The evolution of midplate hotspot swells on an oceanic plate moving over a hot, upwelling mantle plume is numerically simulated. The plume supplies a Gaussian-shaped thermal perturbation and thermally-induced dynamic support. The lithosphere is treated as a thermal boundary layer with a strongly temperature-dependent viscosity. The two fundamental mechanisms of transferring heat, conduction and convection, during the interaction of the lithosphere with the mantle plume are considered. The transient heat transfer equations, with boundary conditions varying in both time and space, are solved in cylindrical coordinates using the finite difference ADI (alternating direction implicit) method on a 100 x 100 grid. The topography, geoid anomaly, an...
If mantle thermal upwellings (plumes) are the cause of volcanic “hot spots,” then observations sugge...
Observations at numerous hotspots around the globe, such as Hawaii and Louisville, find periodic var...
AbstractWe study the dynamics of melting in the Hawaiian plume using a 3D variable-viscosity convect...
International audienceIt is currently debated if either thermal erosion of the lithosphere or dynami...
The available data, mainly topography, geoid, and heat flow, describing hotspots worldwide are exami...
Hot-spots are anomalous regions of magmatism that cannot be directly associated with plate tectonic ...
Mantle convection is the principal mechanism by which heat is transferred from the deep Earth to the...
According to classical plume theory, purely thermal upwellings rise through the mantle, pond in a th...
Rapid lithospheric thinning by mantle plumes has not been achieved in numerical ex-periments perform...
Convection in an isolated planet is characterized by narrow downwellings and broad updrafts—conseque...
International audienceThe dynamics of mantle plumes and the origin of their associated swells remain...
The ~0.2 mm/yr uplift of Hawaiian islands Lanai and Molokai and Hawaiian swell topography pose impor...
Author Posting. © Elsevier B.V., 2007. This is the author's version of the work. It is posted here ...
International audienceNumerical simulations of two-dimensional Rayleigh-Bénard convection are design...
Recent high-resolution seismic imaging of the transition zone topography beneath the Hawaiian archip...
If mantle thermal upwellings (plumes) are the cause of volcanic “hot spots,” then observations sugge...
Observations at numerous hotspots around the globe, such as Hawaii and Louisville, find periodic var...
AbstractWe study the dynamics of melting in the Hawaiian plume using a 3D variable-viscosity convect...
International audienceIt is currently debated if either thermal erosion of the lithosphere or dynami...
The available data, mainly topography, geoid, and heat flow, describing hotspots worldwide are exami...
Hot-spots are anomalous regions of magmatism that cannot be directly associated with plate tectonic ...
Mantle convection is the principal mechanism by which heat is transferred from the deep Earth to the...
According to classical plume theory, purely thermal upwellings rise through the mantle, pond in a th...
Rapid lithospheric thinning by mantle plumes has not been achieved in numerical ex-periments perform...
Convection in an isolated planet is characterized by narrow downwellings and broad updrafts—conseque...
International audienceThe dynamics of mantle plumes and the origin of their associated swells remain...
The ~0.2 mm/yr uplift of Hawaiian islands Lanai and Molokai and Hawaiian swell topography pose impor...
Author Posting. © Elsevier B.V., 2007. This is the author's version of the work. It is posted here ...
International audienceNumerical simulations of two-dimensional Rayleigh-Bénard convection are design...
Recent high-resolution seismic imaging of the transition zone topography beneath the Hawaiian archip...
If mantle thermal upwellings (plumes) are the cause of volcanic “hot spots,” then observations sugge...
Observations at numerous hotspots around the globe, such as Hawaii and Louisville, find periodic var...
AbstractWe study the dynamics of melting in the Hawaiian plume using a 3D variable-viscosity convect...