Published 1991 | Version v1
Book

Two-dimensional electron flow in pulsed power transmission lines and plasma opening switches

  • 1. Cornell Univ., Ithaca, NY (United States)

Description

The operation of magnetically insulated transmission lines (MITL) and the interruption of current in a plasma opening switch (POS) are determined by the physics of the electrons emitted by the cathode surface. A mathematical model describes the self-consistent two-dimensional flow of an electron fluid. A finite element code, FERUS, has been developed to solve the two equations which describe Poisson's and Ampere's law in two dimensions. The solutions from this code are obtained for parameters where the electron orbits are considerably modified by the self-magnetic field of the current. Next, the self-insulated electron flow in a MITL with a step change in cross-section is studied using a conventional two-dimensional fully electromagnetic particle-in-cell code, MASK. The equations governing two-dimensional quasi-static electron flow are solved numerically by a third technique which is suitable for predicting current interruption in a POS. The object of the study is to determine the critical load impedance, ZCL, required for current interruption for a given applied voltage, cathode voltage and plasma length. (author). 9 refs, 5 figs

Part of:
Plasma physics and controlled nuclear fusion research 1990. V. 3

Additional details

Publishing Information

Publisher
IAEA.
Imprint Place
Vienna (Austria)
ISBN
92-0-130291-6
Imprint Title
Plasma physics and controlled nuclear fusion research 1990. V. 3
Imprint Pagination
814 p.
Journal Issue
Suppl. 1991
Series
Nucl. Fusion.
Journal Page Range
v. 3 p. 143-151.
ISSN
0074-1884

Conference

Title
13. international conference on plasma physics and controlled nuclear fusion research.
Dates
1-6 Oct 1990.
Place
Washington, DC (United States).

Optional Information

Secondary number(s)
IAEA-CN--53/B-III-2.