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  • Experimental study of single levitating bubbles is presented in the contribution. Long-term observation of the bubbles was done in a downward liquid flow. Influence of liquid viscosity on bubble behavior was evaluated. In order to obtain various viscosity values, water and 40wt% glycerol solutions were used as a liquid. Our research was concerned with medium-sized ellipsoidal bubbles. Bubble sizes were ranging from 50 to 400 mm3, with characteristic values 1 < Eo < 40, Re > 100. Path of the rising bubble is not a straight line, but it looks like a helix or a harmonic curve. Upper projection of bubble trajectory has an ellipsoidal shape. Bubble motion can be affected by a liquid rotation. The rotation is caused by stirring and is also influenced by Coriolis effect. To evaluate a significance of Coriolis effect, experiments with different stirring orientation were conducted.
  • Experimental study of single levitating bubbles is presented in the contribution. Long-term observation of the bubbles was done in a downward liquid flow. Influence of liquid viscosity on bubble behavior was evaluated. In order to obtain various viscosity values, water and 40wt% glycerol solutions were used as a liquid. Our research was concerned with medium-sized ellipsoidal bubbles. Bubble sizes were ranging from 50 to 400 mm3, with characteristic values 1 < Eo < 40, Re > 100. Path of the rising bubble is not a straight line, but it looks like a helix or a harmonic curve. Upper projection of bubble trajectory has an ellipsoidal shape. Bubble motion can be affected by a liquid rotation. The rotation is caused by stirring and is also influenced by Coriolis effect. To evaluate a significance of Coriolis effect, experiments with different stirring orientation were conducted. (en)
  • Experimental study of single levitating bubbles is presented in the contribution. Long-term observation of the bubbles was done in a downward liquid flow. Influence of liquid viscosity on bubble behavior was evaluated. In order to obtain various viscosity values, water and 40wt% glycerol solutions were used as a liquid. Our research was concerned with medium-sized ellipsoidal bubbles. Bubble sizes were ranging from 50 to 400 mm3, with characteristic values 1 < Eo < 40, Re > 100. Path of the rising bubble is not a straight line, but it looks like a helix or a harmonic curve. Upper projection of bubble trajectory has an ellipsoidal shape. Bubble motion can be affected by a liquid rotation. The rotation is caused by stirring and is also influenced by Coriolis effect. To evaluate a significance of Coriolis effect, experiments with different stirring orientation were conducted. (cs)
Title
  • Influence of liquid viscosity on rising bubble behavior
  • Vliv viskozity kapaliny na chování stoupající bubliny (cs)
  • Influence of liquid viscosity on rising bubble behavior (en)
skos:prefLabel
  • Influence of liquid viscosity on rising bubble behavior
  • Vliv viskozity kapaliny na chování stoupající bubliny (cs)
  • Influence of liquid viscosity on rising bubble behavior (en)
skos:notation
  • RIV/61989100:27360/07:00016287!RIV09-GA0-27360___
http://linked.open...avai/riv/aktivita
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  • P(GA104/07/1110)
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  • 426280
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  • RIV/61989100:27360/07:00016287
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  • levitating bubble; bubble motion; viscosity; counterflow (en)
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  • [28A863941B20]
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  • Bratislava
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  • Bratislava
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  • 34th International Conference of Slovak Society of Chemical Engineering
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  • Večeř, Marek
  • Wichterle, Kamil
  • Smutná, Kateřina
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number of pages
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  • Slovenská technická univerzita v Bratislave
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  • 978-80-227-2640-5
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  • 27360
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