On the interaction between tides and convection
arXiv:1201.5020 · doi:10.1111/j.1365-2966.2012.20630.x
Abstract
We study the interaction between tides and convection in astrophysical bodies by analysing the effect of a homogeneous oscillatory shear on a fluid flow. This model can be taken to represent the interaction between a large-scale periodic tidal deformation and a smaller-scale convective motion. We first consider analytically the limit in which the shear is of low amplitude and the oscillation period is short compared to the timescales of the unperturbed flow. In this limit there is a viscoelastic response and we obtain expressions for the effective elastic modulus and viscosity coefficient. The effective viscosity is inversely proportional to the square of the oscillation frequency, with a coefficient that can be positive, negative or zero depending on the properties of the unperturbed flow. We also carry out direct numerical simulations of Boussinesq convection in an oscillatory shearing box and measure the time-dependent Reynolds stress. The results indicate that the effective viscosity of turbulent convection falls rapidly as the oscillation frequency is increased, attaining small negative values in the cases we have examined, although significant uncertainties remain because of the turbulent noise. We discuss the implications of this analysis for astrophysical tides.
14 pages, 5 figures, to be published in MNRAS
References in corpus (1)
Cited by in corpus (63)
- Tidal dissipation in stars and giant planets
- Hot Jupiters and Cool Stars
- Resonance locking as the source of rapid tidal migration in the Jupiter and Saturn moon systems
- Tidal dissipation in evolving low-mass and solar-type stars with predictions for planetary orbital decay
- Calibration of Equilibrium Tide Theory for Extrasolar Planet Systems II
- Deformation and tidal evolution of close-in planets and satellites using a Maxwell viscoelastic rheology
- Nonlinear evolution of tidally forced inertial waves in rotating fluid bodies
- The variation of tidal dissipation in the convective envelope of low-mass stars along their evolution
- Tidal dissipation in rotating low-mass stars and implications for the orbital evolution of close-in planets I. From the PMS to the RGB at solar metallicity
- Nonlinear evolution of the tidal elliptical instability in gaseous planets and stars
- Convective turbulent viscosity acting on equilibrium tidal flows: new frequency scaling of the effective viscosity
- Understanding WASP-12b
- Searching For Rapid Orbital Decay of WASP-18b
- Nonlinear tides in a homogeneous rotating planet or star: global simulations of the elliptical instability
- A model of rotating convection in stellar and planetary interiors: I - convective penetration
- Impact of the frequency dependence of tidal Q on the evolution of planetary systems
- Evolution of star-planet systems under magnetic braking and tidal interaction
- Nonlinear evolution of the elliptical instability in the presence of weak magnetic fields
- The impact of rotation on turbulent tidal friction in stellar and planetary convective regions
- Turbulent viscosity acting on the equilibrium tidal flow in convective stars
- On a new formulation for energy transfer between convection and fast tides with application to giant planets and solar type stars
- Unravelling tidal dissipation in gaseous giant planets
- Scaling laws to understand tidal dissipation in fluid planetary regions and stars I - Rotation, stratification and thermal diffusivity
- Tidal Circularization of Binaries by Resonance Locking I: The Importance of the Pre-Main-Sequence
- Tidal dissipation due to inertial waves can explain the circularization periods of solar-type binaries
- Tidal inertial waves in the differentially rotating convective envelopes of low-mass stars - I. Free oscillation modes
- Orbital Decay in Binaries Containing Post-Main Sequence Stars
- Ultra-short-period Planets are Stable Against Tidal Inspiral
- Dynamical tides in exoplanetary systems containing Hot Jupiters: confronting theory and observations
- Temperature and Distance Dependence of Tidal Circularization in Close Binaries: A Catalog of Eclipsing Binaries in the Southern Hemisphere Observed by the TESS Satellite
- Efficiency of tidal dissipation in slowly rotating fully convective stars or planets
- On the interaction between fast tides and convection
- The coupled effect of tides and stellar winds on the evolution of compact binaries
- On a Possible Solution to the Tidal Realignment Problem for Hot Jupiters
- Influence of stellar structure, evolution and rotation on the tidal damping of exoplanetary spin-orbit angles
- Inverse Tides in Pulsating Binary Stars
- Tidal Dissipation Impact on the Eccentric Onset of Common Envelope Phases in Massive Binary Star Systems
- Can Gaia find planets around white dwarfs?
- Tidal Evolution of Eccentric Binaries Driven by Convective Turbulent Viscosity
- A Tale of Two Circularization Periods
- Does magnetic field impact tidal dynamics inside the convective zone of low-mass stars along their evolution?
- Tidal dissipation due to the elliptical instability and turbulent viscosity in convection zones in rotating giant planets and stars
- Layered semi-convection and tides in giant planet interiors - II. Tidal dissipation
- The complex interplay between tidal inertial waves and zonal flows in differentially rotating stellar and planetary convective regions I. Free waves
- An efficient tidal dissipation mechanism via stellar magnetic fields
- Constraining Tidal Quality Factor using Spin Period in Eclipsing Binaries
- How Cassini Can Constrain Tidal Dissipation in Saturn
- The Stability of Massive Main Sequence Stars as a Function of Metallicity
- On the energetics of a tidally oscillating convective flow
- Tides and angular momentum redistribution inside low-mass stars hosting planets: a first dynamical model
- Gravitational Wave Heating of Stars and Accretion Disks
- Elliptical instability of compressible flow in ellipsoids
- How do tidal waves interact with convective vortices in rapidly-rotating planets and stars?
- Comprehensive Bayesian Modeling of Tidal Circularization in Open Cluster Binaries part I: M 35, NGC 6819, NGC 188
- The interactions of the elliptical instability and convection
- Constraints on Tidal Quality Factor in Kepler Eclipsing Binaries using Tidal Synchronization: A Frequency-Dependent Approach
- Nonlinear tidal excitation of super-harmonic gravity waves in main-sequence stars in binary and exoplanetary systems
- Effect of tides on the orbital evolution of the redback system PSR 1723-2837
- Parametric instability in periodically perturbed dynamos
- The Interplay of Parametric and Magnetorotational Instabilities in Oscillatory Shear Flows
- Layered semi-convection and tides in giant planet interiors - I. Propagation of internal waves
- Excitation and Damping of Oscillation Modes in Gaseous Planets
- Observational imprints of tidal internal gravity wave dissipation in star-planet systems