International audienceWe perform one of the first studies into the nonlinear evolution of tidally excited inertial waves in a uniformly rotating fluid body, exploring a simplified model of the fluid envelope of a planet (or the convective envelope of a solar-type star) subject to the gravitational tidal perturbations of an orbiting companion. Our model contains a perfectly rigid spherical core, which is surrounded by an envelope of incompressible uniform density fluid. The corresponding linear problem was studied in previous papers which this work extends into the nonlinear regime, at moderate Ekman numbers (the ratio of viscous to Coriolis accelerations). By performing high-resolution numerical simulations, using a combination of pseudo-sp...
Context. Quantifying tidal interactions in close-in two-body systems is of prime interest since they...
Context. Star–planet tidal interactions may result in the excitation of inertial waves in the convec...
International audienceContext. Quantifying tidal interactions in close-in two-body systems is of pri...
International audienceWe perform one of the first studies into the nonlinear evolution of tidally ex...
International audienceWe perform one of the first studies into the nonlinear evolution of tidally ex...
International audienceWe perform one of the first studies into the nonlinear evolution of tidally ex...
International audienceWe perform one of the first studies into the nonlinear evolution of tidally ex...
International audienceWe perform one of the first studies into the nonlinear evolution of tidally ex...
International audienceWe perform one of the first studies into the nonlinear evolution of tidally ex...
We perform one of the first studies into the non-linear evolution of tidally excited inertial waves ...
In close exoplanetary systems, tidal interactions are known to shape orbital architectures, to modif...
In close exoplanetary systems, tidal interactions are known to shape orbital architectures, to modif...
Tidal interactions in close star-planet or binary star systems may excite inertial waves (their rest...
Context. Star–planet tidal interactions may result in the excitation of inertial waves in the convec...
Context. Quantifying tidal interactions in close-in two-body systems is of prime interest since they...
Context. Quantifying tidal interactions in close-in two-body systems is of prime interest since they...
Context. Star–planet tidal interactions may result in the excitation of inertial waves in the convec...
International audienceContext. Quantifying tidal interactions in close-in two-body systems is of pri...
International audienceWe perform one of the first studies into the nonlinear evolution of tidally ex...
International audienceWe perform one of the first studies into the nonlinear evolution of tidally ex...
International audienceWe perform one of the first studies into the nonlinear evolution of tidally ex...
International audienceWe perform one of the first studies into the nonlinear evolution of tidally ex...
International audienceWe perform one of the first studies into the nonlinear evolution of tidally ex...
International audienceWe perform one of the first studies into the nonlinear evolution of tidally ex...
We perform one of the first studies into the non-linear evolution of tidally excited inertial waves ...
In close exoplanetary systems, tidal interactions are known to shape orbital architectures, to modif...
In close exoplanetary systems, tidal interactions are known to shape orbital architectures, to modif...
Tidal interactions in close star-planet or binary star systems may excite inertial waves (their rest...
Context. Star–planet tidal interactions may result in the excitation of inertial waves in the convec...
Context. Quantifying tidal interactions in close-in two-body systems is of prime interest since they...
Context. Quantifying tidal interactions in close-in two-body systems is of prime interest since they...
Context. Star–planet tidal interactions may result in the excitation of inertial waves in the convec...
International audienceContext. Quantifying tidal interactions in close-in two-body systems is of pri...