We propose a model describing the liquid-vapour phase transition according to a phase-field method. A phase variable ϕ is introduced whose equilibrium values ϕ = 0 and ϕ = 1 are associated with the liquid and vapour phases. The phase field obeys Ginzburg-Landau equation and enters the consti- tutive relation of the density, accounting for the sudden density jump occurring at the phase transition. In this paper we concern ourselves especially with the problems arising in the phase field approach due to the existence of the critical point in the coexistence line, which entails the merging of the phases described by ϕ
We scrutinize the equations ruling the liquid-vapor phase transition. Starting from the macroscopic ...
We scrutinize the equations ruling the liquid-vapor phase transition. Starting from the macroscopic ...
We scrutinize the equations ruling the liquid-vapor phase transition. Starting from the macroscopic ...
We develop a phase-field model for the liquid-vapor phase transition. The model aims to describe in ...
We develop a phase-field model for the liquid-vapor phase transition. The model aims to describe in ...
We develop a phase-field model for the liquid-vapor phase transition. The model aims to describe in ...
A solid-liquid phase transition is studied, following a mathematical model based on the Ginzburg-Lan...
A solid-liquid phase transition is studied, following a mathematical model based on the Ginzburg-Lan...
A solid-liquid phase transition is studied, following a mathematical model based on the Ginzburg-Lan...
A solid-liquid phase transition is studied, following a mathematical model based on the Ginzburg-Lan...
Starting from the mesoscopic description of the state equations for the vapor and liquid pure phases...
Starting from the mesoscopic description of the state equations for the vapor and liquid pure phases...
A unified phase-field continuum theory is developed for transition and separation phenomena. A nonlo...
A unified phase-field continuum theory is developed for transition and separation phenomena. A nonlo...
A unified phase-field continuum theory is developed for transition and separation phenomena. A nonlo...
We scrutinize the equations ruling the liquid-vapor phase transition. Starting from the macroscopic ...
We scrutinize the equations ruling the liquid-vapor phase transition. Starting from the macroscopic ...
We scrutinize the equations ruling the liquid-vapor phase transition. Starting from the macroscopic ...
We develop a phase-field model for the liquid-vapor phase transition. The model aims to describe in ...
We develop a phase-field model for the liquid-vapor phase transition. The model aims to describe in ...
We develop a phase-field model for the liquid-vapor phase transition. The model aims to describe in ...
A solid-liquid phase transition is studied, following a mathematical model based on the Ginzburg-Lan...
A solid-liquid phase transition is studied, following a mathematical model based on the Ginzburg-Lan...
A solid-liquid phase transition is studied, following a mathematical model based on the Ginzburg-Lan...
A solid-liquid phase transition is studied, following a mathematical model based on the Ginzburg-Lan...
Starting from the mesoscopic description of the state equations for the vapor and liquid pure phases...
Starting from the mesoscopic description of the state equations for the vapor and liquid pure phases...
A unified phase-field continuum theory is developed for transition and separation phenomena. A nonlo...
A unified phase-field continuum theory is developed for transition and separation phenomena. A nonlo...
A unified phase-field continuum theory is developed for transition and separation phenomena. A nonlo...
We scrutinize the equations ruling the liquid-vapor phase transition. Starting from the macroscopic ...
We scrutinize the equations ruling the liquid-vapor phase transition. Starting from the macroscopic ...
We scrutinize the equations ruling the liquid-vapor phase transition. Starting from the macroscopic ...