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Boundary-value problem for a counterrotating electrical discharge in an axial magnetic fieldAn electrical discharge between two ring electrodes embedded in the mantle of a cylindrical chamber is considered, in which the plasma in the anode and cathode regions rotates in opposite directions under the influence of an external axial magnetic field. The associated boundary-value problem for the coupled partial differential equations describing the azimuthal velocity and radial current-density fields is solved in closed form. The velocity, current density, induced magnetic induction, and electric fields are presented for typical Hartmann numbers, magnetic Reynolds numbers, and geometry parameters. The discharge is shown to produce anodic and cathodic plasma sections rotating at speeds of the order 1,000,000 cm/sec for conventional magnetic field intensities. Possible application of the magnetoactive discharge as a plasma centrifuge for isotope separation is discussed.
Document ID
19780040212
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
External Source(s)
Authors
Hong, S. H.
(Colorado State Univ. Fort Collins, CO, United States)
Wilhelm, H. E.
(Colorado State University Fort Collins, Colo., United States)
Date Acquired
August 9, 2013
Publication Date
January 1, 1978
Publication Information
Publication: Journal of Applied Physics
Volume: 49
Subject Category
Plasma Physics
Accession Number
78A24121
Distribution Limits
Public
Copyright
Other

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