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Turbulent Boundary Layers on Rough Surfaces
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Measurements Concerning the Influence of Surface Roughness and Profile Changes on the Performance of Gas Turbine Engines
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Bammert, K., and Sanstede, H., 1972, “Measurements Concerning the Influence of Surface Roughness and Profile Changes on the Performance of Gas Turbine Engines,” ASME Journal of Engineering for Power, Vol. 94, pp. 207-213.
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Bammert, K.1
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3
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Influences of Manufacturing Tolerances and Surface Roughness of Blades on the Performance of Turbines, ASME
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Bammert, K„ and Sanstede, H., 1976, “Influences of Manufacturing Tolerances and Surface Roughness of Blades on the Performance of Turbines,” ASME Journal of Engineering for Power, Vol. 98, pp. 29-36.
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Journal of Engineering for Power
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Bammert, K.1
Sanstede, H.2
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4
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0028257013
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An Experimental Study of Heat Transfer in a Large-Scale Turbine Rotor Passage
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Blair, M. F., 1994, “An Experimental Study of Heat Transfer in a Large-Scale Turbine Rotor Passage,” ASME Journal of Turbomachinery, Vol. 116, pp. 1-13.
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(1994)
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Blair, M.F.1
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5
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Experiments With Fluid Friction in Roughened Pipes
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A Re-evaluation of Schlichtings Surface Experiment
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Coleman, H. W., Hodge, B. K., and Taylor, R. P., 1984, “A Re-evaluation of Schlichting’s Surface Experiment,” ASME Journal of Fluids Engineering, Vol. 106, pp. 60-65.
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(1984)
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Coleman Hodge, H.W.B.K.1
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7
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Performance Loss of Modem Steam-Turbine Plant Due to Surface Roughness
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Forster, V.T.1
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8
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Measurements and Calculations of Rough-Wall Heat Transfer in the Turbulent Boundary Layer
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Hosni, M.H.1
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9
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3rd ed., McGraw-Hill, New York
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Kays, W. M., and Crawford, M. E., 1993, Convective Heat and Mass Transfer, 3rd ed., McGraw-Hill, New York.
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Convective Heat and Mass Transfer
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Kays, W.M.1
Crawford, M.E.2
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10
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84991617387
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Loss Sources and Magnitudes in Axial-Flow Compressors
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Koch, C. C., and Smith, L. H., Jr., 1976, “Loss Sources and Magnitudes in Axial-Flow Compressors,” ASME Journal of Engineering for Power, Vol. 98, pp. 411-424.
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Koch, C.C.1
Smith, L.H.2
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11
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Laws for Flow in Rough Pipes
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Series B
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Effect of Density Ratio on the Hydrodynamics of Film Cooling
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Pietrzyk, J. R., Bogard, D. G., and Crawford, M. E., 1990, “Effect of Density Ratio on the Hydrodynamics of Film Cooling,” ASME Journal of Turbomachinery, Vol. 112, pp. 437-443.
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(1990)
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Pietrzyk, J.R.1
Bogard, D.G.2
Crawford, M.E.3
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13
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Thermoscience Division, Department of Mechanical Engineering, Stanford University, Report HMT-21
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Pimenta, M. M., Moffat, R. J., and Kays, W. M., 1975, “The Turbulent Boundary Layer: An Experimental Study of the Transport of Momentum and Heat With the Effect of Roughness,” Thermoscience Division, Department of Mechanical Engineering, Stanford University, Report HMT-21.
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The Turbulent Boundary Layer: An Experimental Study of the Transport of Momentum and Heat with the Effect of Roughness
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Pimenta, M.M.1
Moffat, R.J.2
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15
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0025403502
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New Correlation of Roughness Density Effects on the Turbulent Boundary Layer
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Sigal, A.1
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Influence of the Surface Roughness on the Flow Losses in Plane Blade Cascades
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17
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0027192564
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External Heat Transfer Enhancement to Turbine Blading Due to Surface Roughness
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Tarada, F., and Suzuki, M., 1993, “External Heat Transfer Enhancement to Turbine Blading Due to Surface Roughness,” ASME Paper 93-GT-74.
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(1993)
ASME Paper 93-GT-74
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Tarada, F.1
Suzuki, M.2
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18
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0025414719
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Surface Roughness Measurements on Gas Turbine Blades
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Taylor, R. P., 1990, “Surface Roughness Measurements on Gas Turbine Blades,” ASME Journal of Turbomachinery, Vol. 112, pp. 175-180.
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(1990)
ASME Journal of Turbomachinery
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Taylor, R.P.1
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19
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0029103691
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Enhanced Heat Transfer and Shear Stress Due to High Free-Stream Turbulence
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Thole, K. A., and Bogard, D. G., 1995, “Enhanced Heat Transfer and Shear Stress Due to High Free-Stream Turbulence,” ASME Journal of Turbomachinery, Vol. 117, pp. 418-424.
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(1995)
ASME Journal of Turbomachinery
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Thole, K.A.1
Bogard, D.G.2
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20
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0001735807
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Generating High Freestream Turbulence Levels
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Thole, K. A., Bogard, D. G., and Whan-Tong, J., 1994, “Generating High Freestream Turbulence Levels,” Exper. in Fluids, Vol. 17, pp. 375-380.
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Thole, K.A.1
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