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In many applications, however, no one model is suitable for all the flow regimes that occur simultaneously at different points in the computational domain, and ideally we would like to combine the benefits of multiple models in a single simulation. To illustrate the benefits of the VOF-Fluid Film multiphase interaction model, consider an example familiar to all of us, or at least those of us who are not entirely dependent on a dishwasher which incidentally would make an ideal candidate for a simulation involving this feature. Namely, the hydraulic jump that occurs when we fill the kitchen sink. Making this possible is an on-the-fly assessment to decide which multiphase model is most suitable for the local flow regime and mesh resolution. This hybrid approach dramatically reduces computational cost and required mesh count, opening up applications that were not practical before. In our example, the flow enters as a VOF jet and upon hitting the wall spreads out and transitions into a thin Fluid Film, the Fluid Film then transitions back into a thick VOF film as it passes through the hydraulic jump.
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