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Technical Paper

A Mechanistic Model for Droplet Deposition Heat Transfer in Dispersed Flow Film Boiling

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Pages 106-114 | Published online: 10 Aug 2017

References

  • R. P. Forslund and W. M. Rohsenow, “Dispersed Flow Film Boiling,” J. Heat Transfer, 90, 399 (1968).
  • K. J. Baumeister, T. D. Hamill, and G. J. Schoes-Sow, “Film Boiling Heat Transfer to Water Drops on a Flat Plate,” Chem. Eng. Prog. Symp. Ser., 62, 64, 52 (1966).
  • O. C. Iloeje, W. M. Rohsenow, and P. Griffith, “Three-Step Model of Dispersed Flow Heat Transfer,” 75-WA / HT-1, American Society of Mechanical Engineers, Heat Transfer Division (1975).
  • E. N. Ganic and W. M. Rohsenow, “On the Mechanism of Liquid Drop Deposition in Two-Phase Flow,” J. Heat Transfer, 101, 288 (1979).
  • R. A. Moose and E. N. Ganic, “On the Calculation of Wall Temperatures in the Post Dryout Heat Transfer Region,” Int. J. Multiphase Flow, 8, 5, 525 (1982).
  • M. Andreani and G. Yadigaroglu, “A 3-D Eulerian-Lagrangian Model of Dispersed Flow Film Boiling Including a Mechanistic Description of the Droplet Spectrum Evolution—I. The Thermal Hydraulic Model,” Int. J. Heat Mass Transfer, 40, 8, 1753 (1997).
  • Y. Guo and K. Mishima, “A Non-Equilibrium Mechanistic Heat Transfer Model for Post-Dryout Dispersed Flow Regime,” Exp. Therm Fluid Sci., 26, 861 (2002).
  • J. W. Lane, L. E. Hochreiter, and D. L. Aumiller, Jr., “Critical Review of the Dispersed Flow FilmBoiling (DFFB) Heat Transfer Model Suggested by Forslund and Rohsenow,” Proc. Int. Topl. Mtg. Nuclear Reactor Thermal Hydraulics (NURETH-12), Pittsburgh, Pennsylvania, September 30–October 4, 2007, American Nuclear Society (2007).
  • S. M. Bajorek and M. Y. Young, “Direct-Contact Heat Transfer Model for Dispersed-Flow FilmBoiling,” Nucl. Technol., 132, 375 (2000).
  • Z. H. Yang and S. L. Lee, “On the Droplet Deposition and Mist Supercooling in a Turbulent Channel Flow,” Part. Part. Syst. Char, 8, 72 (1991).
  • R. L. Lee and K. Almenas, “Droplet Deposition Above a Quench Front During Reflood,” Trans. Am. Nucl. Soc., 43, 787 (1982).
  • Y. H. Liu and T. W. Ilori, “On the Theory of Aerosol Deposition in Turbulent Pipe Flow,” Publication No. 210, Particle Technology Laboratory, University of Minnesota (1973).
  • R. Clift, J. R. Grace, and M. E. Weber, Bubbles, Drops, and Particles, Academic Press (1978).
  • G. H. Bailey, I. W. Stater, and P. Eisenklam, “Dynamic Equations and Solutions for Particles Undergoing Mass Transfer,” Br. Chem. Eng., 15, 912 (1970).
  • K. V. Beard and H. R. Pruppacher, “A Wind Tunnel Investigation of the Rate of Evaporation of Small Water Drops Falling at Terminal Velocity in Air,” J. Atmos. Sci., 28, 1445 (1971).
  • L. Bolle and J. C. Moureau, “Spray Cooling of Hot Surface,” Multiphase Science and Technology, Vol. 1, G. F. Hewitt, J. M. Delhaye, and N. Zuber, Eds., Hemisphere Publishing (1986).

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