Total-Coverage Discrete Hole Wall Cooling
Author:
Affiliation:
1. Department of Mechanical Engineering, Yonsei University, Seoul, Korea 120-749
2. Department of Mechanical Engineering, University of Minnesota, Minneapolis, MN 55455
Abstract
Publisher
ASME International
Subject
Mechanical Engineering
Link
http://asmedigitalcollection.asme.org/turbomachinery/article-pdf/119/2/320/5507444/320_1.pdf
Reference14 articles.
1. Andrews G. E. , and MkpadiM. C., 1984, “Full-Coverage Discrete Hole Wall Cooling: Discharge Coefficients,” ASME Journal of Engineering for Gas Turbines and Power, Vol. 106, pp. 183–192.
2. Andrews, G. E., Asere, A. A., Gupta, M. L., and Mkpadi, M. C., 1985, “Full Coverage Discrete Hole Film Cooling; The Influence of Hole Size,” ASME Paper No. 85-GT-47.
3. Andrews G. E. , AlikhanizadehM., AsereA. A., HussainC. I., Khoshkbar AzariM. S., and MkpadiM. C., 1986a, “Small Diameter Film Cooling Holes: Wall Convective Heat Transfer,” ASME JOURNAL OF TURBOMACHINERY, Vol. 108, pp. 283–289.
4. Andrews, G. E., Asere, A. A., Mkpadi, M. C., and Tirmahi, A., 1986b, “Transpiration Cooling: Contribution of Film Cooling to the Overall Cooling Effectiveness,” ASME Paper No. 86-GT-136.
5. Andrews, G. E., Alikhanizadeh, M., Bazdini Tehrani, F., Hussain, C. I., and Khoshkbar Azari, M. S., 1987, “Small Diameter Film Cooling Holes: The Influence of Hole Size and Pitch,” ASME Paper No. 87-GT-28.
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