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- W848703225 abstract "Numerical analysis of the heat transfer associated With droplet Impact on a hot solid surface is performed by solving the equations governing conservation of mass, momentum and energy In the liquid and gas phases The deformed droplet shape is tracked by a level set method winch is modified to achieve volume conservation and to include the effect of contact angle at the wall. The numerical method is validated through the calculations for the cases reported in the literature. Based on the numerical results, the heat transfer rate is found to depend strongly on the droplet spread radius. Decreased advancing/receding contact angles enlarge the splat radius and m turn enhance the wall heat flux The effect of impact velocity on the droplet spread is reduced as the droplet Size decreases. Also, droplet atomization is observed to significantly enhance the heat transfer rate and the effect IS pronounced for a smaller Size of droplet. An existing model equation to predict the maximum spread radius is improved for application to a micro dropletbr/" @default.
- W848703225 created "2016-06-24" @default.
- W848703225 date "2004-09-01" @default.
- W848703225 modified "2023-09-25" @default.
- W848703225 title "Numerical Study of Heat Transfer Associated with Droplet Impact" @default.
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- W848703225 doi "https://doi.org/10.3795/ksme-b.2004.28.9.1093" @default.
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