Keywords: subgroup, index of a subgroup, algorithmic problem, free product, direct product, occur-rence problem.
@article{VKAM_2019_29_4_a13,
author = {V. I. Kozlov and P. M. Nagorskiy and K. N. Pustovalov and S. V. Smirnov and A. A. Toropov},
title = {The main scenarios for the development of atmospheric-electric variations in the surface atmosphere during severe frosts in {Siberia}},
journal = {Vestnik KRAUNC. Fiziko-matemati\v{c}eskie nauki},
pages = {135--148},
year = {2019},
volume = {29},
number = {4},
language = {ru},
url = {http://geodesic.mathdoc.fr/item/VKAM_2019_29_4_a13/}
}
TY - JOUR AU - V. I. Kozlov AU - P. M. Nagorskiy AU - K. N. Pustovalov AU - S. V. Smirnov AU - A. A. Toropov TI - The main scenarios for the development of atmospheric-electric variations in the surface atmosphere during severe frosts in Siberia JO - Vestnik KRAUNC. Fiziko-matematičeskie nauki PY - 2019 SP - 135 EP - 148 VL - 29 IS - 4 UR - http://geodesic.mathdoc.fr/item/VKAM_2019_29_4_a13/ LA - ru ID - VKAM_2019_29_4_a13 ER -
%0 Journal Article %A V. I. Kozlov %A P. M. Nagorskiy %A K. N. Pustovalov %A S. V. Smirnov %A A. A. Toropov %T The main scenarios for the development of atmospheric-electric variations in the surface atmosphere during severe frosts in Siberia %J Vestnik KRAUNC. Fiziko-matematičeskie nauki %D 2019 %P 135-148 %V 29 %N 4 %U http://geodesic.mathdoc.fr/item/VKAM_2019_29_4_a13/ %G ru %F VKAM_2019_29_4_a13
V. I. Kozlov; P. M. Nagorskiy; K. N. Pustovalov; S. V. Smirnov; A. A. Toropov. The main scenarios for the development of atmospheric-electric variations in the surface atmosphere during severe frosts in Siberia. Vestnik KRAUNC. Fiziko-matematičeskie nauki, Tome 29 (2019) no. 4, pp. 135-148. http://geodesic.mathdoc.fr/item/VKAM_2019_29_4_a13/
[1] Chalmers Dzh., Atmosfernoye elektrichestvo, Gidrometeoizdat, Leningrad, 1974, 316 pp., (in Russian)
[2] Sedunov YU. S. i dr., Atmosfera. Spravochnik., Gidrometeoizdat, Leningrad, 1991, 509 pp., (in Russian)
[3] Kupovykh G. V., Morozov V. N., Shvarts YA. M., Teoriya elektrodnogo effekta v atmosfere, Izd-vo TRTU, Taganrog, 1998, 123 pp., (in Russian)
[4] Anisimov S. V., Mareyev Ye. A., “Geofizicheskiye issledovaniya global'noy elektricheskoy seti”, Fizika Zemli, 2008, no. 10, 8–18, (in Russian)
[5] Donchenko V. A., Kabanov M. V., Kaul' B. V., Nagorskiy P. M., Samokhvalov I. V., Elektroopticheskiye yavleniya v atmosfere, Izd-vo NTL, Tomsk, 2015, 316 pp., (in Russian)
[6] Mareev E. A. et al., “Russian studies of atmospheric electricity in 2011–2014”, Izvestiya, Atmospheric and Oceanic Physics, 52:2 (2016), 154–164 | DOI | MR
[7] Bennett A. J., Harrison R. G., “Atmospheric Electricity in Different Weather conditions”, Weather, 62 (2007), 277–283 | DOI
[8] Williams E., Mareev E., “Recent progress on the global electrical circuit”, Atmospheric Research, 135 (2014), 208–227 | DOI
[9] Pkhalagov YU. A. i dr., “Issledovaniya izmenchivosti i vzaimosvyazi opticheskikh i elektricheskikh kharakteristik prizemnoy atmosfery v zimnikh usloviyakh”, Optika atmosfery i okeana, 24:4 (2011), 269–274, (in Russian)
[10] Ippolitov I. I. et al., “Diurnal variations in the electrical field intensity under smoke from forest fires”, Doklady Earth Sciences, 453 (2013), 1137–1140 | DOI
[11] Tinsley B. A., “On the variability of the stratospheric column resistance in the global electric circuit”, Atmospheric Research, 76 (2005), 78–94 | DOI
[12] Kozlov V. I. et al., “Anomalous behavior of the electric field of the atmosphere at the extremely low winter temperatures”, Proceedings of SPIE, 10833 (2018), 108338O-1–108338O-4
[13] Abannikov V. N., “Analiz usloviy, formiruyushchikh rezhim zimnikh tumanov v g. Yakutske”, Yevraziyskiy Soyuz Uchenykh, 2018, no. 4-4(49), 4–10, (in Russian)
[14] Firstov P. P. i dr., “Podpochvennyy radon i napryazhennost' elektricheskogo polya atmosfery v rayone Petropavlovsk - Kamchatskogo geodinamicheskogo poligona”, Vestnik Kraunts. Seriya nauki o Zemle, 1:7 (2006), 102–109, (in Russian)
[15] Pkhalagov YU. A. i dr., “Svyaz' anomal'nykh atmosfernykh usloviy s izmenchivost'yu elektricheskogo polya”, Optika atmosfery i okeana, 22:1 (2009), 25–30, (in Russian)
[16] Smirnov V. V., “Electrization of Aerosol Wetted in Bipolarly Ionized Air”, Izvestiya, Atmospheric and Oceanic Physics, 4:3 (2010), 294–303 | DOI
[17] Leblanc F. et al., Planetary Atmospheric Electricity, Springer, Dordrecht, Boston, London, 2008, 532 pp.
[18] Adushkin V. V., Solov'yov S. P., Spivak A. A., Elektricheskiye polya tekhnogennykh i prirodnykh protsessov, GEOS, Moskva, 2018, 459 pp., (in Russian)
[19] Firstov P. P. et al., “Electrification of Eruptive Plumes Discharged by Shiveluch Volcano in Relation to the Character of the Responsible Explosion”, Journal of Volcanology and Seismology, 13:3 (2019), 172–184 | DOI
[20] Sow M. et al., “Electrification of particles in dust storms: Field measurements during the monsoon period in Niger”, Atmospheric Research, 102 (2011), 343–350 | DOI
[21] Gorchakova I. A., Mokhov I. I., Rublev A. N., “Radiation and temperature effects of the intensive injection of dust aerosol into the atmosphere”, Izvestiya, Atmospheric and Oceanic Physics, 51:2 (2015), 113–126 | DOI
[22] Katz S. et al., “Electrical properties of the 8–12th September, 2015 massive dust outbreak over the Levant”, Atmospheric Research, 201 (2018), 218–225 | DOI
[23] Krasnogorskaya N. V., Elektrichestvo nizhnikh sloyov atmosfery i metody yego izmereniya, Gidrometeoizdat, Leningrad, 1972, 323 pp., (in Russian)
[24] Mak-Kormak B., Seligi T., Solnechno-zemnyye svyazi, pogoda i klimat, Mir, Moskva, 1982, 382 pp., (in Russian)
[25] Shuleykin V. N., Atmosfernoye elektrichestvo i fizika Zemli, OOO «FED», Moskva, 2006, 159 pp., (in Russian)
[26] Anisimov S. V., Mareyev Ye. A., “Aeroelektricheskiye struktury v atmosfere”, Doklady akademii nauk, 37:1 (2000), 101–104, (in Russian)
[27] Azbukin A.A. i dr., “Avtomatizirovannyy ul'trazvukovoy meteorologicheskiy kompleks AMK-03”, Meteorologiya i gidrologiya, 2006, no. 11, 89–97, (in Russian)
[28] Anisimov S. V. i dr., “Mekhanizmy formirovaniya pul'satsiy elektricheskogo polya prizemnoy atmosfery”, Izv. VUZov Radiofizika, 44:7 (2001), 8–18, (in Russian)