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Resulting bubble diameter and its size distribution were examined.
The bubble diameter is the average diameter of the bubbles inside the droplet when the first bubble breaks.
Empirical correlations are also proposed to predict the Sauter mean bubble diameter.
The results show that there is a reduction in bubble diameter on increasing the particle size.
The technique allows for the measurement of both bubble diameter and velocity.
Smaller hydrophobic spots reduced the bubble diameter and increased the nucleation frequency.
(2001) were utilized to develop the correlations of IAC and bubble diameter for group 2 bubbles.
Dynamic gas disengagement technique is utilized to measure bubble rise velocity and sauter mean bubble diameter.
Bubble diameter during detachment increases with increase in gas flow rates.
(a) The average bubble diameter does not change significantly with impact velocity Uo2 but the average droplet film thickness is inversely proportional to Uo2.
The microbubble generation mechanism has been shown to achieve high mass transfer rates by the decrease of the bubble diameter, by hydrodynamic stabilization that avoids coalescence increasing the bubble diameter, and by longer residence times offsetting slower convection.
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