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NUMERICAL STUDY OF WALL WETTABILITIES AND TOPOGRAPHY ON DRAG REDUCTION EFFECT IN MICRO-CHANNEL FLOW BY LATTICE BOLTZMANN METHOD
Authors:ZHANG Ren-liang DI Qin-feng WANG Xin-liang GU Chun-yuan
Affiliation:[1]Shanghai Institute of Applied Mathematics and Mechanics, Shanghai University,Shanghai 200072, China [2]Shanghai Key Laboratory of Mechanics in Energy and Environment Engineering, Shanghai 200072, China,
Abstract:The dynamics of two-phase flows with a constant driving force inside a micro-channel is studied by using the Lattice Boltzmann Method (LBM) and the Shan-Chen multiphase model in this article. Flow regimes under different wall wettabilities and over smooth and grooved geometric surfaces are investigated. It is found that flow behaviors are strongly affected by the wall wettability and topography. Our results show that the LBM is efficient and accurate, and has very good application prospect in the study of drag reduction of microscopic seepage of reservoir.
Keywords:contact angle  wettability  miro-channel  multiphase-flow  Lattice Boltzmann Model (LBM)
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