Bulletin of the American Physical Society
75th Annual Meeting of the Division of Fluid Dynamics
Volume 67, Number 19
Sunday–Tuesday, November 20–22, 2022; Indiana Convention Center, Indianapolis, Indiana.
Session Q09: Bubbles: Dynamics and Rupture II
1:25 PM–3:09 PM,
Monday, November 21, 2022
Room: 136
Chair: Sadegh Dabiri, Purdue University; James Bird, Boston University
Abstract: Q09.00003 : Bubble oscillations in a uni-axial extensional flow
1:51 PM–2:04 PM
Presenter:
Aliénor Rivière
(PMMH, PSL Université)
Authors:
Aliénor Rivière
(PMMH, PSL Université)
Laurent Duchemin
(PMMH, ESPCI, Paris, France)
Christophe JOSSERAND
(CNRS)
Stephane Perrard
(PMMH, ESPCI, Paris France)
We use direct numerical simulations to systematically analyze the dynamics of the first bubble oscillatory modes, as a function of both the Weber number, $W_e$, (ratio of kinetic and surface tension forces) and the Reynolds number, $R_e$, (ratio of kinetic and viscous forces). We show that the temporal evolution of each mode is accurately modeled by a damped forced harmonic oscillator.
The second mode oscillates with a pulsation in $\omega_2(1 - 0.07 W_e)$, where $\omega_2$ is the pulsation in a quiescent flow. We validate the theory of Kang \& Leal (1988) which originates from a coupling between the two first modes of oscillations.
Forcing and damping constants present non trivial dependences on $W_e$ and $R_e$, which are symptomatic of complex boundary layers dynamics. Our study is a rare example where flow-interface coupling can be measured quantitatively.
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