On the electrostatic field in expansion dynamics of gas bubbles
- Authors: Museibli P.T.1
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Affiliations:
- Institute of Mathematics and Mechanics, Azerbaijan National Academy of Sciences
- Issue: Vol 23, No 4 (2019)
- Pages: 756-763
- Section: Articles
- URL: https://journals.rcsi.science/1991-8615/article/view/34671
- ID: 34671
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Abstract
Depending on the electrolytic concentration,the electric conductivity of the liquid and, accordingly, the electrostatic fieldarising from friction in fluid are determined. The effect of the electrostaticfield on the dynamics of the bubble formation has shown that the radius ofgas bubbles and expansion dynamics formed by the pressure drop can beregulated by the potential difference parameter. It is presented that one of themain factors affecting the flow of two-phase fluids is the nature of the liquidphase and the concentration of electrolyte added. The results of regulation ofthe bubble formation dynamics in the gas–liquid system via the electrostaticfield and a number of physical parameters can be applied in the oil and gasindustry, chemical processes, biomechanics.
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##article.viewOnOriginalSite##About the authors
Parviz Tofik Museibli
Institute of Mathematics and Mechanics, Azerbaijan National Academy of Scienceswithout scientific degree, no status
References
- Femat R., Alvarez-Ramirez J., Soria A., "Chaotic flow structure in a vertical bubble column", Phys. Lett. A, 248:1 (2018), 67–79
- Kikuchi R., Yano T., Tsutsumi A. et al., "Diagnosis of chaotic dynamics of bubble motion in a bubble column", Chem. Eng. Sci., 52:21-22 (1997), 3741-3745
- Luewisutthichat W., Tsutsumi A., Yoshida K., "Chaotic hydrodynamics of continuous single-bubble flow systems", Chem. Eng. Sci., 52:21-22 (1997), 3685-3691
- Lord Rayleigh O.M. F.R.S., "On the pressure developed in a liquid during the collapse of a spherical cavity", The London, Edinburgh, and Dublin Philosophical Magazine and Journal of Science, 34:200 (1917), 94-98
- Tsuge H., "Hydrodynamics of bubble formation from submerged orifices", Encyclopedia of Fluid Mechanics, v. 3, Gulf Publ., Houston, TX, 1986, 191-232
- Deshpande D. A., Deo M. D., Hanson F. V., Oblad A. G., "A model for the prediction of bubble size at a single orifice in two-phase gas—liquid systems", Chem. Eng. Sci., 47:7 (1991), 1669–1676
- Longuet-Higgins M. S., Kerman B. R., Lunde K., "The release of air bubbles from an underwater nozzle", J. Fluid Mech., 230 (1991), 365-390
- Drahoš J., Bradka F., Punčochař M., "Fractal behaviour of pressure fluctuations in a bubble column", Chem. Eng. Sci., 47:15-16 (1992), 4069–4075
- Terasaka K., Tsuge H., "Bubble formation under constant-flow conditions", Chem. Eng. Sci., 48:19 (1993), 3417–3422
- Tsouris C., Shin W.-T., Yiacoumi S., "Pumping, spraying, and mixing of fluids by electric fields", Canad. J. Chem. Eng., 76:3 (1998), 589–599
- Sarnobat S. U., Rajput S., Bruns D. D. et al., "The impact of external electrostatic fields on gas–liquid bubbling dynamics", Chem. Eng. Sci., 2004, no. 59, 247-258
- Danti M., Di Marco P., Grassi W., Memoli G., "Effect of an external electric field on bubble dynamics: Preliminary study", Proc. XVIII UIT National Conference (Cernobbio, 28–30 June 2000), 2000, 715–728
- Loubière K., Hebrard G., "Influence of liquid surface tension (surfactants) on bubble formation at rigid and flexible orifices", Chem. Eng. Process., 43:11 (2004), 1361-1369
- Tauzin C., Contribution à l'etude et à la recherche d'applications specifiques de la technique de fractionnement par bulles, Thesis dissertation no. 23, INSA Toulouse France, 1979 (In French)
- Loubière K., Croissance et detachement de bulles generees par des orifices rigides et flexibles dans des phases liquides newtoniennes: etude experimentale et modelisation, Thesis dissertation no. 663, INSA Toulouse France, 1979 (In French)
- Webb I. R., Arora M., Roy R.A. et al., "Dynamics of gas bubbles in time-variant temperature fields", J. Fluid Mech., 663 (2010), 209-232
- Panahov G. M., Museibli P. T., "The study of internal exposure on the fluid hydrodynamics", Transactions of NAS of Azerbaijan, Issue Mechanics, 37:7 (2017), 66-71
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