Compositional convection is thought to be an important energy source for magnetic field generation within planetary interiors. The Prandtl number, Pr , characterizing compositional convection is significantly larger than unity, suggesting that the inertial force may not be important on the small scales of convection as long as the buoyancy force is not too strong. We develop asymptotic dynamo models for the case of small Rossby number and large Prandtl number in which inertia is absent on the convective scale. The relevant diffusivity parameter for this limit is the compositional Roberts number, q=D/η, which is the ratio of compositional and magnetic diffusivities. Dynamo models are developed for both order one q and the more geophysically ...
The objective of this thesis is to understand more about the role of inertia in the Earth’s dynamo. ...
The value of the Prandtl number P exerts a strong influence on convection-driven dynamos in rotating...
The value of the Prandtl number P exerts a strong influence on convection-driven dynamos in rotating...
Most large-scale planetary magnetic fields are thought to be driven by low Rossby number convection ...
The earth's magnetic field is generated by dynamo action driven by convection in the outer core. For...
In order better to understand the processes that lead to the generation of magnetic fields of finite...
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...
Dynamos driven by rotating convection in the plane layer geometry are investigated numerically for a...
The onset of dynamo action is investigated within the context of a newly developed low Rossby, low m...
The onset of dynamo action is investigated within the context of a newly developed low Rossby, low m...
The magnetic fields of planets and stars are thought to play an important role in the fluid motions ...
The magnetic fields of planets and stars are thought to play an important role in the fluid motions ...
We study dynamo action in rotating, plane layer Boussinesq convection in the absence of inertia. Thi...
A numerical investigation of convection-driven dynamos is carried out in the plane layer geometry. D...
The objective of this thesis is to understand more about the role of inertia in the Earth’s dynamo. ...
The value of the Prandtl number P exerts a strong influence on convection-driven dynamos in rotating...
The value of the Prandtl number P exerts a strong influence on convection-driven dynamos in rotating...
Most large-scale planetary magnetic fields are thought to be driven by low Rossby number convection ...
The earth's magnetic field is generated by dynamo action driven by convection in the outer core. For...
In order better to understand the processes that lead to the generation of magnetic fields of finite...
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...
Dynamos driven by rotating convection in the plane layer geometry are investigated numerically for a...
The onset of dynamo action is investigated within the context of a newly developed low Rossby, low m...
The onset of dynamo action is investigated within the context of a newly developed low Rossby, low m...
The magnetic fields of planets and stars are thought to play an important role in the fluid motions ...
The magnetic fields of planets and stars are thought to play an important role in the fluid motions ...
We study dynamo action in rotating, plane layer Boussinesq convection in the absence of inertia. Thi...
A numerical investigation of convection-driven dynamos is carried out in the plane layer geometry. D...
The objective of this thesis is to understand more about the role of inertia in the Earth’s dynamo. ...
The value of the Prandtl number P exerts a strong influence on convection-driven dynamos in rotating...
The value of the Prandtl number P exerts a strong influence on convection-driven dynamos in rotating...