This paper investigates the effect of the ITER-like wall (ILW) on runaway electron (RE) generation through a comparative study of similar slow argon injection JET disruptions, performed with different wall materials. In the carbon wall case, a RE plateau is observed, while in the ITER-like wall case, the current quench is slower and the runaway current is negligibly small. The aim of the paper is to shed light on the reason for these differences by detailed numerical modelling to study which factors affected the RE formation. The post-disruption current profile is calculated by a one-dimensional model of electric field, temperature and runaway current taking into account the impurity injection. Scans of various impurity contents are perform...
Équipe 107 : Physique des plasmas chaudsInternational audienceRunaway electrons (RE) during disrupti...
Équipe 107 : Physique des plasmas chaudsInternational audienceDisruptions are a major operational co...
Équipe 107 : Physique des plasmas chaudsInternational audienceDisruptions are a major operational co...
This paper investigates the effect of the ITER-like wall (ILW) on runaway electron (RE) generation t...
This paper investigates the effect of the ITER-like wall (ILW) on runaway electron (RE) generation t...
This paper investigates the effect of the ITER-like wall (ILW) on runaway electron (RE) generation t...
This paper investigates the effect of the ITER-like wall (ILW) on runaway electron (RE) generation t...
Abstract. This paper investigates the effect of the ITER-like wall (ILW) on runaway electron (RE) ge...
Disruptions in tokamak devices are phenomena where the plasma loses its confinement suddenly, on tim...
Disruptions in tokamak devices are phenomena where the plasma loses its confinement suddenly, on tim...
Équipe 107 : Physique des plasmas chaudsInternational audienceRunaway electrons (RE) during disrupti...
Équipe 107 : Physique des plasmas chaudsInternational audienceRunaway electrons (RE) during disrupti...
Runaway electrons (RE) during disruptions are a concern for future tokamaks including ITER with its ...
Équipe 107 : Physique des plasmas chaudsInternational audienceRunaway electrons (RE) during disrupti...
Équipe 107 : Physique des plasmas chaudsInternational audienceRunaway electrons (RE) during disrupti...
Équipe 107 : Physique des plasmas chaudsInternational audienceRunaway electrons (RE) during disrupti...
Équipe 107 : Physique des plasmas chaudsInternational audienceDisruptions are a major operational co...
Équipe 107 : Physique des plasmas chaudsInternational audienceDisruptions are a major operational co...
This paper investigates the effect of the ITER-like wall (ILW) on runaway electron (RE) generation t...
This paper investigates the effect of the ITER-like wall (ILW) on runaway electron (RE) generation t...
This paper investigates the effect of the ITER-like wall (ILW) on runaway electron (RE) generation t...
This paper investigates the effect of the ITER-like wall (ILW) on runaway electron (RE) generation t...
Abstract. This paper investigates the effect of the ITER-like wall (ILW) on runaway electron (RE) ge...
Disruptions in tokamak devices are phenomena where the plasma loses its confinement suddenly, on tim...
Disruptions in tokamak devices are phenomena where the plasma loses its confinement suddenly, on tim...
Équipe 107 : Physique des plasmas chaudsInternational audienceRunaway electrons (RE) during disrupti...
Équipe 107 : Physique des plasmas chaudsInternational audienceRunaway electrons (RE) during disrupti...
Runaway electrons (RE) during disruptions are a concern for future tokamaks including ITER with its ...
Équipe 107 : Physique des plasmas chaudsInternational audienceRunaway electrons (RE) during disrupti...
Équipe 107 : Physique des plasmas chaudsInternational audienceRunaway electrons (RE) during disrupti...
Équipe 107 : Physique des plasmas chaudsInternational audienceRunaway electrons (RE) during disrupti...
Équipe 107 : Physique des plasmas chaudsInternational audienceDisruptions are a major operational co...
Équipe 107 : Physique des plasmas chaudsInternational audienceDisruptions are a major operational co...