International audienceA local radiative transfer model is developed for strongly anisotropic porous media with an opaque phase and a mixture of two semitransparent phases. At the optically thick limit, the homogenized phase associated with the opaque interfaces is characterized by generalized extinction and scattering coefficients at equilibrium, a phase function and an effective refraction index, by following the model of Taine et al. [1] for non Beerian media. The radiative transfer model is based on a Radiative Transfer Equation (RTE) with three source terms, which are associated with the temperature fields of the opaque interfaces and the two semitransparent phases. This RTE has been solved by a perturbation technique, which allows radi...
International audienceA purely statistical modelling of radiative transfer is applied to statistical...
International audienceA purely statistical modelling of radiative transfer is applied to statistical...
International audienceA purely statistical modelling of radiative transfer is applied to statistical...
International audienceA local radiative transfer model is developed for strongly anisotropic porous ...
International audienceA local radiative transfer model is developed for strongly anisotropic porous ...
International audienceA local radiative transfer model is developed for strongly anisotropic porous ...
International audienceA local radiative transfer model is developed for strongly anisotropic porous ...
Radiative transfer within non Beerian porous media with semitransparent and opaque phases in non equ...
International audienceThe original radiation transfer model is dedicated to strongly non homogeneous...
International audienceThe original radiation transfer model is dedicated to strongly non homogeneous...
International audienceThe original radiation transfer model is dedicated to strongly non homogeneous...
International audienceThe original radiation transfer model is dedicated to strongly non homogeneous...
International audienceThe homogenized phases associated with statistically anisotropic porous media,...
International audienceThe homogenized phases associated with statistically anisotropic porous media,...
International audienceThe homogenized phases associated with statistically anisotropic porous media,...
International audienceA purely statistical modelling of radiative transfer is applied to statistical...
International audienceA purely statistical modelling of radiative transfer is applied to statistical...
International audienceA purely statistical modelling of radiative transfer is applied to statistical...
International audienceA local radiative transfer model is developed for strongly anisotropic porous ...
International audienceA local radiative transfer model is developed for strongly anisotropic porous ...
International audienceA local radiative transfer model is developed for strongly anisotropic porous ...
International audienceA local radiative transfer model is developed for strongly anisotropic porous ...
Radiative transfer within non Beerian porous media with semitransparent and opaque phases in non equ...
International audienceThe original radiation transfer model is dedicated to strongly non homogeneous...
International audienceThe original radiation transfer model is dedicated to strongly non homogeneous...
International audienceThe original radiation transfer model is dedicated to strongly non homogeneous...
International audienceThe original radiation transfer model is dedicated to strongly non homogeneous...
International audienceThe homogenized phases associated with statistically anisotropic porous media,...
International audienceThe homogenized phases associated with statistically anisotropic porous media,...
International audienceThe homogenized phases associated with statistically anisotropic porous media,...
International audienceA purely statistical modelling of radiative transfer is applied to statistical...
International audienceA purely statistical modelling of radiative transfer is applied to statistical...
International audienceA purely statistical modelling of radiative transfer is applied to statistical...