The effect of internal circulation on evaporation of fluid droplets containing nano-sized particles is analytically investigated, where internal circulation is caused by viscous effects at the liquid–gas interface in the convective environment. The competing time scales of liquid diffusion, convection, and particle diffusion are first analyzed as influenced by gas phase velocity, relative viscosities of gas and liquid phases, and the droplet size. The results reveal the importance of internal recirculation for droplets of practical sizes. To demonstrate the role of internal circulation plays on particle distribution and shell formation during the evaporation process, a symmetric Hill vortex and strong circulation are assumed for solving a o...
When a suspension drop evaporates, it leaves behind a drying stain. Examples of these drying stains ...
The drying of sessile, nano-silica laden water droplet is studied under ambient conditions, in the a...
Effects of substrate temperature, substrate wettability, and particle concentration are experimental...
The evaporation of droplet containing insoluble particles has grown into an active area of research ...
A model is presented for predicting the evaporation behavior of liquid droplets containing nano-size...
A model is presented for predicting the evaporation behavior of liquid droplets containing nano-size...
In this work, we have established the evaporation-liquid flow coupling mechanism by which sessile na...
In this work, we have established the evaporation-liquid flow coupling mechanism by which sessile na...
This study experimentally investigates non-uniform particle distributions and evaporation characteri...
This paper deals with the evaporation behaviour of nano-suspensions. An investigation of the relatio...
This study experimentally investigates non-uniform particle distributions and evaporation characteri...
The evaporation of a sessile droplet spontaneously induces an internal capillary liquid flow. The su...
The evaporation of a sessile droplet spontaneously induces an internal capillary liquid flow. The su...
We illustrate the importance of particle geometry on droplet contact line pinning, 'coffee-stain' fo...
The drying of sessile, nano-silica laden water droplet is studied under ambient conditions, in the a...
When a suspension drop evaporates, it leaves behind a drying stain. Examples of these drying stains ...
The drying of sessile, nano-silica laden water droplet is studied under ambient conditions, in the a...
Effects of substrate temperature, substrate wettability, and particle concentration are experimental...
The evaporation of droplet containing insoluble particles has grown into an active area of research ...
A model is presented for predicting the evaporation behavior of liquid droplets containing nano-size...
A model is presented for predicting the evaporation behavior of liquid droplets containing nano-size...
In this work, we have established the evaporation-liquid flow coupling mechanism by which sessile na...
In this work, we have established the evaporation-liquid flow coupling mechanism by which sessile na...
This study experimentally investigates non-uniform particle distributions and evaporation characteri...
This paper deals with the evaporation behaviour of nano-suspensions. An investigation of the relatio...
This study experimentally investigates non-uniform particle distributions and evaporation characteri...
The evaporation of a sessile droplet spontaneously induces an internal capillary liquid flow. The su...
The evaporation of a sessile droplet spontaneously induces an internal capillary liquid flow. The su...
We illustrate the importance of particle geometry on droplet contact line pinning, 'coffee-stain' fo...
The drying of sessile, nano-silica laden water droplet is studied under ambient conditions, in the a...
When a suspension drop evaporates, it leaves behind a drying stain. Examples of these drying stains ...
The drying of sessile, nano-silica laden water droplet is studied under ambient conditions, in the a...
Effects of substrate temperature, substrate wettability, and particle concentration are experimental...