Influence of random fluctuations in the Lambda-effect on meridional flow and differential rotation
arXiv:astro-ph/0610132 · doi:10.1086/432610
Abstract
We present a mean field model based on the approach taken by Rempel (astro-ph/0604451) in order to investigate the influence of stochastic fluctuations in the Reynolds stresses on meridional flow and differential rotation. The stochastic fluctuations found in the meridional flow pattern directly resemble the stochastic fluctuations of the Reynolds stresses, while the stochastic fluctuations in the differential rotation are smaller by almost two orders of magnitude. It is further found that the correlation length and time scale of the stochastic fluctuations have only a weak influence on meridional flow, but a significant influence on the magnitude of variations in the differential rotation. We analyze the energy fluxes within the model to estimate time scales for the replenishment of differential rotation and meridional flow. We find that the time scale for the replenishment of differential rotation (~10 years) is nearly four orders of magnitude longer than the time scale for the replenishment of meridional flow, which explains the differences in the response to stochastic fluctuations of the Reynolds stress found for both flow fields.
7 pages, 4 figures
References in corpus (1)
Cited by in corpus (23)
- Flux-transport dynamos with Lorentz force feedback on differential rotation and meridional flow: Saturation mechanism and torsional oscillations
- On differential rotation and overshooting in solar-like stars
- Simulations of turbulent convection in rotating young solar-like stars: Differential rotation and meridional circulation
- Grand Minima and North-South Asymmetry of Solar Activity
- Models for the long-term variations of solar activity
- Mean field models of flux transport dynamo and meridional circulation in the Sun and stars
- Studies of grand minima in sunspot cycles from a flux transport solar dynamo model
- A closure model with plumes I. The solar convection
- A model of the entropy flux and Reynolds stress in turbulent convection
- Nonlinear dynamo models using quasi-biennial oscillations constrained by sunspot area data
- Modelling variability of solar activity cycles
- Theory of differential rotation and meridional circulation
- Nature of grand minima and maxima from fully non-linear Flux-Transport Dynamos
- Dynamo modelling for cycle variability and occurrence of grand minima in Sun-like stars: Rotation rate dependence
- Torsional Oscillations in Dynamo Models with Fluctuations and Potential for Helioseismic Predictions of the Solar Cycles
- Effects of Emerging Bipolar Magnetic Regions in Mean-field Dynamo Model of Solar Cycles 23 and 24
- Meridional circulation in the Sun and stars
- On effects of surface bipolar magnetic regions on the convection zone dynamo
- Astrophysics in 2006
- Parametric Modulation of Dynamo Waves
- Generation of shear flows and vortices in rotating anelastic convection
- Solar poloidal magnetic field generation rate from observations and mean-field dynamos
- Solar cycle asymmetry as a consequence of fluctuations in dynamo parameters