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Predicting the amplitude of limit-cycle oscillations in thermoacoustic systems with vortex shedding
Akshay T. Seshadri, Induja Pavithran,
Published in American Institute of Aeronautics and Astronautics Inc.
2018
Volume: 56
   
Issue: 9
Pages: 3507 - 3514
Abstract
Thermoacoustic instability is a plaguing problem encountered in many combustion systems. The large-amplitude acoustic oscillations, which are a noted aspect of this instability, can have a detrimental effect on the performance of the system; and they sometimes even cause lasting damage to the system components. The aim of this study is to estimate the amplitude of the limit-cycle oscillations observed during thermoacoustic instability corresponding to the axial acoustic modes using pressure measurements acquired during stable combustion. First, an equation is derived that describes the slow-varying amplitude of oscillations in certain reduced-order models of combustion systems involving vortex shedding. Subsequently, a procedure is detailed, wherein this equation is used in conjunction with the measured pressure time series and some information about the system to predict the instability amplitude. The estimation capability of this technique is then tested using acoustic pressure data obtained from laboratory-scale bluff-body and swirl-stabilized combustors. It is observed that the estimated amplitudes are in good agreement with actual values. Copyright © 2018 by the American Institute of Aeronautics and Astronautics, Inc.
About the journal
JournalData powered by TypesetAIAA Journal
PublisherData powered by TypesetAmerican Institute of Aeronautics and Astronautics Inc.
ISSN00011452
Impact Factor1.868
Open AccessNo
Citation Styleunsrt
Sherpa RoMEO Archiving PolicyGreen
Concepts (15)
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    Combustion
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    Fuel systems
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    Pressure measurement
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    Thermoacoustics
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    Vortex flow
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    Vortex shedding
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    ACOUSTIC OSCILLATION
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    ACOUSTIC PRESSURES
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    AMPLITUDE OF OSCILLATION
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    COMBUSTION SYSTEMS
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    Limit cycle oscillation (lco)
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    Reduced order models
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    Thermoacoustic instability
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    THERMOACOUSTIC SYSTEMS
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    Stability