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Investigation of Subsonic-Supersonic Hybrid-Stabilized Argon-Water Electric Arc With Inhomogeneous Mixing of Plasma Species: Role of Turbulence and Radiative Transfer Method

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    0383173 - ÚFP 2013 RIV JP eng O - Others
    Jeništa, Jiří - Takana, H. - Nishiyama, H. - Hrabovský, Milan - Kavka, Tetyana
    Investigation of Subsonic-Supersonic Hybrid-Stabilized Argon-Water Electric Arc With Inhomogeneous Mixing of Plasma Species: Role of Turbulence and Radiative Transfer Method.
    2012. Proceedings of the twelfth international symposium on advanced fluid information and transdisciplinary fluid integration AFI/TFI 2012. Sendai: Tohoku University, 2012. s. 68-69. ISSN 1344-2236
    R&D Projects: GA ČR GAP205/11/2070
    Institutional research plan: CEZ:AV0Z20430508
    Keywords : hybrid-stabilized electric arc * large eddy simulation * mass flow rate * net emission coefficient * partial characteristics
    Subject RIV: BL - Plasma and Gas Discharge Physics
    http://www.ifs.tohoku.ac.jp/afi-tfi-2012/

    The paper presents numerical simulations of the discharge and near outlet regions of the hybrid-stabilized argon-water electric arc. Calculations have been carried out for two radiative transfer methods and for the assumption of laminar and turbulent plasma flow regimes respectively. Results of calculations for currents 300-600 A show that the influence of turbulence is relatively weak and the maximum difference for all the monitored physical quantities is less than 10 %. Comparison with available experimental temperature profiles at the nozzle exit shows good agreement.
    Permanent Link: http://hdl.handle.net/11104/0213196

     
     
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