We theoretically examine the drying of a stationary liquid droplet on an inclined surface. Both analytical and numerical approaches are considered, while assuming that the evaporation results from the purely diffusive transport of liquid vapor and that the contact line is a pinned circle. For the purposes of the analytical calculations, we suppose that the effect of gravity relative to the surface tension is weak, i.e. the Bond number (Bo) is small. Then, we express the shape of the drop and the vapor concentration field as perturbation expansions in terms of Bo. When the Bond number is zero, the droplet is unperturbed by the effect of gravity and takes the form of a spherical cap, for which the vapor concentration field is already known. H...
ABSTRACT This work experimentally investigates the evaporation rates of water drops on surfaces of v...
We study the evaporation rate from single drops as well as collections of drops on a solid substrate...
We study the evaporation rate from single drops as well as collections of drops on a solid substrate...
We theoretically examine the drying of a stationary liquid droplet on an inclined surface. Both anal...
We investigate evaporation of a sessile droplet on a non-wetted surface in the framework of diffusio...
We analytically solve the Young–Laplace equation for the shape of a stationary sessile droplet pinne...
The evaporation of small droplets of volatile liquids from solid surfaces depends on whether the ini...
We study the evolution of a thin, axisymmetric, partially wetting drop as it evaporates. The effect...
A mathematical model for the quasi-steady diffusion-limited evaporation of a thin axisymmetric sessi...
Evaporation of sessile droplets on a flat surface involves a complex interplay between phase change,...
Evaporation of sessile droplets on a flat surface involves a complex interplay between phase change,...
A mathematical model for the quasi-steady diusion-limited evaporation of a thin axisymmetric sessile...
A mathematical model for the evaporation of an axisymmetric sessile droplet of liquid whose contact ...
The evaporation of a small droplet of a volatile fluid from a solid surface differs according to whe...
The flow in an evaporating glycerol-water binary sub-millimeter droplet with Bond number Bo <<1 is s...
ABSTRACT This work experimentally investigates the evaporation rates of water drops on surfaces of v...
We study the evaporation rate from single drops as well as collections of drops on a solid substrate...
We study the evaporation rate from single drops as well as collections of drops on a solid substrate...
We theoretically examine the drying of a stationary liquid droplet on an inclined surface. Both anal...
We investigate evaporation of a sessile droplet on a non-wetted surface in the framework of diffusio...
We analytically solve the Young–Laplace equation for the shape of a stationary sessile droplet pinne...
The evaporation of small droplets of volatile liquids from solid surfaces depends on whether the ini...
We study the evolution of a thin, axisymmetric, partially wetting drop as it evaporates. The effect...
A mathematical model for the quasi-steady diffusion-limited evaporation of a thin axisymmetric sessi...
Evaporation of sessile droplets on a flat surface involves a complex interplay between phase change,...
Evaporation of sessile droplets on a flat surface involves a complex interplay between phase change,...
A mathematical model for the quasi-steady diusion-limited evaporation of a thin axisymmetric sessile...
A mathematical model for the evaporation of an axisymmetric sessile droplet of liquid whose contact ...
The evaporation of a small droplet of a volatile fluid from a solid surface differs according to whe...
The flow in an evaporating glycerol-water binary sub-millimeter droplet with Bond number Bo <<1 is s...
ABSTRACT This work experimentally investigates the evaporation rates of water drops on surfaces of v...
We study the evaporation rate from single drops as well as collections of drops on a solid substrate...
We study the evaporation rate from single drops as well as collections of drops on a solid substrate...