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Bags mediated film atomization in a cough machine

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arxiv 2202.13949 v3 pith:IZ6L3REA submitted 2022-02-28 physics.flu-dyn

classification physics.flu-dyn
keywords filmbagsdropletsgenerationliquidcoughduringexperiments
verification ladder T0 review T1 audit T2 compute T3 formal
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We combine experiments and numerical computations to examine underlying fluid mechanical processes associated with bioaerosol generation during violent respiratory manoeuvres, such as coughing or sneezing. Analogous experiments performed in a cough machine -- consisting of a strong shearing airflow over a thin liquid film, allow us to illustrate the changes in film topology as it disintegrates into small droplets. We identify that aerosol generation during the shearing of the liquid film is mediated by the formation of inflated bag-like structures. The breakup of these bags is triggered by the appearance of retracting holes that puncture the bag surface. Consequently, the cascade from inflated bags to droplets is primarily controlled by the dynamics and stability of liquid rims bounding these retracting holes. We also reveal the stabilizing role of fluid viscosity that eventually leads to the generation of smaller droplets.

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