Semirelativistic Magnetohydrodynamics and Physics-Based Convergence Acceleration

01 natural sciences 0105 earth and related environmental sciences
DOI: 10.1006/jcph.2002.7009 Publication Date: 2002-10-06T18:45:44Z
ABSTRACT
We derive a system of equations for semirelativistic magnetohydrodynamics (MHD) in which the bulk speed and the sound speed of the plasma are nonrelativistic, but the Alfven speed can be relativistic. The characteristic wave speeds of the modified equation set are determined and compared to the wave speeds in “classical” (MHD). The stability conditions of the semirelativistic MHD equations are also investigated in detail.This form of the MHD equations has a use beyond modeling flows with high Alfven speeds. Even in cases with moderate Alfven speeds, the semirelativistic form or certain approximations of it can be used to achieve accelerated numerical convergence to steady-state solutions by artificially reducing the speed of light, provided that the steady-state solutions of these equations are fully independent of the speed of light. Numerical tests are presented that demonstrate the behavior of solutions at high Alfven speeds and the convergence acceleration that can be achieved when a steady-state solution is desired.
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