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Two-dimensional investigation of forced bubble oscillation under microgravity
作者姓名:HONG Ruoyu  Masahiro KAWAJI
作者单位:Department of Chemistry and Chemical Engineering, Soochow University, Suzhou 215006, China,Department of Chemical Engineering and Applied Chemistry, University of Toronto, Toronto ON M5S 3E5, Canada
摘    要:Recent referential studies of fluid interfaces subjected to small vibration under microgravity conditions are reviewed. An experimental investigation was carried out aboard the American Space Shuttle Discovery. Two-dimensional (2-D) modeling and simulation were conducted to further understand the experimental results. The oscillation of a bubble in fluid under surface tension is governed by the incompressible Navier-Stokes equations. The SIMPLEC algorithm was used to solve the partial differential equations on an Eulerian mesh in a 2-D coordinate. Free surfaces were represented with the volume of fluid (VOF) obtained by solving a kinematic equation. Surface tension was modeled via a continuous surface force (CSF) algorithm that ensures robustness and accuracy. A new surface reconstruction scheme, alternative phase integration (API) scheme, was adopted to solve the kinematic equation, and was compared with referential schemes. Numerical computations were conducted to simulate the transient behavior of an oscillating gas bubble in mineral oil under different conditions. The bubble positions and shapes under different external vibrations were obtained numerically. The computed bubble oscillation amplitudes were compared with experimental data.

关 键 词:Navier-Stokes  (N-S)  equations    volume  of  fluid  (VOF)    microgravity    bubble  oscillation

Two-dimensional investigation of forced bubble oscillation under microgravity
HONG Ruoyu,Masahiro KAWAJI.Two-dimensional investigation of forced bubble oscillation under microgravity[J].Progress in Natural Science,2003,13(12):889-894.
Authors:HONG RuoYu  Masahiro KAWAJI
Institution:1. Department of Chemistry and Chemical Engineering, Soochow University, Suzhou 215006, China
2. Department of Chemical Engineering and Applied Chemistry, University of Toronto, Toronto ON M5S 3E5, Canada
Abstract:Recent referential studies of fluid interfaces subjected to small vibration under microgravity conditions are reviewed. An experimental investigation was carried out aboard the American Space Shuttle Discovery. Two-dimensional (2-D) modeling and simulation were conducted to further understand the experimental results. The oscillation of a bubble in fluid under surface tension is governed by the incompressible Navier-Stokes equations. The SIMPLEC algorithm was used to solve the partial differential equations on an Eulerian mesh in a 2-D coordinate. Free surfaces were represented with the volume of fluid (VOF) obtained by solving a kinematic equation. Surface tension was modeled via a continuous surface force (CSF) algorithm that ensures robustness and accuracy. A new surface reconstruction scheme, alternative phase integration (API) scheme, was adopted to solve the kinematic equation, and was compared with referential schemes. Numerical computations were conducted to simulate the transient behavior of an oscillating gas bubble in mineral oil under different conditions. The bubble positions and shapes under different external vibrations were obtained numerically. The computed bubble oscillation amplitudes were compared with experimental data.
Keywords:Navier-Stokes (N-S) equations  volume of fluid (VOF)  microgravity  bubble oscillation
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