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In this paper attempts are made to address how bubble behaviour in a batch oscillatory baffled column (OBC) contributes to the overall measured enhancement in mass transfer.
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Similarities in bubble behaviour between HRAM and underwater explosion situations were observed in recent high-speed tank penetration/water entry experiments.
Similarities in bubble behaviour between Hydrodynamic Ram and underwater explosion situations were observed in recent high-speed tank penetration/water entry experiments.
A relation which defines the drag of spherical particles in more or less concentrated suspensions was employed to describe bubble column behaviour in the uniform bubbling regime.
Using the Lagrangian approach to individual bubbles in a Eulerian liquid framework, a model has been developed for predicting the dynamic gas-liquid dispersion behaviour in a 2-D bubble column.
In addition, the effects of solid loading on bubble behaviour are experimentally investigated for each stage.
Five dimensionless groups, a binary approach for bubble coalescence behaviour in multi-component liquids, and geometric considerations are proposed to achieve dynamic similitude.
A vertical chain of rising bubbles represents a transition from individual to continuum behaviour in a compressible gas liquid flow.
The new front tracking algorithm is also applied to investigate bubble rising and deforming behaviour in the various flow regimes of "air bubble/water solution" system under effects of Reynolds number, Bond number, density ratio, viscosity ratio as well as the bubble initial shape, which have been explored previously by experiments.
Is our universe just one bubble in a sheet of cosmic Bubble Wrap?
now bubbles. in a fizzy feeling.
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