English

Centrifugal instability of Taylor-Couette flow in stratified and diffusive fluids

Fluid Dynamics 2025-12-10 v1 Solar and Stellar Astrophysics

Abstract

The linear and non-linear dynamics of centrifugal instability in Taylor-Couette flow are investigated when fluids are stably stratified and highly diffusive. One-dimensional local linear stability analysis (LSA) on cylindrical Couette flow confirms that the stabilising role of stratification on centrifugal instability is suppressed by strong thermal diffusion (i.e. low Prandtl number PrPr). For Pr1Pr\ll1, it is verified that the instability dependence on thermal diffusion and stratification with the non-dimensional Brunt-V\"ais\"al\"a frequency NN can be prescribed by a single rescaled parameter PN=N2PrP_{N}=N^{2}Pr. From direct numerical simulation (DNS), various non-linear features such as axisymmetric Taylor vortices at saturation, secondary instability leading to non-axisymmetric patterns or transition to chaotic states are investigated for various values of Pr1Pr\leq1 and the Reynolds number ReiRe_{i}. Two-dimensional bi-global LSA on axisymmetric Taylor vortices, which appear as primary centrifugal instability saturates nonlinearly, is also performed to find the secondary critical Reynolds number Rei,2Re_{i,2} at which the Taylor vortices become unstable by non-axisymmetric perturbation. The bi-global LSA reveals that Rei,2Re_{i,2} increases (i.e. the onset of secondary instability is delayed) in the range 103<Pr<110^{-3}<Pr<1 at N=1N=1 or as NN increases at Pr=0.01Pr=0.01. Secondary instability leading to highly non-axisymmetric or irregular chaotic patterns is further investigated by the 3D DNS. The Nusselt number NuNu is also computed from the torque at the inner cylinder for various PrPr and ReiRe_{i} at N=1N=1 to describe how the angular momentum transfer increases with ReiRe_{i} and how NuNu varies differently for saturated and chaotic states.

Keywords

Cite

@article{arxiv.2512.08664,
  title  = {Centrifugal instability of Taylor-Couette flow in stratified and diffusive fluids},
  author = {Junho Park},
  journal= {arXiv preprint arXiv:2512.08664},
  year   = {2025}
}

Comments

accepted manuscript in Journal of Fluid Mecahnics