In order better to understand the processes that lead to the generation of magnetic fields of finite amplitude, we study dynamo action driven by turbulent Boussinesq convection in a rapidly rotating system. In the limit of infinite Prandtl number (the ratio of viscous to thermal diffusion) the inertia term drops out of the momentum equation, which becomes linear in the velocity. This simplification allows a decomposition of the velocity into a thermal part driven by buoyancy, and a magnetic part driven by the Lorentz force. While the former velocity defines the kinematic dynamo problem responsible for the exponential growth of the magnetic field, the latter encodes the magnetic back reaction that leads to the eventual nonlinear saturation o...
Context. Convectively driven flows play a crucial role in the dynamo processes that are responsible ...
We consider kinematic dynamo action in rapidly rotating Boussinesq convection just above onset. The ...
Copyright © 2001 Cambridge University Press. Published version reproduced with the permission of the...
We study dynamo action in rotating, plane layer Boussinesq convection in the absence of inertia. Thi...
The earth's magnetic field is generated by dynamo action driven by convection in the outer core. For...
Most large-scale planetary magnetic fields are thought to be driven by low Rossby number convection ...
Copyright © 2005 Cambridge University Press. Published version reproduced with the permission of the...
International audienceContext. Convectively driven flows play a crucial role in the dynamo processes...
International audienceWe study numerically an extensive set of dynamo models in rotating spherical s...
International audienceWe study numerically an extensive set of dynamo models in rotating spherical s...
Context. Convectively driven flows play a crucial role in the dynamo processes that are responsible ...
Fluid motions driven by convection in the Earth’s fluid core sustain geomagnetic fields by magnet...
Context. Convectively driven flows play a crucial role in the dynamo processes that are responsible ...
Context. Convectively driven flows play a crucial role in the dynamo processes that are responsible ...
Context. Convectively driven flows play a crucial role in the dynamo processes that are responsible ...
Context. Convectively driven flows play a crucial role in the dynamo processes that are responsible ...
We consider kinematic dynamo action in rapidly rotating Boussinesq convection just above onset. The ...
Copyright © 2001 Cambridge University Press. Published version reproduced with the permission of the...
We study dynamo action in rotating, plane layer Boussinesq convection in the absence of inertia. Thi...
The earth's magnetic field is generated by dynamo action driven by convection in the outer core. For...
Most large-scale planetary magnetic fields are thought to be driven by low Rossby number convection ...
Copyright © 2005 Cambridge University Press. Published version reproduced with the permission of the...
International audienceContext. Convectively driven flows play a crucial role in the dynamo processes...
International audienceWe study numerically an extensive set of dynamo models in rotating spherical s...
International audienceWe study numerically an extensive set of dynamo models in rotating spherical s...
Context. Convectively driven flows play a crucial role in the dynamo processes that are responsible ...
Fluid motions driven by convection in the Earth’s fluid core sustain geomagnetic fields by magnet...
Context. Convectively driven flows play a crucial role in the dynamo processes that are responsible ...
Context. Convectively driven flows play a crucial role in the dynamo processes that are responsible ...
Context. Convectively driven flows play a crucial role in the dynamo processes that are responsible ...
Context. Convectively driven flows play a crucial role in the dynamo processes that are responsible ...
We consider kinematic dynamo action in rapidly rotating Boussinesq convection just above onset. The ...
Copyright © 2001 Cambridge University Press. Published version reproduced with the permission of the...