AbstractWe reformulate the M1 model of the radiative transfer, i.e. the moment equations up to the first order, for clarifying the physical and mathematical properties. The M1 model is proved to be equivalent to the hydrodynamic equations of ultra relativistic particles. We show two forms: one expressed with the classical Newtonian velocity and the other expressed with the relativistic four velocity. We use the enthalpy density, i.e. the sum of the energy density and the isotropic component of the pressure, instead of the energy density in both forms. The former serves to show us that the ratio of the flux to the enthalpy density denotes the bulk velocity of the radiation in the M1 model. The latter serves us to propose a Lorentz invariant ...
shown in $$80 and 97, entirely analogous results are possible for radiation in the limit that k,,/1 ...
Aims. We present a new formal solution of the Lagrangian equation of radiative transfer that is use...
In this paper we obtain the conservation equations of momentum-energy of a relativistic fluid in the...
AbstractWe reformulate the M1 model of the radiative transfer, i.e. the moment equations up to the f...
We show a numerical scheme to solve the moment equations of radiative transfer, i.e., the M1 model, ...
The maximum entropy moment closure for the two-moment approximation of the radiative transfer equat...
The maximum entropy moment closure for the two-moment approximation of the radiative transfer equat...
We present a new complete set of Lagrangian relativistic hydrodynamical equations describing the tra...
We present a new complete set of Lagrangian relativistic hydrodynamical equations describing the tra...
In this paper a new three dimensional half-moment model for radiative transfer is presented for a gr...
Abstract. Radiative transfer is a phenomenon that has an importance in a wide range of applications ...
All bodies in the universe are constantly absorbing heat from surrounding thermal sources. This heat...
We describe and test an updated version of radiation-hydrodynamics in the RAMSES code, that includes...
The method of moments is widely used for the reduction of kinetic equations into fluid models. It co...
We present a consistent numerical model for coupling radiation to hydrodynamics at low Mach number. ...
shown in $$80 and 97, entirely analogous results are possible for radiation in the limit that k,,/1 ...
Aims. We present a new formal solution of the Lagrangian equation of radiative transfer that is use...
In this paper we obtain the conservation equations of momentum-energy of a relativistic fluid in the...
AbstractWe reformulate the M1 model of the radiative transfer, i.e. the moment equations up to the f...
We show a numerical scheme to solve the moment equations of radiative transfer, i.e., the M1 model, ...
The maximum entropy moment closure for the two-moment approximation of the radiative transfer equat...
The maximum entropy moment closure for the two-moment approximation of the radiative transfer equat...
We present a new complete set of Lagrangian relativistic hydrodynamical equations describing the tra...
We present a new complete set of Lagrangian relativistic hydrodynamical equations describing the tra...
In this paper a new three dimensional half-moment model for radiative transfer is presented for a gr...
Abstract. Radiative transfer is a phenomenon that has an importance in a wide range of applications ...
All bodies in the universe are constantly absorbing heat from surrounding thermal sources. This heat...
We describe and test an updated version of radiation-hydrodynamics in the RAMSES code, that includes...
The method of moments is widely used for the reduction of kinetic equations into fluid models. It co...
We present a consistent numerical model for coupling radiation to hydrodynamics at low Mach number. ...
shown in $$80 and 97, entirely analogous results are possible for radiation in the limit that k,,/1 ...
Aims. We present a new formal solution of the Lagrangian equation of radiative transfer that is use...
In this paper we obtain the conservation equations of momentum-energy of a relativistic fluid in the...