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High-speed visualization of ultrasonic emulsification in microgravity: interactions between cavitation dynamics and liquid–liquid interface topology
ID
Mali, Jakob
(
Author
),
ID
Boček, Žan
(
Author
),
ID
Ortar, Jernej
(
Author
),
ID
Poropatič, Sara
(
Author
),
ID
Čepin, Leon
(
Author
),
ID
Bertoncelj, Nejc
(
Author
),
ID
Dular, Matevž
(
Author
)
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https://www.sciencedirect.com/science/article/pii/S1350417726001604
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Abstract
Ultrasonic emulsification is a widely used technique for generating fine dispersions of immiscible liquids, yet its underlying mechanisms remain only partially understood, particularly under reduced-gravity conditions. In the absence of gravity, buoyancy-driven phase separation vanishes, fundamentally altering the organization of liquid–liquid interfaces and their interaction with cavitation structures. This study investigates the dynamics of ultrasonic emulsification in microgravity using high-speed visualization during parabolic flight experiments, with systematic variation of oil–water volume ratios. The results reveal that microgravity leads to capillarity-dominated interface configurations, where the position and stability of the oil–water interface become less predictable compared to normal gravity conditions. As a consequence, sustained interaction between the cavitation zone and the interface is more difficult to achieve. Since such interaction was previously identified as the key mechanism driving droplet breakup, its reduction leads to slower emulsification rates and lower final emulsion homogeneity. Image analysis shows that emulsification under normal gravity proceeds faster and produces more homogeneous dispersions, while microgravity conditions lead to delayed evolution and lower overall homogeneity. The findings demonstrate that ultrasonic emulsification in microgravity is governed by an interplay between interface topology and cavitation dynamics and highlight the importance of controlled interface positioning for enabling efficient multiphase fluid processing in space environments.
Language:
English
Keywords:
zero gravity
,
emulsion
,
cavitation
,
microgravity
,
cavitation dynamics
Work type:
Article
Typology:
1.01 - Original Scientific Article
Organization:
FS - Faculty of Mechanical Engineering
NTF - Faculty of Natural Sciences and Engineering
FE - Faculty of Electrical Engineering
Publication status:
Published
Publication version:
Version of Record
Year:
2026
Number of pages:
10 str.
Numbering:
Vol. 130, art. 107895
PID:
20.500.12556/RUL-182889
UDC:
532.528:531.5
ISSN on article:
1350-4177
DOI:
10.1016/j.ultsonch.2026.107895
COBISS.SI-ID:
279508483
Publication date in RUL:
27.05.2026
Views:
251
Downloads:
212
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Record is a part of a journal
Title:
Ultrasonics sonochemistry
Shortened title:
Ultrason. sonochem.
Publisher:
Butterworth-Heinemann, Elsevier
ISSN:
1350-4177
COBISS.SI-ID:
707668
Licences
License:
CC BY 4.0, Creative Commons Attribution 4.0 International
Link:
http://creativecommons.org/licenses/by/4.0/
Description:
This is the standard Creative Commons license that gives others maximum freedom to do what they want with the work as long as they credit the author.
Secondary language
Language:
Slovenian
Keywords:
breztežnost
,
emulzije
,
kavitacija
,
mikrogravitacija
,
dinamika kavitacije
Projects
Funder:
ARIS - Slovenian Research and Innovation Agency
Project number:
P2-0422
Name:
Funkcionalne tekočine za napredne energetske sisteme
Funder:
ARIS - Slovenian Research and Innovation Agency
Project number:
N2-0376
Name:
Mehurčki v interakciji s snovmi v štirih agregatnih stanjih
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