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This article is cited in 22 scientific papers (total in 22 papers)
Numerical models of steady-state and pulsating flows of self-ionizing gas in plasma accelerator channels
K. V. Brushlinskii, A. N. Kozlov, V. S. Konovalov Keldysh Institute of Applied Mathematics, Russian Academy of Sciences, Miusskaya pl. 4, Moscow, 125047, Russia
Abstract:
This paper continues the series of numerical investigations of self-ionizing gas flows in plasma accelerator channels with an azimuthal magnetic field. The mathematical model is based on the equations of dynamics of a three-component continuous medium consisting of atoms, ions, and electrons; the model is supplemented with the equation of ionization and recombination kinetics within the diffusion approximation with account for photoionization and photorecombination. It also takes into account heat exchange, which in this case is caused by radiative heat conductance. Upon a short history of the issue, the proposed model, numerical methods, and results for steady-state and pulsating flows are described.
Key words:
plasma accelerator, plasma and gas flows, ionization process, mathematical models, steady-state and pulsating flows.
Received: 09.02.2015
Citation:
K. V. Brushlinskii, A. N. Kozlov, V. S. Konovalov, “Numerical models of steady-state and pulsating flows of self-ionizing gas in plasma accelerator channels”, Zh. Vychisl. Mat. Mat. Fiz., 55:8 (2015), 1405–1416; Comput. Math. Math. Phys., 55:8 (2015), 1370–1380
Linking options:
https://www.mathnet.ru/eng/zvmmf10254 https://www.mathnet.ru/eng/zvmmf/v55/i8/p1405
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Abstract page: | 275 | Full-text PDF : | 72 | References: | 61 | First page: | 20 |
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