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Are the crustal and mantle conductive zones isotropic or anisotropic?

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Języki publikacji
EN
Abstrakty
EN
One of the significant problems of modern deep magnetotellurics is the recognition of anisotropy in the crustal and mantle conductive zones. In the paper we perform numerical experiment comparing several 2D models of crustal and mantle isotropic and anisotropic prismatic conductors. Anisotropy is modeled by alternat-ing horizontal or vertical thin layers of different resistivities (the vertical layers are parallel to the prism strike). Using these models, we examine conditions under which the magnetotelluric and magnetovariational response functions distinguish between isotropy and anisotropy. The resolution of MT and MV studies depends on the sediments conductance, lithosphere resistance and deep conductor width. Calcu-lations show that the most favorable conditions for anisotropy studies are observed in the active regions characterized by small sediments conductance (10-20 S) and moderate lithosphere resistance (108 Ohmźm2). However, in the stable regions, where sediments conductance exceeds 50-100 S and the lithosphere resistance comes up to 109 Ohmźm2, the crustal and mantle anisotropic and isotropic conduc-tors manifest themselves in the equivalent magnetotelluric and magnetovariational functions, which cannot distinguish between anisotropy and isotropy and admit both the interpretations.
Czasopismo
Rocznik
Strony
333--342
Opis fizyczny
Twórcy
autor
  • Geological Department, Moscow State University Leninskie Gory 1, 119992 Moscow, Russia, mark.berd@mtu-net.ru
Bibliografia
  • Bahr, K., and A. Duba, 2000, Is the asthenosphere electrically anisotropic? Earth Planet. Sci. Lett. 178, 87-95.
  • Bahr, K., and F. Simpson, 2002, Electrical anisotropy below slow- and fast-moving plates: paleoflowing the upper mantle? Science 295, 1270-1272.
  • Kuvshinov, A.V., 2004, Electromagnetic induction in spherical models of the Earth's with three-dimensional distribution of conductivity, Sc.D. Dissertation, Moscow State University, Moscow.
  • Vanyan, L.L., 1997, Electromagnetic Soundings, Nauchny Mir, Moscow.
  • Wannamaker, P.E., J.A. Stodt and L. Rijo, 1987, A stable finite element solution for two dimensional magnetotelluric modelling, Geophys. J. Roy. Astron. Soc. 88, 277-296.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BSL7-0014-0069
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