Abstract
In preparation for the upcoming MAST-U campaign, pedestal stability of spherical tokamaks is revisited by investigating standard H-mode discharges on MAST. As a step beyond previous studies, both ion and electron profiles are used for obtaining equilibria and a diverse set of pedestals is evaluated. Stability analysis with the ELITE and CGYRO codes shows that MAST pedestals are constrained by kinetic ballooning modes and medium toroidal mode number peeling-ballooning modes, with most unstable modes ranging from n = 25 to n = 45. In discharges with a steep q profile at the edge a larger number of poloidal harmonics is excited for each toroidal mode. A comparison with discharges on DIII-D with matched shape and similar non-dimensional parameters indicates that the increased shear at lower aspect ratio stabilizes low n peeling modes.
Author supplied keywords
Cite
CITATION STYLE
Knolker, M., Osborne, T., Belli, E., Henderson, S., Kirk, A., Kogan, L., … Snyder, P. B. (2021). Pedestal stability analysis on MAST in preparation for MAST-U. Nuclear Fusion, 61(4). https://doi.org/10.1088/1741-4326/abe804
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.