Modeling of high frequency electromagnetic radiation effects on conducting screens
Matematičeskoe modelirovanie, Tome 28 (2016) no. 5, pp. 109-123.

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

The problem of the effect of external high frequency electromagnetic field on the electronic devices shielding located on orbital platforms is investigated. It is demonstrated that the characteristic time for the unsteady stage of the process is negligibly small as compared with characteristic time of electromagnetic field diffusion into a conductor for the studied range of governing parameters.
Keywords: Earth orbits, electromagnetic field, high frequency, conductor, shielding screen.
@article{MM_2016_28_5_a7,
     author = {V. F. Nikitin and N. N. Smirnov and M. N. Smirnova and V. V. Tyurenkova},
     title = {Modeling of high frequency electromagnetic radiation effects on conducting screens},
     journal = {Matemati\v{c}eskoe modelirovanie},
     pages = {109--123},
     publisher = {mathdoc},
     volume = {28},
     number = {5},
     year = {2016},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/MM_2016_28_5_a7/}
}
TY  - JOUR
AU  - V. F. Nikitin
AU  - N. N. Smirnov
AU  - M. N. Smirnova
AU  - V. V. Tyurenkova
TI  - Modeling of high frequency electromagnetic radiation effects on conducting screens
JO  - Matematičeskoe modelirovanie
PY  - 2016
SP  - 109
EP  - 123
VL  - 28
IS  - 5
PB  - mathdoc
UR  - http://geodesic.mathdoc.fr/item/MM_2016_28_5_a7/
LA  - ru
ID  - MM_2016_28_5_a7
ER  - 
%0 Journal Article
%A V. F. Nikitin
%A N. N. Smirnov
%A M. N. Smirnova
%A V. V. Tyurenkova
%T Modeling of high frequency electromagnetic radiation effects on conducting screens
%J Matematičeskoe modelirovanie
%D 2016
%P 109-123
%V 28
%N 5
%I mathdoc
%U http://geodesic.mathdoc.fr/item/MM_2016_28_5_a7/
%G ru
%F MM_2016_28_5_a7
V. F. Nikitin; N. N. Smirnov; M. N. Smirnova; V. V. Tyurenkova. Modeling of high frequency electromagnetic radiation effects on conducting screens. Matematičeskoe modelirovanie, Tome 28 (2016) no. 5, pp. 109-123. http://geodesic.mathdoc.fr/item/MM_2016_28_5_a7/

[1] N. N. Smirnov, V. F. Nikitin, “Diffuziia magnitnogo polia vnutr provodiashchego poluprostranstva pri lineinom narastanii sily toka”, Vestnik MGU, seriia 1, matematika i mekhanika, 1992, no. 2, 96–100

[2] V. F. Nikitin, N. N. Smirnov, “Formirovanie elektromagnitnogo polia v nesimmetrichnykh relsakh i zashchitnom kozhukhe relsotrona pri narastaiushchem impulse toka”, Zhurnal Prikladnoi Mekhaniki i Tekhnicheskoi Fiziki, 38:1 (1997), 11–20

[3] L. D. Landau, L. P. Pitaevskii, E. M. Lifshitz, Course of Theoretical Physics, v. 8, Electrodynamics of Continuous Media, Second Edition, Pergamon Press, 1984

[4] Dzh. A. Stretton, Teoriia elektromagnetizma, GITTL, M.–L., 1948, 34–35

[5] A. A. Samarskii, A. V. Gulin, Chislennye metody, Nauka, M., 1989, 432 pp. | MR

[6] M. V. Silnikov, K. C. Kulakov, S. L. Kulakov, D. V. Panov, “Correction Thruster Development Based on High-Current Surface Discharge in Vacuum”, Acta Astronautica, 2015

[7] I. P. Solovianova, M. P. Naimushin, Teoriia volnovykh protsessov. Elektromagnitnye volny, Uchebnoe posobie, GOU VPO UGTU-UPI, Ekaterinburg, 2005, 131 pp.