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Magnetotelluric studies of the East-European Craton and adjacent regions

Wybrane pełne teksty z tego czasopisma
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Języki publikacji
EN
Abstrakty
EN
Magnetotelluric method is widely applied to study the Russian part of the East-European Craton, as well as the Caucasus and the Urals: several thousand soundings were performed during the last few years. Their periods range is approximately from 0.003 to 3000 seconds, which allows to study the sedimentary cover and the consolidated crust. Resistivity cross-sections along several regional profiles which run across the tectonic structures of the East-European Craton and the adjacent folded systems were obtained, mainly using 1D and 2D interpretational tools. MT investigations provided important information about the structure and reservoir properties of sedimentary complexes, the state of active geodynamic regions, the graphitization and fluid regime of the consolidated crust, and the perme-able and fluid-saturated crustal zones.
Czasopismo
Rocznik
Strony
154--168
Opis fizyczny
Twórcy
autor
Bibliografia
  • Aleksanova, E.D., V.A. Kulikov, P.Yu. Pushkarev and A.G. Yakovlev, 2003, Application of electromagnetic fields created by electrified railroads for electromagnetic soundings, Izvestiya VUZov (Geology and Prospecting) 4, 60-64 (in Russian).
  • Alekseev, D.A., V.A. Kulikov, A.G. Yakovlev, V.P. Grebnev, A.I. Koryavko and V.A. Matrosov, 2004, Application of AMT method for mineral prospecting, Prospecting and Preserving the Interiors 5, 40-44 (in Russian).
  • Arbuzkin, V.N., M.A. Kampaniets, E.V. Andreeva, A.G. Morozova, A.G. Yakovlev and D.V. Yakovlev, 2003, Magnetotelluric soundings along a profile in Elbrus region, Abstracts of the 5-th V.V. Fedynsky Geophysical Readings, Moscow, p. 120 (in Russian).
  • Berdichevsky, M.N., 1994, Role of geoelectric methods in hydrocarbon and deep structural investigations in Russia, Geophysical Transactions 39, 3-33.
  • Berdichevsky, M.N., L. Fox, A.G. Yakovlev, V.P. Bubnov, V.A. Kulikov and P.Yu. Pushkarev, 2002, Russian oil and gas geoelectric surveys, Abstracts of the 16th Workshop on Electromagnetic Induction in the Earth, Santa Fe, p. EM2-1.
  • Berzin, R.G., A.K. Suleimanov, S.I. Filin, V.P. Bubnov, E.D. Aleksanova, A.G. Yakovlev and P.Yu. Pushkarev, 2005, Electromagnetic explorations using MT method along the "Morozovsk-Kamyshev" profile, Proceedings of the 5-th and 6-th V.V. Fedynsky Geophysical Readings, Moscow, 185-189 (in Russian).
  • Bubnov, V.P., E.D. Aleksanova, A.G. Morozova, A.G. Yakovlev and E.V. Andreeva, 2003, Results of electromagnetic prospecting using MT method along profile IV of the "Rifey" exploration program in the Moscow syneclise, Abstracts of the 5-th V.V. Fedynsky Geophysical Readings, Moscow, 110-111 (in Russian).
  • Feldman, I.S., A.V. Lipilin, I.P. Shpak and Yu.M. Erinchek, 2005, Geological interpretation of electromagnetic prospecting results on the territory of the European part of Russia, Abstracts of the 7-th V.V. Fedynsky Geophysical Readings, Moscow, 31-32 (in Russian).
  • Kulikov, V.A., A.G. Yakovlev, A.G. Morozova, E.L. Svistova and A.A. Kamkov, 2005, Deep resistivity cross-section along "Uralseis" profile, Proceedings of the 5-th and 6-th V.V. Fedynsky Geophysical Readings, Moscow, p. 180-184 (in Russian).
  • Rodi, W., and R.L. Mackie, 2001, Nonlinear conjugate gradients algorithm for 2-D magnetotelluric inversion, Geophysics 66, 174-187.
  • Rokityansky, I.I., A.I. Ingerov, M.N. Baisarovich et al., 1989, Donbass conductivity anomaly, Geophysical Journal 3, 30-40 (in Russian).
  • Sheinkman, A.L., N.V. Narskiy and A.V. Lipilin, 2003, Map of the total conductance of the sedimentary cover on the territory of the European part of Russia, scale 1 : 2 500 000, Abstracts of the Intern. Geophys. Confer.: "Geophysics of the XXI Century - the Leap into the Future", Moscow.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BSL7-0021-0015
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