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Buoyancy-driven mixing of multi-component fluids in two-dimensional tilted channels

Authors
Lee, Hyun GeunKim, Junseok
Issue Date
11월-2013
Publisher
ELSEVIER SCIENCE BV
Keywords
Buoyancy-driven mixing; Multi-component fluid flows; Phase-field model; Inclined channel
Citation
EUROPEAN JOURNAL OF MECHANICS B-FLUIDS, v.42, pp.37 - 46
Indexed
SCIE
SCOPUS
Journal Title
EUROPEAN JOURNAL OF MECHANICS B-FLUIDS
Volume
42
Start Page
37
End Page
46
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/101708
DOI
10.1016/j.euromechflu.2013.06.004
ISSN
0997-7546
Abstract
Buoyancy-driven mixing of multi-component incompressible immiscible fluids in two-dimensional tilted channels is studied numerically using a phase-field model. This paper extends the previous work [K.C. Sahu, S.P. Vanka, A multiphase lattice Boltzmann study of buoyancy-induced mixing in a tilted channel, Comput. Fluids 50 (2011) 199-215] to the multi-component (more than two) fluid case. The mixing dynamics are governed by the modified Navier-Stokes equations and the multi-component convective Cahn-Hilliard equations. A finite difference method is used to discretize the governing system. To solve the equations efficiently and accurately, we employ Chorin's projection method for the modified Navier-Stokes equations, and the recently developed practically unconditionally stable method for the multi-component Cahn-Hilliard equations. We numerically investigate the effects of various density ratios, tilt angles, Reynolds numbers, and Weber numbers on the interface structures and front velocities. The trends observed in simulations with multi-component fluids are consistent with previous numerical results for two-component fluids. (C) 2013 Elsevier Masson SAS. All rights reserved.
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