Hypothesis: Thermal Marangoni flow in evaporating sessile water droplets is much weaker in experiments than predicted theoretically. Often this is attributed to surfactant contamination, but there have not been any in-depth analyses that consider the full fluid and surfactant dynamics. It is expected that more insight into this problem can be gained by using numerical models to analyze the interplay between thermal Marangoni flow and surfactant dynamics in terms of dimensionless parameters. Simulations: Two numerical models are implemented: one dynamic model based on lubrication theory and one quasi-stationary model, that allows for arbitrary contact angles. Findings: It is found that insoluble surfactants can suppress the thermal Marangoni...
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: 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: 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: Soluble surfactants in evaporating sessile droplets can cause a circulatory Marangoni fl...
International audienceHeterogeneities in the distribution of surfactants at an interface between two...
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: 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: 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: Soluble surfactants in evaporating sessile droplets can cause a circulatory Marangoni fl...
International audienceHeterogeneities in the distribution of surfactants at an interface between two...
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...