Results of the plasma opening switch dynamics
Matematičeskoe modelirovanie, Tome 16 (2004) no. 10, pp. 93-106.

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The mathematical model of magnetic field penetration in POS plasma is studied. A numerical method for EMHD magnetic field diffusion calculation using regular curvilinear grid is suggested. The implemented method allows to reproduce a number of micro-scale phenomena attributed to electron effects. Effects of various boundary conditions for magnetic field on electrodes are discussed.
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A. S. Kingsep; I. V. Kovalenko; A. I. Lobanov; K. V. Chukbar. Results of the plasma opening switch dynamics. Matematičeskoe modelirovanie, Tome 16 (2004) no. 10, pp. 93-106. http://geodesic.mathdoc.fr/item/MM_2004_16_10_a8/

[1] T. K. Korshiya, V. F. Tishkin, A. P. Favorskii i dr., “Variatsionnyi podkhod k postroeniyu raznostnykh skhem dlya uravneniya diffuzii magnitnogo polya”, Differentsialnye uravneniya, 18:7 (1982), 1229–1239 | MR

[2] A. S. Kingsep, V. I. Kosarev, A. I. Lobanov, A. A. Sevastyanov, “Chislennoe modelirovanie szhatiya plazmy legkim lainerom”, Fizika plazmy, 23:10 (1997), 953–959

[3] Yu. G. Kalinin, A. S. Kingsep, V. I. Kosarev, A. I. Lobanov, “Transportnaya model rasprostraneniya gazoobraznykh primesei v atmosfere goroda”, Matematicheskoe modelirovanie, 12:11 (2000), 47–66 | Zbl

[4] V. V. Vikhrev, O. Z. Zabaidulin, A. R. Terentev, “Modelirovanie dinamiki plazmennoi obolochki $Z$-pincha vblizi elektrodov”, Fizika plazmy, 21:1 (1995), 23–30

[5] V. V. Vikhrev, 0. 3. Zabaidulin, “Proniknovenie magnitnogo polya v plazmu vdol granitsy dvukh sred iz-za effekta Kholla”, Fizika plazmy, 20:11 (1994), 968–972

[6] O. Z. Zabaidullin, “Numerical study of a plasma opening switch conduction phase”, Physics of Plasmas, 7:4, April (2000), 1321–1330 | DOI

[7] Kingsep, Yu. Bakshaev et al., “Experiments Aimed at the “Baikal” Program”, 14-th International Conference on High-Power Particle Beams and 5-th International Conference on Dense $Z$-Pinches (Albuquerque, New Mexico USA, June 23–28, 2002, MO-P2-43), 4 pp.

[8] Kingsep, Yu. Bakshaev et al., $ICF$ High-Current Experiments Aimed at the “Baikal” Program, 19-th IAEA Fusion Energy Conference (Lyon, France, 14-19 October, 2002, IF-4rb), 5 pp.

[9] A. A. Samarskii, Yu. P. Popov, Raznostnye metody resheniya zadach gazovoi dinamiki, Nauka, M., 1980, 392 pp. | MR

[10] A. A. Samarskii, A. V. Koldoba, Yu. A. Poveschenko, V. F. Tishkin, A. P. Favorskii, Raznostnye skhemy na neregulyarnykh setkakh, Kriterii, Minsk, 1996, 274 pp.

[11] P. Knupp, L. Margolin, M. Shashkov, “Reference Jacobian Optimization-Based Rezone Strategies for Arbitrary Lagrangian Eulerian Methods”, Journal of Computational Physics, 2002, no. 176, 93–128 | DOI | Zbl

[12] Yu. L. Bakshaev, A. V. Bartov i dr., “Eksperimenty s miniatyurnymi dinamicheskimi nagruzkami na moschnom impulsnom generatore S-300”, Fizika plazmy, 30:4 (2004), 349–361