We derive scaling relationships for planetary dynamos based on a balance between energy production and Joule dissipation, and between the curl of the buoyancy and Coriolis forces. These scaling relationships are deduced for the particular case of dynamos driven by helical waves, but are shown to have a much broader applicability. They are consistent with the evidence of the numerical dynamos, yielding predictions consistent with published empirical scaling laws and also with the observed transition from dipolar to multipolar dynamos. A direct comparison with the observational evidence for the planets is hampered by the fact that we do not know what sets the smallest scale of the motion in the planets. Nevertheless, we use our scaling relati...
Global scale magnetostrophic balance, in which Lorentz and Coriolis forces comprise the leading-orde...
The Earth's magnetic field is generated in its fluid outer core through dynamo action. In this proce...
Global scale magnetostrophic balance, in which Lorentz and Coriolis forces comprise the leading-orde...
We derive scaling relationships for planetary dynamos based on a balance between energy production a...
Abstract Scaling laws for planetary dynamos relate the characteristic magnetic field strength, chara...
We propose new scaling laws for the properties of planetary dynamos. In particular, the Rossby numbe...
International audienceThe parameters regime relevant to dynamo action in astrophysical objects is ou...
International audienceWe study numerically an extensive set of dynamo models in rotating spherical s...
Great progress has been made in the numerical simulation of planetary dynamos, though these numerica...
In most numerical simulations of the Earth’s core the dynamo is located outside the tangent cylinder...
International audienceState of the art numerical models of the Geodynamo are still performed in a pa...
This paper provides a brief overview of dynamo scaling relationships for the degree of equipartition...
State of the art numerical models of the Geodynamo are still performed in a parameter regime extreme...
Understanding the in situ amplification of large-scale magnetic fields in turbulent astrophysical ro...
In most numerical simulations of the Earth's core the dynamo resides outside the tangent cylinder an...
Global scale magnetostrophic balance, in which Lorentz and Coriolis forces comprise the leading-orde...
The Earth's magnetic field is generated in its fluid outer core through dynamo action. In this proce...
Global scale magnetostrophic balance, in which Lorentz and Coriolis forces comprise the leading-orde...
We derive scaling relationships for planetary dynamos based on a balance between energy production a...
Abstract Scaling laws for planetary dynamos relate the characteristic magnetic field strength, chara...
We propose new scaling laws for the properties of planetary dynamos. In particular, the Rossby numbe...
International audienceThe parameters regime relevant to dynamo action in astrophysical objects is ou...
International audienceWe study numerically an extensive set of dynamo models in rotating spherical s...
Great progress has been made in the numerical simulation of planetary dynamos, though these numerica...
In most numerical simulations of the Earth’s core the dynamo is located outside the tangent cylinder...
International audienceState of the art numerical models of the Geodynamo are still performed in a pa...
This paper provides a brief overview of dynamo scaling relationships for the degree of equipartition...
State of the art numerical models of the Geodynamo are still performed in a parameter regime extreme...
Understanding the in situ amplification of large-scale magnetic fields in turbulent astrophysical ro...
In most numerical simulations of the Earth's core the dynamo resides outside the tangent cylinder an...
Global scale magnetostrophic balance, in which Lorentz and Coriolis forces comprise the leading-orde...
The Earth's magnetic field is generated in its fluid outer core through dynamo action. In this proce...
Global scale magnetostrophic balance, in which Lorentz and Coriolis forces comprise the leading-orde...