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An example is provided of how to predict bubble penetration depth to meet some user defined statistical confidence for maximum bubble penetration.
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Videotaping was used to analyze bubble penetration.
Bubble penetration increased as hole diameter was increased at all fall heights and hydraulic heads.
If the submergence of the LHO is less than the bubble penetration depth, excessive escape of bubbles can increase operating costs substantially.
Regression equations were developed to predict both bubble penetration and standard deviation associated with a specific set of operating conditions.
The standard deviation regression equation can be used to predict the statistical variation in bubble penetration depth.
Bubble penetration depth decreased as fall height was increased and became stable at a fall height of 50 cm.
Both void fraction and bubble count rate data showed a local maximum in the developing shear layer, although the local maximum void fraction was always located below the local maximum bubble count rate.
The test results revealed that there is an inherent relationship between gas fingering and gas bubble penetration that has consequences on part strength.
A mechanism for the regime transitions that was based on the measured gas holdup, liquid circulation velocity and bubble penetration depth was given.
The hydrodynamic properties under study include flow modes, pressure profile and pressure drop, bubble penetration depth, overall gas holdup, apparent liquid circulation rate and bubble size distribution.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com