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Bursting Bubble in a Viscoplastic Medium

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arxiv 2101.07744 v4 pith:YDMELHUD submitted 2021-01-19 physics.flu-dyn cond-mat.soft

classification physics.flu-dyncond-mat.soft
keywords bubblecapillarynewtonianstresssurfacewavesyieldbehaviours
verification ladder T0 review T1 audit T2 compute T3 formal
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When a rising bubble in a Newtonian liquid reaches the liquid-air interface, it can burst, leading to the formation of capillary waves and a jet on the surface. Here, we numerically study this phenomenon in a yield stress fluid. We show how viscoplasticity controls the fate of these capillary waves and their interaction at the bottom of the cavity. Unlike Newtonian liquids, the free surface converges to a non-flat final equilibrium shape once the driving stresses inside the pool fall below the yield stress. Details of the dynamics, including the flow's energy budgets, are discussed. The work culminates in a regime map with four main regimes with different characteristic behaviours.

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