In magnetic confinement fusion devices, during abnormal operations (disruptions) the plasma begins to move rapidly towards the vessel wall in a vertical displacement event (VDE), producing plasma current asymmetries, vessel eddy currents and open field line halo currents, each of which can exert potentially damaging forces upon the vessel and in-vessel components. This paper presents a methodology to estimate electromagnetic loads, on three-dimensional conductive structures surrounding the plasma, which arise from the interaction of halo-currents associated to VDEs with a magnetic field of the order of some Tesla needed for plasma confinement. Lorentz forces, calculated by complementary formulations, are used as constraining loads in a line...
All thermonuclear controlled fusion devices under construction or design have such high performances...
The aim of this paper is to assess the importance of the magnetic damping in the dynamic response of...
In this paper we compute the electromagnetic loads (forces, torques, Joule losses) on passive conduc...
In magnetic connement fusion devices, during abnormal operations (disruptions) the plasma begins to ...
The paper aims to give a contribution to the critical issue of the plasma disruptions in the next ge...
In this paper, we present a new numerical model for the solution of the classic electromagnetomechan...
Disruptions represent one of the main concerns for Tokamak operation, especially in view of fusion r...
A method is developed for the numerical simulation of plasma disruptions in tokamak fusion devices. ...
The roadmap to fusion electricity of the European scientific program aims at the realization of the ...
This paper describes a family of relatively simple numerical models for calculation of asymmetric el...
This paper presents the study of the forces and moments expected on the European DEMO divertor, due ...
In magnetic-confinement toroidal machines, only a limited number of first wall modules can be equipp...
Abstract. The dynamics of large scale plasma instabilities can be strongly influenced by the mutual ...
In this paper we present a method to compute spatial and time evolution of electromagnetic forces in...
In this paper we compute the electromagnetic loads (forces, torques, Joule losses) on passive conduc...
All thermonuclear controlled fusion devices under construction or design have such high performances...
The aim of this paper is to assess the importance of the magnetic damping in the dynamic response of...
In this paper we compute the electromagnetic loads (forces, torques, Joule losses) on passive conduc...
In magnetic connement fusion devices, during abnormal operations (disruptions) the plasma begins to ...
The paper aims to give a contribution to the critical issue of the plasma disruptions in the next ge...
In this paper, we present a new numerical model for the solution of the classic electromagnetomechan...
Disruptions represent one of the main concerns for Tokamak operation, especially in view of fusion r...
A method is developed for the numerical simulation of plasma disruptions in tokamak fusion devices. ...
The roadmap to fusion electricity of the European scientific program aims at the realization of the ...
This paper describes a family of relatively simple numerical models for calculation of asymmetric el...
This paper presents the study of the forces and moments expected on the European DEMO divertor, due ...
In magnetic-confinement toroidal machines, only a limited number of first wall modules can be equipp...
Abstract. The dynamics of large scale plasma instabilities can be strongly influenced by the mutual ...
In this paper we present a method to compute spatial and time evolution of electromagnetic forces in...
In this paper we compute the electromagnetic loads (forces, torques, Joule losses) on passive conduc...
All thermonuclear controlled fusion devices under construction or design have such high performances...
The aim of this paper is to assess the importance of the magnetic damping in the dynamic response of...
In this paper we compute the electromagnetic loads (forces, torques, Joule losses) on passive conduc...