Non-normality and nonlinearity in thermoacoustic instabilities

Author:

Sujith RI1,Juniper MP2,Schmid PJ3

Affiliation:

1. Department of Aerospace Engineering, Indian Institute of Technology Madras, Chennai, India

2. Department of Engineering, IIT Madras, Chennai, India

3. Faculty of Natural Sciences, Department of Mathematics, Imperial College London, London, UK

Abstract

Analysis of thermoacoustic instabilities were dominated by modal (eigenvalue) analysis for many decades. Recent progress in nonmodal stability analysis allows us to study the problem from a different perspective, by quantitatively describing the short-term behavior of disturbances. The short-term evolution has a bearing on subcritical transition to instability, known popularly as triggering instability in thermoacoustic parlance. We provide a review of the recent developments in the context of triggering instability. A tutorial for nonmodal stability analysis is provided. The applicability of the tools from nonmodal stability analysis are demonstrated with the help of a simple model of a Rjike tube. The article closes with a brief description of how to characterize bifurcations in thermoacoustic systems.

Publisher

SAGE Publications

Subject

General Physics and Astronomy,Automotive Engineering,Energy Engineering and Power Technology

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