Observation of a new pedestal stability regime in MAST Upgrade H-mode plasmas

Author:

Imada K.ORCID,Osborne T.H.,Saarelma S.,Clark J.G.,Kirk A.,Knolker M.ORCID,Scannell R.,Snyder P.B.ORCID,Vincent C.,Wilson H.R.ORCID,

Abstract

Abstract The first pedestal stability and structure analysis on the new MAST Upgrade (MAST-U) spherical tokamak H-mode plasmas is presented. Our results indicate that MAST-U pedestals are close to the low toroidal mode number (n) peeling branch of the peeling-ballooning instability, in contrast with MAST H-mode pedestals which were deeply in the high-n ballooning branch. This offers the possibility of reaching the ELM-free quiescent H-mode (Burrell et al 2005 Plasma Phys. Control. Fusion 47 B37–B52) or high-performance super H-mode (Snyder et al 2015 Nucl. Fusion 55 083026; Snyder et al 2019 Nucl. Fusion 59 086017) regimes. In addition, the coupling between the peeling and ballooning branches is weak in MAST-U, suggesting that a path to very high pedestal pressure gradient at high density may exist with sufficient heating power. A possible explanation for the differences between MAST and MAST-U pedestal stability is given in terms of plasma shaping parameters, in particular squareness and elongation, as well as the pedestal top temperature and collisionality.

Funder

Engineering and Physical Sciences Research Council

U.S. Department of Energy

Publisher

IOP Publishing

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Overview of physics results from MAST upgrade towards core-pedestal-exhaust integration;Nuclear Fusion;2024-08-29

2. Plasma burn—mind the gap;Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences;2024-08-26

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