Formulation and numerical benchmarck of improved magneto fluid-dynamics boundary condtions for 3D nonlinear MHD code SPECYL
Contributo in Atti di convegno
Data di Pubblicazione:
2022
Abstract:
3D nonlinear MHD code SpeCyl [1] is a spectral tool, operating in zero-? approximation and
in cylindrical geometry to advance in time the magnetic field and the plasma flow. The traditional formulation of its boundary conditions would see the plasma as if in direct contact with an
ideally conducting shell. However, a recent reformulation [2] introduced the presence of a rigid
thin shell and a tuneable-width vacuum region between the plasma and the outer conductor.
With suitable parameters choice, the resistive shell can be made transparent to the magnetic
field, so to simulate a free-interface between plasma and vacuum. Numerical benchmark performed in this regime against current-driven linear MHD instabilities found good agreement
concerning the internal modes, yet quantitatively poor for external modes of MHD [3], motivating a reformulation of fluid boundary conditions, as well.
We present here the resulting set of boundary conditions, which combines the chance for finite
flow at plasma edge with the already present thin shell-like modelling of magnetic plasma-
vacuum matching conditions. We also illustrate numerical benchmarks, mainly against some
well known results of the theory of linear MHD instabilities [4, 5]. Finally, we include a mutualbenchmark between our formulation of SpeCyl and another MHD nonlinear simulations code,
Pixie3D [6], with analogous physical assumptions at plasma edge. This extends the nonlinear
benchmark, already performed between the two codes in the past [7].
Tipologia CRIS:
04.01 Contributo in Atti di convegno
Keywords:
3D nonlinear MHD code SpeCyl; magneto fluid-dynamics boundary
Elenco autori:
Bonfiglio, Daniele; Cappello, Susanna
Link alla scheda completa:
Titolo del libro:
48th EPS Conference on Plasma Physics 27 June - 1 July 2022
Pubblicato in: