The radial density of planets increases with depth due to compressibility, leading to impacts on their convective dynamics. To account for these effects, including the presence of a quasi-adiabatic temperature profile and entropy sources due to dissipation, the compressibility is expressed through a dissipation number, D , proportional to the planet's radius and gravity. In Earth's mantle, compressibility effects are moderate, but in large rocky or liquid exoplanets (super-earths), the dissipation number can become very large. This paper explores the properties of compressible convection when the dissipation number is significant. We start by selecting a simple Murnaghan equation of state that embodies the fundamental properties of condense...
In the quest to understand the basic universal features of compressible convection, one would like t...
We present new modelling results for the internal structure and convective dynamics of large terrest...
By generalizing the theory of convection to any type of thermal and compositional source terms (diab...
Abstract We present two-dimensional numerical models of thermal convection of a compressible fluid i...
We present heat transport characteristics for mantle convection in large terrestrial exoplanets (M⩽8...
International audienceThe numerical simulations of convection inside the mantle of the Earth or of t...
We study the thermal evolution of super-Earths with a one-dimensional (1D) parameterized convection ...
Abstract In this paper, we carried out a series of linear analyses on the onset of thermal convectio...
In large natural objects, thermal convection is associated with large pressure differences, mainly d...
The convective motion and the thermal state of the Earth's mantle are investigated through the mean-...
We model the geodynamical evolution of super-Earth exoplanets in synchronous rotation about their st...
International audienceIn the quest to understand the basic universal features of compressible convec...
In the quest to understand the basic universal features of compressible convection, one would like t...
We present new modelling results for the internal structure and convective dynamics of large terrest...
By generalizing the theory of convection to any type of thermal and compositional source terms (diab...
Abstract We present two-dimensional numerical models of thermal convection of a compressible fluid i...
We present heat transport characteristics for mantle convection in large terrestrial exoplanets (M⩽8...
International audienceThe numerical simulations of convection inside the mantle of the Earth or of t...
We study the thermal evolution of super-Earths with a one-dimensional (1D) parameterized convection ...
Abstract In this paper, we carried out a series of linear analyses on the onset of thermal convectio...
In large natural objects, thermal convection is associated with large pressure differences, mainly d...
The convective motion and the thermal state of the Earth's mantle are investigated through the mean-...
We model the geodynamical evolution of super-Earth exoplanets in synchronous rotation about their st...
International audienceIn the quest to understand the basic universal features of compressible convec...
In the quest to understand the basic universal features of compressible convection, one would like t...
We present new modelling results for the internal structure and convective dynamics of large terrest...
By generalizing the theory of convection to any type of thermal and compositional source terms (diab...