Scinovex
article Open AccessTop 10% cited

Dynamic contact angle of spreading droplets: Experiments and simulations

Physics of Fluids · 2005 · Vol. 17(6)
Š. ŠikaloH. WilhelmIlia V. RoismanSuad JakirlićCameron Tropea

Abstract

This paper presents results of an experimental investigation of a single drop impact onto a dry, partially wettable substrate and its numerical simulation. Particularly, the drop spreading diameter and the dynamic contact angle are measured at different time instants after impact. Two surfaces, wax (low wettability) and glass (high wettability), are used to study the effect of surface wettability (static contact angle) on the impact dynamics. It is shown that existing empirical models for the dynamic contact angle (e.g., Hoffman–Voinov–Tanner law) do not predict well the change of the dynamic contact angle, especially at high capillary numbers. In addition to the experimental investigations, the drop impact was studied numerically, focusing primarily on the contact angle treatment. The singularity in the neighborhood of the moving contact line is removed from the computational domain and replaced by a local force with some dependence on the instantaneous advancing/receding contact-line velocity. The predicted time dependence of the drop spreading diameter and of the dynamic contact angle agrees well with the experimental data for both the advancing and receding phases of the impact process.

Fluid Dynamics and Heat TransferSurface Modification and SuperhydrophobicityFluid Dynamics Simulations and InteractionsContact angleWettingDrop (telecommunication)MechanicsDrop impactSessile drop techniquePhysicsWetting transitionCapillary actionThermodynamics

Funding

  • Deutscher Akademischer Austauschdienst
  • Deutsche Forschungsgemeinschaft
Citations
503
FWCI
10.20
field-weighted impact
References
53
Percentile
99%
vs. same field & year
Citations per year
References
A study of the advancing interface. I. Interface shape in liquid—gas systems
Journal of Colloid and Interface Science · 1975 · 932 citations
Capillary effects during droplet impact on a solid surface
Physics of Fluids · 1996 · 1,301 citations
Volume of fluid (VOF) method for the dynamics of free boundaries
Journal of Computational Physics · 1981 · 15,308 citations
Droplet splashing on a thin liquid film
Physics of Fluids · 2003 · 388 citations
A continuum method for modeling surface tension
Journal of Computational Physics · 1992 · 9,865 citations
On a three-dimensional volume tracking model of droplet impact
Physics of Fluids · 1999 · 414 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.