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Tytuł artykułu

Deep Geoelectrical Structure of the Central and Western Ukraine

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Języki publikacji
EN
Abstrakty
EN
The results of deep induction sounding in Ukraine made in the twenty-first century with the participation of the author have been summarized, including also a number of data obtained in the previous decades. The apparent resistivity and magnetic transfer function on the territories of western Ukraine and eastern Poland have been analyzed. The articulation of these data with the regional magnetic variation soundings allowed taking into account the influence of a static shift of areal interpretation of magnetotelluric resistivity results, which increased the reliability of interpretation. The analysis of induction sounding performed with 1D, 2D, and 3D inversions of magnetic transfer functions allowed localizing the crustal anomalies. The results are discussed.
Czasopismo
Rocznik
Strony
1216--1230
Opis fizyczny
Bibliogr. 38 poz., rys., tab.
Twórcy
  • Institute of Geophysics, National Academy of Sciences of Ukraine, Kiev, Ukraine
Bibliografia
  • [1] Ádám, A., T. Ernst, J. Jankowski, W. Jóźwiak, M. Hvozdara, L. Szarka, V. Wesztergom, I. Logvinov, and S. Kulik (1997), Electromagnetic induction profile (PREPAN95) from the East European Platform (EEP) to the Pannonian Basin, Acta Geod. Geophys. Hung. 32, 1-2, 203-223, DOI: 10.1007/ BF03325488.
  • [2] Bondarenko, A.P., A.I. Bilinsky, and F.I. Sedova (1972), Geoelectromagnetic Variations in the Soviet Carpathians, Naukova Dumka, Kiev, 116 pp. (in Russian).
  • [3] Constable, S.C., R.L. Parker, and C.G. Constable (1987), Occam’s inversion: A practical algorithm for generating smooth models from electromagnetic sounding data, Geophysics 52, 3, 289-300, DOI: 10.1190/1.1442303.
  • [4] Dyakonova, A.G., A.I. Ingerov, and I.I. Rokityansky (1986), Electromagnetic Soundings on the Eastern European Platform and in the Ural, Naukova Dumka, Kiev (in Russian).
  • [5] Egbert, G.D. (1997), Robust multiple-station magnetotelluric data processing, Geophys. J. Int. 130, 2, 475-496, DOI: 10.1111/j.1365-246X.1997.tb05663.x.
  • [6] Egbert, G.D., and J.R. Booker (1986), Robust estimation of geomagnetic transfer functions, Geophys. J. Int. 87, 1, 173-194, DOI: 10.1111/j.1365-246X.1986.tb04552.x.
  • [7] Gordienko, V.V., I.V. Gordienko, O.V. Zavgorodnyaya, S. Kovachikova, I.M. Logvinov, V.N. Tarasov, and O.V. Usenko (2005), Ukrainian Shield (Geophysics, Deep Processes), Korvin Press, Kiev (in Russian).
  • [8] Gordienko, V.V., I.V. Gordienko, O.V. Zavgorodnyaya, S. Kovachikova, I.M. Logvinov, J. Pek, V.N. Tarasov, and O.V. Usenko (2006), Dnepr-Doneck Basin (Geophysics, Deep Processes), Korvin Press, Kiev, 143 pp. (in Russian).
  • [9] Gordienko, V.V., I.V. Gordienko, O.V. Zavgorodnyaya, S. Kovachikova, I.M. Logvinov, V.N. Tarasov, and O.V. Usenko (2011), Ukrainian Carpathians (Geophysics, Deep Processes), Logos, Kiev (in Russian).
  • [10] Gordienko, V.V., I.V. Gordienko, O.V. Zavgorodnyaya, S. Kovachikova, I.M. Logvinov, and V.N. Tarasov (2012), Volyno-Podolian Plate (Geophysics, Deep Processes), Naukova Dumka, Kiev (in Russian).
  • [11] Ingerov, A.I., I.I. Rokityansky, and V.I. Tregubenko (1999), Forty years of MTS studies in the Ukraine, Earth Planets Space 51, 10, 1127-1133, DOI: 10.1186/BF03351586.
  • [12] Jankowski, J., J. Marianiuk, A. Ruta, C. Sucksdorff, and M. Kivinen (1984), Longterm stability of a torgue-balance variometer with photoelectric converters in observatory practice, Geophys. Surv. 6, 3-4, 367-380, DOI: 10.1007/978-94-009-5283-6_17.
  • [13] Jóźwiak, W. (2013), Electromagnetic study of lithospheric structure in the marginal zone of East European Craton in NW Poland, Acta Geophys. 61, 5, 1101-1129, DOI: 10.2478/s11600-013-0127-z.
  • [14] Kovacikova, S. (2001), Modelling of the geomagnetic induction anomaly sources over the eastern margin of the Bohemian Massif and its contact with the West Carpathians, Ph.D. Thesis, Univerzita Karlova, Praha, Czech Republic, 95 pp.
  • [15] Kovacikova, S., W. Jóźwiak, I. Logvinov, K. Nowożyński, J. Pek, B. Ladanivskyy, and V. Tarasov (2010), Database of geomagnetic induction vectors across the Carpathians and modelling of the regional conductivity distribution. In: 19th Congress of the Carpathian-Balkan Geological Association, 23-26 September, Thessaloniki, Greece.
  • [16] Ladanivskyy, B.T. (2003), The algorithm of data processing MTS. In: Abstracts Fifth Geophysical Readings of V.V. Fedinskogo, 27 February - 1 March 2003, Moscow, Russia, 134-135 (in Russian).
  • [17] Ladanivskyy, B.T., V.Yu. Semenov, and I.M. Logvinov (2010), Magnetovariational sounding method of Earth’s mantle at period band 104-105 s, Geophys. J. 32, 3, 50-59 (in Russian).
  • [18] Logvinov, I.M. (2002), Applying the horizontal spatial gradient method for the deep conductivity estimations in the Ukraine, Acta Geophys. Pol. 50, 4, 567-573.
  • [19] Logvinov, I.M. (2012), Geoelectrical parameters of the crust and mantle south-west of the East-European platform and Carpathians, Ph.D. Thesis, Subbotin Institute of Geophysics, National Academy of Sciences of Ukraine, Kiev, Ukraine, 306 pp. (in Russian).
  • [20] Parker, R.L., and K.A.Whaler (1981), Numerical methods for establishing solutions to the inverse problem of electromagnetic induction, J. Geophys. Res. 86, B10, 9574-9584, DOI: 10.1029/JB086iB10p09574.
  • [21] Rakhlin, L., L. Guleuk, E. Nakalov, and О. Kuznecov (2005), Magnetotelluric station GEOMAG-02. In: New Geophysical Technology Forecasting and Monitoring of the Geological Environment, Lviv, 22-23 (in Russian).
  • [22] Rokityansky, I.I. (1982), Geoelectromagnetic Investigation of the Earth’s Crust and Mantle, Springer Verlag, Berlin Heidelberg, DOI: 10.1007/978-3-642-61801-7.
  • [23] Rokityansky, I.I., S.N. Kulik, I.M. Logvinov, and V.N. Shuman (1976), Deep magnetovariational studies in Ukraine. In: A. Ádám (ed.), Geoelectric and Geothermal Studies, KAPG Geophysical Monograph, Hungarian Academy of Sciences, Budapest, 634-639.
  • [24] Schmucker, U. (2003), Horizontal spatial gradient sounding and geomagnetic depth sounding in the period range of daily variations. In: Protokoll uber das 20. Kolloquium Elektromagnetische Tiefenforschung, 29.09-3.10.2003, Königstein, Germany, 228-237.
  • [25] Semenov, V.Yu. (1998), Regional conductivity structures of the Earth’s mantle, Publs. Inst. Geophys. Pol. Acad. Sc. C-65, 302, 122 pp.
  • [26] Semenov, V.Yu., and W. Jóźwiak (1999), Model of the geoelectrical structure of the mid- and lower mantle in the Europe - Asia region, Geophys. J. Int. 138, 2, 549-552, DOI: 10.1046/j.1365-246X.1999.00888.x.
  • [27] Semenov, V.Yu., and W. Jóźwiak (2005), Estimation of the upper mantle electric conductance at the Polish Margin of the East European Platform, Izv. - Phys. Solid Earth 41, 4, 326-332.
  • [28] Semenov, V.Yu., and W. Jóźwiak (2006), Lateral variations of the mid-mantle conductance beneath Europe, Tectonophysics 416, 1-4, 279-288, DOI: 10.1016/ j.tecto.2005.11.017.
  • [29] Semenov, V.Yu., S.N. Kulik, and I.M. Logvinov (1998), Estimations of the geoelectrical structure of the mantle in Ukraine, Dokl. Nat. Acad. Sc. 10, 134-137.
  • [30] Semenov, V.Yu., J. Pek, A. Ádám, W. Jóźwiak, B. Ladanyvskyy, I.M. Logvinov, P. Pushkarev, J. Vozar, and Experimental Team of CEMES Project (2008), Electrical structure of the upper mantle beneath Central Europe: Results of the CEMES project, Acta Geophys. 56, 4, 957-981, DOI: 10.2478/s11600-008-0058-2.
  • [31] Shuman, V., and S. Kulik (2002), The fundamental relations of impedance type in general theories of the electromagnetic induction studies, Acta Geophys. Pol. 50, 4, 607-618.
  • [32] Siripunvaraporn, W., and G. Egbert (2000), An efficient data-subspace inversion method for 2-D magnetotelluric data, Geophysics. 65, 3, 791-803, DOI: 10.1190/1.1444778.
  • [33] Varentsov, Iv.M., S. Kovacikova, V.A. Kulikov, I.M. Logvinov, V.I. Tregubenko, A.G. Yakovlev, and Workgroup KIROVOGRAD (2012), Simultaneous magnetotelluric and magnetovariational soundings in the western slope Voronezh massif, Geophys. J. 34, 4, 90-107 (in Russian).
  • [34] Varentsov, I.M., V.V. Gordienko, I.V. Gordienko, O.V. Zavgorodnyaya, S. Kovachikova, I.M. Logvinov, V.N. Tarasov, and V.I. Tregubenko (2013), The Slope of the Voronezh Crystalline Massif (Geophysics, Deep processes), Logos, Kiev (in Russian).
  • [35] Vozar, J., V.Yu. Semenov, A.V. Kuvshinov, and C. Manoj (2006), Updating the map of Earth’s surface conductance, Eos Trans. AGU 87, 33, 326-331, DOI: 10.1029/2006EO/33004.
  • [36] Wielądek, R., and T. Ernst (1977), Application of the method of least squares to determining impulse responses and transfer functions, Publs. Inst. Geophys. Pol. Acad. Sc. G-1, 110.
  • [37] Yatsenko, V.G. (1996), Structural and morphological and genetic types of graphite on an example of deposits of the Ukrainian shield, Ph.D. Thesis, Institute of Geology, Academy of Sciences of Ukraine, Kiev, Ukraine, 253 pp. (in Russian).
  • [38] Zhdanov, M.S., N.G. Golubev, I.M. Varentsov, L.M. Abramova, V.S. Shneer, M.N. Berdichevsky, O.N. Zhdanova, V.V. Gordienko, S.N. Kulik, and A.I. Bilinsky (1986), 2-D model fitting of a geomagnetic anomaly in the Soviet Carpathians, Ann. Geophys. B 4, 3, 335-342.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-8d6a1142-5603-4329-b43e-80d188bf1ad9
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