Issue Section:
Technical Briefs
1.
Bonacina
C.
Del Giudice
S.
Comini
G.
1979
, “Dropwise Evaporation
,” ASME JOURNAL OF HEAT TRANSFER
, Vol. 101
, pp. 441
–446
.2.
Choi
K. J.
Yao
S. C.
1987
, “Mechanisms of film boiling heat transfer of normally impacting spray
,” Int. J. Heat Mass Transfer
, Vol. 30
, pp. 311
–318
.3.
Deiters
T. A.
Mudawar
I.
1989
, “Optimization of spray quenching for aluminum extrusion, forging, or continuous casting
,” J. Heat Treating
, Vol. 7
, pp. 9
–18
.4.
Deiters
T. A.
Mudawar
I.
1990
, “Prediction of the temperature-time cooling curves for three-dimensional aluminium products during spray quenching
,” J. Heat. Treating
, Vol. 8
, pp. 81
–91
.5.
Liu, G. W., Morsi, Y. S., Van Der Walt, J. P., and Clayton, B. R., 1999, “Experimental Investigation of the Spray Cooling Heat Transfer Involved in a High Pressure Die Casting Process,” Journal of Experimental Heat Transfer, submitted for publication.
6.
Mesler
R.
1976
, “A mechanism supported by extensive experimental evidence to explain high heat fluxes observed during nucleate boiling
,” AIChE Journal
, Vol. 22
, pp. 246
–252
.7.
Mesler
R.
1982
, “Research on nucleate boiling
,” Chemical Engineering Education
, Vol. 16
, p. 152
152
.8.
Mudawar
I.
Valentine
W. S.
1989
, “Determination of the local quenching curve for spray-cooled metallic surface
,” J. Heat Treating
, Vol. 7
, pp. 107
–121
.9.
Yang, J., 1993, “Spray cooling with an air atomizing nozzle,” Ph.D. dissertation, University of Kentucky.
10.
Yang
J.
Pais
M. R.
Chow
L. C.
1993
, “Critical heat flux limits in secondary gas atomized liquid spray cooling
,” Experimental Heat Transfer
, Vol. 6
, pp. 55
–67
.11.
Yang
J.
Chow
L. C.
Pais
M. R.
1996
a, “An Analytical Method to Determine the Liquid Film Thickness Produced by Gas Atomized Sprays
,” ASME JOURNAL OF HEAT TRANSFER
, Vol. 118
, pp. 255
–258
.12.
Yang
J.
Chow
L. C.
Pais
M. R.
1996
b, “Nucleate Boiling Heat Transfer in Spray Cooling
,” ASME JOURNAL OF HEAT TRANSFER
, Vol. 118
, pp. 668
–671
.
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