Author:
KLEEORIN N.,ROGACHEVSKII I.,RUZMAIKIN A.,SOWARD A. M.,STARCHENKO S.
Abstract
Constant-density electrically conducting fluid is confined to
a rapidly rotating spherical shell and is permeated by an
axisymmetric potential magnetic field with dipole
parity; the regions outside the shell are rigid insulators. Slow steady
axisymmetric
motion is driven by rotating the inner sphere at a slightly
slower rate. Linear solutions
of the governing magnetohydrodynamic equations are derived in the small
Ekman
number E-limit for values of the Elsasser number Λ
less than order unity. Attention
is restricted to the mainstream outside the Ekman–Hartmann
layers adjacent to the inner and outer boundaries.
Publisher
Cambridge University Press (CUP)
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics
Cited by
45 articles.
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