We describe stationary heat conduction in an ideal gas at rest between three-dimensional manifolds. To this aim, we refer to the field equations of extended thermodynamics. The solution is determined through a 3rd-order asymptotic expansion with respect to the Knudsen number. As illustrative examples, we show the results for a gas enclosed between two non-coaxial circular cylinders or two confocal elliptical cylinders. With respect to the classical thermodynamics, we obtain corrections on the temperature, stress tensor and heat flux, that give rise to more complex behaviors of these variables. The dependence on the parameters is also analyzed
The conductive heat transfer through a gas confined between two concentric spherical shells maintain...
In this work we analyze and compare different approaches to the heat transfer problem in gas mixture...
A stationary problem of heat transfer in a rarefied gas confined between two coaxial cylinders is pr...
We describe stationary heat conduction in an ideal gas at rest between three-dimensional manifolds. ...
In this paper, we study some three-dimensional stationary heat conduction problems in rarefied gases...
In this paper, we describe the stationary heat transfer problem in non-reacting gas mixtures confine...
In this paper we refer to the field equations of the linearized 13-moment model to describe the stat...
The paper focuses on a stationary problem in a rarefied gas confined between two coaxial cylinders k...
none4siThe effect of the dynamic pressure (non-equilibrium pressure) on stationary heat conduction i...
From three-dimensional linearized hydrodynamic equations, it is found that the heat conductivity is ...
International audienceThe conductive heat transfer through a gas confined between two concentric sph...
We consider heat conduction in domains containing noncoaxial cylinders. In particular, we present so...
This paper investigates the time evolution of the near-isobaric flow field produced in a gas after t...
Abstract. This paper investigates the time evolution of the near-isobaric flow field produced in a g...
The conductive heat transfer through a gas confined between two concentric spherical shells maintain...
In this work we analyze and compare different approaches to the heat transfer problem in gas mixture...
A stationary problem of heat transfer in a rarefied gas confined between two coaxial cylinders is pr...
We describe stationary heat conduction in an ideal gas at rest between three-dimensional manifolds. ...
In this paper, we study some three-dimensional stationary heat conduction problems in rarefied gases...
In this paper, we describe the stationary heat transfer problem in non-reacting gas mixtures confine...
In this paper we refer to the field equations of the linearized 13-moment model to describe the stat...
The paper focuses on a stationary problem in a rarefied gas confined between two coaxial cylinders k...
none4siThe effect of the dynamic pressure (non-equilibrium pressure) on stationary heat conduction i...
From three-dimensional linearized hydrodynamic equations, it is found that the heat conductivity is ...
International audienceThe conductive heat transfer through a gas confined between two concentric sph...
We consider heat conduction in domains containing noncoaxial cylinders. In particular, we present so...
This paper investigates the time evolution of the near-isobaric flow field produced in a gas after t...
Abstract. This paper investigates the time evolution of the near-isobaric flow field produced in a g...
The conductive heat transfer through a gas confined between two concentric spherical shells maintain...
In this work we analyze and compare different approaches to the heat transfer problem in gas mixture...
A stationary problem of heat transfer in a rarefied gas confined between two coaxial cylinders is pr...