English

I-mode pedestal relaxation events at ASDEX Upgrade

Plasma Physics 2020-10-22 v1

Abstract

The I-mode confinement regime can feature small edge temperature drops that can lead to an increase in the energy deposited onto the divertor targets. In this work, we show that these events are associated with a relaxation of both electron temperature and density edge profiles, with the largest drop found at the pedestal top position. Stability analysis of edge profiles reveals that the operational points are far from the ideal peeling-ballooning boundary. Also, we show that these events appear close to the H-mode transition in the typical I-mode operational space in ASDEX Upgrade, and that no further enhancement of energy confinement is found when they occur. Moreover, scrape-off layer transport during these events is found to be very similar to type-I ELMs, with regard to timescales (\approx 800 μ\mus), filament propagation, toroidally asymmetric energy effluxes at the midplane and asymmetry between inner and outer divertor deposited energy. In particular, the latter reveals that more energy reaches the outer divertor target. Lastly, first measurements of the divertor peak energy fluence are reported, and projections to ARC - a reactor designed to operate in I-mode - are drawn.

Keywords

Cite

@article{arxiv.2006.11452,
  title  = {I-mode pedestal relaxation events at ASDEX Upgrade},
  author = {D. Silvagni and T. Eich and T. Happel and G. F. Harrer and M. Griener and M. Dunne and M. Cavedon and M. Faitsch and L. Gil and D. Nille and B. Tal and R. Fischer and U. Stroth and D. Brida and P. David and P. Manz and E. Viezzer and the ASDEX Upgrade team and the EUROfusion MST1 team},
  journal= {arXiv preprint arXiv:2006.11452},
  year   = {2020}
}