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Handbook of Turbomachinery Second Edition Revised - Ventech!

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122. K. Takeishi, S. Aoki, T. Sato and K. Tsukagoshi, ‘‘Film Cooling on a Gas<br />

Turbine Rotor Blade,’’ ASME Paper 91-GT-279 (1991).<br />

123. L. Zhang and M. Fox, ‘‘Flat Plate Film Cooling Measurement Using PSP and<br />

Gas Chromatography Techniques,’’ 5th ASME/JSME Joint Thermal Engineering<br />

Conference, San Diego, CA (1999).<br />

124. L. Zhang and R. Pudupatty, ‘‘Turbine Nozzle Leading Edge Film Cooling<br />

Study in a High Speed Wind Tunnel,’’ 33rd National Heat Transfer<br />

Conference, Albuquerque, NM (1999).<br />

125. L. Zhang and B. Glezer, ‘‘Indirect Turbulence Measurement in Gas Turbine<br />

Stages Using Heat Flux Probe,’’ ASME Paper 95-GT-153 (1995).<br />

126. S. A. Hippensteele, L. M. Russell and F. J. Torres, ‘‘Use <strong>of</strong> a Liquid-Crystal,<br />

Heater-Element Composite for Quantitative, High-Resolution Heat Transfer<br />

Coefficients on a Turbine Airfoil, Including Turbulence and Surface Roughness<br />

Effects,’’ NASA TM-87355 (1984).<br />

127. H. K. Moon and B. Glezer, ‘‘Application <strong>of</strong> Advanced Experimental<br />

Techniques in the Development <strong>of</strong> a Cooled Turbine Nozzle,’’ ASME Paper<br />

96-GT-233 (1996).<br />

128. D. D. Metzger and D. E. Larson, ‘‘Use <strong>of</strong> Melting Point Surface Coating for<br />

Local Convection Heat Transfer Measurements in Rectangular Channels with<br />

90-Degree Turns,’’ J. <strong>of</strong> Heat Transfer, Trans. ASME, 1098: 48–54 (1986).<br />

129. Z. Wang, P. T. Ireland and T. V. Jones, ‘‘A Color Image Processing System<br />

for Transient Liquid Crystal Heat Transfer Experiments,’’ ASME Paper 94-<br />

GT-290 (1994).<br />

130. L. A. Dorfman, Hydrodynamic Resistance and Heat Transfer <strong>of</strong> Rotating<br />

Solids, English trans., Oliver & Boyd, Edinburgh, London (1963).<br />

131. B. Glezer, ‘‘Investigation <strong>of</strong> the Flow Between Rotating Disc and Stator,’’<br />

Energetica, 3, University Press, Moscow (1969).<br />

132. U. P. Phadke and J. M. Owen, ‘‘An Investigation <strong>of</strong> an Air-Cooled Shrouded<br />

Rotating Disc System with Radial-Clearance Seals,’’ ASME Paper 82-GT-145<br />

(1982).<br />

133. D. E. Metzger, R. S. Bunker and G. Bosch, ‘‘Transient Liquid Crystal<br />

Measurement <strong>of</strong> Local Heat Transfer on a Rotating Disc with Impingement,’’<br />

ASME Paper 89-GT-287 (1989).<br />

134. C. Camci, B. Glezer, J. M. Owen, R. G. Pilbrow and B. J. Syson, ‘‘Application<br />

<strong>of</strong> Theremochromic Liquid Crystal to Rotating Surfaces,’’ ASME Paper 96-<br />

GT-138 (1996).<br />

135. D. Bohn, B. Rudzinski and N. Surken, ‘‘Experimental and Numerical<br />

Investigation <strong>of</strong> the Influence <strong>of</strong> Rotor Blades on Hot Gas Ingestion into the<br />

Upstream Cavity <strong>of</strong> an Axial Turbine Stage,’’ ASME Paper 2000-GT-284<br />

(2000).<br />

136. R. J. M<strong>of</strong>fat, ‘‘Describing the Uncertainties in Experimental Results,’’<br />

Experimental Thermal and Fluid Science, 1(1): 3–17.<br />

137. S. Goel, J. C<strong>of</strong>er and H. Singn, ‘‘Turbine Airfoil Design Optimization,’’<br />

ASME Paper 96-GT-158 (1996).<br />

Copyright © 2003 Marcel Dekker, Inc.

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