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    Measurement of Flame Frequency Response Functions Under Exhaust Gas Recirculation Conditions

    Source: Journal of Engineering for Gas Turbines and Power:;2012:;volume( 134 ):;issue: 009::page 91502
    Author:
    Joseph Ranalli
    ,
    Don Ferguson
    DOI: 10.1115/1.4006877
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: Exhaust gas recirculation has been proposed as a potential strategy for reducing the cost and efficiency penalty associated with postcombustion carbon capture. However, this approach may cause as-yet unresolved effects on the combustion process, including additional potential for the occurrence of thermoacoustic instabilities. Flame dynamics, characterized by the flame transfer function, were measured in traditional swirl stabilized and low-swirl injector combustor configurations, subject to exhaust gas circulation simulated by N2 and CO2 dilution. The flame transfer functions exhibited behavior consistent with a low-pass filter and showed phase dominated by delay. Flame transfer function frequencies were nondimensionalized using Strouhal number to highlight the convective nature of this delay. Dilution was observed to influence the dynamics primarily through its role in changing the size of the flame, indicating that it plays a similar role in determining the dynamics as changes in the equivalence ratio. Notchlike features in the flame transfer function were shown to be related to interference behaviors associated with the convective nature of the flame response. Some similarities between the two stabilization configurations proved limiting and generalization of the physical behaviors will require additional investigation.
    keyword(s): Transfer functions , Flames , Flow (Dynamics) , Exhaust gas recirculation AND Ejectors ,
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      Measurement of Flame Frequency Response Functions Under Exhaust Gas Recirculation Conditions

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    https://yetl.yabesh.ir/yetl1/handle/yetl/148747
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    • Journal of Engineering for Gas Turbines and Power

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    contributor authorJoseph Ranalli
    contributor authorDon Ferguson
    date accessioned2017-05-09T00:50:01Z
    date available2017-05-09T00:50:01Z
    date copyrightSeptember, 2012
    date issued2012
    identifier issn1528-8919
    identifier otherJETPEZ-926031#091502_1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/148747
    description abstractExhaust gas recirculation has been proposed as a potential strategy for reducing the cost and efficiency penalty associated with postcombustion carbon capture. However, this approach may cause as-yet unresolved effects on the combustion process, including additional potential for the occurrence of thermoacoustic instabilities. Flame dynamics, characterized by the flame transfer function, were measured in traditional swirl stabilized and low-swirl injector combustor configurations, subject to exhaust gas circulation simulated by N2 and CO2 dilution. The flame transfer functions exhibited behavior consistent with a low-pass filter and showed phase dominated by delay. Flame transfer function frequencies were nondimensionalized using Strouhal number to highlight the convective nature of this delay. Dilution was observed to influence the dynamics primarily through its role in changing the size of the flame, indicating that it plays a similar role in determining the dynamics as changes in the equivalence ratio. Notchlike features in the flame transfer function were shown to be related to interference behaviors associated with the convective nature of the flame response. Some similarities between the two stabilization configurations proved limiting and generalization of the physical behaviors will require additional investigation.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleMeasurement of Flame Frequency Response Functions Under Exhaust Gas Recirculation Conditions
    typeJournal Paper
    journal volume134
    journal issue9
    journal titleJournal of Engineering for Gas Turbines and Power
    identifier doi10.1115/1.4006877
    journal fristpage91502
    identifier eissn0742-4795
    keywordsTransfer functions
    keywordsFlames
    keywordsFlow (Dynamics)
    keywordsExhaust gas recirculation AND Ejectors
    treeJournal of Engineering for Gas Turbines and Power:;2012:;volume( 134 ):;issue: 009
    contenttypeFulltext
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