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We compute the inertial modes of a freely rotating two-layer planetary model with an ellipsoidal inviscid fluid core and a perfectly rigid mantle. We present a method to derive analytical formulae for the frequencies of the Free Core…

Earth and Planetary Astrophysics · Physics 2020-06-12 Jeremy Rekier , Santiago A. Triana , Antony Trinh , Veronique Dehant

The time-varying response of the Earth's and other planets' rotation to external gravitational torques depends strongly on their internal structure. In particular, the existence of the mode known as the Free Core Nutation in the fluid core,…

Earth and Planetary Astrophysics · Physics 2022-05-06 Jérémy Rekier

Periodic variations in the Sun and Moon's gravitational pull cause small changes in Earth's rotational axis direction called nutation. Nutation components in the retrograde quasi-diurnal frequency band measured in the terrestrial reference…

Earth and Planetary Astrophysics · Physics 2025-07-14 J. Rekier , S. A. Triana , A. Barik , D. Abdulah , W. Kang

We investigate the pressure torque between the fluid core and the solid mantle arising from magnetohydrodynamic modes in a rapidly rotating planetary core. A two-dimensional reduced model of the core fluid dynamics is developed to account…

Geophysics · Physics 2020-04-22 F. Gerick , D. Jault , J. Noir , J. Vidal

Evidence from seismic studies, mineral physics, thermal evolution models and geomagnetic observations is inconclusive about the presence of a stably stratified layer at the top of the Earth's fluid outer core. Such a convectively stable…

Earth and Planetary Astrophysics · Physics 2025-10-28 Fleur Seuren , Santiago A. Triana , Jérémy Rekier , Véronique Dehant , Tim Van Hoolst

Thermal convection in rotating stars and planets drives anisotropic turbulence and differential rotation, both capable of feeding energy into global oscillations. Using 3D simulations of rotating convection in spherical shells, we show that…

Solar and Stellar Astrophysics · Physics 2026-02-06 J. R. Fuentes , Ankit Barik , Jim Fuller

The bounded oscillations of rotating fluid-filled ellipsoids can provide physical insight into the flow dynamics of deformed planetary interiors. The inertial modes, sustained by the Coriolis force, are ubiquitous in rapidly rotating fluids…

Earth and Planetary Astrophysics · Physics 2021-09-01 Jérémie Vidal , David Cébron

We study the tidal forcing, propagation and dissipation of linear inertial waves in a rotating fluid body. The intentionally simplified model involves a perfectly rigid core surrounded by a deep ocean consisting of a homogeneous…

Earth and Planetary Astrophysics · Physics 2015-05-13 Gordon I. Ogilvie

Earth's fast rotation imposes the Taylor-Proudman Constraint that opposes fluid motion across an imaginary cylindrical surface called the Tangent Cylinder (TC) obtained by extruding the equatorial perimeter of the solid inner core along the…

Geophysics · Physics 2024-08-16 Rishav Agrawal , Martin Holdsworth , Alban Pothérat

The diurnal tidal forces can excite a normal mode of the Earth's core, the free inner core nutation (FICN), which is characterized by a tilt of the rotation axis of the inner core with respect to the rotation axis of the outer core. The…

Geophysics · Physics 2020-01-08 Yufeng Lin , Gordon Ogilvie

We perform direct numerical simulations of the tidal encounter of a rotating planet on a highly eccentric or parabolic orbit about a central star formulated as an initial value problem. This approach enables us to extend previous work of…

Solar and Stellar Astrophysics · Physics 2015-05-19 J. C. B. Papaloizou , P. B. Ivanov

Free core nutation (FCN) is the main factor that limits the accuracy of the modeling of the motion of Earth's rotational axis in the celestial coordinate system. Several FCN models have been proposed. A comparative analysis is made of the…

Geophysics · Physics 2009-08-14 Zinovy Malkin

Azimuthal accelerations of cylindrical surfaces co-axial with the rotation axis have been inferred to exist in Earth's fluid core on the basis of magnetic field observations and changes in the length-of-day. These accelerations have a…

Geophysics · Physics 2022-01-05 Colin More , Mathieu Dumberry

Seismic and geodynamic studies indicate that the boundary between the Earth's liquid outer core and solid mantle is not spherical, but is likely characterized by topography in the form of inverted mountains and valleys that have typical…

Geophysics · Physics 2025-06-10 Tobias G. Oliver , Eric G. Blackman , John A. Tarduno , Michael A. Calkins

Evidence of fast variations in the Earth's core field are seen both in magnetic observatory and satellite records. We present here how they have been identified at the Earth's surface from ground-based observatory records and how their…

Geophysics · Physics 2022-01-17 V. Lesur , N. Gillet , M. D. Hammer , M. Mandea

The inner structure of the earth is still a topic of discussion. Seismic measurements showed a structure of solid, liquid, solid which describes the mantle, outer core and inner core with the inner core in the center. The analysis of…

Earth and Planetary Astrophysics · Physics 2013-03-19 M. Wolf

We discuss the linear response to low-frequency tidal forcing of fluid bodies that are slowly and uniformly rotating, are neutrally stratified and may contain a solid or fluid core. This problem may be regarded as a simplified model of…

Earth and Planetary Astrophysics · Physics 2015-06-12 Gordon I. Ogilvie

In this study, we formulated a triaxial three-layered anelastic Earth rotation theory con-sidering various core mantle couplings, including the pressure and gravitational couplings acting on the inner core by the outer core and mantle, the…

Geophysics · Physics 2020-04-22 Zhiliang Guo , Wenbin Shen

The core of a terrestrial-type planet consists of a spherical shell of rapidly rotating, electrically conducting, fluid. Such a body supports two distinct classes of quasi-geostrophic eigenmodes: fast, primarily hydrodynamic, inertial modes…

Geophysics · Physics 2014-07-25 Elisabeth Canet , Chris Finlay , Alexandre Fournier

The acoustic modes of a rotating fluid-filled cavity can be used to determine the effective rotation rate of a fluid (since the resonant frequencies are modified by the flows). To be accurate, this method requires a prior knowledge of the…

Fluid Dynamics · Physics 2021-09-01 Jérémie Vidal , David Cébron
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