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    Enhancement of the transition to detonation of a turbulent hydrogen–air flame by nanosecond repetitively pulsed plasma discharges

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    PADDT-2018vFINAL.PDF
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    Type
    Article
    Authors
    Gray, Joshua A.T. cc
    Lacoste, Deanna cc
    KAUST Department
    Clean Combustion Research Center
    Mechanical Engineering Program
    Physical Science and Engineering (PSE) Division
    KAUST Grant Number
    1975
    Date
    2018-11-02
    Online Publication Date
    2018-11-02
    Print Publication Date
    2019-01
    Permanent link to this record
    http://hdl.handle.net/10754/629608
    
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    Abstract
    This work provides proof of concept for the use of nanosecond repetitively pulsed (NRP) plasma discharges to accelerate a propagating turbulent flame, resulting in enhanced deflagration-to-detonation transition and significant reduction in run-up length. The investigations are conducted on a stoichiometric hydrogen-air mixture at near ambient conditions. The effect of plasma actuation on the flame velocity is investigated using time-of-flight measurements of the propagating flame and detonation wave. The flame velocity shortly after the application of the NRP plasma discharges is more than double that obtained in cases in which no plasma is applied. High-speed imaging of OH* chemiluminescence in the electrode area confirms this result and provides insight about the mechanisms of plasma action. While the volumetric energy deposited during plasma actuation is sufficiently low as to not ignite the combustible mixture prior the arrival of the flame, the chemical and thermal enhancement of the gas is efficient enough to significantly accelerate the transition to detonation. The decrease in the run-up length to transition to detonation is obtained for a plasma power of less than 0.14% of the thermal power of the flame. This result indicates that low-energy active devices using NRP discharges might be suitable for replacing passive devices such as orifice plates or Shchelkin spirals.
    Citation
    Gray JAT, Lacoste DA (2019) Enhancement of the transition to detonation of a turbulent hydrogen–air flame by nanosecond repetitively pulsed plasma discharges. Combustion and Flame 199: 258–266. Available: http://dx.doi.org/10.1016/j.combustflame.2018.10.023.
    Sponsors
    This work is funded by the Center of Competitive Funding from King Abdullah University of Science and Technology (Grant Number 1975).
    Publisher
    Elsevier BV
    Journal
    Combustion and Flame
    DOI
    10.1016/j.combustflame.2018.10.023
    Additional Links
    https://www.sciencedirect.com/science/article/pii/S0010218018304504
    ae974a485f413a2113503eed53cd6c53
    10.1016/j.combustflame.2018.10.023
    Scopus Count
    Collections
    Articles; Physical Science and Engineering (PSE) Division; Mechanical Engineering Program; Clean Combustion Research Center

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