Planets and stars are often capable of generating their own magnetic fields. This occurs through dynamo processes occurring via turbulent convective stirring of their respective molten metal-rich cores and plasma-based convection zones. Present-day numerical models of planetary and stellar dynamo action are not carried out using fluids properties that mimic the essential properties of liquid metals and plasmas (e.g., using fluids with thermal Prandtl numbers Pr < 1 and magnetic Prandtl numbers Pm ≪ 1). Metal dynamo simulations should become possible, though, within the next decade. In order then to understand the turbulent convection phenomena occurring in geophysical or astrophysical fluids and next-generation numerical models thereof, ...
The magnetic fields of planets and stars are thought to play an important role in the fluid motions ...
We present the first detailed thermal and velocity field characterization of convection in a rotatin...
The energy for driving turbulent flows in planetary fluid layers comes from a combination of thermoc...
Planets and stars are often capable of generating their own magnetic fields. This occurs through dyn...
Planets and stars are often capable of generating their own magnetic fields. This occurs through dyn...
Planets and stars are often capable of generating their own magnetic fields. This occurs through dyn...
The magnetic fields of Earth and other planets are generated by turbulent, rotating convection in li...
The magnetic fields of Earth and other planets are generated by turbulent, rotating convection in li...
The magnetic fields of Earth and other planets are generated by turbulent, rotating convection in li...
Earth’s magnetic field is generated by convective motions in its liquid metal core. In this fluid, t...
Planetary and stellar dynamos likely result from turbulent motions in magnetofluids with kinematic v...
It is believed that thermo-solutal convection in the Earth liquid core is the driving source of the ...
The magnetic fields of Earth and other planets are generated by turbulent convection in the vast oce...
The magnetic fields of Earth and other planets are generated by turbulent convection in the vast oce...
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 present the first detailed thermal and velocity field characterization of convection in a rotatin...
The energy for driving turbulent flows in planetary fluid layers comes from a combination of thermoc...
Planets and stars are often capable of generating their own magnetic fields. This occurs through dyn...
Planets and stars are often capable of generating their own magnetic fields. This occurs through dyn...
Planets and stars are often capable of generating their own magnetic fields. This occurs through dyn...
The magnetic fields of Earth and other planets are generated by turbulent, rotating convection in li...
The magnetic fields of Earth and other planets are generated by turbulent, rotating convection in li...
The magnetic fields of Earth and other planets are generated by turbulent, rotating convection in li...
Earth’s magnetic field is generated by convective motions in its liquid metal core. In this fluid, t...
Planetary and stellar dynamos likely result from turbulent motions in magnetofluids with kinematic v...
It is believed that thermo-solutal convection in the Earth liquid core is the driving source of the ...
The magnetic fields of Earth and other planets are generated by turbulent convection in the vast oce...
The magnetic fields of Earth and other planets are generated by turbulent convection in the vast oce...
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 present the first detailed thermal and velocity field characterization of convection in a rotatin...
The energy for driving turbulent flows in planetary fluid layers comes from a combination of thermoc...