Dynamos in an annulus with fields linear in the axial coordinate
File(s)GGAF-2017-0050-Mestel.pdf (1008.92 KB)
Accepted version
Author(s)
Henriques Vaz, R
Tettamanti Boshier, FA
Mestel, AJ
Type
Journal Article
Abstract
Dynamo action is considered in a conducting cylindrical annulus surrounded by an insulator. The driving
velocity field is assumed to be linear in the axial coordinate and to satisfy the incompressible Navier-Stokes
equations. Such flows have recently been shown to exist with no forcing other than the similarity structure.
Magnetic field instabilities with the same spatial structure are sought. The kinematic eigenvalue problem is
found to have two growing modes for moderate values of the magnetic Reynolds number,
R
m
. As
R
m
→∞
it is shown that the modes are governed by layers on the outer wall. The growing field saturates in a solution
to the nonlinear dynamo problem. Three distinct steady solution families are found and the complicated
bifurcation structure is investigated.
velocity field is assumed to be linear in the axial coordinate and to satisfy the incompressible Navier-Stokes
equations. Such flows have recently been shown to exist with no forcing other than the similarity structure.
Magnetic field instabilities with the same spatial structure are sought. The kinematic eigenvalue problem is
found to have two growing modes for moderate values of the magnetic Reynolds number,
R
m
. As
R
m
→∞
it is shown that the modes are governed by layers on the outer wall. The growing field saturates in a solution
to the nonlinear dynamo problem. Three distinct steady solution families are found and the complicated
bifurcation structure is investigated.
Date Issued
2018-05-04
Date Acceptance
2018-04-16
Citation
Geophysical and Astrophysical Fluid Dynamics, 2018, 112 (3), pp.222-234
ISSN
0309-1929
Publisher
Taylor & Francis
Start Page
222
End Page
234
Journal / Book Title
Geophysical and Astrophysical Fluid Dynamics
Volume
112
Issue
3
Copyright Statement
© 2018 Taylor & Francis. This is an Accepted Manuscript of an article published by Taylor & Francis in Geophysical & Astrophysical Fluid Dynamics on 14 May 2018, available online: https://doi.org/10.1080/03091929.2018.1466882.
Subjects
Science & Technology
Physical Sciences
Technology
Astronomy & Astrophysics
Geochemistry & Geophysics
Mechanics
Dynamo
annulus
similarity solutions
MD Multidisciplinary
Fluids & Plasmas
Publication Status
Published
Date Publish Online
2018-05-14