ASDEX Upgrade results on crucial issues of H-mode operation are reported, i.e. density profile shape, onset conditions for neoclassical tearing modes (NTM) and smoothing of the power exhaust without losing confinement. Starting from experiments on density peaking at high density, a model for particle transport is developed using the neoclassical particle pinch and assuming that the particle diffusion coefficient D is locally proportional to the heat conductivity chi. This assumption links the D profile to the heat-flux profile due to the stiffness of the temperature profiles. This suggests that density profile shapes of a centrally heated reactor will be significantly flatter than in a device heated by neutral beam injection (NBI). In the d...
The confinement physics of the improved H-mode is analysed in detail. It is shown that this scenario...
The confinement physics of the improved H-mode is analysed in detail. It is shown that this scenario...
Recent studies at ASDEX Upgrade aim to further characterize and understand the physics of the improv...
ASDEX Upgrade results on crucial issues of H-mode operation are reported, i.e. density profile shape...
ASDEX Upgrade results on crucial issues of H-mode operation are reported, i.e. density profile shape...
Abstract Detailed studies of the confinement physics in advanced scenarios on ASDEX Upgrade are pre-...
The behaviour of the density profiles in ASDEX Upgrade can be described well with the assumption D α...
Recent results are reported on the maximum achievable H-mode density and the behavior of pedestal de...
Recent results are reported on the maximum achievable H-mode density and the behavior of pedestal de...
The slow peaking of the density profile for high densities with moderate NBI and its disappearance w...
Recent results are reported on the maximum achievable H-mode density and the behavior of pedestal de...
H-mode operational boundaries and H-mode confinement are investigated on ASDEX Upgrade. The local ed...
An advanced high confinement mode scenario with normalized beta (beta(N)) up to 3.5 in stationary co...
An advanced high confinement mode scenario with normalized beta (beta(N)) up to 3.5 in stationary co...
An advanced high confinement mode scenario with normalized beta (beta(N)) up to 3.5 in stationary co...
The confinement physics of the improved H-mode is analysed in detail. It is shown that this scenario...
The confinement physics of the improved H-mode is analysed in detail. It is shown that this scenario...
Recent studies at ASDEX Upgrade aim to further characterize and understand the physics of the improv...
ASDEX Upgrade results on crucial issues of H-mode operation are reported, i.e. density profile shape...
ASDEX Upgrade results on crucial issues of H-mode operation are reported, i.e. density profile shape...
Abstract Detailed studies of the confinement physics in advanced scenarios on ASDEX Upgrade are pre-...
The behaviour of the density profiles in ASDEX Upgrade can be described well with the assumption D α...
Recent results are reported on the maximum achievable H-mode density and the behavior of pedestal de...
Recent results are reported on the maximum achievable H-mode density and the behavior of pedestal de...
The slow peaking of the density profile for high densities with moderate NBI and its disappearance w...
Recent results are reported on the maximum achievable H-mode density and the behavior of pedestal de...
H-mode operational boundaries and H-mode confinement are investigated on ASDEX Upgrade. The local ed...
An advanced high confinement mode scenario with normalized beta (beta(N)) up to 3.5 in stationary co...
An advanced high confinement mode scenario with normalized beta (beta(N)) up to 3.5 in stationary co...
An advanced high confinement mode scenario with normalized beta (beta(N)) up to 3.5 in stationary co...
The confinement physics of the improved H-mode is analysed in detail. It is shown that this scenario...
The confinement physics of the improved H-mode is analysed in detail. It is shown that this scenario...
Recent studies at ASDEX Upgrade aim to further characterize and understand the physics of the improv...