In the ASDEX Upgrade tokamak, power deposition structures on the outer divertor target surfaces during type-I Edge Localised Modes (ELMs) have been discovered by infra red thermography. These structures are radially and toroidally separated non-axisymmetric spirals. They are most obvious about 80 mm away from the toroidal symmetric strike zone on the target plates. The spiral structure of the power load is caused by a toroidally structured energy release in the outer midplane during the non-linear phase of a type-I ELM cycle as shown by basic field line tracing. The resulting structures correspond to values around z(m) n ≈ 12 and m ≈ 50 (for q95 ≈ 4)
Experiments have been conducted in SNL type-I ELMy H-mode on ASDEX Up-grade. Depending on the upstre...
In the early twentieth century, scientists found out what process keeps the Sun burning: nuclear fus...
Edge localized mode ( ELM) measurements in many tokamaks, including ASDEX-Upgrade, DIII-D, JET, JT-6...
In the ASDEX Upgrade tokamak, power deposition structures on the outer divertor target surfaces duri...
In the ASDEX Upgrade tokamak, power deposition structures on the outer divertor target surfaces duri...
In the ASDEX Upgrade tokamak, complex power deposition structures on the divertor target plates duri...
The authors characterize the divertor target plate heat and particle fluxes that occur due to Edge-L...
Edge Localised Mode (ELM)-induced heat loads, in particular divertor heat loads present one of the m...
In DIII-D, large currents flowing into the divertor floor during edge-localized modes (ELMs) have be...
One of the outstanding problems for a next step fusion device is the handling of the power fluxes in...
Resonant magnetic perturbation experiments at JET with the ITER-like wall have shown the formation o...
This paper reviews what is known about edge localized modes (ELMs), with an emphasis on their effect...
As shown on DIII-D edge localized modes (ELMs) can be either completely eliminated or mitigated with...
International audienceTungsten (W) melting due to transient power loads, for example those delivered...
A new infra red camera (IR) for high resolution infra red studies for the outer divertor target plat...
Experiments have been conducted in SNL type-I ELMy H-mode on ASDEX Up-grade. Depending on the upstre...
In the early twentieth century, scientists found out what process keeps the Sun burning: nuclear fus...
Edge localized mode ( ELM) measurements in many tokamaks, including ASDEX-Upgrade, DIII-D, JET, JT-6...
In the ASDEX Upgrade tokamak, power deposition structures on the outer divertor target surfaces duri...
In the ASDEX Upgrade tokamak, power deposition structures on the outer divertor target surfaces duri...
In the ASDEX Upgrade tokamak, complex power deposition structures on the divertor target plates duri...
The authors characterize the divertor target plate heat and particle fluxes that occur due to Edge-L...
Edge Localised Mode (ELM)-induced heat loads, in particular divertor heat loads present one of the m...
In DIII-D, large currents flowing into the divertor floor during edge-localized modes (ELMs) have be...
One of the outstanding problems for a next step fusion device is the handling of the power fluxes in...
Resonant magnetic perturbation experiments at JET with the ITER-like wall have shown the formation o...
This paper reviews what is known about edge localized modes (ELMs), with an emphasis on their effect...
As shown on DIII-D edge localized modes (ELMs) can be either completely eliminated or mitigated with...
International audienceTungsten (W) melting due to transient power loads, for example those delivered...
A new infra red camera (IR) for high resolution infra red studies for the outer divertor target plat...
Experiments have been conducted in SNL type-I ELMy H-mode on ASDEX Up-grade. Depending on the upstre...
In the early twentieth century, scientists found out what process keeps the Sun burning: nuclear fus...
Edge localized mode ( ELM) measurements in many tokamaks, including ASDEX-Upgrade, DIII-D, JET, JT-6...