Computational Prediction of Heat Transfer to Gas Turbine Nozzle Guide Vanes With Roughened Surfaces
Author:
Affiliation:
1. Department of Engineering Science, University of Oxford, Oxford, United Kingdom
2. Department of Mechanical Engineering, University of Bath, Bath, United Kingdom
3. Rolls-Royce plc, Derby, United Kingdom
Abstract
Publisher
ASME International
Subject
Mechanical Engineering
Link
http://asmedigitalcollection.asme.org/turbomachinery/article-pdf/120/2/343/5840644/343_1.pdf
Reference26 articles.
1. Blair M. F. , 1994, “An Experimental Study of Heat Transfer in a Large-Scale Turbine Rotor Passage,” ASME JOURNAL OF TURBOMACHINERY, Vol. 116, pp. 1–13.
2. Boyle R. J. , 1994, “Prediction of Surface Roughness and Incidence Effects on Turbine Performance,” ASME JOURNAL OF TURBOMACHINERY, Vol. 116, pp. 745–751.
3. Cebeci, T., and Bradshaw, P., 1977, Momentum Transfer in Boundary Layers, Hemisphere, Washington, DC.
4. Cebeci T. , and ChangK. C., 1978, “Calculation of Incompressible Rough-Wall Boundary Layer Flows,” AIAA Journal, Vol. 16, No. 7, pp. 730–735.
5. Chew, J. W., Taylor, I. J., and Bonsell, J. J., 1996, “CFD Developments for Turbine Blade Heat Transfer,” presented at the 3rd Int. Conf. Computers in Reciprocating Engines and Gas Turbines, I. Mech. E., London, UK.
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