Equilibrium disks, MRI mode excitation, and steady state turbulence in global accretion disk simulations
arXiv:1212.1306 · doi:10.1088/0004-637X/763/2/99
Abstract
Global three dimensional magnetohydrodynamic (MHD) simulations of turbulent accretion disks are presented which start from fully equilibrium initial conditions in which the magnetic forces are accounted for and the induction equation is satisfied. The local linear theory of the magnetorotational instability (MRI) is used as a predictor of the growth of magnetic field perturbations in the global simulations. The linear growth estimates and global simulations diverge when non-linear motions - perhaps triggered by the onset of turbulence - upset the velocity perturbations used to excite the MRI. The saturated state is found to be independent of the initially excited MRI mode, showing that once the disk has expelled the initially net flux field and settled into quasi-periodic oscillations in the toroidal magnetic flux, the dynamo cycle regulates the global saturation stress level. Furthermore, time-averaged measures of converged turbulence, such as the ratio of magnetic energies, are found to be in agreement with previous works. In particular, the globally averaged stress normalized to the gas pressure, <α_{\rm P}> = 0.034, with notably higher values achieved for simulations with higher azimuthal resolution. Supplementary tests are performed using different numerical algorithms and resolutions. Convergence with resolution during the initial linear MRI growth phase is found for 23-35 cells per scaleheight (in the vertical direction).
19 pages, 13 figures, accepted for ApJ
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Cited by in corpus (16)
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- Testing the Propagating Fluctuations Model with a Long, Global Accretion Disk Simulation
- Modelling MHD accretion-ejection - from the launching area to propagation scales
- Steady-state accretion in magnetized protoplanetary disks
- Accretion in giant planet circumplanetary disks
- The influence of accretion disk thickness on the large-scale magnetic dynamo
- Global simulations of magnetorotational turbulence I: convergence and the quasi-steady state
- Local simulations of MRI turbulence with meshless methods
- Simulating the magnetorotational instability on a moving mesh with the shearing box approximation
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- Driving Disk Winds and Heating up Hot Coronae by MRI Turbulence
- Multiphase Circumnuclear Gas in a Low- Disk: Turbulence and Magnetic Field Reversals
- Magnetohydrodynamics in a Cylindrical Shearing Box
- Effects of magnetic field topology in black hole-neutron star mergers: Long-term simulations
- Global simulations of magnetorotational turbulence III: influence of field configuration and mass injection
- Magneto Rotational Instability in Magnetized AGN Tori