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Effects of collisional ion orbit loss on neoclassical tokamak radial electric fields.

Authors :
Zhu, Hongxuan
Stoltzfus-Dueck, T.
Hager, R.
Ku, S.
Chang, C.S.
Source :
Nuclear Fusion. Jun2022, Vol. 62 Issue 6, p1-10. 10p.
Publication Year :
2022

Abstract

Ion orbit loss is considered important for generating the radially inward electric field E r in a tokamak edge plasma. In particular, this effect is emphasized in diverted tokamaks with a magnetic X point. In neoclassical equilibria, Coulomb collisions can scatter ions onto loss orbits and generate a radially outward current, which in steady state is balanced by the radially inward current from viscosity. To quantitatively measure this loss-orbit current in an edge pedestal, an ion-orbit-flux diagnostic has been implemented in the axisymmetric version of the gyrokinetic particle-in-cell code XGC. As the first application of this diagnostic, a neoclassical DIII-D H-mode plasma is studied using gyrokinetic ions and adiabatic electrons. The validity of the diagnostic is demonstrated by studying the collisional relaxation of E r in the core. After this demonstration, the loss-orbit current is numerically measured in the edge pedestal in quasisteady state. In this plasma, it is found that the radial electric force on ions from E r approximately balances the ion radial pressure gradient in the edge pedestal, with the radial force from the plasma flow term being a minor component. The effect of orbit loss on E r is found to be only mild. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00295515
Volume :
62
Issue :
6
Database :
Academic Search Index
Journal :
Nuclear Fusion
Publication Type :
Academic Journal
Accession number :
156157372
Full Text :
https://doi.org/10.1088/1741-4326/ac5b8a