The life and fate of a bubble in a geometrically-perturbed Hele-Shaw channel
Antoine Gaillard, Jack S. Keeler, Gr\'egoire Le Lay, Gr\'egoire, Lemoult, Alice B. Thompson, Andrew L. Hazel, Anne Juel

TL;DR
This study explores the complex transient behavior of air bubbles in a perturbed Hele-Shaw channel through experiments and simulations, revealing rich dynamics including breakup, coalescence, and sensitivity to initial conditions.
Contribution
It introduces a combined experimental and numerical analysis of bubble dynamics in a perturbed Hele-Shaw channel, highlighting the role of weakly-unstable edge states in transient behaviors.
Findings
Rich transient dynamics observed experimentally, including breakup and coalescence.
Numerical simulations reproduce experimental behaviors and sensitivity at high flow rates.
Transient solutions are influenced by weakly-unstable edge states that change with bubble number.
Abstract
Motivated by the desire to understand complex transient behaviour in fluid flows, we study the dynamics of an air bubble driven by the steady motion of a suspending viscous fluid within a Hele-Shaw channel with a centred depth perturbation. Using both experiments and numerical simulations of a depth-averaged model, we investigate the evolution of an initially centred bubble of prescribed volume as a function of flow rate and initial shape. The experiments exhibit a rich variety of organised transient dynamics, involving bubble break up as well as aggregation and coalescence of interacting neighbouring bubbles. The long-term outcome is either a single bubble or multiple separating bubbles, positioned along the channel in order of increasing velocity. Up to moderate flow rates, the life and fate of the bubble are reproducible and can be categorised by a small number of characteristic…
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