Azimuthally-driven subharmonic thermoacoustic instabilities in a swirl-stabilised combustor
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Published version
Author(s)
Type
Journal Article
Abstract
A joint experimental and computational study of thermoacoustic instabilities in a model swirl-stabilised combustor is presented. This paper aims to deliver a better characterisation of such instabilities through the examination of measurements in conjunction with the numerical results obtained via Large Eddy Simulation (LES). The experimental configuration features a cylindrical combustion chamber where the lean premixed methane/air flame experiences self-sustained thermoacoustic oscillations. The nonlinear behaviour of the acoustically excited flame is experimentally investigated by broadband chemiluminescence and dynamic pressure measurements. In LES, the Eulerian stochastic field method is employed for the unknown turbulence/chemistry interaction of the gas-phase. Comparisons of the predicted frequency spectrum and phase-resolved flame structure with measurements are found to be in good agreement, confirming the predictive capabilities of the LES methodology. The presence of Period 2 thermoacoustic oscillations, as a consequence of period-doubling bifurcation, is also confirmed in LES. Through the application of nonlinear analysis both to the experimental and numerical acoustic fluctuations, it is highlighted that the nonlinear behaviour of combustion instabilities in the burner under investigation follows a pattern typical of Period 2 oscillations. Furthermore, the current work demonstrates a useful approach, through the use of dynamic mode decomposition (DMD), for the investigation of unstable flame modes at a specific frequency of interest. The experimental and numerical DMD reconstructions suggest that hot combustion products are convected azimuthally at a rate dictated by the subharmonic frequency.
Date Issued
2019-01-01
Date Acceptance
2018-07-22
Citation
Proceedings of the Combustion Institute, 2019, 37 (4), pp.5333-5341
ISSN
0082-0784
Publisher
Elsevier
Start Page
5333
End Page
5341
Journal / Book Title
Proceedings of the Combustion Institute
Volume
37
Issue
4
Copyright Statement
© 2018 The Authors. Published by Elsevier Inc. on behalf of The Combustion Institute. This is an open access article under the CCBY license. (http://creativecommons.org/licenses/by/4.0/)
Sponsor
Engineering & Physical Science Research Council (EPSRC)
Engineering & Physical Science Research Council (EPSRC)
Siemens Industrial Turbomachinery Ltd
Identifier
https://www.sciencedirect.com/science/article/pii/S154074891830508X
Grant Number
EP/M015300/1
EP/K026801/1
See further info
Subjects
Science & Technology
Physical Sciences
Technology
Thermodynamics
Energy & Fuels
Engineering, Chemical
Engineering, Mechanical
Engineering
Thermoacoustic oscillations
Swirl-stabilised combustor
Large Eddy Simulation (LES)
Nonlinear time-series analysis
Dynamic Mode Decomposition (DMD)
LARGE-EDDY SIMULATION
BOUNDARY-CONDITIONS
ACOUSTIC ANALYSIS
PREMIXED FLAME
OSCILLATIONS
MECHANISM
FLOW
0902 Automotive Engineering
0904 Chemical Engineering
0913 Mechanical Engineering
Publication Status
Published
Date Publish Online
2018-08-08