Published 2001 | Version v1
Book

Electric potential cells at the diverted tokamak separatrix

  • 1. General Atomics, San Diego, California (United States)
  • 2. Lawrence Livermore National Laboratory, Livermore, California (United States)
  • 3. University of California, San Diego, California (United States)
  • 4. Univ. of Toronto, Toronto (Canada)
  • 5. Sandia National Laboratories, Albuquerque, New Mexico (United States)

Description

Two-dimensional measurements by probes and Thomson scattering reveal unanticipated electric potential and electron pressure (pe) maxima near the divertor X-point in L-mode plasmas in the DIII-D tokamak. The potential hill (∼100 V) drives ExB circulation ('potential cell') of particles, energy and toroidal momentum around the X-point and in and out across the magnetic separatrix. Modeling by the UEDGE two-dimensional edge transport code with plasma drifts shows similar X-point potential and pressure hills. The code predicts additional drift-driven nonuniformity poloidally around the separatrix. Potential cells in UEDGE arises from parallel (to B) viscous stress acting on the Pfirsch-Schlueter ion return flow of the ∇B drift. These experimental and theoretical results demonstrate that the boundary layer just inside the separatrix of low power tokamak plasmas can be far from poloidal uniformity. We speculate that separatrix potential cells might be a major feature of L-mode edge transport and their suppression an important feature of H-mode. (author)

Part of:
Potential and structure in plasmas: ITC-11 Proceedings

Additional details

Publishing Information

Publisher
Japan Society of Plasma Science and Nuclear Fusion Research
Imprint Place
Nagoya, Aichi (Japan)
ISBN
4-9900586-6-6
Imprint Title
Potential and structure in plasmas: ITC-11 Proceedings
Imprint Pagination
617 p.
Journal Page Range
p. 146-152

Conference

Title
11. international Toki conference on plasma physics and controlled nuclear fusion
Acronym
ITC-11
Dates
5-8 Dec 2000
Place
Toki, Gifu (Japan)

Optional Information

Notes
23 refs., 10 figs. Imprint:Published in Journal of Plasma and Fusion Research SERIES, Volume 4