Hypothesis: Soluble surfactants in evaporating sessile droplets can cause a circulatory Marangoni flow. However, it is not straightforward to predict for what cases this vortical flow arises. It is hypothesized that the occurrence of Marangoni circulation can be predicted from the values of a small number of dimensionless parameters. Simulations: A numerical model for the drop evolution is developed using lubrication theory. Surfactant transport is implemented by means of convection–diffusion-adsorption equations. Results are compared to literature. Findings: It is shown that stronger evaporation, slower adsorption kinetics and lower solubility of the surfactants all tend to increasingly suppress Marangoni circulation. These results are fou...
We consider the flow dynamics of a thin evaporating droplet in the presence of an insoluble surfacta...
We consider the flow dynamics of a thin evaporating droplet in the presence of an insoluble surfacta...
We consider the flow dynamics of a thin evaporating droplet in the presence of an insoluble surfacta...
Hypothesis: Soluble surfactants in evaporating sessile droplets can cause a circulatory Marangoni fl...
Hypothesis: Soluble surfactants in evaporating sessile droplets can cause a circulatory Marangoni fl...
Hypothesis: Soluble surfactants in evaporating sessile droplets can cause a circulatory Marangoni fl...
Hypothesis: Soluble surfactants in evaporating sessile droplets can cause a circulatory Marangoni fl...
Hypothesis: Soluble surfactants in evaporating sessile droplets can cause a circulatory Marangoni fl...
Hypothesis: Thermal Marangoni flow in evaporating sessile water droplets is much weaker in experimen...
Hypothesis: Thermal Marangoni flow in evaporating sessile water droplets is much weaker in experimen...
Hypothesis: Thermal Marangoni flow in evaporating sessile water droplets is much weaker in experimen...
Hypothesis: Thermal Marangoni flow in evaporating sessile water droplets is much weaker in experimen...
Hypothesis: Thermal Marangoni flow in evaporating sessile water droplets is much weaker in experimen...
Hypothesis: Thermal Marangoni flow in evaporating sessile water droplets is much weaker in experimen...
We consider the flow dynamics of a thin evaporating droplet in the presence of an insoluble surfacta...
We consider the flow dynamics of a thin evaporating droplet in the presence of an insoluble surfacta...
We consider the flow dynamics of a thin evaporating droplet in the presence of an insoluble surfacta...
We consider the flow dynamics of a thin evaporating droplet in the presence of an insoluble surfacta...
Hypothesis: Soluble surfactants in evaporating sessile droplets can cause a circulatory Marangoni fl...
Hypothesis: Soluble surfactants in evaporating sessile droplets can cause a circulatory Marangoni fl...
Hypothesis: Soluble surfactants in evaporating sessile droplets can cause a circulatory Marangoni fl...
Hypothesis: Soluble surfactants in evaporating sessile droplets can cause a circulatory Marangoni fl...
Hypothesis: Soluble surfactants in evaporating sessile droplets can cause a circulatory Marangoni fl...
Hypothesis: Thermal Marangoni flow in evaporating sessile water droplets is much weaker in experimen...
Hypothesis: Thermal Marangoni flow in evaporating sessile water droplets is much weaker in experimen...
Hypothesis: Thermal Marangoni flow in evaporating sessile water droplets is much weaker in experimen...
Hypothesis: Thermal Marangoni flow in evaporating sessile water droplets is much weaker in experimen...
Hypothesis: Thermal Marangoni flow in evaporating sessile water droplets is much weaker in experimen...
Hypothesis: Thermal Marangoni flow in evaporating sessile water droplets is much weaker in experimen...
We consider the flow dynamics of a thin evaporating droplet in the presence of an insoluble surfacta...
We consider the flow dynamics of a thin evaporating droplet in the presence of an insoluble surfacta...
We consider the flow dynamics of a thin evaporating droplet in the presence of an insoluble surfacta...
We consider the flow dynamics of a thin evaporating droplet in the presence of an insoluble surfacta...