Plasma disruptions are one of the major concerns in the design phase of fusion devices. The very high eddy and Halo currents, induced in the passive structures, crossing the electromagnetic field generate huge loads. A Vertical Displacement Event (VDE) begins with a loss of position control that could be triggered by a plasma perturbation (e.g. ELMs, L-H and H-L transitions, minor disruptions, etc.) acting as a source of vertical and horizontal plasma displacements. At a certain point a fast Thermal Quench (TQ) takes place. After that the plasma current abruptly decreases (Current Quench (CQ) phase). During the plasma evolution, especially during the TQ and CQ, toroidal and poloidal eddy currents are induced in the metallic components, resp...
In recent years, the nonlinear 3D magnetohydrodynamic codes JOREK, M3D-C1, and NIMROD developed the ...
The electromagnetic (EM) loads produced by plasma disruptions are the most concerning issue for the ...
© 2020 Elsevier B.V. In tokamaks during plasma vertical displacement events (VDEs) electrical curren...
Plasma disruptions are one of the major concerns in the design phase of fusion devices. The very hig...
In the context of the Divertor Tokamak Test facility (DTT) project, a recently developed procedure b...
In the development of the DEMO Physics Basis an important role is played by the prediction of the pl...
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 ...
To support the deployment of the DEMO wall protection strategy, the development of comprehensive ana...
This paper summarises the preliminary results of the electromagnetic (EM) analyses for ITER vacuum v...
The design study of DEMO is one of the main points of the European Roadmap to Fusion Electricity. Th...
The analysis of the stresses induced on the vacuum vessel (VV) of a Tokamak and its internal compo...
Abstract. The dynamics of large scale plasma instabilities can be strongly influenced by the mutual ...
A method is developed for the numerical simulation of plasma disruptions in tokamak fusion devices. ...
In recent years, the nonlinear 3D magnetohydrodynamic codes JOREK, M3D-C1, and NIMROD developed the ...
The electromagnetic (EM) loads produced by plasma disruptions are the most concerning issue for the ...
© 2020 Elsevier B.V. In tokamaks during plasma vertical displacement events (VDEs) electrical curren...
Plasma disruptions are one of the major concerns in the design phase of fusion devices. The very hig...
In the context of the Divertor Tokamak Test facility (DTT) project, a recently developed procedure b...
In the development of the DEMO Physics Basis an important role is played by the prediction of the pl...
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 ...
To support the deployment of the DEMO wall protection strategy, the development of comprehensive ana...
This paper summarises the preliminary results of the electromagnetic (EM) analyses for ITER vacuum v...
The design study of DEMO is one of the main points of the European Roadmap to Fusion Electricity. Th...
The analysis of the stresses induced on the vacuum vessel (VV) of a Tokamak and its internal compo...
Abstract. The dynamics of large scale plasma instabilities can be strongly influenced by the mutual ...
A method is developed for the numerical simulation of plasma disruptions in tokamak fusion devices. ...
In recent years, the nonlinear 3D magnetohydrodynamic codes JOREK, M3D-C1, and NIMROD developed the ...
The electromagnetic (EM) loads produced by plasma disruptions are the most concerning issue for the ...
© 2020 Elsevier B.V. In tokamaks during plasma vertical displacement events (VDEs) electrical curren...