In 2013 a redesigned solid tungsten divertor, Div-III, was installed in ASDEX Upgrade. In two experimental campaigns more than 2700 plasma discharges with up to 10s duration, 110MJ plasma heating, and reaching a Psep/R of 10MW/m were conducted. Div-III is an adiabatically loaded divertor with tungsten target tiles clamped onto a water cooled structure. The tungsten target tiles were inspected and characterized during the shut-down period in 2014. As a result of the target inspection characteristic modifications of the plasma exposed tiles were detected that were not found during the target qualification in a high heat load test facility. 126 out of 128 tiles reveal deep cracks through the target. A lot of tiles show shallow cracks in the hi...
The experimental ASDEX Upgrade results of the Divertor I phase are reviewed with emphasis on H-mode ...
Abstract In ASDEX Upgrade, nearly all plasma facing components (PFC) besides the strike point area o...
The ASDEX Upgrade (AUG) programme is directed towards physics input to critical elements of the ITER...
ASDEX Upgrade was operated with about 6400 s plasma discharge during the scientific program in 2007/...
The effect of continued plasma exposure on two divertor target tiles intentionally damaged before in...
Abstract. The material for plasma facing components of a future fusion device is still not decided. ...
The effect of continued plasma exposure on two divertor target tiles intentionally damaged before in...
Abstract Operation with all tungsten plasma facing components has become routine in ASDEX Upgrade. T...
Operation with all tungsten plasma facing components has become routine in ASDEX Up-grade. The condi...
Net erosion and deposition of tungsten (W) in the ASDEX Upgrade divertor were determined after the 2...
ASDEX Upgrade is an ITER shaped divertor tokamak with versatile heating, fueling, exhaust and contro...
The conceptual design of a solid tungsten divertor for ASDEX Upgrade is presented. The ergy and ns o...
The tungsten programme in ASDEX Upgrade is pursued towards a full high-Z device. The spectroscopic d...
In ASDEX Upgrade tungsten is used as a high-Z plasma facing material. Its erosion, migration and sub...
ASDEX Upgrade (AUG) is an ITER-shaped divertor tokamak with versatile heating, fueling, exhaust, and...
The experimental ASDEX Upgrade results of the Divertor I phase are reviewed with emphasis on H-mode ...
Abstract In ASDEX Upgrade, nearly all plasma facing components (PFC) besides the strike point area o...
The ASDEX Upgrade (AUG) programme is directed towards physics input to critical elements of the ITER...
ASDEX Upgrade was operated with about 6400 s plasma discharge during the scientific program in 2007/...
The effect of continued plasma exposure on two divertor target tiles intentionally damaged before in...
Abstract. The material for plasma facing components of a future fusion device is still not decided. ...
The effect of continued plasma exposure on two divertor target tiles intentionally damaged before in...
Abstract Operation with all tungsten plasma facing components has become routine in ASDEX Upgrade. T...
Operation with all tungsten plasma facing components has become routine in ASDEX Up-grade. The condi...
Net erosion and deposition of tungsten (W) in the ASDEX Upgrade divertor were determined after the 2...
ASDEX Upgrade is an ITER shaped divertor tokamak with versatile heating, fueling, exhaust and contro...
The conceptual design of a solid tungsten divertor for ASDEX Upgrade is presented. The ergy and ns o...
The tungsten programme in ASDEX Upgrade is pursued towards a full high-Z device. The spectroscopic d...
In ASDEX Upgrade tungsten is used as a high-Z plasma facing material. Its erosion, migration and sub...
ASDEX Upgrade (AUG) is an ITER-shaped divertor tokamak with versatile heating, fueling, exhaust, and...
The experimental ASDEX Upgrade results of the Divertor I phase are reviewed with emphasis on H-mode ...
Abstract In ASDEX Upgrade, nearly all plasma facing components (PFC) besides the strike point area o...
The ASDEX Upgrade (AUG) programme is directed towards physics input to critical elements of the ITER...