DocumentCode
878066
Title
Closed-loop control in a flame and a dump combustor
Author
Gutmark, E. ; Parr, T.P. ; Wilson, K.J. ; Hanson-Parr, D.M. ; Schadow, K.C.
Author_Institution
US Naval Air Warfare Center, China Lake, CA, USA
Volume
13
Issue
2
fYear
1993
fDate
4/1/1993 12:00:00 AM
Firstpage
73
Lastpage
78
Abstract
A closed-loop control system was constructed to control the lift-off height of a premixed flame at the lean flammability limit. Control authority was obtained by forcing the initial shear layer of the fuel-air mixture, thus generating small scale vortices which improved the flame stability. An AM controller was developed using the open-loop frequency as a carrier signal. Bode and Nyquist analyses showed that the flame is stable only in a limited range due to convective time lag, related to the convection time of the vortices. The application of lead and lag compensations was studied to extend the stability margins. The control system response to changes in operating conditions was superior to that of the open-loop control operation. The same actuation technique investigated in the flame experiments is used, in conjunction with a different control strategy, for active combustion control in the dump combustor. Parameters affecting the efficiency of the various methods for active combustion control were studied. The effectiveness of the acoustic shear-layer excitation on the combustion characteristics was evaluated.<>
Keywords
closed loop systems; combustion; flames; furnaces; stability; AM controller; Bode analyses; Nyquist analyses; active combustion control; actuation technique; closed-loop control system; convection time; convective time lag; dump combustor; fuel-air mixture; lag compensations; lead compensation; lean flammability limit; lift-off height; open-loop frequency; operating conditions; premixed flame; shear layer; small scale vortices; stability margins; Combustion; Control systems; Feedback; Fires; Flammability; Frequency; Fuels; Open loop systems; Stability; Testing;
fLanguage
English
Journal_Title
Control Systems, IEEE
Publisher
ieee
ISSN
1066-033X
Type
jour
DOI
10.1109/37.206988
Filename
206988
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