This paper describes the first steps of development of a new multidimensional time implicit code devoted to the study of hydrodynamical processes in stellar interiors. The code solves the hydrodynamical equations in spherical geometry and is based on the finite volume method. Radiation transport is taken into account within the diffusion approximation. Realistic equation of state and opacities are implemented, allowing the study of a wide range of problems characteristic of stellar interiors. We describe in details the numerical method and various standard tests performed to validate the method. We present preliminary results devoted to the description of stellar convection. We first perform a local simulation of convection in the surface l...
A multi-layer semi-implicit spherical spectral method for simulating core convection is described. T...
International audienceCharacterizing stellar convection in multiple dimensions is a topic at the for...
International audienceCharacterizing stellar convection in multiple dimensions is a topic at the for...
Context. A realistic parametrization of convection and convective boundary mixing in conventional st...
Context. A realistic parametrization of convection and convective boundary mixing in conventional st...
Accepted for publication in A&AThis work is a continuation of our efforts to develop an efficient im...
Context. A realistic parametrization of convection and convective boundary mixing in conventional st...
Context. A realistic parametrization of convection and convective boundary mixing in conventional st...
International audienceContext. A 1D description of stellar dynamics is at the basis of stellar evolu...
International audienceContext. A 1D description of stellar dynamics is at the basis of stellar evolu...
International audienceContext. A 1D description of stellar dynamics is at the basis of stellar evolu...
11 pages, 11 figures, accepted for publication in A&AWe present the results of a numerical benchmark...
(Abridged) We describe the results of three-dimensional (3D) numerical simulations designed to study...
This is the final version. Available from EDP Sciences via the DOI in this recordOur ability to pred...
This work is a continuation of our efforts to develop an efficient implicit solver for multidimensio...
A multi-layer semi-implicit spherical spectral method for simulating core convection is described. T...
International audienceCharacterizing stellar convection in multiple dimensions is a topic at the for...
International audienceCharacterizing stellar convection in multiple dimensions is a topic at the for...
Context. A realistic parametrization of convection and convective boundary mixing in conventional st...
Context. A realistic parametrization of convection and convective boundary mixing in conventional st...
Accepted for publication in A&AThis work is a continuation of our efforts to develop an efficient im...
Context. A realistic parametrization of convection and convective boundary mixing in conventional st...
Context. A realistic parametrization of convection and convective boundary mixing in conventional st...
International audienceContext. A 1D description of stellar dynamics is at the basis of stellar evolu...
International audienceContext. A 1D description of stellar dynamics is at the basis of stellar evolu...
International audienceContext. A 1D description of stellar dynamics is at the basis of stellar evolu...
11 pages, 11 figures, accepted for publication in A&AWe present the results of a numerical benchmark...
(Abridged) We describe the results of three-dimensional (3D) numerical simulations designed to study...
This is the final version. Available from EDP Sciences via the DOI in this recordOur ability to pred...
This work is a continuation of our efforts to develop an efficient implicit solver for multidimensio...
A multi-layer semi-implicit spherical spectral method for simulating core convection is described. T...
International audienceCharacterizing stellar convection in multiple dimensions is a topic at the for...
International audienceCharacterizing stellar convection in multiple dimensions is a topic at the for...