Simulations of Magnetorotational Turbulence with a Higher-Order Godunov Scheme
arXiv:0806.3969 · doi:10.1088/0004-637X/690/1/974
Abstract
(abridged) We apply a second-order Godunov code, Athena, to studies of the magnetorotational instability using unstratified shearing box simulations with a uniform net vertical field and a sinusoidally varying zero net vertical field. The Athena results agree well with similar studies that used different numerical algorithms. We conduct analyses to study the flow of energy from differential rotation to turbulent fluctuations to thermalization. A study of the temporal correlation between the time derivatives of volume-averaged energy components shows that energy injected into turbulent fluctuations dissipates on a timescale of , where is the orbital frequency of the local domain. Magnetic dissipation dominates over kinetic dissipation, although not by as great a factor as the ratio of magnetic to kinetic energy. We Fourier-transform the magnetic and kinetic energy evolution equations and, using the assumption that the time-averaged energies are constant, determine the level of numerical dissipation as a function of length scale and resolution. By modeling numerical dissipation as if it were physical in origin, we characterize numerical resistivity and viscosity in terms of effective Reynolds and Prandtl numbers. The resulting effective magnetic Prandtl number is , independent of resolution or initial field geometry. MRI simulations with effective Reynolds and Prandtl numbers determined by numerical dissipation are not equivalent to those where these numbers are set by physical resistivity and viscosity. These results serve, then, as a baseline for future shearing box studies where dissipation is controlled by the inclusion of explicit viscosity and resistivity.
Accepted by ApJ; version 2 - minor changes following review; 59 pages (preprint format), 19 figures
References in corpus (11)
- Athena: A New Code for Astrophysical MHD
- An Unsplit Godunov Method for Ideal MHD via Constrained Transport in Three Dimensions
- MHD simulations of the magnetorotational instability in a shearing box with zero net flux. II. The effect of transport coefficients
- Impact of dimensionless numbers on the efficiency of MRI-induced turbulent transport
- MHD simulations of the magnetorotational instability in a shearing box with zero net flux. I. The issue of convergence
- Angular Momentum Transport in Accretion Disks: Scaling Laws in MRI-driven Turbulence
- Aspect ratio dependence in magnetorotational instability shearing box simulations
- Where is the Radiation Edge in Magnetized Black Hole Accretion discs?
- Empirical relation between angular momentum transport and thermal-to-magnetic pressure ratio in shearing box simulations
- Thermodynamics of an Accretion Disk Annulus with Comparable Radiation and Gas Pressure
- Surface Structure in an Accretion Disk Annulus with Comparable Radiation and Gas Pressure
Cited by in corpus (22)
- Magnetic Flux Concentration and Zonal Flows in Magnetorotational Instability Turbulence
- 3D Radiation Non-ideal Magnetohydrodynamical Simulations Of The Inner Rim In Protoplanetary Disks
- Energy transfer in compressible magnetohydrodynamic turbulence
- Saturation of the MRI in Strongly Radiation Dominated Accretion Disks
- On the convergence of Magnetorotational turbulence in stratified isothermal shearing boxes
- Fast magnetic reconnection structures in Poynting-flux dominated jets
- Corotational Instability, Magnetic Resonances and Global Inertial-Acoustic Oscillations in Magnetized Black-Hole Accretion Discs
- Nonlinear transverse cascade and two-dimensional magnetohydrodynamic subcritical turbulence in plane shear flows
- As a matter of dynamical range -- scale dependent energy dynamics in MHD turbulence
- Zero net flux MRI-turbulence in disks sustenance scheme and magnetic Prandtl number dependence
- Magnetorotational instability with smoothed particle hydrodynamics
- Simulating the magnetorotational instability on a moving mesh with the shearing box approximation
- Variabilities of Gamma-ray Bursts from Black Hole Hyper-accretion Disks
- Nonlinear transverse cascade and sustenance of MRI-turbulence in Keplerian disks with an azimuthal magnetic field
- Parsec-scale obscuring accretion disk with large scale magnetic field in AGN
- Post-dynamical inspiral phase of common envelope evolution. The role of magnetic fields
- Nonlinear evolution of the magnetorotational instability in eccentric disks
- Numerical dependencies of the galactic dynamo in isolated galaxies with SPH
- Assessment of a new sub-grid model for magnetohydrodynamical turbulence. II. Kelvin-Helmholtz instability
- Shedding light on the MRI driven dynamo in a stratified shearing box
- Papaloizou-Pringle Instability of Magnetized Accretion Tori
- Global simulations of magnetorotational turbulence III: influence of field configuration and mass injection