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Estimates of global recycling coefficients for LTX-β discharges.

Authors :
Maan, A.
Boyle, D. P.
Majeski, R.
Wilkie, G. J.
Francisquez, M.
Banerjee, S.
Kaita, R.
Maingi, R.
LeBlanc, B. P.
Abe, S.
Jung, E.
Perez, E.
Capecchi, W.
Ostrowski, E. T.
Elliott, D. B.
Hansen, C.
Kubota, S.
Soukhanovskii, V.
Zakharov, L.
Source :
Physics of Plasmas. Feb2024, Vol. 31 Issue 2, p1-14. 14p.
Publication Year :
2024

Abstract

We report the first observation of global recycling coefficient R near 0.5 in the Lithium Tokamak eXperiment-β (LTX-β), significantly below the minimum R previously reported in other devices. In a series of experiments with varied Li wall conditioning, estimates of the recycling coefficient have been made using a Lyman-α array and DEGAS2 modeling. A progressive reduction in Lyman-α emission with increased lithium and an increase in edge electron temperature are observed. It is also observed that with increasing Li coating thickness, the effective particle confinement time τ p * is reduced and approaches TRANSP calculated energy confinement time (τE), with τ p * near τ E , TRANSP for the lowest recycling coefficients. Edge temperatures approaching core plasma temperatures, first reported in LTX, can now be directly connected to estimates of the recycling coefficient and qualitatively agree with previous UEDGE simulations. The particle flux to the limiting surfaces appears to be significantly reduced in comparison with fluid scrape-off layer (SOL) models, indicating that a large fraction of the SOL ions are mirror trapped. SOL collisionality drops more than an order of magnitude below the banana regime boundary, indicating the importance of kinetic effects. Full-f 1x2v gyrokinetic simulations of SOL field lines with the GKEYLL code indicate that the fraction of ions trapped along field lines increases as collisionality drops, as a result of increased lithium evaporation. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1070664X
Volume :
31
Issue :
2
Database :
Academic Search Index
Journal :
Physics of Plasmas
Publication Type :
Academic Journal
Accession number :
175796775
Full Text :
https://doi.org/10.1063/5.0177604