Context. In spite of all the advances in multi-dimensional hydrodynamics, investigations of stellar evolution and stellar pulsations still depend on one-dimensional computations. This paper devises an alternative to the mixing-length theory or turbulence models usually adopted in modelling convective transport in such studies. Aims. The present work attempts to develop a time-dependent description of convection, which reflects the essential physics of convection and that is only moderately dependent on numerical parameters and far less time consuming than existing multi-dimensional hydrodynamics computations. Methods. Assuming that the most extensive convective patterns generate the majority of convective transport, the ...
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...
x, 135 leaves : ill. (some col.) ; 29 cm.Includes abstract.Includes bibliographical references (leav...
We present a new numerical scheme describing the convective velocity field using two parallel radia...
Context. In Cepheids close to the red edge of the classical instability strip, a coupling occurs bet...
We present a grid of numerical 2D radiation hydrodynamics (RHD) models of the solar-like surface con...
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...
This paper describes the first steps of development of a new multidimensional time implicit code dev...
We present here the first stellar models on the Hertzsprung-Russell diagram, in which convection is ...
Context. A 1D description of stellar dynamics is at the basis of stellar evolution modeling. Designe...
(Abridged) We describe the results of three-dimensional (3D) numerical simulations designed to study...
Based on detailed 2D numerical radiation hydrodynamics calculations of time-dependent compressible c...
A one-dimensional turbulent convection model in the form of a time-dependent diffusion equation for ...
This is the final version. Available from EDP Sciences via the DOI in this recordContext. A 1D descr...
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...
x, 135 leaves : ill. (some col.) ; 29 cm.Includes abstract.Includes bibliographical references (leav...
We present a new numerical scheme describing the convective velocity field using two parallel radia...
Context. In Cepheids close to the red edge of the classical instability strip, a coupling occurs bet...
We present a grid of numerical 2D radiation hydrodynamics (RHD) models of the solar-like surface con...
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...
This paper describes the first steps of development of a new multidimensional time implicit code dev...
We present here the first stellar models on the Hertzsprung-Russell diagram, in which convection is ...
Context. A 1D description of stellar dynamics is at the basis of stellar evolution modeling. Designe...
(Abridged) We describe the results of three-dimensional (3D) numerical simulations designed to study...
Based on detailed 2D numerical radiation hydrodynamics calculations of time-dependent compressible c...
A one-dimensional turbulent convection model in the form of a time-dependent diffusion equation for ...
This is the final version. Available from EDP Sciences via the DOI in this recordContext. A 1D descr...
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...
x, 135 leaves : ill. (some col.) ; 29 cm.Includes abstract.Includes bibliographical references (leav...