Fluidic Generator Of Microbubbles – Oscillator With Gas Flow Reversal For A Part Of Period

Paper presents a fluidic device developed for generation of small (less than 1 mm in diameter) microbubbles in a liquid from gas passing gas through small passages. Until now the bubbles are larger than the size of aerator passage exits so that making the passages smaller did not result in obtaining...

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Main Author: Tesař Václav
Format: Article
Language:English
Published: Sciendo 2015-12-01
Series:Acta Mechanica et Automatica
Subjects:
Online Access:https://doi.org/10.1515/ama-2015-0032
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spelling doaj-ba0b7da7cf9840e2ad9cdfc7af05b41e2021-09-06T19:39:46ZengSciendoActa Mechanica et Automatica 2300-53192015-12-019419520310.1515/ama-2015-0032ama-2015-0032Fluidic Generator Of Microbubbles – Oscillator With Gas Flow Reversal For A Part Of PeriodTesař Václav0Institute of Thermomechanics v.v.i., Academy of Sciences of the Czech Republic, Dolejškova 1402/5, 182 00 Praha 8, Czech RepublicPaper presents a fluidic device developed for generation of small (less than 1 mm in diameter) microbubbles in a liquid from gas passing gas through small passages. Until now the bubbles are larger than the size of aerator passage exits so that making the passages smaller did not result in obtaining the desirable microbubbles. Analysis of high-speed camera images (obtained with a special lens of large working distance) have shown show that the large bubble size is caused by slow ascent motion of very small bubbles so that they get into mutual contact and grow by conjunction. The solution is to pulsate the supplied gas flow by a no-moving-part fluidic oscillator. The generated small bubble is moved back into the aerator passage where it is for a part of oscillation period protected from the conjunction with other, previously generated microbubbles.https://doi.org/10.1515/ama-2015-0032fluidicsoscillatorsmicrobubblesu-tube resonator
collection DOAJ
language English
format Article
sources DOAJ
author Tesař Václav
spellingShingle Tesař Václav
Fluidic Generator Of Microbubbles – Oscillator With Gas Flow Reversal For A Part Of Period
Acta Mechanica et Automatica
fluidics
oscillators
microbubbles
u-tube resonator
author_facet Tesař Václav
author_sort Tesař Václav
title Fluidic Generator Of Microbubbles – Oscillator With Gas Flow Reversal For A Part Of Period
title_short Fluidic Generator Of Microbubbles – Oscillator With Gas Flow Reversal For A Part Of Period
title_full Fluidic Generator Of Microbubbles – Oscillator With Gas Flow Reversal For A Part Of Period
title_fullStr Fluidic Generator Of Microbubbles – Oscillator With Gas Flow Reversal For A Part Of Period
title_full_unstemmed Fluidic Generator Of Microbubbles – Oscillator With Gas Flow Reversal For A Part Of Period
title_sort fluidic generator of microbubbles – oscillator with gas flow reversal for a part of period
publisher Sciendo
series Acta Mechanica et Automatica
issn 2300-5319
publishDate 2015-12-01
description Paper presents a fluidic device developed for generation of small (less than 1 mm in diameter) microbubbles in a liquid from gas passing gas through small passages. Until now the bubbles are larger than the size of aerator passage exits so that making the passages smaller did not result in obtaining the desirable microbubbles. Analysis of high-speed camera images (obtained with a special lens of large working distance) have shown show that the large bubble size is caused by slow ascent motion of very small bubbles so that they get into mutual contact and grow by conjunction. The solution is to pulsate the supplied gas flow by a no-moving-part fluidic oscillator. The generated small bubble is moved back into the aerator passage where it is for a part of oscillation period protected from the conjunction with other, previously generated microbubbles.
topic fluidics
oscillators
microbubbles
u-tube resonator
url https://doi.org/10.1515/ama-2015-0032
work_keys_str_mv AT tesarvaclav fluidicgeneratorofmicrobubblesoscillatorwithgasflowreversalforapartofperiod
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