Analysis of metallic impurities during the application of three-ion ICRH scenario at Jet-iLW

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Résumé

The effect of the novel ‘three-ion’ D-(3He)-H minority ICRH heating scheme on the behavior of the metallic impurities at JET-ILW is discussed. The reported experiment was performed in L-mode plasmas at a magnetic field BT = 3.2 T, plasma current Ip = 2 MA and central plasma densities ne(0) ≈ 4×1019 m-3. ICRH power was delivered with dipole or +π/2 antenna phasing at f ≈ 32.2-33MHz, placing the 3He cyclotron resonance at the plasma core. The edge isotopic ratio H/(H+D) was varied between 73 and 92%, and 3He concentration in the range of 0.1-1.5% to assess the sensitivity of the scheme to the detailed plasma composition. The results of our analysis show a linear increase of the plasma effective charge Zeff, radiated power Prad,bulk and content of metallic impurities with ICRF power. The observed scattering of the points reflects the difference in the plasma composition and ICRF antenna phasing. For discharges heated with similar ICRH power level ~4MW, our analysis indicates that for a large range of H/(H+D) the novel scenario effectively heats the plasma with reduced content of metallic impurities. The impurities are shown to be concentrated mainly around the mid-radius region of the plasma. We conclude this paper with a discussion of the effect of the long-period sawteeth on the observed dynamics of metallic impurities in the plasma core.

langue originaleAnglais
titre23rd Topical Conference on Radiofrequency Power in Plasmas
rédacteurs en chefPaul T. Bonoli, Robert I. Pinsker, Xiaojie Wang
EditeurAmerican Institute of Physics Inc.
ISBN (Electronique)9780735420137
Les DOIs
étatPublié - 16 sept. 2020
Evénement23rd Topical Conference on Radiofrequency Power in Plasmas - Hefei, Chine
Durée: 14 mai 201917 mai 2019

Série de publications

NomAIP Conference Proceedings
Volume2254
ISSN (imprimé)0094-243X
ISSN (Electronique)1551-7616

Une conférence

Une conférence23rd Topical Conference on Radiofrequency Power in Plasmas
Pays/TerritoireChine
La villeHefei
période14/05/1917/05/19

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