The applicability of theories describing the kinetic evolution of fluid mixtures depends on the underlying physical assumptions. The Maxwell-Stefan equations, widely used for miscible fluids, express forces depending on coupled fluxes. They need to be inverted to recover a Fickian form which is generally impossible analytically. Moreover, the concentration dependence of the diffusivities has to be modeled, for example, by the multicomponent Darken equation. Cahn-Hilliard-type equations are preferred for immiscible mixtures, whereby different assumptions on the coupling of fluxes lead to the slow-mode and fast-mode theories. For two components, these were derived from the Maxwell-Stefan theory in the past. Here, we prove that the fast-mode t...
The Maxwell-Stefan formulation of diffusion in multicomponent mixtures is used to obtain explicit fo...
In this article we deduce a mathematical model of Maxwell-Stefan type for a reactive mixture of poly...
The primary objective of this article is to develop an analytic procedure for calculating the permea...
The applicability of theories describing the kinetic evolution of fluid mixtures depends on the unde...
The Maxwell-Stefan (MS) approach is commonly used for describing mass transport by diffusion in gase...
In this paper the free volume theory of diffusion is extended to multicomponent mixtures. The free v...
Abstract: In phenomenological models, diffusivity is at least a function of composition and the dif...
The diffusion process in a multicomponent system can be formulated in a general form by the generali...
International audienceIn this article, we derive the Maxwell-Stefan formalism from the Boltzmann equ...
The main objective of this paper is to test the capability of the Maxwell-Stefan theory for predicti...
Molecular dynamics (MD) simulations have been performed for binary, ternary, and quaternary liquid m...
We consider the Maxwell-Stefan model of diffusion in a multicomponent gaseous mixture. After focusin...
Abstract. We consider the non-reactive elastic Boltzmann equation for multicomponent gaseous mixture...
We consider the non-reactive elastic Boltzmann equation for multicomponent gaseous mixtures. We dedu...
The Maxwell-Stefan formulation of diffusion in multicomponent mixtures is used to obtain explicit fo...
In this article we deduce a mathematical model of Maxwell-Stefan type for a reactive mixture of poly...
The primary objective of this article is to develop an analytic procedure for calculating the permea...
The applicability of theories describing the kinetic evolution of fluid mixtures depends on the unde...
The Maxwell-Stefan (MS) approach is commonly used for describing mass transport by diffusion in gase...
In this paper the free volume theory of diffusion is extended to multicomponent mixtures. The free v...
Abstract: In phenomenological models, diffusivity is at least a function of composition and the dif...
The diffusion process in a multicomponent system can be formulated in a general form by the generali...
International audienceIn this article, we derive the Maxwell-Stefan formalism from the Boltzmann equ...
The main objective of this paper is to test the capability of the Maxwell-Stefan theory for predicti...
Molecular dynamics (MD) simulations have been performed for binary, ternary, and quaternary liquid m...
We consider the Maxwell-Stefan model of diffusion in a multicomponent gaseous mixture. After focusin...
Abstract. We consider the non-reactive elastic Boltzmann equation for multicomponent gaseous mixture...
We consider the non-reactive elastic Boltzmann equation for multicomponent gaseous mixtures. We dedu...
The Maxwell-Stefan formulation of diffusion in multicomponent mixtures is used to obtain explicit fo...
In this article we deduce a mathematical model of Maxwell-Stefan type for a reactive mixture of poly...
The primary objective of this article is to develop an analytic procedure for calculating the permea...