Characterization of Oscillations During Premix Gas Turbine Combustion
- 1 April 1998
- journal article
- Published by ASME International in Journal of Engineering for Gas Turbines and Power
- Vol. 120 (2) , 294-302
- https://doi.org/10.1115/1.2818120
Abstract
The use of premix combustion in stationary gas turbines can produce very low levels of Nox emissions. This benefit is widely recognized, but turbine developers routinely encounter problems with combustion oscillations during the testing of new premix combustors. Because of the associated pressure fluctuations, combustion oscillations must be eliminated in a final combustor design. Eliminating these oscillations is often time-consuming and costly because there is no single approach to solve an oscillation problem. Previous investigations of combustion stability have focused on rocket applications, industrial furnaces, and some aeroengine gas turbines. Comparatively little published data is available for premixed combustion at conditions typical of an industrial gas turbine. In this paper, we report experimental observations of oscillations produced by a fuel nozzle typical of industrial gas turbines. Tests are conducted in a specially designed combustor capable of providing the acoustic feedback needed to study oscillations. Tests results are presented for pressure up to 10 atmospheres, with inlet air temperatures up to 588 K (600 F) burning natural gas fuel. Based on theoretical considerations, it is expected that oscillations can be characterized by a nozzle reference velocity, with operating pressure playing a smaller role. This expectation is compared to observed data that shows both the benefits and limitations of characterizing the combustor oscillating behavior in terms of a reference velocity rather than other engine operating parameters. This approach to characterizing oscillations is then used to evaluate how geometric changes to the fuel nozzle will affect the boundary between stable and oscillating combustion.Keywords
This publication has 19 references indexed in Scilit:
- Effects of ambient conditions and fuel composition on combustion stabilityPublished by Office of Scientific and Technical Information (OSTI) ,1997
- Thermoacoustic oscillations in combustion chambers of gas turbinesAIAA Journal, 1995
- Development of a Swirl and Bluff-Body Stabilized Burner for Low-NOx, Lean-Premixed CombustionPublished by ASME International ,1995
- Achieving Improved Cycle Efficiency via Pressure Gain CombustorsPublished by ASME International ,1995
- Combustion instabilities coupled by pressure waves and their active controlSymposium (International) on Combustion, 1992
- Fuel effects on gas turbine combustor dynamicsPublished by American Institute of Aeronautics and Astronautics (AIAA) ,1990
- Pulse combustion: The quantification of characteristic timesCombustion and Flame, 1990
- Measu rements of the Combusting Flow in a Pulse CombustorCombustion Science and Technology, 1987
- Correlations between light emission, acoustic emission and ion density in premixed turbulent flamesSymposium (International) on Combustion, 1981
- Stand-off distances on a flat flame burnerCombustion and Flame, 1979