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- W4290802275 abstract "We investigate the arrested spreading of room temperature droplets impacting flat ice. The use of an icy substrate eliminates the nucleation energy barrier, such that a freeze front can initiate as soon as the droplet's temperature cools down to $0text{ }ifmmode^circelsetextdegreefi{}mathrm{C}$. We employ scaling analysis to rationalize distinct regimes of arrested hydrodynamics. For gently deposited droplets, capillary-inertial spreading is halted at the onset of contact line freezing, yielding a $1/7$ scaling law for the arrested diameter. At low impact velocities ($mathrm{We}ensuremath{lesssim}100$), inertial effects result in a $1/2$ scaling law. At higher impact velocities ($mathrm{We}>100$), inertio-viscous spreading can spill over the frozen base of the droplet until its velocity matches that of a kinetic freeze front caused by local undercooling, resulting in a $1/5$ scaling law." @default.
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- W4290802275 date "2022-08-11" @default.
- W4290802275 modified "2023-09-29" @default.
- W4290802275 title "Arrested Dynamics of Droplet Spreading on Ice" @default.
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- W4290802275 doi "https://doi.org/10.1103/physrevlett.129.074502" @default.
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