Issue Section:
Technical Briefs
1.
Baker
C. J.
1979
, “The Laminar Horseshoe Vortex
,” J. Fluid Mech.
, Vol. 95
, Pt. 2, pp. 347
–368
.2.
Eibeck
P. A.
1990
, “An Experimental Study of the Flow Downstream of a Circular and Tapered Cylinder
,” ASME Journal of Fluids Engineering
, Vol. 112
, pp. 393
–401
.3.
Eibeck
P. A.
Barland
D. E.
1993
, “Turbulent Mixing Behind Two-Dimensional and Finite Obstacles
,” Turbulent Mixing
, ASME FED-Vol. 174
, pp. 57
–63
.4.
Fisher
E. M.
Eibeck
P. A.
1990
, “The Influence of a Horseshoe Vortex on Local Convective Heat Transfer
,” ASME JOURNAL OF HEAT TRANSFER
, Vol. 112
, pp. 329
–335
.5.
Mehta
R. D.
1984
, “Effect of Wing Nose Shape on the Flow in a Wing/Body Junction
,” Aeronautical Journal
, Vol. 88
, No. 880
, pp. 456
–460
.6.
Merati, P., McMahon, H. M., and Yoo, K. M., 1988, “Experimental Modeling of a Turbulent Flow in the Junction and Wake of an Appendage Flat Plate,” presented at the AIAA/ASME/SIAM/APS 1st National Fluid Dynamics Congress, Cincinnati, OH, pp. 1255–1264.
7.
Moffat
R. J.
1988
, “Describing Uncertainty in Experimental Results
,” Exp. Thermal Fluid Sci.
, Vol. 1
, pp. 3
–17
.8.
Pauley, W. R., 1993, “The Fluid Mechanics and Heat Transfer Downstream of Struts Spanning a Low-Aspect-Ratio Channel,” ASME Paper No. 93-HT-41.
9.
Rood, E. P., 1984, “The Separate Spatial Extents of the Trailing Horseshoe Root Vortex Legs From a Wing and Plate Junction,” Paper No. AIAA-84-1526.
10.
Tyszka
D. A.
Wroblewski
D. E.
1994
, “An Experimental Investigation of Heat Transfer and Fluid Mechanics in the Turbulent Endwall Junction Boundary Layer Downstream of a Truly Streamlined Body
,” Fundamentals of Heat Transfer in Forced Convection
, ASME HTD-Vol. 285
, pp. 25
–32
.11.
Wroblewski
D. E.
Eibeck
P. A.
1992
, “Turbulent Heat Transport in a Boundary Layer Behind a Junction of a Streamlined Cylinder and a Wall
,” ASME JOURNAL OF HEAT TRANSFER
, Vol. 114
, pp. 840
–849
.
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