Buoyancy-Driven Path Instabilities of Bubble Rising in Simple and Polymer Solutions of Hele-Shaw Cell(Electromagnetism, optics, acoustics, heat transfer, classical mechanics, and fluid mechanics)
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概要
- 論文の詳細を見る
The buoyancy-driven path instabilities of an air bubble rising in a Hele-Shaw cell are examined as a function of the ratio of the gravitational and the capillary forces, i.e., the Eotvos number (Eo) of the bubble, for pure water, aqueous isopropyl alcohol (IPA) solutions, and aqueous hydroxypropyl methyl cellulose (HPMC) solutions. In the simple solutions, when Eo exceeds a threshold value, the motion of the bubble center can be categorized into three regimes: (1) a zigzag path for small Eo, (2) a straight path for intermediate Eo, and (3) another zigzag path accompanied by changes in the bubble for larger Eo; these transitions occur irrespective of the fluid we examined. For HPMC solutions with concentrations lower than 0.001g/100mL, three different trajectories-a damped vibrational motion without changes in the bubble shape, a straight trajectory, and another damped vibrational motion accompanied by changes in the bubble shape-are observed as Eo increases. However, such path instabilities are suppressed for HPMC solutions with concentrations higher than 0.005g/100mL. Moreover, path instabilities occur when the Strouhal number exceeds a threshold of 0.2, which leads to the oscillation of the periphery length of the bubble for any of the solutions we studied.
- 社団法人日本物理学会の論文
- 2006-12-15
著者
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Kawaguchi Masami
Division Of Chemistry For Materials Graduate School Of Engineering Mie University
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NIGA Sukehiro
Division of Chemistry for Materials, Graduate School of Engineering, Mie University
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GOU Nobuaki
Division of Chemistry for Materials, Graduate School of Engineering, Mie University
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MIYAKE Kazuo
Division of Chemistry for Materials, Graduate School of Engineering, Mie University
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Gou Nobuaki
Division Of Chemistry For Materials Graduate School Of Engineering Mie University
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Niga Sukehiro
Division Of Chemistry For Materials Graduate School Of Engineering Mie University
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Miyake Kazuo
Division Of Chemistry For Materials Graduate School Of Engineering Mie University
関連論文
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- Buoyancy-Driven Path Instabilities of Bubble Rising in Simple and Polymer Solutions of Hele-Shaw Cell(Electromagnetism, optics, acoustics, heat transfer, classical mechanics, and fluid mechanics)
- Path Instabilities of Bubble Rising in Polymer Solutions of Hele–Shaw Cell
- Rheological Properties of Fumed Silica Suspensions in the Presence of Potassium Chloride