231
Views
15
CrossRef citations to date
0
Altmetric
feature articles

Analytical Model With Nonadiabatic Effects for Pressure Drop and Heat Transfer During Boiling and Condensation Flows in Conventional Channels and Minichannels

, , &

REFERENCES

  • Ghajar, A.J., and Bhagwat, S.M., Effect of Void Fraction and Two-Phase Dynamic Viscosity Models on Prediction of Hydrostatic and Frictional Pressure Drop in Vertical Upward Gas–Liquid Two-Phase Flow, Heat Transfer Engineering, vol. 34, no. 13, pp. 1044–1059, 2013.
  • Marcinichen, J.B., Olivier, J.A., Lamaison, N., and Thome, J.R., Advances in Electronics Cooling, Heat Transfer Engineering, vol. 34, no. 5–6, pp. 434–446, 2013.
  • Khan, M.G., and Fartaj, A., A Review on Microchannel Heat Exchangers and Potential Applications, International Journal of Energy Research, vol. 35, pp. 553–582, 2011.
  • Thome, J.R., and Consolini, L., Mechanisms of Boiling in Micro-Channels: Critical Assessment, Proc. 5th Int. Conference on Transport Phenomena in Multiphase Systems, June 30–July 3, Bialystok, Poland, 2005.
  • Mikielewicz, J., Semi-Empirical Method of Determining the Heat Transfer Coefficient for Subcooled Saturated Boiling in a Channel, International Journal of Heat and Mass Transfer, vol. 17, pp. 1129–1134, 1974.
  • Mikielewicz, D., Mikielewicz, J., and Tesmar, J., Improved Semi-Empirical Method for Determination of Heat Transfer Coefficient in Flow Boiling in Conventional and Small Diameter Tubes, International Journal of of Heat and Mass Transfer, vol. 50, pp. 3949–3956, 2007.
  • Mikielewicz, D., and Mikielewicz, J., A Common Method for Calculation of Flow Boiling and Flow Condensation Heat Transfer Coefficients in Minichannels With Account of Non-Adiabatic Effects, Heat Transfer Engineering, vol. 32, pp. 1173–1181, 2011.
  • Mishima, K., and Hibiki, T., Some Characteristics of Air–Water Two-Phase Flow in Small Diameter Vertical Tubes, International Journal of Multiphase Flow, vol. 22, pp. 703–712, 1996.
  • Zhang, M., and Webb, R.L., Correlation of Two-Phase Friction for Refrigerants in Small-Diameter Tubes, Experimental Thermal and Fluid Science, vol. 25, no. 3–4, pp. 131–139, 2001.
  • Tran, T.N., Chyu, M.-C., Wambsganss, M.W., and France, D.M., Two-Phase Pressure Drop of Refrigerants During Flow Boiling in Small Channels: An Experimental Investigation and Correlation Development, International Journal of Multiphase Flow, vol. 26, no. 11, pp. 1739–1754, 2000.
  • Müller-Steinhagen, R., and Heck, K., A Simple Friction Pressure Drop Correlation for Two-Phase Flow in Pipes, Chemical Engineering Progress, vol. , pp. 297–308, 1986.
  • Bohdal, T., Charun, H., and Sikora, M., Comparative Investigations of the Condensation of R134a and R404A Refrigerants in Pipe Minichannels, International Journal of of Heat and Mass Transfer, vol. 54, pp. 1963–1974, 2011.
  • Cavallini, A., Censi, G., Del Col, D., Doretti, L., Longo, G.A., and Rossetto, L., Condensation of Halogenated Refrigerants Inside Smooth Tubes, HVAC&R Research, vol. 8, pp. 429–451, 2002.
  • Matkovic, M., Cavallini, A., Del Col, D., and Rossetto, L., Experimental Study on Condensation Heat Transfer Inside a Single Circular Minichannel, International Journal of of Heat and Mass Transfer, vol. 52, pp. 2311–2323, 2009.
  • Lu, M.-C., Tong, J.-R., and Wang, C.-C., Investigation of the Two-Phase Convective Boiling of HFO-1234yf in a 3.9mm Diameter Tube, International Journal of of Heat and Mass Transfer, vol. 65, pp. 545–551, 2013.
  • Wang, S., Gong, M.Q., Chen, G.F., Sun, Z.H., Wu, J.F., Two-Phase Heat Transfer and Pressure Drop of Propane During Saturated Flow Boiling Inside a Horizontal Tube, International Journal of Refrigeration, vol. 41, pp. 200–209, 2013.
  • Copetti, J.B., Macagnan, M.H., Zinani, F., and Kunsler, N.L. F., Flow Boiling Heat Transfer and Pressure Drop of R134a in a Mini Tube: An Experimental Investigation, Experimental Thermal and Fluid Science, vol. 35, pp. 636–644, 2011.
  • Copetti, J.B., Macagnan, M.H., Zinani, F., Experimental Study on R-600a Boiling in 2.6 mm Tube, International Journal of Refrigeration, vol. 36, pp. 325–334, 2013.
  • Shah, M.M., Chart Correlation for Saturated Boiling Heat Transfer: Equations and Further Study, ASHRAE Transactions, vol. 88, pp. 185–196, 1982.
  • Kandlikar, S.G., and Balasubramanian, P., An Extension of the Flow Boiling Correlation to Transition, Laminar, and Deep Laminar Flows in Minichannels and Microchannels, Heat Transfer Engineering, vol. 25, pp. 86–93, 2004.
  • Cavallini, A., Censi, G., Del Col, D., Doretti, L., Longo, G.A., Rossetto, L., and Zilio, C., Condensation Inside and Outside Smooth and Enhanced Tubes—A Review of Recent Research, International Journal of Heat and Mass Transfer, vol. 26, pp. 373–392, 2002.
  • Thome, J.R., El Hajal, J., and Cavallini, A., Condensation in Horizontal Tubes, Part 2: New Heat Transfer Model Based on Flow Regimes, International Journal of of Heat and Mass Transfer, vol. 46, pp. 3365–3387, 2003.
  • Mikielewicz, J., Influence of Phase Changes on Shear Stresses at the Interfaces, Trans. Institute of Fluid Flow Machinery, vol. 76, pp. 31–39, 1978 (article in Polish).
  • Kutateładze, S.S., and Leontiev, A.I., Turbulent Boundary Layers in Compressible Gases, Academic Press, New York, NY, 1964.
  • Wallis, G.B., One Dimensional Two-Phase Flow, McGraw-Hill, New York, NY, 1969.
  • Okawa T., Kotani A., Kataoka I., and Naito M., Prediction of Critical Heat Flux in Annular Flow Using a Film Flow Model, Journal of Nuclear Science and Technology, vol. 40, no. 6, pp. 388–396, 2003.
  • Gungor, K.E., and Winterton, R.H. S., A General Correlation for Flow Boiling in Tubes and Annuli, International Journal of Heat and Mass Transfer, vol. 29, pp. 351–358, 1986.

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.