Experimental Measurements and Modeling of the Effects of Large-Scale Freestream Turbulence on Heat Transfer
Author:
Affiliation:
1. Department of Mechanical and Aerospace Engineering, West Virginia University, Morgantown, WV 26506-6106
2. Fellow ASME
3. Department of Mechanical Engineering, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061
Abstract
Publisher
ASME International
Subject
Mechanical Engineering
Link
http://asmedigitalcollection.asme.org/turbomachinery/article-pdf/129/3/542/5729397/542_1.pdf
Reference27 articles.
1. Van Fossen, G. J., and Bunker, R. S., 2002, “Augmentation of Stagnation Region Heat Transfer Due to Turbulence From an Advanced Dual-Annular Combustor,” Paper No. ASME GT-2002-30184.
2. Radomsky, R. W., and Thole, K. A., 1998, “Effects of High Freestream Turbulence Levels and Length Scales on Stator Vane Heat Transfer,” Paper No. ASME 98-GT-236.
3. Flowfield Measurements for a Highly Turbulent Flow in a Stator Vane Passage;Radomsky;ASME J. Turbomach.
4. Influence of Free-Stream Turbulence on Turbulence Boundary Layer Heat Transfer and Mean Profile Development, Parts I and II;Blair;ASME J. Heat Transfer
5. Maciejewski, P. K., and Moffat, R. J., 1989, “Heat Transfer with Very High Free Stream Turbulence,” Stanford University Report No. HMT-42, Stanford University, Stanford, CA.
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