Future fusion reactors require a safe, steady state divertor operation. A possible solution for the power exhaust challenge is the detached divertor operation in scenarios with high radiated power fractions. The radiation can be increased by seeding impurities, such as N for dominant scrape-off-layer radiation, Ne or Ar for SOL and pedestal radiation and Kr for dominant core radiation.Recent experiments on two of the all-metal tokamaks, ASDEX Upgrade (AUG) and JET, demonstrate operation with high radiated power fractions and a fully-detached divertor by N, Ne or Kr seeding with a conventional divertor in a vertical target geometry. For both devices similar observations can be made. In the scenarios with the highest radiated power fraction, ...
With tokamak devices developing towards higher heating powers, and carbon plasma facing components b...
Edge localised modes (ELMs) are a serious concern for plasma facing components in next generation to...
Divertor detachment is a prerequisite for large burning plasma fusion devices. The understanding of ...
Future fusion reactors require a safe, steady state divertor operation. A possible solution for the ...
Radiative power exhaust by impurity seeding was demonstrated for the first time in island divertor c...
Analytical expressions for the divertor radiation around the onset of detachment based on the divert...
Using newly developed spectroscopic models to measure the divertor concentration of Ne and Ar, it is...
The impurity-seeded detached divertor is essential for heat exhaust in ITER and other reactor-releva...
The presently favoured option for reactor power handling combines metallic plasma-facing components ...
Multi-species impurity seeding is an advanced operation scenario to mitigate the divertor heat load ...
+See App. of F. Romanelli et al., Proc. of the 23rd IAEA Fusion Energy Conf. 2010, Daejeon, Korea Th...
Substantial power dissipation in the edge plasma is required for the safe operation of ITER and next...
In according to a present understanding of Scrape-Off Layer (SOL) physics, future thermonuclear devi...
Effective power exhaust by impurity seeding and its dependence on the gas species used was demonstra...
New techniques that attempt to more fully exploit spectroscopic diagnostics in the divertor and pede...
With tokamak devices developing towards higher heating powers, and carbon plasma facing components b...
Edge localised modes (ELMs) are a serious concern for plasma facing components in next generation to...
Divertor detachment is a prerequisite for large burning plasma fusion devices. The understanding of ...
Future fusion reactors require a safe, steady state divertor operation. A possible solution for the ...
Radiative power exhaust by impurity seeding was demonstrated for the first time in island divertor c...
Analytical expressions for the divertor radiation around the onset of detachment based on the divert...
Using newly developed spectroscopic models to measure the divertor concentration of Ne and Ar, it is...
The impurity-seeded detached divertor is essential for heat exhaust in ITER and other reactor-releva...
The presently favoured option for reactor power handling combines metallic plasma-facing components ...
Multi-species impurity seeding is an advanced operation scenario to mitigate the divertor heat load ...
+See App. of F. Romanelli et al., Proc. of the 23rd IAEA Fusion Energy Conf. 2010, Daejeon, Korea Th...
Substantial power dissipation in the edge plasma is required for the safe operation of ITER and next...
In according to a present understanding of Scrape-Off Layer (SOL) physics, future thermonuclear devi...
Effective power exhaust by impurity seeding and its dependence on the gas species used was demonstra...
New techniques that attempt to more fully exploit spectroscopic diagnostics in the divertor and pede...
With tokamak devices developing towards higher heating powers, and carbon plasma facing components b...
Edge localised modes (ELMs) are a serious concern for plasma facing components in next generation to...
Divertor detachment is a prerequisite for large burning plasma fusion devices. The understanding of ...