Describing Function Analysis of Limit Cycles in a Multiple Flame Combustor

Author:

Boudy Frédéric1,Durox Daniel1,Schuller Thierry1,Jomaas Grunde1,Candel Sébastien1

Affiliation:

1. Laboratoire EM2C, Ecole Centrale Paris, CNRS, Grande Voie des Vignes, 92295 Châtenay-Malabry, France

Abstract

A recently developed nonlinear flame describing function (FDF) is used to analyze combustion instabilities in a system where the feeding manifold has a variable size and where the flame is confined by quartz tubes of variable length. Self-sustained combustion oscillations are observed when the geometry is changed. The regimes of oscillation are characterized at the limit cycle and also during the onset of oscillations. The theoretical predictions of the oscillation frequencies and levels are obtained using the FDF. This generalizes the concept of flame transfer function by including dependence on the frequency and level of oscillation. Predictions are compared with experimental results for two different lengths of the confinement tube. These results are, in turn, used to predict most of the experimentally observed phenomena and in particular, the correct oscillation levels and frequencies at limit cycles.

Publisher

ASME International

Subject

Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering

Reference43 articles.

1. The Explanation of Certain Acoustical Phenomena;Strutt

2. Crocco, L., and Cheng, S., 1956, “Theory of Combustion Instability in Liquid Propellant Rocket Motors,” AGARDOGRAPH No. 8, Butterworths Science Publication.

3. Culick, F. E. C. , 2001, “Dynamics of Combustion Systems: Fundamentals, Acoustics and Control,” NASA Glenn Research Center.

4. Combustion Dynamics and Control: Progress and Challenges;Candel;Proc. Combust. Inst.

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