Three‐Dimensional Modeling of the Ground Electric Field in Fennoscandia During the Halloween Geomagnetic Storm

Author:

Marshalko Elena1ORCID,Kruglyakov Mikhail2ORCID,Kuvshinov Alexey3ORCID,Viljanen Ari1ORCID

Affiliation:

1. Finnish Meteorological Institute Helsinki Finland

2. University of Otago Dunedin New Zealand

3. Institute of Geophysics ETH Zürich Zürich Switzerland

Abstract

AbstractIn this study, we perform three‐dimensional (3‐D) ground electric field (GEF) modeling in Fennoscandia for three days of the Halloween geomagnetic storm (29–31 October 2003) using magnetic field data from the International Monitor for Auroral Geomagnetic Effects (IMAGE) magnetometer network and a 3‐D conductivity model of the region. To explore the influence of the inducing source model on 3‐D GEF simulations, we consider three different approaches to source approximation. Within the first two approaches, the source varies laterally, whereas in the third method, the GEF is calculated by implementing the time‐domain realization of the magnetotelluric intersite impedance method. We then compare GEF‐based geomagnetically induced current (GIC) with observations at the Mäntsälä natural gas pipeline recording point. We conclude that a high correlation between modeled and recorded GIC is observed for all considered approaches. The highest correlation is achieved when performing a 3‐D GEF simulation using a “conductivity‐based” laterally nonuniform inducing source. Our results also highlight the strong dependence of the GEF on the earth's conductivity distribution.

Funder

Academy of Finland

European Space Agency

Publisher

American Geophysical Union (AGU)

Subject

Atmospheric Science

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5. EPOS. (2019).Dataset for “Crustal conductivity in Fennoscandia – A compilation of a database on crustal conductance in the Fennoscandian Shield” Korja et al. 2002 Earth Planets and Space[Dataset].European Plate Observing System (EPOS). Retrieved fromhttps://mt.research.ltu.se/MT/BEAR/1998/BEAR_3D.mod.json

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