In this paper, we present the electromechanical coupled analysis of the ITER vacuum vessel in case of slow downward locked and rotating Asymmetric VDEs. The numerical model for simulating the AVDE includes the asymmetric distribution of the halo currents obtained by a suitable 3D kink perturbation of a slow VDE downward computed by the 2D code DINA. In the case of a rotational AVDE, the rotation frequency of the kink asymmetry has been chosen to be ω = 2π × 5 rad/s. The model includes the mesh of the main passive components facing the plasma. The whole torus (360 degrees) has been discretized. It is shown that the very high complexity of the numerical model can be suitably treated. The strength of the sideways force here computed is compara...
Vertical Displacement Events (VDEs) are a major concern for future tokamak operation since their con...
Axisymmetric MHD simulations have revealed a new driving mechanism that governs the vertical displac...
During some JET vertical displacement events (VDEs) plasma current and position are found to be toro...
In this paper, we present the electromechanical coupled analysis of the ITER vacuum vessel in case o...
This paper deals with the halo current distribution due to asymmetric vertical displacement events (...
In tokamaks during plasma transients, such as vertical displacement events (VDE), a certain amount o...
Static structural analyses of the ITER vacuum vessel were performed with toroidally asymmetric disru...
This paper describes a family of relatively simple numerical models for calculation of asymmetric el...
© 2020 Elsevier B.V. In tokamaks during plasma vertical displacement events (VDEs) electrical curren...
This paper summarises the preliminary results of the electromagnetic (EM) analyses for ITER vacuum v...
The linear and quasi-linear plasma response to the n = 3 and n = 4 (n is the toroidal mode number) r...
Vertical Displacement Events (VDEs) are a major concern for future tokamak operation since their con...
Axisymmetric MHD simulations have revealed a new driving mechanism that governs the vertical displac...
During some JET vertical displacement events (VDEs) plasma current and position are found to be toro...
In this paper, we present the electromechanical coupled analysis of the ITER vacuum vessel in case o...
This paper deals with the halo current distribution due to asymmetric vertical displacement events (...
In tokamaks during plasma transients, such as vertical displacement events (VDE), a certain amount o...
Static structural analyses of the ITER vacuum vessel were performed with toroidally asymmetric disru...
This paper describes a family of relatively simple numerical models for calculation of asymmetric el...
© 2020 Elsevier B.V. In tokamaks during plasma vertical displacement events (VDEs) electrical curren...
This paper summarises the preliminary results of the electromagnetic (EM) analyses for ITER vacuum v...
The linear and quasi-linear plasma response to the n = 3 and n = 4 (n is the toroidal mode number) r...
Vertical Displacement Events (VDEs) are a major concern for future tokamak operation since their con...
Axisymmetric MHD simulations have revealed a new driving mechanism that governs the vertical displac...
During some JET vertical displacement events (VDEs) plasma current and position are found to be toro...