Mathematical model for self-propelled droplets driven by interfacial tension

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Abstract

We propose a model for the spontaneous motion of a droplet induced by inhomogeneity in interfacial tension. The model is derived from a variation of the Lagrangian of the system and we use a time-discretized Morse flow scheme to perform its numerical simulations. Our model can naturally simulate the dynamics of a single droplet, as well as that of multiple droplets, where the volume of each droplet is conserved. We reproduced the ballistic motion and fission of a droplet, and the collision of two droplets was also examined numerically.

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Nagai, K. H., Tachibana, K., Tobe, Y., Kazama, M., Kitahata, H., Omata, S., & Nagayama, M. (2016). Mathematical model for self-propelled droplets driven by interfacial tension. Journal of Chemical Physics, 144(11). https://doi.org/10.1063/1.4943582

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