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1
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0025460721
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Local Heat Transfer in Internally Cooled Turbine Airfoil Leading Edge Regions: Part I—Impingement Cooling Without Film Coolant Extraction
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Bunker, R. S., and Metzger, D.E., 1990, “Local Heat Transfer in Internally Cooled Turbine Airfoil Leading Edge Regions: Part I—Impingement Cooling Without Film Coolant Extraction,” ASME Journal of Turbomachinery, Vol. 112, pp. 451-458.
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(1990)
ASME Journal of Turbomachinery
, vol.112
, pp. 451-458
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Bunker, R.S.1
Metzger, D.E.2
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2
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0016070385
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Experimental Investigation of Air Impingement Heat Transfer Under an Array of Round Jets
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Chance, J. L., 1974, “Experimental Investigation of Air Impingement Heat Transfer Under an Array of Round Jets,” TAPPI, Vol. 57, No. 6, pp. 108-112.
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(1974)
TAPPI
, vol.57
, Issue.6
, pp. 108-112
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Chance, J.L.1
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3
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85003365446
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Evaluation of Internal Heat Transfer Coefficients for Impingement Cooled Turbine Blades
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also AIAA Paper No. 68-564
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Chupp, R. E., Helms, H. E., McFadden, P. W., and Brown, T. R., 1969, “Evaluation of Internal Heat Transfer Coefficients for Impingement Cooled Turbine Blades,” AIAA Journal of Aircraft, Vol. 6, pp. 203-208, also AIAA Paper No. 68-564.
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(1969)
AIAA Journal of Aircraft
, vol.6
, pp. 203-208
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Chupp, R.E.1
Helms, H.E.2
McFadden, P.W.3
Brown, T.R.4
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5
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0004702911
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Rotational Effects on Impingement Cooling
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Apr. 28-May 3, Honolulu, HI
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Epstein, A. H., Kerrebrock, J. L., Koo, J. J., and Preiser, U. Z., 1985, “Rotational Effects on Impingement Cooling,” Proc. Symposium on Transport Phenomena in Rotating Machinery, Apr. 28-May 3, Honolulu, HI.
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(1985)
Proc. Symposium on Transport Phenomena in Rotating Machinery
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Epstein, A.H.1
Kerrebrock, J.L.2
Koo, J.J.3
Preiser, U.Z.4
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7
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84970871114
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Heat Transfer by a Square Array of Round Air Jets Impinging Perpendicular to a Flat Surface Including the Effect of Spent Air, ASME
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Kercher, D. M., and Tabakoff, W., 1970, “Heat Transfer by a Square Array of Round Air Jets Impinging Perpendicular to a Flat Surface Including the Effect of Spent Air,” ASME Journal of Engineering for Power, Vol. 92, pp. 73-82.
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(1970)
Journal of Engineering for Power
, vol.92
, pp. 73-82
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Kercher, D.M.1
Tabakoff, W.2
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8
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0002477246
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Describing Uncertainties in SingleSample Experiments
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Jan
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Kline, S. J., and McClintock, F. A., 1953, “Describing Uncertainties in SingleSample Experiments,” Mechanical Engineering, Vol. 75, Jan., pp. 3-8.
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(1953)
Mechanical Engineering
, vol.75
, pp. 3-8
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Kline, S.J.1
McClintock, F.A.2
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9
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0013313406
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Fundamental Studies of Impingement Cooling Thermal Boundary Conditions
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Lucas, M. L., Ireland, P. T., Wang, Z., and Jones, T. V., 1992, “Fundamental Studies of Impingement Cooling Thermal Boundary Conditions,” AGARD 80th PEP Symposium, Paper No. 14.
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(1992)
AGARD 80Th PEP Symposium, Paper No
, pp. 14
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Lucas, M.L.1
Ireland, P.T.2
Wang, Z.3
Jones, T.V.4
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10
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34548506954
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Heat and Mass Transfer Between Impinging Gas Jets and Solid Surfaces
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Harnett, J. P., and Irvine Jr., T. F., eds., Academic Press, NY
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Martin, H., 1977, “Heat and Mass Transfer Between Impinging Gas Jets and Solid Surfaces,” Advances in Heat Transfer, Harnett, J. P., and Irvine Jr., T. F., eds., Academic Press, NY, Vol. 13, pp. 1-60.
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(1977)
Advances in Heat Transfer
, vol.13
, pp. 1-60
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Martin, H.1
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11
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85024540416
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Impingement Cooling of Concave Surfaces With Lines of Circular Air Jets, ASME
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Metzger, D. E., Yamashita, T., and Jenkins, C. W., 1969, “Impingement Cooling of Concave Surfaces With Lines of Circular Air Jets,” ASME Journal of Engineering for Power, Vol. 91, No. 3, pp. 149-158.
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(1969)
Journal of Engineering for Power
, vol.91
, Issue.3
, pp. 149-158
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Metzger, D.E.1
Yamashita, T.2
Jenkins, C.W.3
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12
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0019265455
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“Design Correlations for Heat and Mass Transfer Under Various Turbulent Impinging Jet Configurations,” Drying’80
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Obot, N. T., Mujumdar, A. S., and Douglas, W. J. M., 1980, “Design Correlations for Heat and Mass Transfer Under Various Turbulent Impinging Jet Configurations,” Drying’80, Hemisphere, Vol. 1, pp. 388-402.
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(1980)
Hemisphere
, vol.1
, pp. 388-402
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Obot, N.T.1
Mujumdar, A.S.2
Douglas, W.J.M.3
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13
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0032108967
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Rotation Effect on Jet Impingement Heat Transfer in Smooth Rectangular Channels With Heated Target Walls and Radially Outward Cross Flow
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Parsons, J. A., and Han, J. C., 1998, “Rotation Effect on Jet Impingement Heat Transfer in Smooth Rectangular Channels With Heated Target Walls and Radially Outward Cross Flow,” accepted for publication in the International Journal of Heat and Mass Transfer.
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(1998)
Accepted for Publication in the International Journal of Heat and Mass Transfer
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Parsons, J.A.1
Han, J.C.2
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14
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0015281618
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Gas Turbine Blade Heat Transfer Augmentation by Impingement of Air Jets Having Various Configuration, ASME
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Tabakoff, W., and Clevenger, W., 1972, “Gas Turbine Blade Heat Transfer Augmentation by Impingement of Air Jets Having Various Configuration,” ASME Journal of Engineering for Power, Vol. 94, pp. 51-60.
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(1972)
Journal of Engineering for Power
, vol.94
, pp. 51-60
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Tabakoff, W.1
Clevenger, W.2
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15
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84925862642
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Detailed Measurements of Local Heat Transfer Coefficient and Adiabatic Wall Temperature Beneath an Array of Impinging Jets
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Van Treuren, K. W., Wang, Z., Ireland, P. T., and Jones, T. V., 1994, “Detailed Measurements of Local Heat Transfer Coefficient and Adiabatic Wall Temperature Beneath an Array of Impinging Jets,” ASME Journal of Turbomachinery, Vol. 116, pp. 369-374.
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(1994)
ASME Journal of Turbomachinery
, vol.116
, pp. 369-374
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Van Treuren, K.W.1
Wang, Z.2
Ireland, P.T.3
Jones, T.V.4
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16
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0027545215
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Heat Transfer to Impinging Isothermal Gas and Flame Jets
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Viskanta, R., 1993, “Heat Transfer to Impinging Isothermal Gas and Flame Jets,” Experimental Thermal and Fluid Science, Vol. 6, pp. 111-134.
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(1993)
Experimental Thermal and Fluid Science
, vol.6
, pp. 111-134
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Viskanta, R.1
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17
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0026187654
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Heat Transfer in Rotating Serpentine Passages With Smooth Walls
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Wagner, J. H., Johnson, B. V., and Kopper, F. C., 1991, “Heat Transfer in Rotating Serpentine Passages With Smooth Walls,” ASME Journal of Turbomachinery, Vol. 113, pp. 321-330.
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(1991)
ASME Journal of Turbomachinery
, vol.113
, pp. 321-330
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Wagner, J.H.1
Johnson, B.V.2
Kopper, F.C.3
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