AbstractThis paper is concerned with a model system for radiation hydrodynamics in multiple space dimensions. The system depends singularly on the light speed c and consists of a scalar nonlinear balance law coupled via an integral-type source term to a family of radiation transport equations. We first show existence of entropy solutions to Cauchy problems of the model system in the framework of functions of bounded variation. This is done by using difference schemes and discrete ordinates. Then we establish strong convergence of the entropy solutions, indexed with c, as c goes to infinity. The limit function satisfies a scalar integro-differential equation
We study a scalar conservation law with a nonlinear dissipative inhomogeneity, which serves as a sim...
This paper investigates the hydrodynamic limit of the Boltzmann-MongeAmpere system in the so-called ...
AbstractTwo numerical approximations to radiative heat transfer problem based on asymptotic and entr...
Abstract. This paper is concerned with a model system for radiation hydrodynamics in multiple space ...
AbstractThis paper is concerned with a model system for radiation hydrodynamics in multiple space di...
AbstractTwo numerical approximations to radiative heat transfer problem based on asymptotic and entr...
International audienceThis paper is devoted to the analysis of the Cauchy problem for a system of PD...
International audienceThis paper is devoted to the analysis of the Cauchy problem for a system of PD...
AbstractWe prove the existence of global entropy solutions in L∞ to the one-dimensional Euler–Boltzm...
International audienceWe consider a simpli ed model arising in radiation hydrodynamics which is base...
International audienceThis paper is the continuation of our recent work [12] devoted to barotropic r...
International audienceThis paper is the continuation of our recent work [12] devoted to barotropic r...
Summary. It has been observed for a long time that radiation effects can prevent the development of ...
The purpose of this paper is to give an overview of the role of radiation in the transport of energy...
We study a scalar conservation law with a nonlinear dissipative inhomogeneity, which serves as a sim...
We study a scalar conservation law with a nonlinear dissipative inhomogeneity, which serves as a sim...
This paper investigates the hydrodynamic limit of the Boltzmann-MongeAmpere system in the so-called ...
AbstractTwo numerical approximations to radiative heat transfer problem based on asymptotic and entr...
Abstract. This paper is concerned with a model system for radiation hydrodynamics in multiple space ...
AbstractThis paper is concerned with a model system for radiation hydrodynamics in multiple space di...
AbstractTwo numerical approximations to radiative heat transfer problem based on asymptotic and entr...
International audienceThis paper is devoted to the analysis of the Cauchy problem for a system of PD...
International audienceThis paper is devoted to the analysis of the Cauchy problem for a system of PD...
AbstractWe prove the existence of global entropy solutions in L∞ to the one-dimensional Euler–Boltzm...
International audienceWe consider a simpli ed model arising in radiation hydrodynamics which is base...
International audienceThis paper is the continuation of our recent work [12] devoted to barotropic r...
International audienceThis paper is the continuation of our recent work [12] devoted to barotropic r...
Summary. It has been observed for a long time that radiation effects can prevent the development of ...
The purpose of this paper is to give an overview of the role of radiation in the transport of energy...
We study a scalar conservation law with a nonlinear dissipative inhomogeneity, which serves as a sim...
We study a scalar conservation law with a nonlinear dissipative inhomogeneity, which serves as a sim...
This paper investigates the hydrodynamic limit of the Boltzmann-MongeAmpere system in the so-called ...
AbstractTwo numerical approximations to radiative heat transfer problem based on asymptotic and entr...