Inertial waves in a rotating spherical shell: attractors and asymptotic spectrum
arXiv:physics/0007007 · doi:10.1017/S0022112001003718
Abstract
We investigate the asymptotic properties of inertial modes confined in a spherical shell when viscosity tends to zero. We first consider the mapping made by the characteristics of the hyperbolic equation (Poincaré's equation) satisfied by inviscid solutions. Characteristics are straight lines in a meridional section of the shell, and the mapping shows that, generically, these lines converge towards a periodic orbit which acts like an attractor. We then examine the relation between this characteristic path and eigensolutions of the inviscid problem and show that in a purely two-dimensional problem, convergence towards an attractor means that the associated velocity field is not square-integrable. We give arguments which generalize this result to three dimensions. We then consider the viscous problem and show how viscosity transforms singularities into internal shear layers which in general betray an attractor expected at the eigenfrequency of the mode. We find that there are nested layers, the thinnest and most internal layer scaling with -scale, being the Ekman number. Using an inertial wave packet traveling around an attractor, we give a lower bound on the thickness of shear layers and show how eigenfrequencies can be computed in principle. Finally, we show that as viscosity decreases, eigenfrequencies tend towards a set of values which is not dense in , contrary to the case of the full sphere ( is the angular velocity of the system). Hence, our geometrical approach opens the possibility of describing the eigenmodes and eigenvalues for astrophysical/geophysical Ekman numbers (), which are out of reach numerically, and this for a wide class of containers.
42 pages, 20 figures, abstract shortened
References in corpus (3)
Cited by in corpus (60)
- Tidal dissipation in stars and giant planets
- Tidal dissipation in rotating giant planets
- Tidal dissipation in rotating solar-type stars
- Resonance locking as the source of rapid tidal migration in the Jupiter and Saturn moon systems
- Inertial waves in a rotating spherical shell: attractors and asymptotic spectrum
- Reflexion and Diffraction of Internal Waves analyzed with the Hilbert Transform
- Dynamical Tides in Rotating Planets and Stars
- Nonlinear evolution of tidally forced inertial waves in rotating fluid bodies
- Tidal dissipation in rotating fluid bodies: a simplified model
- Viscous dissipation by tidally forced inertial modes in a rotating spherical shell
- Bi-stability in turbulent, rotating spherical Couette flow
- Internal wave attractors examined using laboratory experiments and 3D numerical simulations
- Inertial waves in a differentially rotating spherical shell
- Internal energy dissipation in Enceladus's ocean from tides and libration and the role of inertial waves
- Direct numerical simulations of an inertial wave attractor in linear and nonlinear regimes
- Internal wave attractors: different scenarios of instability
- Tidal interactions in spin-orbit misaligned systems
- Normal Modes of Rotating Magnetic Stars
- Fluid flows in a librating cylinder
- Theory of solar oscillations in the inertial frequency range: Linear modes of the convection zone
- On the excitation of inertial modes in an experimental spherical Couette flow
- Elliptical instability of a flow in a rotating shell
- Axisymmetric inertial modes in a spherical shell at low Ekman numbers
- Gravito-inertial waves in a differentially rotating spherical shell
- Tidal inertial waves in the differentially rotating convective envelopes of low-mass stars - I. Free oscillation modes
- Damping of quasi-2D internal wave attractors by rigid-wall friction
- Meridional trapping and zonal propagation of inertial waves in a rotating fluid shell
- Completeness of Inertial Modes of an Incompressible Non-Viscous Fluid in a Corotating Ellipsoid
- Linear and nonlinear regimes of an inertial wave attractor
- Internal Wave Attractors in 3D Geometries : trapping by oblique reflection
- Libration-driven inertial waves and mean zonal flows in spherical shells
- Identification of inertial modes in the solar convection zone
- Scale effects in internal wave attractors
- Influence of the multipole order of the source on the decay of an inertial wave beam in a rotating fluid
- Dynamical tides in Jupiter and the role of interior structure
- Stellar activity and rotation of the planet host Kepler-17 from long-term space-borne photometry
- Mean zonal flows induced by weak mechanical forcings in rotating spheroids
- The coupling between inertial and rotational eigenmodes in planets with liquid cores
- The effects of nonlinearities on tidal flows in the convective envelopes of rotating stars and planets in exoplanetary systems
- Resonant tidal responses in rotating fluid bodies: global modes hidden beneath localized wave beams
- Three-dimensionality of the triadic resonance instability of a plane inertial wave
- Inertial modes of a freely rotating ellipsoidal planet and their relation to nutations
- Internal Wave Attractors in 3D Geometries : a dynamical systems approach
- The complex interplay between tidal inertial waves and zonal flows in differentially rotating stellar and planetary convective regions I. Free waves
- Inertial Modes in Near-Spherical Geometries
- A -mode in a magnetic rotating spherical layer: application to neutron stars
- Triadic resonances driven by thermal convection in a rotating sphere
- Energy budget in internal wave attractors experiment
- How do tidal waves interact with convective vortices in rapidly-rotating planets and stars?
- Rotational dynamics of planetary cores: instabilities driven by precession, libration and tides
- Internal shear layers in librating spherical shells: the case of attractors
- Acoustic and inertial modes in planetary-like rotating ellipsoids
- Spectroscopic detection of Altair's non-radial pulsations
- Viscosity limits for 0th order pseudodifferential operators
- Inertial and gravity wave transmissions near radiative-convective boundaries
- Enhancement of wave transmissions in multiple radiative and convective zones
- An introduction to microlocal complex deformations
- Internal shear layers generated by a vertically oscillating cylinder in unbounded and bounded rotating fluids
- Zonal flows driven by libration in rotating spherical shells: the case of periodic characteristic paths
- Inertial waves and mean velocity profiles in a rotating pipe and a circular annulus with axial flow