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Simulation of Bubble Motion under Gravity by Lattice Boltzmann Method

Authors :
Naoki Takada
Shigeo Hosokawa
Akio Tomiyama
Masaki Misawa
Source :
Journal of Nuclear Science and Technology. 38:330-341
Publication Year :
2001
Publisher :
Informa UK Limited, 2001.

Abstract

We describe the numerical simulation results of bubble motion under gravity by the lattice Boltzmann method(LBM), which assumes that a fluid consists of mesoscopic fluid particles repeating collision and translation and a multiphase interface is reproduced in a self-organizing way by repulsive interaction between different kinds of particles. The purposes in this study are to examine the applicability of LBM to the numerical analysis of bubble motions, and to develop a three-dimensional version of the binary fluid model that introduces a free energy function. We included the buoyancy terms due to the density difference in the lattice Boltzmann equations, and simulated single- and two-bubble motions, setting flow conditions according to the Eotvos and Morton numbers. The two-dimensional results by LBM agree with those by the Volume of Fluid method based on the Navier-Stokes equations. The three-dimensional model possesses the surface tension satisfying the Laplace's law, and reproduces the motion of single...

Details

ISSN :
18811248 and 00223131
Volume :
38
Database :
OpenAIRE
Journal :
Journal of Nuclear Science and Technology
Accession number :
edsair.doi...........76c2218744b02d95a35f6715d6ef03b3
Full Text :
https://doi.org/10.1080/18811248.2001.9715037