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The liquid circulation induced by the rising bubbles is primarily responsible for mixing.
This is qualitatively analogous to a sudden stratospheric warming in the Earth atmosphere, which is related to the meridional circulation induced by upward propagating Rossby waves30.
A good mixing was achieved with the liquid circulation induced by gaseous ozone, without the need of mechanical mixing.
In this work, we describe an experimental and numerical investigation of liquid circulation induced by a bubble plume in a tank partitioned by a baffle.
The difference between the disruptive behavior of single droplets and droplet pairs is explained by differences in liquid-phase circulation induced by the gas-phase asymmetry of the droplet pair.
Using two types of particles having different characteristics (ds=4 mm, ρs=920 kg m-3, and ds=0.175 mm and ρs=690 kg m-3, respectively) allowed us to observe two different expansion mechanisms: a pseudo-fluidized state promoted by the density difference between the solid and the surrounding gas liquid mixture, and a fluidized state due to the liquid circulation induced by the rise of the bubbles.
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First, feasibility of circulation flow induced by waves was discussed with a numerical simulation.
When excessive wellbore pressure appears, lost circulation is induced by tensile failure or reopening of natural fractures at the wellbore.
In most dense gas solid fluidisation systems, particle circulation is induced by bubble motion and is the primary cause of particle convective heat transfer, which is the major contributing mechanism to overall heat transfer.
In addition, a modified version of the N-o-Z model for bubble columns has been simply derived from the impeller version, assuming the existence of a two-loop axisymmetrical circulation pattern induced by the non-uniform distribution of gas holdup in bubble columns.
In order to model the complex hydrodynamic phenomena prevailing in industrial scale gas solid bubbling fluidised bed reactors and especially the macro-scale emulsion phase circulation patterns induced by bubble bubble interactions and bubble coalescence, a discrete bubble model (DBM) has been developed.
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