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Contact angle determination in multicomponent lattice Boltzmann simulations

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arxiv 0910.3915 v2 pith:766YIQLP submitted 2009-10-20 physics.flu-dyn cond-mat.softphysics.comp-ph

Contact angle determination in multicomponent lattice Boltzmann simulations

classification physics.flu-dyn cond-mat.softphysics.comp-ph
keywords contactanglemulticomponentparametersboltzmanndeterminationdifferenthydrophobic
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Droplets on hydrophobic surfaces are ubiquitous in microfluidic applications and there exists a number of commonly used multicomponent and multiphase lattice Boltzmann schemes to study such systems. In this paper we focus on a popular implementation of a multicomponent model as introduced by Shan and Chen. Here, interactions between different components are implemented as repulsive forces whose strength is determined by model parameters. In this paper we present simulations of a droplet on a hydrophobic surface. We investigate the dependence of the contact angle on the simulation parameters and quantitatively compare different approaches to determine it. Results show that the method is capable of modelling the whole range of contact angles. We find that the a priori determination of the contact angle is depending on the simulation parameters with an uncertainty of 10 to 20%.

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