On the dynamics of electrical conduction geological environment the subduction zone in Kamchatka
Vestnik KRAUNC. Fiziko-matematičeskie nauki, no. 3 (2016), pp. 79-84 Cet article a éte moissonné depuis la source Math-Net.Ru

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Secular changes of the lithospheric electric conductivity were analyzed based on the monitoring data of the Earth's electric field over the period from 2001 to 2014. Those measures were carried out in Verchniya Paratunka, Tundroviy, and Shipunskiy that are located alongside the coastline of the Avacha Bay of Kamchatka and where the catastrophic earthquake is to be expected according the long-term forecast. It is noticed that the changes in behavior of the secular movements of the lithospheric electric conductivity sannual average values represented with changes at along and transverse directions of the seismic focal zone extension. A great many of such changes were detected on the Shipunskiy peninsula.
Keywords: lithosphere, time series conductivity monitoring.
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Yu. F. Moroz; S. E. Smirnov. On the dynamics of electrical conduction geological environment the subduction zone in Kamchatka. Vestnik KRAUNC. Fiziko-matematičeskie nauki, no. 3 (2016), pp. 79-84. http://geodesic.mathdoc.fr/item/VKAM_2016_3_a10/

[1] Berdichevskiy M. N., Dmitriev V. I., Modeli i metody magnitotelluriki, Nauchnyy mir, Moskva, 2009, 680 pp.

[2] Van'yan L. L., Elektromagnitnye zondirovaniya, Nauchnyy mir, Moskva, 1997, 219 pp.

[3] Litvinova A. F., Patoki M. G., Markovskogo B. A., Karta poleznykh iskopaemykh Kamchatskoy oblasti. Masshtab 1 : 500000, L. XIII, VSEGEI, SPb, 1999

[4] Moroz Yu. F., Elektroprovodnost' zemnoy kory i verkhney mantii Kamchatki, Nauka, Mokva, 1991, 181 pp.

[5] Moroz Yu. F., Nurmukhamedov A. G., “Magnitotelluricheskoe zondirovanie Petropavlovskogo geodinamicheskogo poligona na Kamchatke”, Vulkanologiya i seysmologiya, 1998, no. 2, 77–84 | MR

[6] Moroz Yu. F., “O metodike poiskov kratkosrochnykh predvestnikov sil'nykh zemletryaseniy v nizkochastotnom telluricheskom pole Kamchatki”, Fizika Zemli, 1994, no. 9, 88–90

[7] Moroz Yu. F., Bakhtiarov V. F., Gavrilov V. A., Levin V. E., Popruzhenko S. V., “O monitoringe elektrotelluricheskogo polya s tsel'yu prognoza sil'nykh zemletryaseniy na Kamchatke”, Vulkanologiya i seysmologiya, 1995, no. 4-5, 139–149

[8] Smirnov Ya. B., Sugrobov V. M., “Zemnoy teplovoy potok v Kurilo-Kamchatskoy i Aleutskoy provintsiyakh. I. Teplovoy potok i tektonika”, Vulkanologiya i seysmologiya, 1979, no. 1, 59–73

[9] Fedotov S. A, Solomatin A V., Chernyshov S. D., “Dolgosrochnyy seysmicheskiy prognoz dlya Kurilo-Kamchatskoy dugi na IX 2011-VIII 2016 gg.; veroyatnoe mesto, vremya i razvitie sleduyushchego sil'neyshego zemletryaseniya Kamchatki s $M \geq 7,7$”, Vulkanologiya i seysmologiya, 2012, no. 2, 3–26

[10] Larsen I. C., Mackie R. L., Manzella A. et. al., “Robust smooth magnetotelluric transfer functions”, Geophysical Journal International, 124 (1996), 801–819 | DOI

[11] Mackie K. L. ,Smith J. T., Madden T. R., “Three-dimensional electromagnetic modeling using finite difference equations: the magnetotelluric example”, Radio Science, 29 (1994), 923–935 | DOI