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Difference scheme with a symmetry analizer for equations of magnetohydrodynamics
G. V. Ustyugovaa, A. V. Koldobab a Keldysh Institute of Applied Mathematics RAS
b Moscow Institute of Physics and Technology (NSU)
Abstract:
The paper proposes a computational algorithm for the numerical simulation of twodimensional MHD flows using a symmetry analyzer as an element of the numerical
method. The algorithm is based on a finite-volume Godunov-type scheme with an
approximate solution of the Riemann problem for calculating flows. A polar grid is used,
but the equations of momentum and magnetic induction are approximated in a Cartesian
coordinate system. It is assumed that the flows are either predominantly homogeneous
plane-symmetric, or predominantly axisymmetric relative to the grid axis. To reconstruct
vector variables in the computational cells, a symmetry analyzer is used, which makes it
possible to locally classify the flow as one of the indicated types. Depending on what type
the vector field will be assigned to, the corresponding components are used for its
reconstruction.
Keywords:
magnetohydrodynamics, Godunov-type difference scheme, symmetry analyzer.
Received: 27.08.2020 Revised: 27.08.2020 Accepted: 21.09.2020
Citation:
G. V. Ustyugova, A. V. Koldoba, “Difference scheme with a symmetry analizer for equations of magnetohydrodynamics”, Matem. Mod., 32:12 (2020), 65–80; Math. Models Comput. Simul., 13:4 (2021), 674–683
Linking options:
https://www.mathnet.ru/eng/mm4244 https://www.mathnet.ru/eng/mm/v32/i12/p65
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Abstract page: | 288 | Full-text PDF : | 40 | References: | 29 | First page: | 7 |
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