The combustion reaction taking place under the typical operating conditions of lean premixed combustors was studied by mans of the bifurcation theory. The combustion zone was modeled as perfectly mixed and without coupling with acoustic. Theoretical stability amps were built as a function of the most important operating parameters (heat transfer coefficient, equivalence ratio, and residence time). Self-sustained oscillations were found to occur near blowout at lean conditions in which reaction rate is strongly sensitive to both temperature and fuel concentration. The nature of the arising dynamic regimes is related to thermal effects and, in particular, to the coupling between heat produced by reaction and heat losses.

Spontaneous oscillations in lean premixed combustion

Di Benedetto A;Marra F S;Russo G
2002

Abstract

The combustion reaction taking place under the typical operating conditions of lean premixed combustors was studied by mans of the bifurcation theory. The combustion zone was modeled as perfectly mixed and without coupling with acoustic. Theoretical stability amps were built as a function of the most important operating parameters (heat transfer coefficient, equivalence ratio, and residence time). Self-sustained oscillations were found to occur near blowout at lean conditions in which reaction rate is strongly sensitive to both temperature and fuel concentration. The nature of the arising dynamic regimes is related to thermal effects and, in particular, to the coupling between heat produced by reaction and heat losses.
2002
Istituto di Ricerche sulla Combustione - IRC - Sede Napoli
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/243881
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