Modal Decomposition Analysis of Combustion Instability Due to External Perturbation in a Mesoscale Burner Array

Author:

Choi Jeongan1,Rajasegar Rajavasanth1,Liu Qili1,Lee Tonghun1,Yoo Jihyung2

Affiliation:

1. Department of Mechanical Science and Engineering, University of Illinois at Urbana-Champaign , Urbana, IL 61801

2. Department of Automotive Engineering, Hanyang University , Seoul 04763, South Korea

Abstract

Abstract In this work, the growth regime of combustion instability was studied by analyzing 10 kHz OH planar laser-induced fluorescence (PLIF) images through a combination of dynamic mode decomposition (DMD) and spectral proper orthogonal decomposition (SPOD) methods. Combustion instabilities were induced in a mesoscale burner array through an external speaker at an imposed perturbation frequency of 210 Hz. During the transient growth phase of combustion instability, 10 kHz OH PLIF imaging was employed to capture spatially and temporally resolved flame dynamics. Increased acoustic perturbations prevented flame reignition in the central recirculation zone and eventually led to the flame being extinguished inward from the outer burner array elements. Coherent modes and their growth rates were obtained from DMD spectral analyses of high-speed OH PLIF images. Positive growth rates were observed at the forcing frequency during the growth regime. Coherent structures, closely associated with thermoacoustic instability, were extracted using an appropriate SPOD filter operation to identify mode structures that correlate to physical phenomena such as shear layer instability and flame response to longitudinal acoustic forcing. Overall, a combination of DMD and SPOD was shown to be effective at analyzing the onset and propagation of combustion instabilities, particularly under transient burner operations.

Funder

Office of Naval Research

Publisher

ASME International

Subject

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

Reference46 articles.

1. Experimental Diagnostics for the Study of Combustion Instabilities in Lean Premixed Combustors;J. Propul. Power,2003

2. Cinematographic OH-PLIF Measurements of Two Interacting Turbulent Premixed Flames With and Without Acoustic Forcing;Combust. Flame,2012

3. Structural Sensitivity, Response, and Extinction of Diffusion and Premixed Flames in Oscillating Counterflow;Combust. Flame,2000

4. Blowoff Characteristics of Bluff-Body Stabilized Conical Premixed Flames Under Upstream Velocity Modulation;Combust. Flame,2006

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