Published January 2005 | Version v1
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Finite-orbit-width effect and the radial electric field in neoclassical transport phenomena

  • 1. National Inst. for Fusion Science, Toki, Gifu (Japan)
  • 2. Max-Planck-Institut fuer Plasmaphysik, Greifswald (Germany)

Description

Modeling and detailed simulation of neoclassical transport phenomena both in 2D and 3D toroidal configurations are shown. The emphasis is put on the effect of finiteness of the drift-orbit width, which brings a non-local nature to neoclassical transport phenomena. Evolution of the self-consistent radial electric field in the framework of neoclassical transport is also investigated. The combination of Monte-Carlo calculation for ion transport and numerical solver of ripple-averaged kinetic equation for electrons makes it possible to calculate neoclassical fluxes and the time evolution of the radial electric field in the whole plasma region, including the finite-orbit-width (FOW) effects and global evolution of geodesic acoustic mode (GAM). The simulation results show that the heat conductivity around the magnetic axis is smaller than that obtained from standard neoclassical theory and that the evolution of GAM oscillation on each flux surface is coupled with other surfaces if the FOW effect is significant. A global simulation of radial electric field evolution in a non-axisymmetric plasma is also shown. (author)

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Part of:
Collection of contributions from NIFS to 20th IAEA fusion energy conference

Additional details

Publishing Information

Imprint Title
Collection of contributions from NIFS to 20th IAEA fusion energy conference
Imprint Pagination
305 p.
Journal Page Range
p. 240-246
Report number
NIFS--808

Conference

Title
20. IAEA fusion energy conference
Dates
1-6 Nov 2004
Place
Vilamoura (Portugal)

Optional Information

Notes
18 refs., 5 figs.