Experimental investigation of the return flow instability in magnetic spherical Couette flow
arXiv:2009.07003 · doi:10.1063/5.0029570
Abstract
We conduct magnetic spherical Couette (MSC) flow experiments in the return flow instability regime with GaInSn as the working fluid, and the ratio of the inner to the outer sphere radii , the Reynolds number , and the Hartmann number . Rotating waves with different azimuthal wavenumbers manifest in certain ranges of in the experiments, depending on whether the values of were fixed or varied from different initial values. These observations demonstrate the multistability of rotating waves, which we attribute to the dynamical system representing the state of the MSC flow tending to move along the same solution branch of the bifurcation diagram when is varied. In experiments with both fixed and varying , the rotation frequencies of the rotating waves are consistent with the results of nonlinear stability analysis. A brief numerical investigation shows that differences in the azimuthal wavenumbers of the rotating waves that develop in the flow also depend on the azimuthal modes that are initially excited.
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Cited by in corpus (4)
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- Long term time dependent frequency analysis of chaotic waves in the weakly magnetized spherical Couette system
- High dimensional tori and chaotic and intermittent transients in magnetohydrodynamic Couette flows
- Modulated rotating waves and triadic resonances in spherical fluid systems: The case of magnetized spherical Couette flow