Large-scale mantle convection, to first order, is a system driven by interior density anomalies, modulated by variable plate thickness and extreme rheology variations at the top of the mantle. The rheological difference between oceanic and continental regions significantly influences the surface velocity. We apply a three-dimensional Newtonian viscous flow model to explain the large-scale present-day plate motions. The density anomalies are derived from seismic tomography and a slab model. With a viscosity difference of a factor of 30–60 between continents and oceans in the upper 90 km of the Earth, we are able to explain both the observed large-scale poloidal and toroidal plate motions. The viscosity difference between continental and ocea...
Mantle convection models have been formulated to investigate the relation between plate kinematics a...
There have been two main avenues of investigation of the rheology of the mantle: theoretical and lab...
Lithospheric plates move over the low‐viscosity asthenosphere balancing several forces, which genera...
Large-scale mantle convection, to first order, is a system driven by interior density anomalies, mod...
Plate tectonics is a kinematic description of Earth that treats the outer shell of its mantle as a n...
Fundamental issues in our understanding of plate and mantle dynamics remain unresolved, including th...
Concentrated strain within plate margins and a significant toroidal component in global plate motion...
International audienceAssessing the role of slab rheology in coupled plate-mantle convection models....
Numerical convection experiments were carried out with the aim of simulating the lithosphere as a st...
Layered viscosity, temperature-dependent viscosity, and surface plates have an important effect on t...
The concept of interplay between mantle convection and tectonics goes back to about a century ago, w...
A thermomechanical model for upper mantle convection was constructed such that the thickness and the...
We have incorporated faults as plate margins into time-dependent mantle convection models by using a...
Convection in the Earth's mantle is a complicated phenomenon that causes various tectonic activitie...
Mantle circulation models are a modified class of mantle convection simulations assimilating recent ...
Mantle convection models have been formulated to investigate the relation between plate kinematics a...
There have been two main avenues of investigation of the rheology of the mantle: theoretical and lab...
Lithospheric plates move over the low‐viscosity asthenosphere balancing several forces, which genera...
Large-scale mantle convection, to first order, is a system driven by interior density anomalies, mod...
Plate tectonics is a kinematic description of Earth that treats the outer shell of its mantle as a n...
Fundamental issues in our understanding of plate and mantle dynamics remain unresolved, including th...
Concentrated strain within plate margins and a significant toroidal component in global plate motion...
International audienceAssessing the role of slab rheology in coupled plate-mantle convection models....
Numerical convection experiments were carried out with the aim of simulating the lithosphere as a st...
Layered viscosity, temperature-dependent viscosity, and surface plates have an important effect on t...
The concept of interplay between mantle convection and tectonics goes back to about a century ago, w...
A thermomechanical model for upper mantle convection was constructed such that the thickness and the...
We have incorporated faults as plate margins into time-dependent mantle convection models by using a...
Convection in the Earth's mantle is a complicated phenomenon that causes various tectonic activitie...
Mantle circulation models are a modified class of mantle convection simulations assimilating recent ...
Mantle convection models have been formulated to investigate the relation between plate kinematics a...
There have been two main avenues of investigation of the rheology of the mantle: theoretical and lab...
Lithospheric plates move over the low‐viscosity asthenosphere balancing several forces, which genera...