The Advanced Limiter Test (ALT) project is the focus of a fruitful and intense International Energy Agreement collaboration on TEXTOR. The pump limiter is a mechanical boundary that is laid out for taking the full heat load of TEXTOR, namely 8 MW (assuming 2 MW radiated power)for 10 s, and provides a pumping efficiency of at least 5% of the working gas. This layout is adopted from the requirements of a fusion reactor: It is mandatory to remove both the full power that is convected to the limiter or divertor and the helium ash that is generated in the fusion process. In order to obtain pumping for all gases, the ALT-II is equipped with turbomolecular pumps. A short description of ALT-II is given, and the power and particle fluxes to the limi...
The heat load on plasma-facing components is a key issue for forthcoming fusion experiments. In this...
The heat load on plasma-facing components is a key issue for forthcoming fusion experiments. In this...
Fluid targets, i.e. liquids or solids moving through the high heat flux zones, may be a way to solve...
Langmuir probes have been used to characterize the edge plasma of the TEXTOR tokamak and measure the...
Pump limiters are mechanical devices for He-ash removal, fuel particle control, and possibly impurit...
The two-dimensional multifluid code TECXY has been used to model the biasing (with respect to the fi...
Preliminary analysis has been completed on measurements of limiter heating during high fusion power ...
The Advanced Limiter-divertor Plasma-facing Systems (ALPS) program was initiated in order to evaluat...
Large neutral gas accumulation has been observed in trapped volumes directly behind the mechanical l...
A simple analytic fluid model based on particle and momentum conservation describes the response of ...
First pump limiter experiments were performed on ISX-B. Two pump limiter modules were installed in t...
Divertors with chaotic magnetic field structures are a field of major interest in todays fusion rese...
TEXTOR is the Tokamak Experiment for Technology Oriented Research in the field of plasma-wall inter-...
The change in the temperature distribution was investigated for different target materials by insert...
The 2D multifluid code TECXY has been used to model the experimental biasing of the toroidal belt li...
The heat load on plasma-facing components is a key issue for forthcoming fusion experiments. In this...
The heat load on plasma-facing components is a key issue for forthcoming fusion experiments. In this...
Fluid targets, i.e. liquids or solids moving through the high heat flux zones, may be a way to solve...
Langmuir probes have been used to characterize the edge plasma of the TEXTOR tokamak and measure the...
Pump limiters are mechanical devices for He-ash removal, fuel particle control, and possibly impurit...
The two-dimensional multifluid code TECXY has been used to model the biasing (with respect to the fi...
Preliminary analysis has been completed on measurements of limiter heating during high fusion power ...
The Advanced Limiter-divertor Plasma-facing Systems (ALPS) program was initiated in order to evaluat...
Large neutral gas accumulation has been observed in trapped volumes directly behind the mechanical l...
A simple analytic fluid model based on particle and momentum conservation describes the response of ...
First pump limiter experiments were performed on ISX-B. Two pump limiter modules were installed in t...
Divertors with chaotic magnetic field structures are a field of major interest in todays fusion rese...
TEXTOR is the Tokamak Experiment for Technology Oriented Research in the field of plasma-wall inter-...
The change in the temperature distribution was investigated for different target materials by insert...
The 2D multifluid code TECXY has been used to model the experimental biasing of the toroidal belt li...
The heat load on plasma-facing components is a key issue for forthcoming fusion experiments. In this...
The heat load on plasma-facing components is a key issue for forthcoming fusion experiments. In this...
Fluid targets, i.e. liquids or solids moving through the high heat flux zones, may be a way to solve...