International audienceSince ITER will operate close to threshold and with limited control, the H → L back transition is a topic important for machine operations as well as physics. Using a reduced mesoscale model [Miki et al., Phys. Plasmas 19, 092306 (2012)], we investigate ELM-free H → L back transition dynamics in order to isolate transport physics effects. Model studies indicate that turbulence spreading is the key process which triggers the back transition. The transition involves a feedback loop linking turbulence and profiles. The I-phase appears during the back transition following a slow power ramp down, while fast ramp-downs reveal a single burst of zonal flow during the back transition. The I-p...
International audienceWe investigate the dynamics of the low(L) → high(H) transiti...
International audienceWe investigate the dynamics of the low(L) → high(H) transiti...
This paper presents an overview of recent experimental progress towards understanding H-mode transit...
International audienceSince ITER will operate close to threshold and with limited control, the HR...
International audienceSince ITER will operate close to threshold and with limited control, the HR...
International audienceSince ITER will operate close to threshold and with limited control, the HR...
International audienceSince ITER will operate close to threshold and with limited control, the HR...
Since ITER will operate close to threshold and with limited control, the H → L back transition is a ...
While operating a magnetic fusion device in H-mode has many advantages, care must be taken to unders...
Understanding the L → H and H → L transitions is crucial to successful ITER operation. In this paper...
Understanding the L → H and H → L transitions is crucial to successful ITER operation. In this paper...
The back transition from H-mode to L-mode has been studied on DIII-D as a part of the investigation ...
International audienceWe investigate the dynamics of the low(L) → high(H) transiti...
International audienceWe investigate the dynamics of the low(L) → high(H) transiti...
International audienceWe investigate the dynamics of the low(L) → high(H) transiti...
International audienceWe investigate the dynamics of the low(L) → high(H) transiti...
International audienceWe investigate the dynamics of the low(L) → high(H) transiti...
This paper presents an overview of recent experimental progress towards understanding H-mode transit...
International audienceSince ITER will operate close to threshold and with limited control, the HR...
International audienceSince ITER will operate close to threshold and with limited control, the HR...
International audienceSince ITER will operate close to threshold and with limited control, the HR...
International audienceSince ITER will operate close to threshold and with limited control, the HR...
Since ITER will operate close to threshold and with limited control, the H → L back transition is a ...
While operating a magnetic fusion device in H-mode has many advantages, care must be taken to unders...
Understanding the L → H and H → L transitions is crucial to successful ITER operation. In this paper...
Understanding the L → H and H → L transitions is crucial to successful ITER operation. In this paper...
The back transition from H-mode to L-mode has been studied on DIII-D as a part of the investigation ...
International audienceWe investigate the dynamics of the low(L) → high(H) transiti...
International audienceWe investigate the dynamics of the low(L) → high(H) transiti...
International audienceWe investigate the dynamics of the low(L) → high(H) transiti...
International audienceWe investigate the dynamics of the low(L) → high(H) transiti...
International audienceWe investigate the dynamics of the low(L) → high(H) transiti...
This paper presents an overview of recent experimental progress towards understanding H-mode transit...