In recent years, the nonlinear 3D magnetohydrodynamic codes JOREK, M3D-C1, and NIMROD developed the capability of modeling realistic 3D vertical displacement events (VDEs) including resistive walls. In this paper, a comprehensive 3D VDE benchmark is presented between these state-of-the-art codes. The simulated case is based on an experimental NSTX plasma but with a simplified rectangular wall. There are differences between the physics models and numerical methods, and the VDE evolution leads to sensitivities on the initial conditions that cannot be avoided as can be done in edge localized modes (ELM) and sawtooth simulations (due to the non-cyclical nature of VDEs). Nonetheless, the comparison serves to quantify the level of agreement in th...
Abstract. The dynamics of large scale plasma instabilities can be strongly influenced by the mutual ...
Non-linear MHD simulations play an essential role in active research and understanding of tokamakpla...
3D non-linear MHD simulations of a D 2 massive gas injection (MGI) triggered disruption in JET with ...
A benchmark exercise for the modeling of vertical displacement events(VDEs) is presented and applied...
Tokamak plasmas with highly elongated cross sections are subject to a vertical displacement event (V...
Tokamak plasmas with highly elongated cross sections are subject to a vertical displacement event (V...
JOREK is a massively parallel fully implicit non-linear extended magneto-hydrodynamic (MHD) code for...
Experiments and axisymmetric MHD simulations on tokamak disruptions have explicated the underlying m...
One of the most promising concepts for future fusion reactors is the tokamak. In these devices, a ho...
The M3D (Multi-level 3D) tokamak simulation project aims at the simulation of tokamak plasmas using ...
Non-linear magnetohydrodynamic (MHD) simulations play an essential role in active research and under...
The NIMROD and M3D / M3D-C1 codes now each have both a resistive MHD and a two-fluid (2F) capability...
Abstract. The dynamics of large scale plasma instabilities can be strongly influenced by the mutual ...
Non-linear MHD simulations play an essential role in active research and understanding of tokamakpla...
3D non-linear MHD simulations of a D 2 massive gas injection (MGI) triggered disruption in JET with ...
A benchmark exercise for the modeling of vertical displacement events(VDEs) is presented and applied...
Tokamak plasmas with highly elongated cross sections are subject to a vertical displacement event (V...
Tokamak plasmas with highly elongated cross sections are subject to a vertical displacement event (V...
JOREK is a massively parallel fully implicit non-linear extended magneto-hydrodynamic (MHD) code for...
Experiments and axisymmetric MHD simulations on tokamak disruptions have explicated the underlying m...
One of the most promising concepts for future fusion reactors is the tokamak. In these devices, a ho...
The M3D (Multi-level 3D) tokamak simulation project aims at the simulation of tokamak plasmas using ...
Non-linear magnetohydrodynamic (MHD) simulations play an essential role in active research and under...
The NIMROD and M3D / M3D-C1 codes now each have both a resistive MHD and a two-fluid (2F) capability...
Abstract. The dynamics of large scale plasma instabilities can be strongly influenced by the mutual ...
Non-linear MHD simulations play an essential role in active research and understanding of tokamakpla...
3D non-linear MHD simulations of a D 2 massive gas injection (MGI) triggered disruption in JET with ...