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Klimenko M.V., Klimenko V.V., Bryukhanov V.V.

The numerical modeling of the auroral electrojet during the geomagnetic substorm

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Abstract. Numerical modeling of the auroral electrojet behavior during the geomagnetic substorm has been performed based on the modified Global Self-consistent Model of Thermosphere-Ionosphere-Protonosphere system (GSM TIP). The effect of the enhanced during geomagnetic disturbances Region 1 field aligned currents, as well as the polar cap potential drop difference (which are model inputs), in the auroral electrojet distribution has been calculated. Both quasi-stationary solutions and time evolution of the auroral electrojet during geomagnetic disturbances have been obtained. It has been shown that the simulation results are in a rather good qualitative and quantitative agreement with the observations.

Printed reference: Klimenko M.V., Klimenko V.V., Bryukhanov V.V. The numerical modeling of the auroral electrojet during the geomagnetic substorm // Vestnik of MSTU. 2006. V. 9, No 3. P. -.

Electronic reference: Klimenko M.V., Klimenko V.V., Bryukhanov V.V. The numerical modeling of the auroral electrojet during the geomagnetic substorm // Vestnik of MSTU. 2006. V. 9, No 3. P. -. URL: http://vestnik.mstu.edu.ru/v09_3_n23/articles/10_klim.pdf.

(In Russian, p.5, fig. 7, ref 2, Adobe PDF)