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Phyisic-mathematic models of electric field cumulation in dissipative structures in gas discharge plasma
F. I. Vysikailo, M. I. Kuzmin, A. S. Tivkov, B. V. Chekalin, V. A. Chernov Troitsk Institute for Innovation and Fusion Research
Abstract:
In this work analytical and numerical models of the Coulomb cumulation of dynamic order parameters ($E/N$, $n_e/N$) in dissipative structures were proposed. Investigation was conducted in terms of ambipolar drift and ionization. Given model can be applied for analytical and numerical description of initial stage of cumulation processes ($E^2/8\pi\gg H^2/8\pi$) in arc discharge periphery, linear or ball lightnings, cathode spots and others spherical, conical and plane plasma dissipative structures – so called plasmoids, observed in so far “riddle” plasma structures. It was shown that in contrast to Turing's regular disspative structures (1952) non-linear profiles of dynamic order parameters in cumulative-dissipative structures (Vysikaylo Ph. I. 1996) are described not in terms of diffusion, but in terms of ambipolar drift convection processes, focusing (cumulating) electrical field energy ($E^2/8\pi$).
Received: 06.02.2006
Citation:
F. I. Vysikailo, M. I. Kuzmin, A. S. Tivkov, B. V. Chekalin, V. A. Chernov, “Phyisic-mathematic models of electric field cumulation in dissipative structures in gas discharge plasma”, Mat. Model., 18:11 (2006), 104–116
Linking options:
https://www.mathnet.ru/eng/mm125 https://www.mathnet.ru/eng/mm/v18/i11/p104
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