The erosion of tungsten and carbon marker layers was studied in the outer divertor of ASDEX Upgrade. The outer strike point area and a large fraction of the outer baffle are net erosion areas for both materials. The net erosion rate of carbon is about 10–20 times larger than the net erosion rate of tungsten. The erosion is strongly inhomogeneous due to surface roughness, with a large erosion on plasma exposed areas of the rough surfaces, and deposition in recessions and pores
Abstract Carbon erosion and deposition in the ASDEX Upgrade divertor was investigated using a poloid...
AbstractAt the inner baffle of the AUG divertor massive polished inserts of tungsten and P92 steel w...
At the inner baffle of the AUG divertor massive polished inserts of tungsten and P92 steel were inst...
The erosion of tungsten and carbon marker layers was studied in the outer divertor of ASDEX Upgrade....
We have investigated net erosion and deposition of W and P92 steel in ASDEX Upgrade during its full-...
Net erosion and deposition of tungsten (W) in the ASDEX Upgrade divertor were determined after the 2...
Erosion of tungsten in the outer JET divertor was determined with a set of tungsten coated divertor ...
During the campaign 2002–2003 a carbon erosion and deposition experiment was performed in the lower ...
We have investigated net and gross erosion of W in the outer strike-point (OSP) region of ASDEX Upgr...
The transition from carbon to high-Z divertor devices reduces the erosion of the plasma facing compo...
Carbon deposition and erosion were measured on ASDEX Upgrade divertor tiles and below the roof baffl...
In ASDEX Upgrade tungsten is used as a high-Z plasma facing material. Its erosion, migration and sub...
The effect of surface roughness on the long-term erosion patterns of tungsten coatings was investiga...
This paper summarizes observations about net carbon erosion and re-deposition in the limiter tokamak...
In ASDEX Upgrade, tungsten was employed as plasma facing material at the central column heat shield ...
Abstract Carbon erosion and deposition in the ASDEX Upgrade divertor was investigated using a poloid...
AbstractAt the inner baffle of the AUG divertor massive polished inserts of tungsten and P92 steel w...
At the inner baffle of the AUG divertor massive polished inserts of tungsten and P92 steel were inst...
The erosion of tungsten and carbon marker layers was studied in the outer divertor of ASDEX Upgrade....
We have investigated net erosion and deposition of W and P92 steel in ASDEX Upgrade during its full-...
Net erosion and deposition of tungsten (W) in the ASDEX Upgrade divertor were determined after the 2...
Erosion of tungsten in the outer JET divertor was determined with a set of tungsten coated divertor ...
During the campaign 2002–2003 a carbon erosion and deposition experiment was performed in the lower ...
We have investigated net and gross erosion of W in the outer strike-point (OSP) region of ASDEX Upgr...
The transition from carbon to high-Z divertor devices reduces the erosion of the plasma facing compo...
Carbon deposition and erosion were measured on ASDEX Upgrade divertor tiles and below the roof baffl...
In ASDEX Upgrade tungsten is used as a high-Z plasma facing material. Its erosion, migration and sub...
The effect of surface roughness on the long-term erosion patterns of tungsten coatings was investiga...
This paper summarizes observations about net carbon erosion and re-deposition in the limiter tokamak...
In ASDEX Upgrade, tungsten was employed as plasma facing material at the central column heat shield ...
Abstract Carbon erosion and deposition in the ASDEX Upgrade divertor was investigated using a poloid...
AbstractAt the inner baffle of the AUG divertor massive polished inserts of tungsten and P92 steel w...
At the inner baffle of the AUG divertor massive polished inserts of tungsten and P92 steel were inst...