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A sharp interface approach for wetting dynamics of coated droplets and soft particles

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arxiv 2305.18919 v3 pith:CIA3B3F4 submitted 2023-05-30 physics.flu-dyn physics.comp-ph

A sharp interface approach for wetting dynamics of coated droplets and soft particles

classification physics.flu-dyn physics.comp-ph
keywords dynamicswettingapproachdropletscapsulescoateddropletinterface
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The wetting dynamics of liquid particles, from coated droplets to soft capsules, holds significant technological interest. Motivated by the need to simulate liquid metal droplet with an oxidize surface layer, in this work we introduce a computational scheme that allows to simulate droplet dynamics with general surface properties and model different levels of interface stiffness, describing also cases that are intermediate between pure droplets and capsules. Our approach is based on a combination of the immersed boundary (IB) and the lattice Boltzmann (LB) methods. Here, we validate our approach against the theoretical predictions in the context of shear flow and static wetting properties and we show its effectiveness in accessing the wetting dynamics, exploring the ability of the scheme to address a broad phenomenology.

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