Tayler instability of toroidal magnetic fields in MHD Taylor-Couette flows
arXiv:0903.3831 · doi:10.1002/asna.200911249
Abstract
The nonaxisymmetric 'kink-type' Tayler instability (TI) of toroidal magnetic fields is studied for conducting incompressible fluids of uniform density between two infinitely long cylinders rotating around the same axis. It is shown that for resting cylinders the critical Hartmann number for the unstable modes does not depend on Pm. By rigid rotation the instability is suppressed where the critical ratio of the rotation velocity and the Alfven velocity of the field (only) slightly depends on the magnetic Prandtl number Pm. For Pm=1 the rotational quenching of TI takes its maximum. Rotation laws with negative shear (i.e. dΩ/dR<0) strongly destabilize the toroidal field if the rotation is not too fast. For sufficiently high Reynolds numbers of rotation the suppression of the nonaxisymmetric magnetic instability always dominates. The angular momentum transport of the instability is anticorrelated with the shear so that an eddy viscosity can be defined which proves to be positive. For negative shear the Maxwell stress of the perturbations remarkably contributes to the angular momentum transport. We have also shown the possibility of laboratory TI experiments with a wide-gap container filled with fluid metals like sodium or gallium. Even the effect of the rotational stabilization can be reproduced in the laboratory with electric currents of only a few kAmp.
9 pages, 11 figures, subm
References in corpus (2)
Cited by in corpus (14)
- Experimental evidence for Tayler instability in a liquid metal column
- How to circumvent the size limitation of liquid metal batteries due to the Tayler instability
- Local instabilities in magnetized rotational flows: A short-wavelength approach
- Stability and instability of hydromagnetic Taylor-Couette flows
- Destabilization of rotating flows with positive shear by azimuthal magnetic fields
- The kink-type instability of toroidal stellar magnetic fields with thermal diffusion
- Subcritical excitation of the current-driven Tayler instability by super-rotation
- Dissipative Taylor-Couette flows under the influence of helical magnetic fields
- Critical fields and growth rates of the Tayler instability as probed by a columnar gallium experiment
- Diffusive MHD Instabilities: Beyond the Chandrasekhar Theorem
- The pinch-type instability of helical magnetic fields
- Nonaxisymmetric MHD instabilities of Chandrasekhar states in Taylor-Couette geometry
- Analysis of azimuthal magnetorotational instability of rotating MHD flows and Tayler instability via an extended Hain-Lust equation
- On radiation-zone dynamos