Effect of Unsteady Wake on Detailed Heat Transfer Coefficient and Film Effectiveness Distributions for a Gas Turbine Blade
Author:
Affiliation:
1. Turbine Heat Transfer Laboratory, Department of Mechanical Engineering, Texas A&M University, College Station, TX 77843-3123
Abstract
Publisher
ASME International
Subject
Mechanical Engineering
Link
http://asmedigitalcollection.asme.org/turbomachinery/article-pdf/120/4/808/5641762/808_1.pdf
Reference16 articles.
1. Abhari R. S. , and EpsteinA. H., 1994, “An Experimental Study of Film Cooling in a Rotating Transonic Turbine,” ASME JOURNAL OF TURBOMACHINERY, Vol. 116, pp. 63–70.
2. Camci C. , and ArtsT., 1990, “An Experimental Convective Heat Transfer Investigation Around a Film-Cooled Gas Turbine Blade,” ASME JOURNAL OF TURBOMACHINERY, Vol. 112, pp. 497–503.
3. Du H. , EkkadS. V., and HanJ. C., 1997a, “Effect of Unsteady Wake With Trailing Edge Coolant Ejection on Detailed Heat Transfer Coefficient Distributions for a Gas Turbine Blade,” ASME Journal of Heat Transfer, Vol. 119, pp. 242–248.
4. Du, H., Han, J. C., and Ekkad, S. V., 1997b, “Detailed Film Cooling Measurements Over a Gas Turbine Blade Using a Transient Liquid Crystal Image Technique,” ASME HTD-Vol. 350, pp. 245–254.
5. Ekkad S. V. , ZapataD., and HanJ. C., 1997a, “Heat Transfer Coefficients Over a Flat Surface With Air and CO2 Injection Through Compound Angle Holes Using a Transient Liquid Crystal Image Method,” ASME JOURNAL OF TURBOMACHINERY, Vol. 119, pp. 580–586.
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