We study dynamo action in rotating, plane layer Boussinesq convection in the absence of inertia. This allows a decomposition of the velocity into a thermal part driven by buoyancy, and a magnetic part driven by the Lorentz force. We have identified three families of solutions, defined in terms of what is the dominant contribution to the velocity. In weak field dynamos the dominant contribution is the thermal component, in super strong field dynamos the dominant contribution is magnetic and in strong field dynamos the two components are comparable. For each of these solutions we investigate the force balance in the momentum equation to determine the relative importance of the viscous, buoyancy, Coriolis and magnetic forces. We do this by ext...
Compositional convection is thought to be an important energy source for magnetic field generation w...
Most large-scale planetary magnetic fields are thought to be driven by low Rossby number convection ...
In a rigidly-rotating magnetohydrodynamic (MHD) system with convective turbulence, a large-scale dyn...
In order better to understand the processes that lead to the generation of magnetic fields of finite...
The earth's magnetic field is generated by dynamo action driven by convection in the outer core. For...
Rapidly rotating convection-driven dynamos are investigated under different kinematic and magnetic b...
We study dynamo processes in a convective layer of Boussinesq fluid rotating about the vertical. Irr...
International audienceEarth sustains its magnetic field by a dynamo process driven by convection in ...
Copyright © 2005 Cambridge University Press. Published version reproduced with the permission of the...
International audienceEarth sustains its magnetic field by a dynamo process driven by convection in ...
The heat transfer behavior of convection-driven dynamos in a rotating plane layer between two parall...
International audienceWe study numerically an extensive set of dynamo models in rotating spherical s...
We numerically compute the flow of an electrically conducting fluid in a Taylor-Couette geometry whe...
International audienceWe study numerically an extensive set of dynamo models in rotating spherical s...
The objective of this thesis is to understand more about the role of inertia in the Earth’s dynamo. ...
Compositional convection is thought to be an important energy source for magnetic field generation w...
Most large-scale planetary magnetic fields are thought to be driven by low Rossby number convection ...
In a rigidly-rotating magnetohydrodynamic (MHD) system with convective turbulence, a large-scale dyn...
In order better to understand the processes that lead to the generation of magnetic fields of finite...
The earth's magnetic field is generated by dynamo action driven by convection in the outer core. For...
Rapidly rotating convection-driven dynamos are investigated under different kinematic and magnetic b...
We study dynamo processes in a convective layer of Boussinesq fluid rotating about the vertical. Irr...
International audienceEarth sustains its magnetic field by a dynamo process driven by convection in ...
Copyright © 2005 Cambridge University Press. Published version reproduced with the permission of the...
International audienceEarth sustains its magnetic field by a dynamo process driven by convection in ...
The heat transfer behavior of convection-driven dynamos in a rotating plane layer between two parall...
International audienceWe study numerically an extensive set of dynamo models in rotating spherical s...
We numerically compute the flow of an electrically conducting fluid in a Taylor-Couette geometry whe...
International audienceWe study numerically an extensive set of dynamo models in rotating spherical s...
The objective of this thesis is to understand more about the role of inertia in the Earth’s dynamo. ...
Compositional convection is thought to be an important energy source for magnetic field generation w...
Most large-scale planetary magnetic fields are thought to be driven by low Rossby number convection ...
In a rigidly-rotating magnetohydrodynamic (MHD) system with convective turbulence, a large-scale dyn...