Plasma dynamic simulation in microsecond plasma opening switch
Matematičeskoe modelirovanie, Tome 23 (2011) no. 8, pp. 137-156.

Voir la notice de l'article provenant de la source Math-Net.Ru

The problem of plasma motion in Plasma Opening Switch with the stabilized magnetic field has been investigated. The main features of the difference scheme for solving magnetic field evolution equations taking into account the thermal forces was described. The effectiveness of calculation on the small cluster in MIPT and “personal cluster” based on Istanbul processor are compares. The results of the plasma dynamics in the Plasma Opening Switch calculation were described. The numerical data was obtained by the MIPT-60 cluster.
Keywords: electron magnetohydrodynamics, difference schemes, parallel computations.
@article{MM_2011_23_8_a11,
     author = {V. E. Karpov and A. I. Lobanov},
     title = {Plasma dynamic simulation in microsecond plasma opening switch},
     journal = {Matemati\v{c}eskoe modelirovanie},
     pages = {137--156},
     publisher = {mathdoc},
     volume = {23},
     number = {8},
     year = {2011},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/MM_2011_23_8_a11/}
}
TY  - JOUR
AU  - V. E. Karpov
AU  - A. I. Lobanov
TI  - Plasma dynamic simulation in microsecond plasma opening switch
JO  - Matematičeskoe modelirovanie
PY  - 2011
SP  - 137
EP  - 156
VL  - 23
IS  - 8
PB  - mathdoc
UR  - http://geodesic.mathdoc.fr/item/MM_2011_23_8_a11/
LA  - ru
ID  - MM_2011_23_8_a11
ER  - 
%0 Journal Article
%A V. E. Karpov
%A A. I. Lobanov
%T Plasma dynamic simulation in microsecond plasma opening switch
%J Matematičeskoe modelirovanie
%D 2011
%P 137-156
%V 23
%N 8
%I mathdoc
%U http://geodesic.mathdoc.fr/item/MM_2011_23_8_a11/
%G ru
%F MM_2011_23_8_a11
V. E. Karpov; A. I. Lobanov. Plasma dynamic simulation in microsecond plasma opening switch. Matematičeskoe modelirovanie, Tome 23 (2011) no. 8, pp. 137-156. http://geodesic.mathdoc.fr/item/MM_2011_23_8_a11/

[1] N. U. Barinov, S. A. Budkov i dr., “Modernizirovannaya ustanovka RS-20 dlya issledovaniya kharakteristik plazmennogo preryvatelya toka”, Pribory i tekhnika eksperimenta, 2002, no. 2, 112–119

[2] Yu. G. Kalinin, Yu. L. Bakshaev, A. A. Bartov, et al., Proceedings of 29th EPS Conf. on Plasma Phys. and Contr. Fusion, Montreux, Switzerland, 2002, P-4.023A.S

[3] S. Kingsep, A. A. Altukhov, Yu. L. Bakshaev, et al., Proceedings of XV International Conference BEAMS'04, S-Petersburg, 2004, WE-O7-1

[4] A. A. Altukhov, G. I. Dolgachev i dr., “Plazmennyi preryvatel toka dlya ustanovki MOL”, Fizika plazmy, 31:12 (2005), 1104–1113

[5] A. S. Kingsep, K. V. Chukbar, V. V. Yankov, “Elektronnaya magnitnaya gidrodinamika”, Voprosy teorii plazmy, 16, Energoatomizdat, M., 1987, 209–250

[6] A. V. Gordeev, A. V. Grechikha, A. V. Gulin, O. M. Drozdova, “Chislennoe modelirovanie elektronnykh techenii v plazmennom razmykatele”, Matematicheskoe modelirovanie, 2:9 (1990), 40–48 | Zbl

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

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

[9] F. Deluzet, “Mathematical modeling of plasma opening switches”, Computer Physics Communications, 152 (2003), 34–54 | DOI | Zbl

[10] F. Kh. Kharlou, Chislennyi metod chastits v yacheikakh dlya zadach gazovoi dinamiki. Vychislitelnye metody v gidrodinamike, Mir, M., 1967, 460 pp.

[11] R. P. Fedorenko, Vvedenie v vychislitelnuyu fiziku, Izd-vo MFTI, M., 1994, 526 pp.

[12] Xu Xiang, Wang Younian, “Influence of Downstream Flow on Conduction Phase of Coaxial Plasma Opening Switch”, Plasma Science and Technology, 10:4 (2008) | DOI

[13] J. P. Boris, D. L. Book, “Flux-corrected transport. I: Shasta a fluid transport algorithm that works”, J. of C. Ph., 11:1 (1973), 38–69 | DOI | Zbl

[14] M. T. Mehrabani, A. Abbassi, M. M. Attaran, “Two dimensional dynamic modeling of a coaxial plasma opening switch with effect of Hall current and RLC equation”, International journal of systems applications, engineering and development, 2:1 (2008)

[15] P. L. Roe, “The use of the Riemann problem in finite differences”, Proc. 7th Int. Cont. Numer. Meth. Fluid Dynamics (June 23–27, 1980), Lect. Notes Phys., 141, 1981, 354–359 | DOI

[16] S. I. Braginskii, “Yavleniya perenosa v plazme”, Voprosy teorii plazmy, vyp. 1, Atomizdat, M., 1963, 183–272

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

[18] V. E. Karpov, V. I. Kosarev, A. I. Lobanov, A. V. Tolstobrov, “Raschet dinamiki plazmy v plazmennom preryvatele toka s ispolzovaniem klastera iz personalnykh kompyuterov”, Matematicheskoe modelirovanie, 19:4 (2007), 45–61 | Zbl