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Plasma transport coefficients for nonsymmetric toroidal confinement systems

Authors :
Ker-Chung Shaing
W. I. van Rij
E.C. Crume
C.O. Beasley
S. P. Hirshman
Source :
Physics of Fluids. 29:2951-2959
Publication Year :
1986
Publisher :
AIP Publishing, 1986.

Abstract

A variational principle is developed for computing accurate values of local plasma transport coefficients in nonsymmetric toroidal confinement configurations. Numerical solutions of the linearized drift Fokker–Planck equation are used to obtain the thermodynamic fluxes as functions of collision frequency and the radial electric field. Effects resulting from the variation of the longitudinal adiabatic invariant J along an orbit (resulting from particle transitions from helically trapped to toroidally trapped orbits) are treated. The velocity‐space distribution resulting from trapped, circulating, and transition particle orbits is well represented by a Legendre polynomial expansion in the pitch angle coordinate. The computational effort is significantly reduced from that required with Monte Carlo methods through use of an efficient treatment of the disparity between the time scales of collisionless and collisional particle dynamics. Numerical computations for a stellarator configuration are presented.

Details

ISSN :
00319171
Volume :
29
Database :
OpenAIRE
Journal :
Physics of Fluids
Accession number :
edsair.doi...........b7ac52eea1bed6790cf1f991fdd94acc
Full Text :
https://doi.org/10.1063/1.865495