Identifying Deficiencies of Standard Accretion Disk Theory: Lessons from a Mean-Field Approach
arXiv:0808.3378 · doi:10.1111/j.1365-2966.2008.13746.x
Abstract
Turbulent viscosity is frequently used in accretion disk theory to replace the microphysical viscosity in order to accomodate the observational need for in- stabilities in disks that lead to enhanced transport. However, simply replacing the microphysical transport coefficient by a single turbulent transport coeffi- cient hides the fact that the procedure should formally arise as part of a closure in which the hydrodynamic or magnetohydrodynamic equations are averaged, and correlations of turbulent fluctuations are replaced by transport coefficients. Here we show how a mean field approach leads quite naturally two transport coefficients, not one, that govern mass and angular momentum transport. In particular, we highlight that the conventional approach suffers from a seemingly inconsistent neglect of turbulent diffusion in the surface density equation. We constrain these new transport coefficients for specific cases of inward, outward, and zero net mass transport. In addition, we find that one of the new transport terms can lead to oscillations in the mean surface density which then requires a constant or small inverse Rossby number for disks to maintain a monotonic power-law surface density.
11 pages
References in corpus (4)
- Angular Momentum Transport in Accretion Disks: Scaling Laws in MRI-driven Turbulence
- Empirical relation between angular momentum transport and thermal-to-magnetic pressure ratio in shearing box simulations
- A Local Model for Angular Momentum Transport in Accretion Disks Driven by the Magnetorotational Instability
- The fundamental difference between shear alpha viscosity and turbulent magnetorotational stresses
Cited by in corpus (5)
- Angular Momentum Transport in Protoplanetary and Black-Hole Accretion Disks: The Role of Parasitic Modes in the Saturation of MHD Turbulence
- A mean-field approach to the propagation of field patterns in stratified magneto rotational turbulence
- Comparisons and Connections between Mean Field Dynamo Theory and Accretion Disc Theory
- A heuristic model for MRI turbulent stresses in Hall MHD
- Magnetic Fields in Paradigms of Planetary Nebulae and Related MHD Frontiers