Censi G (2006) Condensation in horizontal smooth tubes: a new heat transfer model for heat exchanger design. Heat Transfer Eng 27:31–38
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