505
Views
19
CrossRef citations to date
0
Altmetric
feature articles

Predicting Methods for Flow Boiling Heat Transfer of a Non-Azeotropic Mixture Inside a Single Microchannel

, &

REFERENCES

  • Kandlikar, S.G., and Grande, W.J., Evolution of Microchannel Flow Passages—Thermohydraulic Performance and Fabrication Technology, Heat Transfer Engineering, vol. 24, no. 1, pp. 3–17, 2003.
  • Kew, P.A., and Cornwell, K., Correlations for the Prediction of Boiling Heat Transfer in Small-Diameter Channels, Applied Thermal Engineering, vol. 17, no. 8–10, pp. 705–715, 1997.
  • Ullmann, A., and Brauner, N., The Prediction of Flow Pattern Maps in Minichannels, Multiphase Science and Technology, vol. 19, no. 1, pp. 49–73, 2007.
  • Ong, C.L., and Thome, J.R., Macro-to-Microchannel Transition in Two-Phase Flow: Part 1—Two-Phase Flow Patterns and Film Thickness Measurements, Experimental Thermal and Fluid Science, vol. 35, no. 1, pp. 37–47, 2011.
  • Thome, J.R., and Consolini, L., Mechanisms of Boiling in Micro-Channels: Critical Assessment, Heat Transfer Engineering, vol. 31, no. 4, pp. 288–297, 2010.
  • Thome, J.R., Bar-Cohen, A., Revellin, R., and Zun, I., Unified Mechanistic Multiscale Mapping of Two-Phase Flow Patterns in Microchannels, Experimental Thermal and Fluid Science, vol. 44, pp. 1–22, 2013.
  • Chen, L., Tian, Y.S., and Karayiannis, T.G., The Effect of Tube Diameter on Vertical Two-Phase Flow Regimes in Small Tubes, International Journal of Heat and Mass Transfer, vol. 49, no. 21–22, pp. 4220–4230, 2006.
  • Bao, Z.Y., Fletcher, D.F., and Haynes, B.S., Flow Boiling Heat Transfer of Freon R11 and HCFC123 in Narrow Passages, International Journal of Heat and Mass Transfer, vol. 43, no. 18, pp. 3347–3358, 2000.
  • Tran, T.N., Wambsganss, M.W., and France, D.M., Small Circular- and Rectangular-Channel Boiling With Two Refrigerants, International Journal of Multiphase Flow, vol. 22, no.3, pp. 485–498, 1996.
  • Yan, Y.-Y., and Lin, T.-F., Evaporation Heat Transfer and Pressure Drop of Refrigerant R-134a in a Small Pipe, International Journal of Heat and Mass Transfer, vol. 41, no. 24, pp. 4183–4194, 1998.
  • Lin, S., Kew, P.A,. and Cornwell, K., Two-Phase Heat Transfer to a Refrigerant in a 1 mm Diameter Tube, International Journal of Refrigeration, vol. 24, no. 1, pp. 51–56, 2001.
  • Del Col, D., Bortolin, S., Torresin, D., and Cavallini, A., Flow boiling of R1234yf in a 1 mm diameter channel, International Journal of Refrigeration, vol. 36, no. 7, pp. 353-362, 2013.
  • Tibircia, C.B., Ribatski, G., and Thome, J.R., Flow Boiling Characteristics for R1234ze(E) in 1.0 and 2.2 mm Circular Channels, Journal of Heat Transfer, vol. 134, no. 2, 2012.
  • Celata, G.P., Cumo, M., and Setaro, T., Forced Convective Boiling in Binary Mixtures, International Journal of Heat and Mass Transfer, vol. 36, no. 13, pp. 3299–3309, 1993.
  • Thome, J.R., Boiling of New Refrigerants: A State-of-the-Art Review, International Journal of Refrigeration, vol. 19, no.7, pp. 435–457, 1996.
  • Li, M., Dang, C. and Hihara, E., Flow Boiling Heat Transfer of HFO1234yf and R32 Refrigerant Mixtures in a Smooth Horizontal Tube: Part I. Experimental Investigation, International Journal of Heat and Mass Transfer, vol. 55, no.13-14, pp. 3437–3446, 2012.
  • Kondou, C., Baba, D., Mishima, F., and Koyama, S., Flow Boiling of Non-Azeotropic Mixture R32/R1234ze(E) in Horizontal Microfin Tubes, International Journal of Refrigeration, vol. 36, no.8, pp. 2366–2378, 2013.
  • Hossain, M.A., Onaka, Y., Afroz, H.M. M., and Miyara, A., Heat Transfer During Evaporation of R1234ze(E), R32, R410A and a Mixture of R1234ze(E) and R32 Inside a Horizontal Smooth Tube, International Journal of Refrigeration, vol. 36, no. 2, pp. 465–477, 2013.
  • Del Col, D., Azzolin, M., and Bortolin, S., Flow boiling heat transfer of a non-azeotropic mixture inside a single microchannel, Proc. 4th Micro and Nano Flows Conference, London, UK, September 7-10, 2014.
  • International Standard Organization, EN ISO 4287:1998/A1, Geometrical Product Specifications (GPS)—Surface Texture: Profile Method—Terms, Definitions and Surface Texture Parameters, 1998.
  • Del Col, D., Bortolin, S., and Rossetto, L., Convective Boiling Inside a Single Circular Microchannel, International Journal of Heat and Mass Transfer, vol. 67, pp. 1231–1245, 2013.
  • Lemmon, E.W., Huber, M.L., and McLinden, M.O., NIST Standard Reference Database 23:  Reference Fluid Thermodynamic and Transport Properties-REFPROP, Version 9.1, National Institute of Standards and Technology, Standard Reference Data Program, Gaithersburg, MD, 2013.
  • Akasaka, R., Thermodynamic Property Models for the Difluoromethane (R-32)+trans-1,3,3,3-Tetrafluoropropene (R-1234ze(E)) and difluoromethane+2,3,3,3-Tetrafluoropropene (R-1234yf) Mixtures, Fluid Phase Equilibrium, vol. 358, pp. 98–104, 2013.
  • Lazarek, G.M., and Black, S.H., Evaporative Heat Transfer, Pressure Drop and Critical Heat Flux in a Small Vertical Tube With R-113, International Journal of Heat and Mass Transfer, vol. 25, no. 7, pp. 945–960, 1982.
  • Sun, L., and Mishima, K., An Evaluation of Prediction Methods for Saturated Flow Boiling Heat Transfer in Mini-Channels, International Journal of Heat and Mass Transfer, vol. 52, no. 23–24, pp. 5323–5329, 2009.
  • Gungor, K.E., and Winterton, R.H. S., General Correlation for Flow Boiling in Tubes and Annuli, International Journal of Heat and Mass Transfer, vol. 29, no. 3, pp. 351–358, 1986.
  • Chen, J.C., A Correlation for Boiling Heat Transfer to Saturated Fluids in Convective Flow, Industrial & Engineering Chemistry Process Design and Development, vol. 5, no. 3, pp. 322–329, 1966.
  • Cooper, M.G., Heat Flow Rates in Saturated Nucleate Pool Boiling —A Wide-Ranging Examination using Reduced Properties, Advances in Heat Transfer, vol. 16, pp. 157–239, 1984.
  • Bertsch, S.S., Groll, E.A., and Garimella, S.V., A Composite Heat Transfer Correlation for Saturated Flow Boiling in Small Channels, International Journal of Heat and Mass Transfer, vol. 52, no. 7–8, pp. 2110–2118, 2009.
  • Thome, J.R., Dupont, V., and Jacobi, A.M., Heat Transfer Model for Evaporation in Microchannels. Part I: Presentation of the Model, International Journal of Heat and Mass Transfer, vol. 47, no. 14–16, pp. 3375–3385, 2004.
  • Dupont, V., Thome, J.R., and Jacobi, A.M., Heat Transfer Model for Evaporation in Microchannels. Part II: Comparison With the Database, International Journal of Heat and Mass Transfer, vol. 47, no. 14–16, pp. 3387–3401, 2004.
  • Agostini, B., Thome, J.R., Fabbri, M., Michel, B., Calmi, D., and Kloter, U., High Heat Flux Flow Boiling in Silicon Multi-Microchannels—Part II: Heat Transfer Characteristics of Refrigerant R245fa, International Journal of Heat and Mass Transfer, vol. 51, no. 21–22, pp. 5415–5425, 2008.
  • Ong, C.L., and Thome, J.R., Macro-to-Microchannel Transition in Two-Phase Flow: Part 2—Flow Boiling Heat Transfer and Critical Heat Flux, Experimental Thermal and Fluid Science, vol. 35, no. 6, pp. 873–886, 2011.
  • Stephan, K., Heat Transfer in Condensation and Boiling, Springer-Verlag, Berlin, Germany, 1992.
  • Cavallini, A., Del Col, D., Doretti, L., Longo, G.A., and Rossetto, L., Refrigerant Vaporization Inside Enhanced Tubes: A Heat Transfer Model, Heat Technology, vol. 17, no.2, pp. 29–36, 1999.
  • Bell, K.J., and Ghaly, M.A., An approximate generalized design method for multicomponent/partial condenser, AICHE Symposium Series, vol. 69, pp. 72–79, 1973
  • Thome, J.R., Prediction of the Mixture Effect on Boiling in Vertical Thermosyphon Reboilers, Heat Transfer Engineering, vol. 10, no. 2, pp. 29–38, 1989.
  • Bortolin, S., Del Col, D., and Rossetto, L., Flow Boiling of R245fa in a Single Circular Microchannel, Heat Transfer Engineering, vol. 32, no. 13–14, pp. 1160–1172, 2011.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.