New techniques that attempt to more fully exploit spectroscopic diagnostics in the divertor and pedestal region during highly dissipative scenarios are demonstrated using experimental results from recent low-Z seeding experiments on Alcator C-Mod, JET and ASDEX Upgrade. To exhaust power at high parallel heat flux, q∥ > 1 GW/m2, while minimizing erosion, reactors with solid, high-Z plasma facing components (PFCs) are expected to use extrinsic impurity seeding. Due to transport and atomic physics processes which impact impurity ionization balance, so-called ‘non-coronal’ effects, we do not accurately know and have yet to demonstrate the maximum q∥ which can be mitigated in a tokamak. Radiation enhancement for nitrogen is shown to arise primar...
Clear increases in confinement (from H{sub 89P} {approx} 1 to H{sub 89P} {<=} 2) and simultaneous...
The impurity concentration in the tokamak divertor plasma is a necessary input for predictive scalin...
The former all-carbon wall on JET has been replaced with beryllium in the main torus and tungsten in...
New techniques that attempt to more fully exploit spectroscopic diagnostics in the divertor and pede...
The impurity-seeded detached divertor is essential for heat exhaust in ITER and other reactor-releva...
Scaling to larger tokamaks of high confinement plasmas with radiating edges, induced by impurities, ...
The authors are investigating impurity production and transport in the divertor and edge regions of ...
With tokamak devices developing towards higher heating powers, and carbon plasma facing components b...
Modeling and experimental investigation of the distribution of seeded impurities and their influence...
Future fusion reactors require a safe, steady state divertor operation. A possible solution for the ...
The achievement of sustainable operation in tokamaks depends crucially on accurate understanding of ...
Équipe 107 : Physique des plasmas chaudsInternational audienceNitrogen seeded JET-ILW H-mode plasmas...
New experiments on Alcator C-Mod reveal that the favorable impurity screening characteristics of the...
Clear increases in confinement (from H{sub 89P} {approx} 1 to H{sub 89P} {<=} 2) and simultaneous...
The impurity concentration in the tokamak divertor plasma is a necessary input for predictive scalin...
The former all-carbon wall on JET has been replaced with beryllium in the main torus and tungsten in...
New techniques that attempt to more fully exploit spectroscopic diagnostics in the divertor and pede...
The impurity-seeded detached divertor is essential for heat exhaust in ITER and other reactor-releva...
Scaling to larger tokamaks of high confinement plasmas with radiating edges, induced by impurities, ...
The authors are investigating impurity production and transport in the divertor and edge regions of ...
With tokamak devices developing towards higher heating powers, and carbon plasma facing components b...
Modeling and experimental investigation of the distribution of seeded impurities and their influence...
Future fusion reactors require a safe, steady state divertor operation. A possible solution for the ...
The achievement of sustainable operation in tokamaks depends crucially on accurate understanding of ...
Équipe 107 : Physique des plasmas chaudsInternational audienceNitrogen seeded JET-ILW H-mode plasmas...
New experiments on Alcator C-Mod reveal that the favorable impurity screening characteristics of the...
Clear increases in confinement (from H{sub 89P} {approx} 1 to H{sub 89P} {<=} 2) and simultaneous...
The impurity concentration in the tokamak divertor plasma is a necessary input for predictive scalin...
The former all-carbon wall on JET has been replaced with beryllium in the main torus and tungsten in...