Recent progress towards an advanced spherical torus operating point in NSTX

Progress in the development of integrated advanced ST plasma scenarios in NSTX (Ono et al 2000 Nucl. Fusion 40 557) is reported. Recent high-performance plasmas in NSTX following lithium coating of the plasma facing surfaces have achieved higher elongation and lower internal inductance than previous...

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Published inNuclear fusion Vol. 51; no. 7; p. 073031
Main Authors Gerhardt, S.P, Gates, D.A, Kaye, S.M, Maingi, R, Menard, J.E, Sabbagh, S.A, Soukhanovskii, V, Bell, M.G, Bell, R.E, Canik, J.M, Fredrickson, E, Kaita, R, Kolemen, E, Kugel, H, Le Blanc, B.P, Mastrovito, D, Mueller, D, Yuh, H
Format Journal Article
LanguageEnglish
Published United States IOP Publishing 01.07.2011
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Summary:Progress in the development of integrated advanced ST plasma scenarios in NSTX (Ono et al 2000 Nucl. Fusion 40 557) is reported. Recent high-performance plasmas in NSTX following lithium coating of the plasma facing surfaces have achieved higher elongation and lower internal inductance than previously. Analysis of the thermal confinement in these lithiumized discharges shows a stronger plasma current and weaker toroidal field dependence than in previous ST confinement scaling studies; the ITER-98(y, 2) scaling expression describes these scenarios reasonably well. Analysis during periods free of MHD activity has shown that the reconstructed current profile can be understood as the sum of pressure driven, inductive and neutral beam driven currents, without requiring any anomalous fast-ion transport. Non-inductive fractions of 65-70%, and beta(P) > 2, have been achieved at lower plasma current. Some of these low-inductance discharges have a significantly reduced no-wall beta(N) limit, and often have beta(N) at or near the with-wall limit. Coupled m/n = 1/1 + 2/1 kink/tearing modes can limit the sustained beta values when rapidly growing ideal modes are avoided. A beta(N) controller has been commissioned and utilized in sustaining high-performance plasmas. 'Snowflake' divertors compatible with high-performance plasmas have been developed. Scenarios with significantly larger aspect ratios have also been developed, in support of next-step ST devices. Overall, these NSTX plasmas have many characteristics required for next-step ST devices.
Bibliography:DE-AC05-00OR22725
USDOE Office of Science (SC)
ISSN:0029-5515
1741-4326
DOI:10.1088/0029-5515/51/7/073031