Significant progress has been made on ASDEX Upgrade during the last two years in the basic understanding of transport, in the extension of the improved H-mode in parameter space and towards an integrated operating scenario and in the development of control methods for major performance limiting instabilities. The important features were the understanding of particle transport and the control of impurity accumulation based on it, the satisfactory operation with predominantly tungsten-clad walls, the improved H-mode operation over density ranges and for temperature ratios covering (non-simultaneously) the ITER requirements on ν*, n/nGW and Te/Ti, the ELM frequency control by pellet injection and the optimization of NTM suppression by DC-ECCD ...
Significant progress has been made on ASDEX Upgrade during the last two years in the basic understan...
The ASDEX Upgrade programme is directed towards physics input to critical elements of the ITER desig...
ASDEX Upgrade was operated with a fully W-covered wall in 2007 and 2008. Stationary H-modes at the I...
Significant progress has been made on ASDEX Upgrade during the last two years in the basic understan...
The ASDEX Upgrade programme is directed towards physics input to critical elements of the ITER desig...
ASDEX Upgrade was operated with a fully W-covered wall in 2007 and 2008. Stationary H-modes at the I...
Significant progress has been made on ASDEX Upgrade during the last two years in the basic understan...
The ASDEX Upgrade programme is directed towards physics input to critical elements of the ITER desig...
ASDEX Upgrade was operated with a fully W-covered wall in 2007 and 2008. Stationary H-modes at the I...