The former all-carbon wall on JET has been replaced with beryllium in the main torus and tungsten in the divertor to mimic the surface materials envisaged for ITER. Comparisons are presented between type I H-mode characteristics in each design by examining respective scans over deuterium fuelling and impurity seeding, required to ameliorate exhaust loads both in JET at full capability and in ITER. Attention is focused upon a common high-triangularity, single-null divertor configuration at 2.5 MA, q95 ≈ 3.5 yielding the most robust all-C performance. Contrasting results between the alternative linings are found firstly in unseeded plasmas, for which purity is improved and intrinsic radiation reduced in the ITER-like wall (ILW) but normalized...
In anticipation of revised operational limits accompanying upgrade of the JET tokamak to an all-meta...
Operation with an all metal, ITER-like wall on JET is scheduled from 2011. Adaptation particularly o...
Operation with an all metal, ITER-like wall on JET is scheduled from 2011. Adaptation particularly o...
The former all-carbon wall on JET has been replaced with beryllium in the main torus and tungsten in...
The former all-carbon wall on JET has been replaced with beryllium in the main torus and tungsten in...
The former all-carbon wall on JET has been replaced with beryllium in the main torus and tungsten in...
The former all-carbon wall on JET has been replaced with beryllium in the main torus and tungsten in...
The former all-carbon wall on JET has been replaced with beryllium in the main torus and tungsten in...
Équipe 107 : Physique des plasmas chaudsInternational audienceThe former all-carbon wall on JET has ...
Équipe 107 : Physique des plasmas chaudsInternational audienceThe former all-carbon wall on JET has ...
Équipe 107 : Physique des plasmas chaudsInternational audienceThe former all-carbon wall on JET has ...
In high confinement mode, highly shaped plasmas with edge localized modes in JET, and for heating po...
In high confinement mode, highly shaped plasmas with edge localized modes in JET, and for heating po...
In high confinement mode, highly shaped plasmas with edge localized modes in JET, and for heating po...
In high confinement mode, highly shaped plasmas with edge localized modes in JET, and for heating po...
In anticipation of revised operational limits accompanying upgrade of the JET tokamak to an all-meta...
Operation with an all metal, ITER-like wall on JET is scheduled from 2011. Adaptation particularly o...
Operation with an all metal, ITER-like wall on JET is scheduled from 2011. Adaptation particularly o...
The former all-carbon wall on JET has been replaced with beryllium in the main torus and tungsten in...
The former all-carbon wall on JET has been replaced with beryllium in the main torus and tungsten in...
The former all-carbon wall on JET has been replaced with beryllium in the main torus and tungsten in...
The former all-carbon wall on JET has been replaced with beryllium in the main torus and tungsten in...
The former all-carbon wall on JET has been replaced with beryllium in the main torus and tungsten in...
Équipe 107 : Physique des plasmas chaudsInternational audienceThe former all-carbon wall on JET has ...
Équipe 107 : Physique des plasmas chaudsInternational audienceThe former all-carbon wall on JET has ...
Équipe 107 : Physique des plasmas chaudsInternational audienceThe former all-carbon wall on JET has ...
In high confinement mode, highly shaped plasmas with edge localized modes in JET, and for heating po...
In high confinement mode, highly shaped plasmas with edge localized modes in JET, and for heating po...
In high confinement mode, highly shaped plasmas with edge localized modes in JET, and for heating po...
In high confinement mode, highly shaped plasmas with edge localized modes in JET, and for heating po...
In anticipation of revised operational limits accompanying upgrade of the JET tokamak to an all-meta...
Operation with an all metal, ITER-like wall on JET is scheduled from 2011. Adaptation particularly o...
Operation with an all metal, ITER-like wall on JET is scheduled from 2011. Adaptation particularly o...