A parametric acoustic instability in premixed flames

Author:

Searby G.,Rochwerger D.

Abstract

We present an experimental and theoretical investigation of some aspects of the coupling between a premixed laminar quasi-planar flame front and acoustic standing waves in tubes. A multidimensional instability of the front arises from its interaction with the oscillating field of acceleration. This instability can be described by the Clavin–Williams laminar wrinkled flame theory in which the periodic acceleration created by the acoustic field is added to the acceleration due to gravity. As first suggested by Markstein, the resulting equation can be reduced to the Mathieu equation for a parametric oscillator. A cellular instability appears with a finite excitation threshold. This instability is responsible for the spontaneous generation of intense acoustic oscillations observed elsewhere. The value of the acoustic field at the threshold of instability and the wavelength of the cellular structures are measured experimentally for propane flames and are found to be in good agreement with the calculated values. It is also seen, both experimentally and theoretically, that for certain amplitudes of pumping, the parametric mechanism can also stabilize an initially unstable system.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference23 articles.

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2. Searby, G. & Clavin, P. 1986 Weakly turbulent wrinkled flames in premixed gases.Combust. Sci. Tech. 46,167–193

3. Dunlap, R. A. 1950 Resonance of flames in a parallel-walled combustion chamber. Rep. UMN–43 .Aeronautical Research Center. University of Michigan, Project MX833.

4. Rayleigh, Lord 1878 Nature 18,319.

5. Darrieus, G. 1938 Propagation d'un front de flamme. Unpublished work presented at La Technique Moderns (1938), and at Le Congrès de Mécanique Appliquée (1945).

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