44
Views
0
CrossRef citations to date
0
Altmetric
Technical Paper

Experiments on Pool Boiling of Water from Downward-Facing Hemispheres

&
Pages 52-69 | Published online: 13 May 2017

References

  • R. E. HENRY, J. P. BURELBACH, R. J. HAMMERSLEY, C. E. HENRY, and G. T. KLOPP, “Cooling of Core Debris Within the Reactor Vessel Lower Head,” Nucl. Technol., 101, 385 (1993).
  • M. S. EL-GENK, “A Review of Pool Boiling from Inclined and Downward-Facing Flat Surfaces,” Heat Technol., 14, 2, 95 (1996).
  • M. S. EL-GENK and A. G. GLEBOV, “Transient Pool Boiling from Downward-Facing Curved Surface,” Int. J. Heat Mass Transfer, 38, 12, 2209 (1995).
  • M. S. EL-GENK and A. G. GLEBOV, “Effect of Subcooling on Film Boiling from a Downward-Facing Curved Surface in Water,” AIChE Symp. Ser.-Heat Transfer, 91, 125 (1995).
  • C. GAO, “Effects of Material Properties and Surface Curvatures on Pool Boiling from Downward-Facing Convex Surfaces,” MS Thesis, University of New Mexico (1996).
  • M. S. EL-GENK and C. GAO, “Pool Boiling from Downward-Facing Curved Surfaces: Effects of Radius of Curvature and Edge Angle,” Nucl. Technol., 114, 351 (1996).
  • M. S. EL-GENK and C. GAO, “Transient Heat Conduction During Quenching of Downward Facing Copper and Stainless Steel Convex Surfaces,” J. Num. Heat Transfer Part A, 29, 543 (1996).
  • M. S. EL-GENK and C. GAO, “Visualization of Pool Boiling on Downward-Facing Convex Surfaces,” Proc. 5th Int. Topl. Mtg. Nuclear Thermal Hydraulics, Operation and Safety, NUTHOS-5, Beijing, China, April 14-18, 1997, p. B1-1 (1997).
  • T. Y. CHU, J. H. BENTZ, and R. B. SIMPSON, “Observations of the Boiling Process From a Downward-Facing Tori-spherical Surface: Confirmatory Testing of the Heavy Water NewProduction ReactorFlooded CavityDesign,” AIChESymp. Ser.-Heat Transfer, 91, 154 (1995).
  • K. H. HADDAD, Y. C. LIU, and F. B. CHEUNG, “Spatial Variation of Critical Heat Flux on a Downward Facing Hemispherical Surface,” Proc. 30th National Heat Transfer Conf., HTD-Vol. 316, No. 14, p. 23 (1995).
  • F. B. CHEUNG, K. H. HADDAD, Y. C. LIU, and S. W. SHIAH, “High-Heat Flux Nucleate Boiling on the Outer Surface of a Heated Hemispherical Vessel,” AIChE Symp. Ser.-Heat Transfer, 93, 95 (1997).
  • G. THEOFANOUS, S. SYRI, T. SALMASSI, O. KY-MALAINEN, and H. TUOMISTO, “Critical Heat Flux Through Curved Downward Facing, Thick Walls,” Nucl. Eng. Des., 151, 247 (1994).
  • T. G. THEOFANOUS and S. SYRI, “The Coolability Limits of a Reactor Pressure Vessel Lower Head,” Proc. 7th Int. Mtg. Nuclear Reactor Thermal-Hydraulics, NURETH-7, NUREG/CP-0142, Vol. 1, p. 638, U. S. Nuclear Regulatory Commission (1995).
  • C. GAO and M. S. EL-GENK, “Numerical Analysis of Transient Heat Conduction in Downward-Facing Curved Sections During Quenching,” Proc. 31st National Heat Transfer Conf., HTD-Vol. 331, p. 103 (1996).
  • M. S. EL-GENK and C. GAO, “Transient Heat Conduction During Quenching of Downward Facing Copper and Stainless Steel Convex Surfaces,” J. Numer. Heat Transfer, Part A, 29, 543 (1996).
  • A. D. YEFANOV, S. G. KALYAKIN, V. A. GRABEZH-NAYA, and N. S. GRACHEV, “The Effect of Flow Rate of Subcooling Water on Boiling from Downward-Facing Curved Surface,” Proc. Int. Topl. Mtg. Advanced Reactor Safety, Or-lando, Florida, June 1-5, 1997, p. 1253 (1997).
  • M. J. E. GOLAY, “Smoothing and Differentiation of Data by Simplified Least Square Procedures,” Anal. Chem., 36, 1627 (1964).
  • W. J. MINKOWYCZ, E. M. SPARROW, G. E. SCHNEIDER, and R. H. PLETCHER, Handbook of Numerical Heat Transfer, p. 17, John Wiley & Sons, New York (1988).
  • S. J. KLINE and F. A. MCCLINTOCK, “Describing Uncertainties in Single-Sample Experiments,” Mech. Eng. (Jan. 1953).
  • K. NISHIKAWA, Y. FUJITA, S. UCHIDA, and H. OHTA, “Effect of Heating Surface Orientation on Nucleate Boiling Heat Transfer,” Proc. Thermal Engineering Joint Conf., Vol. 1, p. 129, American Society of Mechanical Engineers-Japan Society of Mechanical Engineers (1983).
  • J. STRAUB, “The Role of Surface Tension for Two-Phase Heat and Mass Transferin the Absence of Gravity,” Exp. Therm. Fluid Sci., 9, 253 (1994).

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.