Published 1987 | Version v1
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A model for electron currents near a field null

Description

The fluid approximation is invalid near a field null, since the local electron orbit size and the magnetic scale length are comparable. To model the electron currents in this region we propose a single equation of motion describing the bulk electron dynamics. The equation applies to the plasma within one thermal orbit size of the null. The region is treated as unmagnetized; electrons are accelerated by the inductive electric field and drag on ions; damping is provided by viscosity due to electrons and collisions with ions. Through variational calculations and a particle tracking code for electrons, the size of the terms in the equation of motion have been estimated. The resulting equation of motion combines with Faraday's Law to produce a governing equation which implicitly contains the self inductive field of the electrons. This governing equation predicts that viscosity prevents complete cancellation of the ion current density by the electrons in the null region. Thus electron dynamics near the field null should not prevent the formation and deepening of field reversal using neutral-beam injection

Availability note (English)

Available from NTIS, PC A02/MF A01; 1 as DE87013014.

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Additional details

Publishing Information

Imprint Pagination
21 p.
Report number
DOE/ER/52127--14

Conference

Title
8. US symposium on compact toroid research and the 9. US/Japan workshop on compact toroids.
Dates
4-5 Jun 1987.
Place
College Park, MD (USA).

Optional Information

Notes
Portions of this document are illegible in microfiche products.
Secondary number(s)
CONF-870631--3.