In this paper we calculate the interfacial resistances to heat and mass transfer through a liquid–vapor interface in a binary mixture. We use two methods, the direct calculation from the actual nonequilibrium solution and integral relations, derived earlier. We verify, that integral relations, being a relatively faster and cheaper method, indeed gives the same results as the direct processing of a nonequilibrium solution. Furthermore we compare the absolute values of the interfacial resistances with the ones obtained from kinetic theory. Matching the diagonal resistances for the binary mixture we find that kinetic theory underestimates the cross coefficients. The heat of transfer is, as a consequence, correspondingly larger.Process and Ener...
The aim of this thesis is to build a theoretical approach which allows to describe the behavior of f...
The aim of this thesis is to build a theoretical approach which allows to describe the behavior of f...
For the accurate description of heat and mass transfer through a vapor–liquid interface, the appropr...
A vapor-liquid interface introduces resistivities for mass and heat transfer. These resistivities ha...
We present an approach to calculate interfacial resistivities against mass and heat transfer at a va...
We present a theory that describes the transport properties of the interfacial region with respect t...
We present a theory that describes the transport properties of the interfacial region with respect t...
The interfacial thermal resistance determines condensation-evaporation processes and thermal transpo...
International audienceIntegral relations that predict interface film transfer coefficients for evapo...
International audienceIntegral relations that predict interface film transfer coefficients for evapo...
This paper presents a local analysis of simultaneous mass and energy transfer processes in vapour-li...
A thermodynamic analysis of the two-phase physics involving a liquid–vapor combination has been stud...
The interfacial thermal resistance determines condensation-evaporation processes and thermal transpo...
The aim of this thesis is to build a theoretical approach which allows to describe the behavior of f...
The aim of this thesis is to build a theoretical approach which allows to describe the behavior of f...
The aim of this thesis is to build a theoretical approach which allows to describe the behavior of f...
The aim of this thesis is to build a theoretical approach which allows to describe the behavior of f...
For the accurate description of heat and mass transfer through a vapor–liquid interface, the appropr...
A vapor-liquid interface introduces resistivities for mass and heat transfer. These resistivities ha...
We present an approach to calculate interfacial resistivities against mass and heat transfer at a va...
We present a theory that describes the transport properties of the interfacial region with respect t...
We present a theory that describes the transport properties of the interfacial region with respect t...
The interfacial thermal resistance determines condensation-evaporation processes and thermal transpo...
International audienceIntegral relations that predict interface film transfer coefficients for evapo...
International audienceIntegral relations that predict interface film transfer coefficients for evapo...
This paper presents a local analysis of simultaneous mass and energy transfer processes in vapour-li...
A thermodynamic analysis of the two-phase physics involving a liquid–vapor combination has been stud...
The interfacial thermal resistance determines condensation-evaporation processes and thermal transpo...
The aim of this thesis is to build a theoretical approach which allows to describe the behavior of f...
The aim of this thesis is to build a theoretical approach which allows to describe the behavior of f...
The aim of this thesis is to build a theoretical approach which allows to describe the behavior of f...
The aim of this thesis is to build a theoretical approach which allows to describe the behavior of f...
For the accurate description of heat and mass transfer through a vapor–liquid interface, the appropr...