Measurement and Calculation of Nozzle Guide Vane End Wall Heat Transfer
Author:
Affiliation:
1. Turbine Engineering, Aerothermal Methods, Rolls-Royce plc, Derby, United Kingdom
2. Aerothermal Methods, Rolls-Royce plc, Derby, United Kingdom
3. University of Oxford, Department of Engineering Science, Derby, United Kingdom
Abstract
Publisher
ASME International
Subject
Mechanical Engineering
Link
http://asmedigitalcollection.asme.org/turbomachinery/article-pdf/121/2/184/5840887/184_1.pdf
Reference23 articles.
1. Ameri, A. A., and Steinthorsson, E., 1996, “Analysis of gas turbine rotor blade tip and shroud heat transfer,” ASME Paper No. 96-GT-189.
2. Brooks, A. J., Colbourne, D. E., Wedlake, E. T., Jones, T. V., Oldfield, M. L. G., Schultz, D. L., and Loftus, P. J., 1985, “The isentropic light piston annular cascade facility at RAE Pyestock,” AGARD CP 390, Paper 31.
3. Chana, K. S., 1992, “Heat transfer and aerodynamics of high rim speed turbine nozzle guide vane with profiled end-walls,” ASME Paper No. 92-GT-243.
4. Chew, J. W., Taylor, I. J., and Bonsell, J. J., 1996, “CFD developments for turbine blade heat transfer,” 3rd Int. Conf. Computers in Reciprocating Engines and Gas turbines, I. Mech. E. Paper No. C499-035.
5. Craft T. J. , LaunderB. E., and SugaK., 1995, “Development and Application of a Cubic Eddy-Viscosity Model of Turbulence,” Int. J. Heat and Fluid Flow, Vol. 17, pp. 108–115.
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2. AITEB — An european research project on aero-thermodynamics of turbine endwalls and blades;Journal of Thermal Science;2004-05
3. Heat transfer – a review of 1999 literature;International Journal of Heat and Mass Transfer;2001-10
4. Nonaxisymmetric Turbine End Wall Design: Part I— Three-Dimensional Linear Design System;Journal of Turbomachinery;1999-02-01
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