This paper describes a family of relatively simple numerical models for calculation of asymmetric electromagnetic (EM) loads at all tokamak structures and coils at asymmetric vertical plasma displacement events (AVDE). Unlike currently known AVDE studies concentrated on plasma physics, these models have a practical purpose to calculate detailed time-dependent patterns of AVDE-induced EM loads everywhere in the tokamak. They are built to intrinsically assure good-enough EM load balance (opposite net forces and torques for the Vacuum Vessel and the Magnets with zero total for the entire tokamak), as needed for consequent simulation of the tokamak’s dynamic response to AVDE, as well as for the development of tokamak monitoring algorithms and t...
This paper presents the study of the forces and moments expected on the European DEMO divertor, due ...
In magnetic confinement fusion devices, during abnormal operations (disruptions) the plasma begins t...
Vertical Displacement Events (VDEs) are a major concern for future tokamak operation since their con...
Asymmetric vertical disruption events (AVDEs) are fortunately rare, but can induce large lateral for...
The analysis of the stresses induced on the vacuum vessel (VV) of a Tokamak and its internal compo...
This paper deals with the halo current distribution due to asymmetric vertical displacement events (...
© 2020 Elsevier B.V. In tokamaks during plasma vertical displacement events (VDEs) electrical curren...
A small fraction of plasma disruptions at JET lead to a significant horizontal displacement of the v...
In this paper, we present the electromechanical coupled analysis of the ITER vacuum vessel in case o...
In tokamaks during plasma transients, such as vertical displacement events (VDE), a certain amount o...
During some JET vertical displacement events (VDEs) plasma current and position are found to be toro...
To support the deployment of DEMO wall protection strategy, the development of comprehensive analyse...
This paper presents the study of the forces and moments expected on the European DEMO divertor, due ...
In magnetic confinement fusion devices, during abnormal operations (disruptions) the plasma begins t...
Vertical Displacement Events (VDEs) are a major concern for future tokamak operation since their con...
Asymmetric vertical disruption events (AVDEs) are fortunately rare, but can induce large lateral for...
The analysis of the stresses induced on the vacuum vessel (VV) of a Tokamak and its internal compo...
This paper deals with the halo current distribution due to asymmetric vertical displacement events (...
© 2020 Elsevier B.V. In tokamaks during plasma vertical displacement events (VDEs) electrical curren...
A small fraction of plasma disruptions at JET lead to a significant horizontal displacement of the v...
In this paper, we present the electromechanical coupled analysis of the ITER vacuum vessel in case o...
In tokamaks during plasma transients, such as vertical displacement events (VDE), a certain amount o...
During some JET vertical displacement events (VDEs) plasma current and position are found to be toro...
To support the deployment of DEMO wall protection strategy, the development of comprehensive analyse...
This paper presents the study of the forces and moments expected on the European DEMO divertor, due ...
In magnetic confinement fusion devices, during abnormal operations (disruptions) the plasma begins t...
Vertical Displacement Events (VDEs) are a major concern for future tokamak operation since their con...