Condensation Heat Transfer Coefficients of Binary Refrigerant Mixtures on a Horizontal Smooth Tube

수평관에서 이원 혼합냉매의 응축 열전달계수

  • Published : 2000.12.01

Abstract

In this study, condensation heat transfer coefficients(HTCs) of 2 nonazeotropic refrigerant mixtures of HFC32/HFC134a and HFC134a/HCFC123 at various compositions were measured on a horizontal smooth tube. All data were taken at the vapor temperature of 39$^{\circ}C$ with a wall subcooling of 3~8K. Test results showed that HTCs of tested mixtures were 11.0~85.0% lower than the ideal values calculated by the mass fraction weighting of the pure components HTCs. Thermal resistance due to the diffusion vapor film was partly responsible for the significant reduction of HTCs with these nonazeotropic mixtures. The measured data were compared against the predicted ones by Colburn and Drew\`s film model and a good agreement was observed.

Keywords

References

  1. Montreal Protocol on Substances That Deplete the Ozone Layer United Nations Environment Programme
  2. Trans. AIChE 33 The condensation of mixed vapors Colburn, A. P.;Drew. T. B.
  3. AIChE Symp. Ser. v.69 no.121 An approximate generalized design-method for multicomponent/partial condensers Bell, K. J.;Ghaly, M. A.
  4. AIChE symp. Series 70 Design of binary vapor condensers using the Colburn Drew equations Price, B. C.;Bell, K. J.
  5. Chem, Eng. Science v.37 no.1 The efficient estimation of rates of multicomponent condensation by a film model Webb, D. R.;Taylor, R.
  6. Proceedings, Int. 7th Heat Transfer Conf. v.5 Heat and mass transfer on condensation of multicomponent vapours Webb, D. R.
  7. Proceedings. Int. 7th Heat Transfer Conference v.5 Film condensation of binary refrigerant vapours on a horizontal tube Goto, M.;Fujii, T.
  8. Int. 8th Heat Transfer Conference v.4 Free convective filmwise condensation of a binary mixture of vapors Hijikata, K.;Mori, Y.;Himeno, N.;Inagawa, M.;Takahasi, K.
  9. Int. 9th Heat Transfer Conf. v.3 Experimental study of gravity controlled condensation of binary vapor mixture on a smooth horizontal tube Fujii, T.;Koyama, Sh.;Ndiwalana, N. M.;Nakamura, Y.
  10. Condensation and condenser design ASME Free convection condensation of binary vapor mixtures on a smooth horizontal tube: condensing mode and heat transfer coefficient of condensate Fujii, T.;Osa, N.;Koyama, S.
  11. Int. J. Heat Transfer no.38 Condensation heat transfer of a nonazeotropic binary mixture on a horizontal tube Wang, W. C.;Yu, C.;Wang, B. X.
  12. 2nd European Thermal-Sciences and 14th UIT National Heat Transfer Conference Condensation of freon binary mixture outside a bundle of tubes Signe, J. C.;Bonremps, A.;Marvillet, Ch.
  13. Int. J. Refrigeration v.20 Replacement of R22 in tube-and-shell condensers: experiments and simulations Gabrielii, C.;Vamling, L.
  14. Transactions of the Korean Society of Mechanical Engineers B v.23 no.4 Condensation heat transfer coefficients of R22 alternative refrigerants on enhanced tubes Hwang, S. M.;Kim, K. K.;Jung, D.;Kim, C. B.
  15. NIST thermodynamics and Transport Properties of Refrigerants and Refrigerant Mixtures-REFPROP Version 6.0 McLinden, M. O.;Klein, S. A.;Lemmon, E. W.;Peskin, A. P.
  16. Int. J. Refrigerants v.22 Condensation heat transfer coefficients of enhanced tubes with alternative refrigerants for CFC11 and CFC12 Jung, D.;Kim, C. B.;Cho, S.;Song, K.
  17. Mechanical Engineer v.75 Describing Uncertainties in Single-Sample Experiments Kline, S. J.;McClintock, F. A.
  18. Int. J. Refrigerants v.11 Heat transfer at pool boiling of mixtures with R11 and R114 Gorenflo, D.;Blein, P.;Herres, G.;Rott, W.;Schomann, H.;Sokol, P.