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1 PublicationData for: Bubble formation from a microscale submerged orifice- A numerical approach
We developed a mechanistic model for calculation of bubble volume from orifices in the range from 0.03 mm to 0.193 mm under the constant gas flow conditions in a quiescent liquid. It is known that for such small orifices, the mechanism of bubble formation is highly dependent on the gas momentum force and the liquid inertia force. Accordingly, the model incorporates these forces to calculate the bubble volume in three consecutive stages. Moreover, the model includes the influence of the bubble base expansion and bubble rising induced liquid velocity on the formation of bubbles. Eventually the model is validated with own experimental data using air and deionized water. Experimental validation of the model confirms that the maximum deviation of the model is less than 10%.
Keywords: Bubble formation; Micro-scale orifice; Mechanistic model; Stainless steel orifice; Force balance
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- DOI: 10.1021/acsengineeringau.1c00004 references this (Id 32507) publication
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A mechanistic model for bubble formation from microscale orifices under …
ROBIS: 31826 has used this (Id 32507) publication of HZDR-primary research data
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Reseach data in the HZDR data repository RODARE
Publication date: 2021-04-07 Closed access
DOI: 10.14278/rodare.916
Versions: 10.14278/rodare.917
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Permalink: https://www.hzdr.de/publications/Publ-32507
Publ.-Id: 32507