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1
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0030450857
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The Effect of High Free-Stream Turbulence on Film Cooling Effectiveness
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Boris, J. P., MacArthur, C. D„ and Rivir, R. B., 1996, “The Effect of High Free-Stream Turbulence on Film Cooling Effectiveness,” ASME Journal of Turbomachinery, Vol. 118, pp. 814-825.
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(1996)
ASME Journal of Turbomachinery
, vol.118
, pp. 814-825
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Boris, J.P.1
Macarthur, C.D.2
Rivir, R.B.3
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2
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5244344113
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Flat Plate Film Cooling and Heat Transfer Using a Transient Liquid Crystal Technique
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Maui, HI, Mar
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Ekkad, S. V., and Han, J. C., 1995, “Flat Plate Film Cooling and Heat Transfer Using a Transient Liquid Crystal Technique,” presented at the 4th ASME/JSME Thermal Engineering Joint Conference, Maui, HI, Mar.
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(1995)
Presented at the 4Th ASME/JSME Thermal Engineering Joint Conference
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Ekkad, S.V.1
Han, J.C.2
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3
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0031190345
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Heat Transfer Coefficients Over a Flat Surface With Air and C02 Injection Through Compound Angle Holes Using a Transient Liquid Crystal Image Method
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this issue
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2 Injection Through Compound Angle Holes Using a Transient Liquid Crystal Image Method,” ASME Journal of Turbomachinery, Vol. 119, this issue, pp. 580-586.
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(1997)
ASME Journal of Turbomachinery
, vol.119
, pp. 580-586
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Ekkad, S.V.1
Zapata, D.2
Han, J.C.3
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4
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0019040499
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The Flow and Film Cooling Effectiveness Following Injection Through a Row of Holes, ASME
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Foster, N. W., and Lampard, D., 1980, “The Flow and Film Cooling Effectiveness Following Injection Through a Row of Holes,” ASME Journal of Engineering for Power, Vol. 102, pp. 584-588.
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(1980)
Journal of Engineering for Power
, vol.102
, pp. 584-588
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Foster, N.W.1
Lampard, D.2
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5
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0020129266
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The Influence of Laminar Boundary Layer and Laminar Injection on Film Cooling Performance, ASME
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Goldstein, R. J., and Yoshida, T., 1982, “The Influence of Laminar Boundary Layer and Laminar Injection on Film Cooling Performance,” ASME Journal of Heat Transfer, Vol. 104, pp. 355-362.
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(1982)
Journal of Heat Transfer
, vol.104
, pp. 355-362
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Goldstein, R.J.1
Yoshida, T.2
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6
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4243130382
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Flat-Plate Film Cooling With Steam Injection Through One Row and Two Rows of Inclined Holes
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Han, J. C., and Mehendale, A. B., 1986, “Flat-Plate Film Cooling With Steam Injection Through One Row and Two Rows of Inclined Holes,” ASME Journal of Turbomachinery, Vol. 108, pp. 137-144.
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(1986)
ASME Journal of Turbomachinery
, vol.108
, pp. 137-144
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Han, J.C.1
Mehendale, A.B.2
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7
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0023427443
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The Response Time of a Surface Thermometer Employing Encapsulated Thermochromic Liquid Crystals
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Ireland, P. T., and Jones, T. V., 1987, “The Response Time of a Surface Thermometer Employing Encapsulated Thermochromic Liquid Crystals,” Journal of Physics E, Vol. 20, pp. 1195-1199.
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(1987)
Journal of Physics E
, vol.20
, pp. 1195-1199
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Ireland, P.T.1
Jones, T.V.2
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8
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0026190383
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Film Cooling Effectiveness in High-Turbulence Flow
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Jumper, G. W., Elrod, W. C., and Rivir, R. B., 1991, “Film Cooling Effectiveness in High-Turbulence Flow,” ASME Journal of Turbomachinery, Vol. 113, pp. 479-483.
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(1991)
ASME Journal of Turbomachinery
, vol.113
, pp. 479-483
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Jumper, G.W.1
Elrod, W.C.2
Rivir, R.B.3
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9
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0018496156
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On the Nature of Jets Entering a Turbulent Flow Part A—Jet Mainstream Interaction, ASME
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Kadotani, K., and Goldstein, R. J., 1979a, “On the Nature of Jets Entering a Turbulent Flow Part A—Jet Mainstream Interaction,” ASME Journal of Engineering for Power, Vol. 101, pp. 459-465.
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(1979)
Journal of Engineering for Power
, vol.101
, pp. 459-465
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Kadotani, K.1
Goldstein, R.J.2
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10
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0018495441
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On the Nature of Jets Entering a Turbulent Flow, Part B—Film Cooling Performance, ASME
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Kadotani, K., and Goldstein, R. J., 1979b, “On the Nature of Jets Entering a Turbulent Flow, Part B—Film Cooling Performance,” ASME Journal of Engineering for Power, Vol. 101, pp. 466-470.
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(1979)
Journal of Engineering for Power
, vol.101
, pp. 466-470
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Kadotani, K.1
Goldstein, R.J.2
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11
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0028019916
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A Summary of the Cooled Turbine Blade Tip Heat Transfer and Film Effectiveness Investigations Performed by Dr. D. E. Metzger
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Kim, Y. W.Abdel-Messeh, W., Downs, J. P., Soechting, F. O., Steuber, G. D., and Tanrikut, S., 1995, “A Summary of the Cooled Turbine Blade Tip Heat Transfer and Film Effectiveness Investigations Performed by Dr. D. E. Metzger,” ASME Journal of Turbomachinery, Vol. 117, pp. 1-11.
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(1995)
ASME Journal of Turbomachinery
, vol.117
, pp. 1-11
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Kim Abdel-Messeh, Y.W.W.1
Downs, J.P.2
Soechting, F.O.3
Steuber, G.D.4
Tanrikut, S.5
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12
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0002477246
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Describing Uncertainties in Single Sample Experiments
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Kline, S J„ and McClintock, F. A., 1953, “Describing Uncertainties in Single Sample Experiments,” Mechanical Engineering, Vol. 75, 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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13
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21144462846
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Heat Transfer, Adiabatic Effectiveness, and Injectant Distributions Downstream of a Single Row and Two Staggered Rows of Compound Angle Film-Cooled Holes
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Ligrani, P. M., Ciriello, S., and Bishop, D. T, 1992, “Heat Transfer, Adiabatic Effectiveness, and Injectant Distributions Downstream of a Single Row and Two Staggered Rows of Compound Angle Film-Cooled Holes,” ASME Journal of Turbomachinery, Vol. 114, pp. 687-700.
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(1992)
ASME Journal of Turbomachinery
, vol.114
, pp. 687-700
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Ligrani, P.M.1
Ciriello, S.2
Bishop, D.T.3
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14
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0028428047
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Film-Cooling From Holes With Compound Angle Orientations: Part 1 —Results Downstream of Two Staggered Rows of Holes With 3d Spanwise Spacing, ASME
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Ligrani, P.M., Wigle, J.M., Ciriello, S., and Jackson, S.W., 1994a, “Film-Cooling From Holes With Compound Angle Orientations: Part 1 —Results Downstream of Two Staggered Rows of Holes With 3d Spanwise Spacing,” ASME Journal of Heat Transfer, Vol. 116, pp. 341-352.
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(1994)
Journal of Heat Transfer
, vol.116
, pp. 341-352
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Ligrani, P.M.1
Wigle, J.M.2
Ciriello, S.3
Jackson, S.W.4
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15
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0028424911
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Film-Cooling From Holes With Compound Angle Orientations: Part 2—Results Downstream of a Single Row of Holes With 6d Spanwise Spacing, ASME
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Ligrani, P. M., Wigle, J. M., and Jackson, S. W., 1994b, “Film-Cooling From Holes With Compound Angle Orientations: Part 2—Results Downstream of a Single Row of Holes With 6d Spanwise Spacing,” ASME Journal of Heat Transfer, Vol. 116, pp. 353-362.
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(1994)
Journal of Heat Transfer
, vol.116
, pp. 353-362
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Ligrani, P.M.1
Wigle, J.M.2
Jackson, S.W.3
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16
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0028038556
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Unsteady Wake Over a Linear Turbine Blade Cascade With Air and C02 Film Injection: Part II— Effect on Film Effectiveness and Heat Transfer Distributions
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2 Film Injection: Part II— Effect on Film Effectiveness and Heat Transfer Distributions,” ASME Journal of Turbomachinery, Vol. 116, pp. 730-737.
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(1994)
ASME Journal of Turbomachinery
, vol.116
, pp. 730-737
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Mehendale, A.B.1
Han, J.C.2
Ou, S.3
Lee, C.P.4
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17
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84925851114
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Unsteady Wake Over a Linear Turbine Blade Cascade With Air and C02 Film Injection: Part I— Effect on Heat Transfer Coefficients
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2 Film Injection: Part I— Effect on Heat Transfer Coefficients,” ASME Journal of Turbomachinery, Vol. 116, pp. 721-729.
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(1994)
ASME Journal of Turbomachinery
, vol.116
, pp. 721-729
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Ou, S.1
Han, J.C.2
Mehendale, A.B.3
Lee, C.P.4
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18
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0017552828
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Film Cooling With Large Density Differences Between the Mainstream and the Secondary Fluid Measured by the Heat-Mass Transfer Analogy, ASME
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Pedersen, D. R., Eckert, E. R. G., and Goldstein, R. J., 1977, “Film Cooling With Large Density Differences Between the Mainstream and the Secondary Fluid Measured by the Heat-Mass Transfer Analogy,” ASME Journal of Heat Transfer, Vol. 99, pp. 620-627.
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(1977)
Journal of Heat Transfer
, vol.99
, pp. 620-627
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Pedersen, D.R.1
Eckert, E.R.G.2
Goldstein, R.J.3
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19
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0030446933
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Film Cooling With Compound Angle Holes: Adiabatic Effectiveness
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Schmidt, D. L., Sen, B., and Bogard, D. G., 1996, “Film Cooling With Compound Angle Holes: Adiabatic Effectiveness,” ASME Journal of Turbomachinery, Vol. 118, pp. 807-813.
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(1996)
ASME Journal of Turbomachinery
, vol.118
, pp. 807-813
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Schmidt, D.L.1
Sen, B.2
Bogard, D.G.3
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20
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0026188801
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Film Cooling Effectiveness Downstream of a Single Row of Holes With Variable Density Ratio
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Sinha, A. K., Bogard, D. G., and Crawford, M. E., 1991, “Film Cooling Effectiveness Downstream of a Single Row of Holes With Variable Density Ratio,” ASME Journal of Turbomachinery, Vol. 113, pp. 442-449.
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(1991)
ASME Journal of Turbomachinery
, vol.113
, pp. 442-449
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Sinha, A.K.1
Bogard, D.G.2
Crawford, M.E.3
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21
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0025725134
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A Method for the Simultaneous Determination of Local Effectiveness and Heat Transfer Distributions in Three-Temperature Convection Situations
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Vedula, R. J., and Metzger, D. E., 1991, “A Method for the Simultaneous Determination of Local Effectiveness and Heat Transfer Distributions in Three-Temperature Convection Situations,” ASME Paper No. 91-GT-345
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(1991)
ASME Paper No. 91-GT-345
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Vedula, R.J.1
Metzger, D.E.2
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