Bulletin of the American Physical Society
74th Annual Meeting of the APS Division of Fluid Dynamics
Volume 66, Number 17
Sunday–Tuesday, November 21–23, 2021; Phoenix Convention Center, Phoenix, Arizona
Session H26: Surface Tension Effects: Interfacial Phenomena I
8:00 AM–10:10 AM,
Monday, November 22, 2021
Room: North 226 ABC
Chair: Jie Feng, University of Illinois at Urbana-Champaign
Abstract: H26.00004 : Destabilizing Marangoni flow in an evaporating binary liquid lens*
8:39 AM–8:52 AM
Presenter:
Carola Seyfert
(Univ of Twente)
Authors:
Carola Seyfert
(Univ of Twente)
Christian Diddens
(Univ of Twente)
Detlef Lohse
(Univ of Twente)
Alvaro Marin
(Univ of Twente)
One example of an unstable multi-component evaporating system is Marangoni Bursting as first studied by Keiser et al. [PRL 118, 074504 (2017)].
Surface tension and evaporation induce an alcohol/water droplet floating on an oil bath to burst into daughter droplets. The different volatilities and surface tensions of the two components generate a Marangoni flow, which leads to an instability at the droplet rim.
Here we present novel experimental observations of the flow in the mother droplet using high-speed microscopic imaging to characterize contact line motion, rim instability, droplet pinch-off, and the internal flow field. The Marangoni-driven velocity increases with an increasing alcohol concentration φ_0 in the droplet, confirming previous studies. However, towards the unstable contact line the flow slows down and, independent of φ_0, reaches an unexpected plateau value of constant velocity.
We compare our experimental results with numerical simulations, which offer us – previously inaccessible – insights into the phenomenon, such as the interface shape between binary mother droplet and oil bath.
*CS and AM acknowledge financial support from the European Research Council, Starting Grant No. 678573 NanoPacks.
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