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- W2170051729 abstract "The effects of liquid velocity, nozzle diameter, gas chamber volume and gas flow rate on volumes, shapes and growth curves of bubbles formed at a nozzle submerged in a cocurrently upward flowing liquid in a bubble column were experimentally investigated. The bubble volume decreases with increasing liquid flow velocity. The effect of liquid flow velocity on the volume of bubble increases with an increase in the gas flow rate. To simulate bubble formation at a nozzle submerged in cocurrently upward flowing liquid, a revised non-spherical bubble formation model was proposed. Bubble volumes, bubble growth curves and shapes experimentally obtained in this study, as well as in previous experimental studies, are well predicted by the present model. On a étudié expérimentalement les effets de la vitesse du liquide, du diamètre de l'orifice, du volume de la chambre à gaz et du débit de gaz sur les volumes, les formes et les courbes de croissance des bulles formées au niveau d'un orifice immergé dans un liquide s'écoulant à co-courant dans le sens ascendant dans une colonne à bulles. Le volume des bulles décroît avec l'augmentation de la vitesse de l'écoulement liquide. L'effet de la vitesse de l'écoulement liquide sur le volume des bulles s'accroît avec une augmentation du débit de gaz. Afin de simuler la formation des bulles au niveau d'un orifice immergé dans un liquide s'écoulant à co-courant dans le sens ascendant, on propose un modèle de formation de bulles non sphériques révisé. Les volumes, les formes et les courbes de croissance des bulles obtenus expérimentalement dans cette étude, ainsi que dans des études expérimentales antérieures, sont convenablement prédites par le présent modèle." @default.
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- W2170051729 date "1999-06-01" @default.
- W2170051729 modified "2023-09-27" @default.
- W2170051729 title "Bubble formation in cocurrently upward flowing liquid" @default.
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- W2170051729 doi "https://doi.org/10.1002/cjce.5450770304" @default.
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