JOURNAL OF CHEMICAL ENGINEERING OF JAPAN
Online ISSN : 1881-1299
Print ISSN : 0021-9592
Transport Phenomena and Fluid Engineering
Numerical Simulation of Advancing Interface in a Micro Heterogeneous Channel by the Lattice Boltzmann Method
Kazuaki KobayashiTakaji InamuroFumimaru Ogino
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2006 Volume 39 Issue 3 Pages 257-266

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Abstract
The lattice Boltzmann method for multicomponent immiscible fluid is applied to the simulations of wetting dynamics in micro channels. The wetting condition is introduced with the wetting potential which gives free energy on the wetting wall. To confirm the validity of the model, the static contact angle of a droplet onto a wetting wall is calculated and compared with Young’s equation. Then, the flow behavior near the interface in hydrophilic and hydrophobic channels is investigated and compared to the experimental results. Finally, the method is applied to the flow in micro channels with heterogeneous and hydrophilic wetting walls. It is found that the interface is advanced only by the capillary force and that different interfacial disorders appear due to the heterogeneousness of the wetting potential of the wall.
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© 2006 The Society of Chemical Engineers, Japan
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