Convection in stars and planets must be maintained against viscous and Ohmic dissipation. Here, we present the first systematic investigation of viscous dissipation in simulations of rotating, density-stratified plane layers of convection. Our simulations consider an anelastic ideal gas, and employ the open-source code Dedalus. We demonstrate that when the convection is sufficiently vigorous, the integrated dissipative heating tends towards a value that is independent of viscosity or thermal diffusivity, but depends on the imposed luminosity and the stratification. We show that knowledge of the dissipation provides a bound on the magnitude of the kinetic energy flux in the convection zone. In our non-rotating cases with simple flow fields, ...
International audienceFollowing interferometric observations of fast rotating stars, which now give ...
This paper presents the results of a set of radiative hydrodynamic (RHD) simulations of convection i...
Direct numerical simulations are employed to reveal three distinctly different flow regions in rotat...
A wide range of fluid flows occur within astrophysical bodies such as stars and planets. In particul...
A wide range of fluid flows occur within astrophysical bodies such as stars and planets. In particul...
This is the final version of the article. Available from the American Astronomical Society via the D...
We study thermal convection in a rotating fluid in order to better understand the properties of conv...
Differential rotation, similar to that seen on our gas giants, is manifested at the surface of three...
We study thermal convection in a rotating fluid, with the ultimate goal of explaining the structure ...
We obtain self-similar solutions that describe the dynamics of a self-gravitating, rotating, viscous...
The effects of Coriolis forces on compressible convection are studied using three-dimensional numeri...
We consider the effect of stratification on systematic large-scale flows generated in anelastic conv...
International audienceFollowing interferometric observations of fast rotating stars, which now give ...
International audienceFollowing interferometric observations of fast rotating stars, which now give ...
International audienceFollowing interferometric observations of fast rotating stars, which now give ...
International audienceFollowing interferometric observations of fast rotating stars, which now give ...
This paper presents the results of a set of radiative hydrodynamic (RHD) simulations of convection i...
Direct numerical simulations are employed to reveal three distinctly different flow regions in rotat...
A wide range of fluid flows occur within astrophysical bodies such as stars and planets. In particul...
A wide range of fluid flows occur within astrophysical bodies such as stars and planets. In particul...
This is the final version of the article. Available from the American Astronomical Society via the D...
We study thermal convection in a rotating fluid in order to better understand the properties of conv...
Differential rotation, similar to that seen on our gas giants, is manifested at the surface of three...
We study thermal convection in a rotating fluid, with the ultimate goal of explaining the structure ...
We obtain self-similar solutions that describe the dynamics of a self-gravitating, rotating, viscous...
The effects of Coriolis forces on compressible convection are studied using three-dimensional numeri...
We consider the effect of stratification on systematic large-scale flows generated in anelastic conv...
International audienceFollowing interferometric observations of fast rotating stars, which now give ...
International audienceFollowing interferometric observations of fast rotating stars, which now give ...
International audienceFollowing interferometric observations of fast rotating stars, which now give ...
International audienceFollowing interferometric observations of fast rotating stars, which now give ...
This paper presents the results of a set of radiative hydrodynamic (RHD) simulations of convection i...
Direct numerical simulations are employed to reveal three distinctly different flow regions in rotat...