A mathematical model for the quasi-steady diffusion-limited evaporation of a thin axisymmetric sessile droplet of liquid with a pinned contact line is formulated and solved. The model generalises the theoretical model proposed by Deegan et al. [Contact line deposits in an evaporating drop, Phys. Rev. E, 62 (2000) 756-765] to include the effect of evaporative cooling on the saturation concentration of vapour at the free surface of the droplet, and the dependence of the coefficient of diffusion of vapour in the atmosphere on the atmospheric pressure. The predictions of the model are in good qualitative, and in some cases also quantitative, agreement with recent experimental results. In particular, they capture the experimentally observed depe...
Current analytical models for sessile droplet evaporation do not consider the nonuniform temperature...
\u3cp\u3eEvaporation of sessile droplets on a flat surface involves a complex interplay between phas...
We investigate evaporation of a sessile droplet on a non-wetted surface in the framework of diffusio...
A mathematical model for the quasi-steady diusion-limited evaporation of a thin axisymmetric sessile...
A mathematical model for the quasi-steady diffusion-limited evaporation of a thin axisymmetric sessi...
A mathematical model for the evaporation of an axisymmetric sessile droplet of liquid whose contact ...
A mathematical model for the quasi-steady evaporation of a thin liquid droplet on a thin substrate t...
We study the evolution of a thin, axisymmetric, partially wetting drop as it evaporates. The effect...
Two problems concerning sessile liquid droplets are considered. First we report the results of physi...
Current analytical models for sessile droplet evaporation do not consider the nonuniform temperature...
Current analytical models for sessile droplet evaporation do not consider the nonuniform temperature...
Current analytical models for sessile droplet evaporation do not consider the nonuniform temperature...
The evaporation of sessile droplets is not only a common occurrence in daily life, but it also plays...
We study the evolution of a thin, axisymmetric, partially wetting drop as it evaporates. The effects...
International audienceWe describe a simple model of a contact line under purely diffusive evaporatio...
Current analytical models for sessile droplet evaporation do not consider the nonuniform temperature...
\u3cp\u3eEvaporation of sessile droplets on a flat surface involves a complex interplay between phas...
We investigate evaporation of a sessile droplet on a non-wetted surface in the framework of diffusio...
A mathematical model for the quasi-steady diusion-limited evaporation of a thin axisymmetric sessile...
A mathematical model for the quasi-steady diffusion-limited evaporation of a thin axisymmetric sessi...
A mathematical model for the evaporation of an axisymmetric sessile droplet of liquid whose contact ...
A mathematical model for the quasi-steady evaporation of a thin liquid droplet on a thin substrate t...
We study the evolution of a thin, axisymmetric, partially wetting drop as it evaporates. The effect...
Two problems concerning sessile liquid droplets are considered. First we report the results of physi...
Current analytical models for sessile droplet evaporation do not consider the nonuniform temperature...
Current analytical models for sessile droplet evaporation do not consider the nonuniform temperature...
Current analytical models for sessile droplet evaporation do not consider the nonuniform temperature...
The evaporation of sessile droplets is not only a common occurrence in daily life, but it also plays...
We study the evolution of a thin, axisymmetric, partially wetting drop as it evaporates. The effects...
International audienceWe describe a simple model of a contact line under purely diffusive evaporatio...
Current analytical models for sessile droplet evaporation do not consider the nonuniform temperature...
\u3cp\u3eEvaporation of sessile droplets on a flat surface involves a complex interplay between phas...
We investigate evaporation of a sessile droplet on a non-wetted surface in the framework of diffusio...