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Title: Neoclassical transport in toroidal plasmas with nonaxisymmetric flux surfaces

Journal Article · · Plasma Physics and Controlled Fusion
 [1];  [1]
  1. General Atomics, San Diego, CA (United States)

The capability to treat nonaxisymmetric flux surface geometry has been added to the drift-kinetic code NEO. Geometric quantities (i.e. metric elements) are supplied by a recently-developed local 3D equilibrium solver, allowing neoclassical transport coefficients to be systematically computed while varying the 3D plasma shape in a simple and intuitive manner. Code verification is accomplished via detailed comparison with 3D Pfirsch–Schlüter theory. A discussion of the various collisionality regimes associated with 3D transport is given, with an emphasis on non-ambipolar particle flux, neoclassical toroidal viscosity, energy flux and bootstrap current. As a result, we compute the transport in the presence of ripple-type perturbations in a DIII-D-like H-mode edge plasma.

Research Organization:
General Atomics, San Diego, CA (United States)
Sponsoring Organization:
USDOE Office of Nuclear Energy (NE)
Grant/Contract Number:
FG02-95ER54309
OSTI ID:
1356343
Journal Information:
Plasma Physics and Controlled Fusion, Vol. 57, Issue 5; ISSN 0741-3335
Publisher:
IOP ScienceCopyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 8 works
Citation information provided by
Web of Science

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Cited By (2)

Neoclassical impurity flux in presence of turbulent generated poloidal asymmetries and pressure anisotropy journal March 2019
An adjoint method for neoclassical stellarator optimization text January 2019

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