Mots-clés : satellite images.
@article{VKAM_2023_43_2_a9,
author = {E. I. Malkin and V. I. Cherneva and D. O. Makhlai and N. V. Cherneva and R. R. Akbashev and D. V. Sannikov},
title = {Remote methods for observations of {Shiveluch} and {Bezymianny} volcano eruptions},
journal = {Vestnik KRAUNC. Fiziko-matemati\v{c}eskie nauki},
pages = {141--165},
year = {2023},
volume = {43},
number = {2},
language = {ru},
url = {http://geodesic.mathdoc.fr/item/VKAM_2023_43_2_a9/}
}
TY - JOUR AU - E. I. Malkin AU - V. I. Cherneva AU - D. O. Makhlai AU - N. V. Cherneva AU - R. R. Akbashev AU - D. V. Sannikov TI - Remote methods for observations of Shiveluch and Bezymianny volcano eruptions JO - Vestnik KRAUNC. Fiziko-matematičeskie nauki PY - 2023 SP - 141 EP - 165 VL - 43 IS - 2 UR - http://geodesic.mathdoc.fr/item/VKAM_2023_43_2_a9/ LA - ru ID - VKAM_2023_43_2_a9 ER -
%0 Journal Article %A E. I. Malkin %A V. I. Cherneva %A D. O. Makhlai %A N. V. Cherneva %A R. R. Akbashev %A D. V. Sannikov %T Remote methods for observations of Shiveluch and Bezymianny volcano eruptions %J Vestnik KRAUNC. Fiziko-matematičeskie nauki %D 2023 %P 141-165 %V 43 %N 2 %U http://geodesic.mathdoc.fr/item/VKAM_2023_43_2_a9/ %G ru %F VKAM_2023_43_2_a9
E. I. Malkin; V. I. Cherneva; D. O. Makhlai; N. V. Cherneva; R. R. Akbashev; D. V. Sannikov. Remote methods for observations of Shiveluch and Bezymianny volcano eruptions. Vestnik KRAUNC. Fiziko-matematičeskie nauki, Tome 43 (2023) no. 2, pp. 141-165. http://geodesic.mathdoc.fr/item/VKAM_2023_43_2_a9/
[1] Rulenko O. P., Tokarev P. I., “Atmosferno-elektricheskie effekty Bolshogo treschinnogo Tolbachinskogo izverzheniya v iyule–oktyabre 1975 g”, Byull. vulkanostantsii, 56 (1979), 96–102
[2] James M. R., Lane S. J., Gilbert J. S., “Volcanic plume monitoring using atmospheric electrical potential gradients”, J. Geol. Soc. Lond., 155 (1998), 587–590, DOI: 10.1144/gsjgs.155.4.0587 | DOI
[3] Shevtsov B. M., Firstov P. P., Cherneva N. V., Holzworth R. H., Akbashev R. R., “Lightning and electrical activity during the Shiveluch volcano eruption on 16 November 2014”, Nat. Hazards Earth Syst. Sci., 16 (2016), 871–874 DOI: 10.5194/nhess-16-871-2016 | DOI
[4] Firstov P. P., Akbashev R. R., Holzworth R., Cherneva N. V., Shevtsov B. M., “Atmospheric electric effects during the explosion of Shiveluch volcano on November 16, 2014”, Izv. Atmos. Ocean. Phys., 53 (2017), 24–31 DOI: 10.1134/S0001433817010066 | DOI
[5] Cherneva N. V., Firstov P. P., Akbashev R. R., “Perspectives of monitoring of atmospheric-electric effects from volcanic eruptions in Kamchatka”, Proc. SPIE, 24th International Symposium on Atmospheric and Ocean Optics: Atmospheric Physics, v. 10833, 2018, 108337R DOI: 10.1117/12.2504174 | MR
[6] Firstov P. P., Cherneva N. V., Akbashev R. R., Malkin E. I., Druzhin G. I., “Atmospheric-electric effects from volcano eruptions on Kamchatka peninsula (Russia)”, Proc. SPIE 11208, 25th International Symposium on Atmospheric and Ocean Optics: Atmospheric Physics, 2019, 1120874 DOI: 10.1117/12.2540356
[7] Firstov P.P., Malkin E.I., Akbashev R.R., Druzhin G.I., Cherneva N.V., Holzworth R.H., Uvarov V.N., Stasiy I.E., “Registration of Atmospheric-Electric Effects from Volcanic Clouds on the Kamchatka Peninsula (Russia)”, Atmosphere, 11:634 (2020), 1–16 DOI: 10.3390/atmos11060634
[8] Malkin, E. I., Cherneva, N. V., Firstov, P. P., Druzhin G. I., Sannikov D. V., “Dirty thunderstorms caused by volcano explosive eruptions in Kamchatka by the data of electromagnetic radiation”, IOP Conf. Ser.: Earth Environ. Sci., 946:012015 (2021), 1–6 DOI:10.1088/1755-1315/946/1/012015
[9] Firstov P. P., Akbashev R. R., Malkin E. I., Cherneva N. V., Druzhin G. I., “Atmospheric electrical effects during a strong explosive eruption of Bezymianny volcano (Kamchatka Peninsula, Russia) on December 20, 2017”, IOP Conf. Ser.: Earth Environ. Sci., 840:012020 (2021), 1–6 DOI:10.1088/1755-1315/840/1/012020
[10] Malkin, E., Firstov, P., Cherneva, N., Druzhin, G., “Lightning Activity of Eruptive Clouds from Shiveluch Volcano (Kamchatka, Russia)”, Problems of Geocosmos–2020, Springer Proceedings in Earth and Environmental Sciences, 2022 DOI: 10.1007/978-3-030-91467-7_34 | Zbl
[11] Mather, T. A. and Harrison, R. G., “Electrification of volcanic plumes”, Surv. Geophys., 27 (2006), 387–432 DOI: 10.1007/s10712-006-9007-2 | DOI
[12] Rodger, C. J., Werner, S., Brundell, J. B., Lay, E. H., Thomson, N. R., Holzworth, R. H., and Dowden, R. L., “Detection efficiency of the VLF World-Wide Lightning Location Network (WWLLN): initial case study”, Ann. Geophys., 24 (2006), 3197–3214 DOI: 10.5194/angeo-24-3197-2006 | DOI
[13] Druzhin G. I. Pukhov V. M. Sannikov D. V. Malkin E. I., “ONCh-pelengator grozovykh razryadov”, Vestnik KRAUNTs. Fiz.-mat. nauki, 27:2 (2019), 95–104 DOI: 10.26117/2079-6641-2019-27-2-95-104 | DOI
[14] http://wwlln.com/
[15] Dowden R. L., Brundell J. B., Rodger C. J., “VLF lightning location by time of group arrival (TOGA) at multiple sites”, J. Atmospheric and Solar-Terrestrial Physics, 64:7 (2002), 817–830 DOI: 10.1016/S1364-6826(02)00085-8 | DOI
[16] Cummins K.L., Murphy M.J., “An overview of Lightning Location System: History, Techniques, and Data Uses, With an In-Depth Look at the U.S. NLDN”, IEEE Transactions on Electromagnetic Compatibility, 51:3 (2009) DOI: 10.1109/TEMC.2009.2023450 | DOI
[17] Abarca S.F., Corbosiero K.L., Galarneau T.J., “An evaluation of the Worldwide Lightning Location Network (WWLLN) using the National Lightning Detection Network (NLDN) as ground truth”, J. Geophys. Res., 115:D18206 (2010) DOI: 10.1029/2009JD013411
[18] http://www.emsd.ru/~ssl/monitoring/main.htm
[19] Zobin V. M., Introduction to volcanic seismology, Elsevier: Amsterdam, Third edition, 2017, 559 pp.
[20] http://www.emsd.ru/~ssl/monitoring/main.htm
[21] Firstov P.P., Akbashev R.R., Zharinov N.A., Maksimov A.P., Manevich T.M., Mel’nikov D.V., “Electrification of eruptive plumes discharged by Shiveluch volcano in relation to the character of the responsible explosion”, J. Volcanology and Seismology, 13:3 (2019), 172–184 DOI: 10.1134/s0742046319030035 | DOI
[22] Behnke S.A., Thomas R.J., McNutt S.R., Schneider D.J., Krehbiel P.R., Rison W., Edens H.E., “Observations of volcanic lightning during the 2009 eruption of Redoubt volcano”, J. Volcanol. Geotherm. Res., 259 (2013), 214–234 DOI: 10.1016/j.jvolgeores.2011.12.010 | DOI
[23] Thomas R.J., McNutt S.R., Krehbiel R.P., Rison W., Aulich G., Edens H.E., Tytgat G., Clark E., “Lightning and Electrical Activity during the 2006 Eruption of Augustine Volcano”, The 2006 Eruption of Augustine Volcano, Alaska Power., Editors: J.A., M.L Coombs, J.T. Freymueller, v. 25, U.S. Geological Survey Professional, Paper 1769, 2010, 580–609
[24] James M. R., Lane S. J., Gilbert J., “The density, construction and drag coefficient of electrostatic volcanic ash aggregates”, J. Chem. Inf. Model, 53:160 (1989) DOI: 10.1029/2002JB002011
[25] Miura T., Koyaguchi T., Tanaka Y., “Measurements of electric charge distribution in volcanic plumes at Sakurajima volcano”, Japan. Bull. Volcanol., 64 (2002), 75–93 | DOI
[26] Méndez H.J, Cimarelli C., Cigala V., Kueppers Dufek J., “Charge injection into the atmosphere by explosive volcanic eruptions”, Earth and Planetary Science Letters, 574 (2021)
[27] https://ds.data.jma.go.jp/svd/vaac/data/TextData/2023/20230410_30027000_0192_Text.html
[28] http://www.kscnet.ru/ivs/kvert/van/?n=2023-51
[29] http://d33.infospace.ru/jr_d33/materials/2023v20n2/283-291/1683110898.webm
[30] Girina O. A., Lupyan E. A., Khorvat A., Melnikov D. V., Manevich A. G., Nuzhdaev A. A., Bril A. A., Ozerov A. Yu., Kramareva L. S., Sorokin A. A., “Analiz razvitiya paroksizmalnogo izverzheniya vulkana Shiveluch 10–13 aprelya 2023 goda na osnove dannykh razlichnykh sputnikovykh sistem”, Sovremennye problemy distantsionnogo zondirovaniya Zemli iz kosmosa, 20:2 (2023), 283–291 DOI: 10.21046/2070-7401-2023-20-2-283-291