|
Numerical methods and programming, 2014, Volume 15, Issue 1, Pages 143–153
(Mi vmp238)
|
|
|
|
This article is cited in 1 scientific paper (total in 1 paper)
Modeling of magnetorotational instability evolution using a parallel RKDG algorithm for the magnetohydrodynamic system of equations
M. P. Galanin, V. V. Lukin, K. L. Shapovalov Keldysh Applied Mathematics Institute, Academy of Sciences of the USSR
Abstract:
A parallel algorithm of the RKDG (Runge-Kutta Discontinuous Galerkin) method for axisymmetric 2D ideal MHD equations on unstructured triangular grids is developed. An algorithm of divergence-free magnetic field reconstruction in the cylindrical coordinate system is proposed to obtain physically adequate numerical results with a high degree of accuracy. A high level of the developed parallel code scalability is shown for multiprocessor systems. The parallelization efficiency is analyzed using the K-100 cluster installed at the Keldysh Institute of Applied Mathematics. The results of modeling the magnetorotational instability in a accreting protostar shell are discussed.
Keywords:
MPI, magnetorotational instability, magnetohydrodynamics, RKDG method, parallel programming, MPI.
Received: 10.02.2014
Citation:
M. P. Galanin, V. V. Lukin, K. L. Shapovalov, “Modeling of magnetorotational instability evolution using a parallel RKDG algorithm for the magnetohydrodynamic system of equations”, Num. Meth. Prog., 15:1 (2014), 143–153
Linking options:
https://www.mathnet.ru/eng/vmp238 https://www.mathnet.ru/eng/vmp/v15/i1/p143
|
Statistics & downloads: |
Abstract page: | 245 | Full-text PDF : | 108 |
|