42 pages, 20 figures, abstract shortenedWe 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 gi...
We numerically study the inertial waves and zonal flows in spherical shells driven by longitudinal l...
Oscillations have been detected in a variety of stars, including intermediate- and high-mass main se...
The initial value problem of how an initial state of fluid motion, excited by earthquake or tide and...
We investigate the asymptotic properties of inertial modes confined in a spherical shell when viscos...
We investigate the properties of forced inertial modes of a rotating fluid inside a spherical shell....
In the limit of low viscosity, we show that the amplitude of the modes of oscillation of a rotating ...
Context. Star–planet tidal interactions may result in the excitation of inertial waves in the convec...
The gravito-inertial waves propagating over a shellular baroclinic flow inside a rotating spherical ...
Linear waves in bounded inviscid fluids do not generally form normal modes with regular eigenfunctio...
Following our previous work on periodic ray paths (He et al. 2022), we study asymptotically and nume...
We find the analytical form of inertial waves in an incompressible, rotating fluid constrained by co...
Several planetary bodies in our solar system undergo a forced libration owing to gravitational inter...
International audienceInertial modes are the eigenmodes of contained rotating fluids restored by the...
We numerically study the inertial waves and zonal flows in spherical shells driven by longitudinal l...
Oscillations have been detected in a variety of stars, including intermediate- and high-mass main se...
The initial value problem of how an initial state of fluid motion, excited by earthquake or tide and...
We investigate the asymptotic properties of inertial modes confined in a spherical shell when viscos...
We investigate the properties of forced inertial modes of a rotating fluid inside a spherical shell....
In the limit of low viscosity, we show that the amplitude of the modes of oscillation of a rotating ...
Context. Star–planet tidal interactions may result in the excitation of inertial waves in the convec...
The gravito-inertial waves propagating over a shellular baroclinic flow inside a rotating spherical ...
Linear waves in bounded inviscid fluids do not generally form normal modes with regular eigenfunctio...
Following our previous work on periodic ray paths (He et al. 2022), we study asymptotically and nume...
We find the analytical form of inertial waves in an incompressible, rotating fluid constrained by co...
Several planetary bodies in our solar system undergo a forced libration owing to gravitational inter...
International audienceInertial modes are the eigenmodes of contained rotating fluids restored by the...
We numerically study the inertial waves and zonal flows in spherical shells driven by longitudinal l...
Oscillations have been detected in a variety of stars, including intermediate- and high-mass main se...
The initial value problem of how an initial state of fluid motion, excited by earthquake or tide and...