4.5 Article

The role of radial particle pinches in ELM suppression by resonant magnetic perturbations

Journal

NUCLEAR FUSION
Volume 51, Issue 1, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/0029-5515/51/1/013007

Keywords

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Funding

  1. US Department of Energy [DE-FG01-ER54538, DE-AC03-99ER54463]
  2. Georgia Tech Research Corporation
  3. General Atomics

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The force balance in the plasma edge in a matched pair of DIII-D (Luxon 2002 Nucl. Fusion 42 6149) tokamak discharges with and without resonant magnetic perturbations (RMPs) is evaluated in order to investigate the effects on particle transport of RMP applied for the purpose of suppressing edge-localized modes (ELMs). Experimental data are used to evaluate the radial and toroidal force balances, which may be written as a pinch-diffusion relation for the radial ion flux to facilitate investigation of transport effects. The radial electric field in the H-mode plasma had a sharp negative dip in the steep gradient region of the edge pedestal, associated with which was a large inward pinch velocity. The main effect of RMP was to make the edge electric field less negative or more positive, reducing this strong negative dip in the radial electric field (even reversing it from negative to positive over some regions), thereby reducing the strong inward particle pinch in the edge of an H-mode discharge, thus causing a reduction in edge density below the ELM threshold.

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