Time dependent β-convection in rapidly rotating spherical shells
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Publication:3554394
DOI10.1063/1.1703530zbMath1186.76386OpenAlexW2035092510MaRDI QIDQ3554394
Publication date: 22 April 2010
Published in: Physics of Fluids (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1063/1.1703530
General theory of rotating fluids (76U05) Convection in hydrodynamic stability (76E06) Stability and instability of geophysical and astrophysical flows (76E20) Geo-electricity and geomagnetism (86A25)
Related Items (9)
Oscillatory Convection in Rotating Spherical Shells: Low Prandtl Number and Non-Slip Boundary Conditions ⋮ Reynolds stresses and mean fields generated by pure waves: applications to shear flows and convection in a rotating shell ⋮ Dissipation mechanisms for convection in rapidly rotating spheres and the formation of banded structures ⋮ Subcritical convection of liquid metals in a rotating sphere using a quasi-geostrophic model ⋮ Deep two-dimensional turbulence: An idealized model for atmospheric jets of the giant outer planets ⋮ Transport and instability in driven two-dimensional magnetohydrodynamic flows ⋮ On the necessary conditions for bursts of convection within the rapidly rotating cylindrical annulus ⋮ Rossby waves andα-effect ⋮ Three-dimensional quasi-geostrophic convection in the rotating cylindrical annulus with steeply sloping endwalls
Cites Work
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- Spiralling columnar convection in rapidly rotating spherical fluid shells
- Asymptotic theory of thermal convection in rapidly rotating systems
- Convection in a rotating cylindrical annulus Part 3. Vacillating and spatially modulated flows
- On the Finite amplitude thermal instability of a rapidly rotating fluid sphere
- The onset of thermal convection in a rapidly rotating sphere
- Low-Prandtl-number convection in a rotating cylindrical annulus
- The onset of thermal convection in rotating spherical shells
- On the thermal instability of a rotating-fluid sphere containing heat sources
- Thermal instabilities in rapidly rotating systems
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