The Transient Liquid Crystal Technique: Influence of Surface Curvature and Finite Wall Thickness
Author:
Affiliation:
1. Laboratoire de Thermique Applique´e et de Turbomachine (LTT), Swiss Federal Institute of Technology, CH-1015 Lausanne, Switzerland
2. Institute of Aerospace Thermodynamics (ITLR), University of Stuttgart, D-70569 Stuttgart, Germany
Abstract
Publisher
ASME International
Subject
Mechanical Engineering
Link
http://asmedigitalcollection.asme.org/turbomachinery/article-pdf/127/1/175/5843367/175_1.pdf
Reference20 articles.
1. Clifford, R. J., Jones, T. V., and Dunne, S. T., 1983, “Techniques for Obtaining Detailed Heat Transfer Coefficient Measurements Within Gas Turbine Blade and Vane Cooling Passages,” ASME Paper No. 83-GT-58.
2. Guo, S. M., Spencer, M. C., Lock, G. D., Jones, T. V., and Harvey, N. W., 1995, “The Application of Thin Film Gauges on Flexible Plastic Substrates to the Gas Turbine Situation,” ASME Paper No. 95-GT-357.
3. Drost, U., and Bo¨lcs, A., 1998, “Investigation of Detailed Film Cooling Effectiveness and Heat Transfer Distributions on a Gas Turbine Airfoil,” ASME Paper No. 98-GT-20.
4. Ireland, P. T., and Jones, T. V., 1985, “The Measurements of Local Heat Transfer Coefficients in Blade Cooling Geometries,” Heat Transfer and Cooling in Gas Turbines, Propulsion and Energetics Panel 65th Symposium, CP 390 Paper No. 28, Bergen.
5. Schultz, D. L., and Jones, T. V., 1973, “Heat Transfer Measurements in Short Duration Hypersonic Facilities,” NATO Advisory Group Aeronautical RD AGARDOGRAPH 165.
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