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1
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0004084899
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Heat Transfer With High Intensity, Large Scale Turbulence: The Flat Plate Turbulent Boundary Layer and the Cylindrical Stagnation Point
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Thermosciences Division of Mechanical Engineering, Stanford University
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Ames, F.E.1
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2
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Experimental Study of Vane Heat Transfer and Aerodynamics at Elevated Levels of Turbulence
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0346581293
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The Effects of Large-Scale, High Intensity Turbulence on Vane Heat Transfer
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Ames, F.E.1
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4
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0003210313
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Aero-thermal Investigation of a Highly Loaded Transonic Linear Turbine Guide Vane Cascade
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von Karman Institute for Fluid Dynamics, Belgium
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83655214813
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Velocity Characteristics of Isothermal and Combusting Flows in a Model Combustor
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Loss Mechanisms in Turbomachines
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The Effect of Incident Wake Conditions on the Mean Heat Transfer of an Airfoil
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Dullenkopf, K.1
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Dullenkopf, K.1
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9
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5244284494
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Analysis of the Uncertainties in Velocity Measurements and Technique for Turbulence Measurements in Complex Heated Flows With Multiple Hot-Wires
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Dept. Mech. Engr., Stanford University
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11
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0026754875
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Secondary Flow Measurements in a Turbine Cascade With High Inlet Turbulence
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Gregory-Smith, D.G.1
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12
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0023324597
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Influence of Free-Stream Turbulence and Blade Pressure Gradient on Boundary Layer and Loss Behavior of Turbine Cascades
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Hoheisel, H., Kiock, R., Lichtfuss, H. J., and Fottner, L., 1987, “Influence of Free-Stream Turbulence and Blade Pressure Gradient on Boundary Layer and Loss Behavior of Turbine Cascades,” ASME Journal of Turbomachinery, Vol. 109, p. 210.
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Hoheisel, H.1
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Describing Uncertainties in Single Sample Experiments
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Experimental Investigations of the Influence of Incoming Wakes on the Losses of a Linear Turbine Cascade
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Ladwig, M.1
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18
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Role of Laminar-Turbulent Transition in Gas Turbine Engines
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Mayle, R.E.1
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0026714095
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An Examination of the Contributions to Loss on a Transonic Turbine Blade in Cascade
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Reynolds Stress and Dissipation Downstream of a Turbine Cascade
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0021206195
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Measurements of Heat Transfer Distribution Over the Surfaces of Highly Loaded Turbine Nozzle Guide Vanes, ASME
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0028712660
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Stagnation Region Heat Transfer: The Influence of Turbulence Parameters, Reynolds Number, and Body Shape
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Van Fossen, G. J., and Simoneau, R. J., 1994, “Stagnation Region Heat Transfer: The Influence of Turbulence Parameters, Reynolds Number, and Body Shape,” presented at the AIAA/ASME Thermophysics and Heat Transfer Conference, Colorado Springs, CO, June 20-23.
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0024177154
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Stagnation Transfer Rates for Incident Flow With High Turbulence Intensities
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Zimmerman, D.R.1
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