Global transient dynamics of three-dimensional hydrodynamical disturbances in a thin viscous accretion disk
arXiv:0906.0004 · doi:10.1063/1.3167411
Abstract
Thin viscous Keplerian accretion disks are considered asymptotically stable, even though they can show significant dynamic activity on short timescales. In this paper the dynamics of non-axisymmetric hydrodynamical disturbances of disks are investigated analytically building upon the steady state three-dimensional structure and evolution of axisymmetric perturbations explored in previous work. Assuming a polytropic equation of state solutions are found by means of an asymptotic expansion in the small parameter measuring the ratio of the disk thickness to characteristic radius. In-depth analysis shows that every perturbation that disturbs the radial velocity induces significant transient growth in the (acoustic) energy of the evolving disturbance. This effect is most evident in the density and vertical velocity. The transient growth observed is tied to the non-separable nature of the solutions where, in particular, pattern evolution is controlled by a similarity variable composed of the radial coordinate and time. This leads to growing winding perturbations that display successive radial peaks and troughs. We argue that these transient non-axisymmetric structures may precipitate secondary instabilities which, consequently, may be a critical element for a new alternative picture of turbulence arousal in non-magnetized astrophysical disks.
Accepted in Physics of Fluids
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- Collisionless kinetic regimes for quasi-stationary axisymmetric accretion disc plasmas
- Transient dynamics of perturbations in astrophysical disks
- Spectral and algebraic instabilities in thin Keplerian discs under poloidal and toroidal magnetic fields
- Transient growth of perturbations on scales beyond the accretion disc thickness
- Non-exponential hydrodynamical growth in density-stratified thin Keplerian discs
- Magnetically threaded accretion disks in resistive magnetohydrodynamic simulations and asymptotic expansion
- An optimal transient growth of small perturbations in thin gaseous discs
- Regimes of the non-exponential temporal growth in thin Keplerian discs under toroidally-dominated magnetic fields