Negative effective magnetic pressure in turbulent convection
arXiv:1104.4541 · doi:10.1111/j.1365-2966.2012.20801.x
Abstract
We investigate the effects of weakly and strongly stratified turbulent convection on the mean effective Lorentz force, and especially on the mean effective magnetic pressure. Earlier studies with isotropically forced non-stratified and stratified turbulence have shown that the contribution of the turbulence to the mean magnetic pressure is negative for mean horizontal magnetic fields that are smaller than the equipartition strength, so that the effective mean magnetic pressure that takes into account the turbulence effects, can be negative. Compared with earlier cases of forced turbulence with an isothermal equation of state, we find that the turbulence effect is similar to or even stronger in the present case of turbulent convection. This is argued to be due to the anisotropy of turbulence in the vertical direction. Another important difference compared with earlier studies is the presence of an evolution equation for the specific entropy. Mean-field modelling with entropy evolution indicates that the negative effective magnetic pressure can still lead to a large-scale instability which forms local flux concentrations, even though the specific entropy evolution tends to have a stabilizing effect when applied to a stably stratified (e.g., isothermal) layer. It is argued that this large-scale instability could be important for the formation of solar large-scale magnetic structures such as active regions.
10 pages, 11 figures, MNRAS, published version
References in corpus (11)
- The case for a distributed solar dynamo shaped by near-surface shear
- Magneto-convection in a sunspot umbra
- Twisted flux tube emergence from the convection zone to the corona
- Large-scale dynamos in turbulent convection with shear
- Magnetic fluctuations and formation of large-scale inhomogeneous magnetic structures in a turbulent convection
- Detection of negative effective magnetic pressure instability in turbulence simulations
- Solar dynamo models with alpha-effect and turbulent pumping from local 3D convection calculations
- Dynamo action and magnetic buoyancy in convection simulations with vertical shear
- Spontaneous formation of flux concentrations in a stratified layer
- Properties of the negative effective magnetic pressure instability
- Structures in compressible magnetoconvection and the nature of umbral dots
Cited by in corpus (30)
- Magnetic Wreaths and Cycles in Convective Dynamos
- Astrophysical hydromagnetic turbulence
- Large-Eddy Simulations of Magnetohydrodynamic Turbulence in Heliophysics and Astrophysics
- Starspots due to large-scale vortices in rotating turbulent convection
- Active region formation through the negative effective magnetic pressure instability
- Self-assembly of shallow magnetic spots through strongly stratified turbulence
- Intense bipolar structures from stratified helical dynamos
- Properties of the negative effective magnetic pressure instability
- Magnetic flux concentrations from turbulent stratified convection
- Magnetic concentrations in stratified turbulence: the negative effective magnetic pressure instability
- Turbulent reconnection of magnetic bipoles in stratified turbulence
- Bipolar region formation in stratified two-layer turbulence
- Turbulent diffusion of chemically reacting flows: theory and numerical simulations
- Competition of rotation and stratification in flux concentrations
- The dynamics of Wolf numbers based on nonlinear dynamo with magnetic helicity: comparisons with observations
- Compressibility in turbulent MHD and passive scalar transport: mean-field theory
- Rotational effects on the negative magnetic pressure instability
- Surface flux concentrations and spherical alpha-square dynamo
- Bipolar magnetic spots from dynamos in stratified spherical shell turbulence
- Magnetic flux concentrations in a polytropic atmosphere
- Nonlinear mean-field dynamo and prediction of solar activity
- Mean-field theory of differential rotation in density stratified turbulent convection
- Generation of large-scale vorticity in rotating stratified turbulence with inhomogeneous helicity: mean-field theory
- Sharp magnetic structures from dynamos with density stratification
- The turbulent pressure of magnetoconvection for slow and rapid rotation
- Spontaneous flux concentrations from the negative effective magnetic pressure instability beneath a radiative stellar surface
- Nonuniformity effects in the negative effective magnetic pressure instability
- Flux concentrations in turbulent convection
- Magnetic bipoles in rotating turbulence with coronal envelope
- Angular momentum transport by magnetoconvection and the magnetic modulation of the solar differential rotation