Feedback-controlled puffing of neon and deuterium has been applied to control the edge-localized-mode behavior and the target plate power deposition during high-power H -mode discharges in ASDEX Upgrade. A regime has been found in which more than 90% of the heating power is lost through radiation and divertor detachment occurs, without deterioration of the energy confinement. The plasma remains in the H mode, exhibiting small-amplitude, high-frequency ELM's, which do not penetrate to the target plates in the strike zone region
A new divertor configuration (DIV-IIb) has been implemented in ASDEX Upgrade. In order to accommodat...
ASDEX Upgrade results on crucial issues of H-mode operation are reported, i.e. density profile shape...
An overview of recent results obtained at the tokamak ASDEX Upgrade (AUG) is given. A work flow for ...
Puffing of impurities (neon, argon) and deuterium gas in the main chamber is used to simultaneously ...
Power exhaust in future fusion devices is critical and operation with a detached divertor is foresee...
Abstract. In this article a new experimental classification of divertor detachment in ASDEX Upgrade ...
Divertor detachment is a prerequisite for large burning plasma fusion devices. The understanding of ...
The authors characterize the divertor target plate heat and particle fluxes that occur due to Edge-L...
H-mode operational boundaries and H-mode confinement are investigated on ASDEX Upgrade. The local ed...
Detached divertor operation in H-Mode is essential for future fusion reactors to be able to handle t...
Studies in ASDEX Upgrade of the phenomenology and scaling of the H-mode transition, of edge-localize...
The term “shoulder formation” refers to an increase of the density decay length in the scrape-off la...
Analytical expressions for the divertor radiation around the onset of detachment based on the divert...
Particle and energy losses due to type-I edge-localized modes (ELMs) and the effect of H-mode pedest...
Electron pressure proles have been obtained in the outer midplane and along the divertor target usin...
A new divertor configuration (DIV-IIb) has been implemented in ASDEX Upgrade. In order to accommodat...
ASDEX Upgrade results on crucial issues of H-mode operation are reported, i.e. density profile shape...
An overview of recent results obtained at the tokamak ASDEX Upgrade (AUG) is given. A work flow for ...
Puffing of impurities (neon, argon) and deuterium gas in the main chamber is used to simultaneously ...
Power exhaust in future fusion devices is critical and operation with a detached divertor is foresee...
Abstract. In this article a new experimental classification of divertor detachment in ASDEX Upgrade ...
Divertor detachment is a prerequisite for large burning plasma fusion devices. The understanding of ...
The authors characterize the divertor target plate heat and particle fluxes that occur due to Edge-L...
H-mode operational boundaries and H-mode confinement are investigated on ASDEX Upgrade. The local ed...
Detached divertor operation in H-Mode is essential for future fusion reactors to be able to handle t...
Studies in ASDEX Upgrade of the phenomenology and scaling of the H-mode transition, of edge-localize...
The term “shoulder formation” refers to an increase of the density decay length in the scrape-off la...
Analytical expressions for the divertor radiation around the onset of detachment based on the divert...
Particle and energy losses due to type-I edge-localized modes (ELMs) and the effect of H-mode pedest...
Electron pressure proles have been obtained in the outer midplane and along the divertor target usin...
A new divertor configuration (DIV-IIb) has been implemented in ASDEX Upgrade. In order to accommodat...
ASDEX Upgrade results on crucial issues of H-mode operation are reported, i.e. density profile shape...
An overview of recent results obtained at the tokamak ASDEX Upgrade (AUG) is given. A work flow for ...