We present the first investigation that explores the effects of an isolated topographic ridge on thermal convection in a planetary core-like geometry and using core-like fluid properties (i.e. using a liquid metal-like low Prandtl number fluid). The model′s mean azimuthal flow resonates with the ridge and results in the excitation of a stationary topographic Rossby wave. This wave generates recirculating regions that remain fixed to the mantle reference frame. Associated with these regions is a strong longitudinally dependent heat flow along the inner core boundary; this effect may control the location of melting and solidification on the inner core boundary. Theoretical considerations and the results of our simulations suggest that the wav...
International audienceEvidence from seismology, mineral physics, and core dynamics suggests a layer ...
Here we investigate the effects of fluid properties on the morphology and dynamics of convection in ...
Here we investigate the effects of fluid properties on the morphology and dynamics of convection in ...
We present the first investigation that explores the effects of an isolated topographic ridge on the...
We present the first investigation that explores the effects of an isolated topographic ridge on the...
International audienceMantle flow induces dynamic topography at the core-mantle boundary (CMB), with...
Within the fluid iron cores of terrestrial planets, convection and the resulting generation of globa...
Temperature anomalies in Earth’s liquid core reflect the vigour of convection and the nature and ext...
Convection in the Earth's core is driven much harder at the bottom than the top. This is partly beca...
The thermal wind equations, in which the Coriolis force is balanced by pressure gradients and horizo...
The thermal wind equations, in which the Coriolis force is balanced by pressure gradients and horizo...
Recent theory and experiment suggest the thermal and electrical conductivities of the Earth’s core a...
Moving core fluid maintains an isothermal core-mantle boundary (CMB), so lateral variations in the C...
The core-mantle boundary (CMB) represents the lower boundary layer of the actively convecting Earth'...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Earth, Atmospheric, and Planetary S...
International audienceEvidence from seismology, mineral physics, and core dynamics suggests a layer ...
Here we investigate the effects of fluid properties on the morphology and dynamics of convection in ...
Here we investigate the effects of fluid properties on the morphology and dynamics of convection in ...
We present the first investigation that explores the effects of an isolated topographic ridge on the...
We present the first investigation that explores the effects of an isolated topographic ridge on the...
International audienceMantle flow induces dynamic topography at the core-mantle boundary (CMB), with...
Within the fluid iron cores of terrestrial planets, convection and the resulting generation of globa...
Temperature anomalies in Earth’s liquid core reflect the vigour of convection and the nature and ext...
Convection in the Earth's core is driven much harder at the bottom than the top. This is partly beca...
The thermal wind equations, in which the Coriolis force is balanced by pressure gradients and horizo...
The thermal wind equations, in which the Coriolis force is balanced by pressure gradients and horizo...
Recent theory and experiment suggest the thermal and electrical conductivities of the Earth’s core a...
Moving core fluid maintains an isothermal core-mantle boundary (CMB), so lateral variations in the C...
The core-mantle boundary (CMB) represents the lower boundary layer of the actively convecting Earth'...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Earth, Atmospheric, and Planetary S...
International audienceEvidence from seismology, mineral physics, and core dynamics suggests a layer ...
Here we investigate the effects of fluid properties on the morphology and dynamics of convection in ...
Here we investigate the effects of fluid properties on the morphology and dynamics of convection in ...