Lean Blowout Research in a Generic Gas Turbine Combustor With High Optical Access
Author:
Affiliation:
1. Pratt & Whitney, East Hartford, CT 06108
2. Wright Laboratories, Wright-Patterson Air Force Base, Dayton, OH 45433
Abstract
Publisher
ASME International
Subject
Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering
Link
http://asmedigitalcollection.asme.org/gasturbinespower/article-pdf/119/1/108/5889814/108_1.pdf
Reference17 articles.
1. Bragg, S. L., 1953, “Application of Reaction Rate Theory to Combustion Chamber Analysis,” Aeronautical Research Council Pub. ARC 16170, London.
2. Heneghan, S. P., Vangsness, M. D., Ballal, D. R., Lesmerises, A. L., and Sturgess, G. J., 1990, “Acoustic Characteristics of a Research Step Combustor,” AIAA Paper No. AIAA-90-1851 (to appear in the Journal of Propulsion).
3. Jeffs, R. A., 1962, “The Flame Stability and Heat Release Rates of Some Can-Type Combustion Chambers,” Proc. Eighth Symposium (International) on Combustion, Williams and Wilkins, Baltimore, pp. 1014–1027.
4. Kretschmer D. , and OdgersJ., 1972, “Modeling of Gas Turbine Combustors—A Convenient Reaction Rate Expression,” ASME JOURNAL OF ENGINEERING FOR POWER, Vol. 94, pp. 173–180.
5. Hedman P. O. , SturgessG. J., WarrenD. L., GossL. P., and ShouseD. T., 1994, “Observations of Flame Behavior From a Practical Fuel Injector Using Gaseous Fuel in a Technology Combustor,” ASME JOURNAL OF ENGINEERING FOR GAS TURBINES AND POWER, Vol. 117, pp. 441–452.
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