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Hydrodynamic Behavior of a Single Bubble Rising in Viscous Liquids 被引量:7

Hydrodynamic Behavior of a Single Bubble Rising in Viscous Liquids
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摘要 The rising behavior of single bubbles has been investigated in six systems with different viscosity and Morton number(Mo) from 3.21×10-11 to 163. Bubbles with maximum equivalent diameter of up to 16 mm were investigated. The bubble Reynolds number(Re) ranged from 0.02 to 1200 covering 3 regimes in which two func-tions are obtained relating the drag coefficient,CD,with Re and Mo. It has been found that in the high Reynolds number regime the drag coefficient increases until the Reynolds number of about 1200. The classic expression of Jamialahmadi(1994) is improved and extended to high viscosity liquids. A new relationship for the aspect ratio of deformed bubbles in terms of Re,the Etvs number and Mo,applicable to a wide range of system properties,espe-cially in high viscosity liquids,is also suggested. The rising behavior of single bubbles has been investigated in six systems with different viscosity and Morton number(Mo) from 3.21×10-11 to 163. Bubbles with maximum equivalent diameter of up to 16 mm were investigated. The bubble Reynolds number(Re) ranged from 0.02 to 1200 covering 3 regimes in which two func-tions are obtained relating the drag coefficient,CD,with Re and Mo. It has been found that in the high Reynolds number regime the drag coefficient increases until the Reynolds number of about 1200. The classic expression of Jamialahmadi(1994) is improved and extended to high viscosity liquids. A new relationship for the aspect ratio of deformed bubbles in terms of Re,the Etvs number and Mo,applicable to a wide range of system properties,espe-cially in high viscosity liquids,is also suggested.
出处 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2010年第6期923-930,共8页 中国化学工程学报(英文版)
基金 Supported by the National Natural Science Foundation of China (20821004 20990224) the National Basic Research Program of China (2007CB714300)
关键词 力学行为 单气泡 粘性液体 上升 高粘度液体 流体 函数系统 阻力系数 bubble rising velocity viscous liquid drag coefficient deformation
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  • 1Davies, R.M., Taylor, G., "The mechanics of large bubbles rising through extended liquids and through liquids in tubes", Proc. R. Soc.London, A200, 375-390 (1950).
  • 2Clift, R., Grace; J.R., Weber, M.E., Bubbles, Drops and particles, Academic Press, New York (1978).
  • 3Stokes, G.G., "On the effeci of the internal friction of fluid on the motion of pendulums", Trans. Cambridge Phi. Soc., 9, 8-106 (1851).
  • 4Levich, V.G, "Bubble motion at high Reynolds numbers", Sov. Phys. JETP,'19, 18-24 (1949).
  • 5Peebles, EN., Garber, H.J., "Studies on the motion of gas bubble in liquids", Chem. Eng. Prog., 49, 79-88 (1953).
  • 6Rodrigue, D., "A general correlation for the rise velocity of single gas bubble", Can. J. Chem. Eng., 82, 382-386 (2004).
  • 7Tomiyama, A., "Drag, lift and virtual mass forces acting on a single bubble", In: 3rd International Symposium on Two-phase Flow Modeling and Experimentation, Celata, C-P., Di Marco, P., Mariani, A-, Shah, R.K., eds, Edizioni ETS, Pisa, Italy, 3-12 (2004).
  • 8Sanada, T., Sugihara, K., Shirota, M., Watanabe, M., "Motion and drag of a single bubble in super-purified water", Fluid Dyn. Res., 40, 534-545 (2008).
  • 9Mendelson, H.D., "The prediction of bubble terminal velocities from wave theory", AIChE J., 13, 251-253 (1967).
  • 10Celata, G.P., D'Annibale, F., Di Marco, P., Memoli, G., Tomiyama, A., "Measurement of rising velocity of a small bubble in a stagnant fluid in one- and two-component systems", Exp. Therm. Fluid Sci.,31, 609-623 (2007).

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