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JOURNALS // Matematicheskoe modelirovanie // Archive

Matem. Mod., 2019 Volume 31, Number 4, Pages 57–74 (Mi mm4064)

This article is cited in 7 papers

Modelling of Earth's ionosphere F layer. Solution of the ambipolar diffusion equations

D. V. Kulyaminab, P. A. Ostaninc, V. P. Dymnikovab

a Marchuk Institute of Numerical Mathematics of the RAS (INM RAS)
b Fedorov Institute of Applied Geophysics (IPG)
c Moscow Institute of Physics and Technology (MIPT SU)

Abstract: The paper presents the problem formulation and methods of numerical solution for the global dynamical model of Earth's ionosphere F layer (altitude 100–500 km), which is a computational unit of the coupled thermosphere-ionosphere model. The model is based on a set of equations of global ionospheric formation and dynamics in a spherical geomagnetic coordinate system in the approximation of a thin spherical layer. The features of the formulated equations are investigated and methods for its solution are proposed based on the splitting method. In this paper we present the results of the first stage of the splitting method — solution of equations describing the ambipolar diffusion along magnetic field lines and gravitational settling of ions as well as plasma chemical transformations. Based on the prescribed analytical solution, which qualitatively describes the real ionospheric electrons distribution, the accuracy of the proposed algorithms is investigated. We also presents the results of numerical study for the sensitivity of solution to perturbations of the ion flow at the upper boundary.

Keywords: ionosphere, numerical modelling, ambipolar diffusion, splitting method.

Received: 01.10.2018
Revised: 01.10.2018
Accepted: 19.11.2018

DOI: 10.1134/S023408791904004X


 English version:
Mathematical Models and Computer Simulations, 2019, 11:6, 940–950

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