| Literature DB >> 12779686 |
Visarath In1, Mark L. Spano, Joseph D. Neff, William L. Ditto, C. Stuart Daw, K. Dean Edwards, Ke Nguyen.
Abstract
The dynamics of a thermal pulse combustor model are examined. It is found that, as a parameter related to the fuel flow rate is varied, the combustor will undergo a transition from periodic pulsing to chaotic pulsing to a chaotic transient leading to flameout. Results from the numerical model are compared to those obtained from a laboratory-scale thermal pulse combustor. Finally the technique of maintenance (or anticontrol) of chaos is successfully applied to the model, with the result that the operation of the combustor can be continued well into the flameout regime. (c) 1997 American Institute of Physics.Year: 1997 PMID: 12779686 DOI: 10.1063/1.166260
Source DB: PubMed Journal: Chaos ISSN: 1054-1500 Impact factor: 3.642