Numerical simulation of drop impingement and bouncing on a heated hydrophobic surface
2021
The heat transfer of a single water droplet impacting on a heated hydrophobic
surface is investigated numerically using a phase field method. The numerical results of the
axisymmetric computations show good agreement with the dynamic spreading and subsequent
bouncing of the drop observed in an experiment from literature. The influence of Weber number
on heat transfer is studied by varying the drop impact velocity in the simulations. For large
Weber numbers, good agreement with experimental values of the cooling effectiveness is obtained
whereas for low Weber numbers no consistent trend can be identified in the simulations.
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