Pages that link to "Item:Q1645651"
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The following pages link to Comparison between numerical models for the simulation of moving contact lines (Q1645651):
Displaying 17 items.
- Dynamic contact angles in CFD simulations (Q435287) (← links)
- A mesh-dependent model for applying dynamic contact angles to VOF simulations (Q834088) (← links)
- Enhancement of a 2D front-tracking algorithm with a non-uniform distribution of Lagrangian markers (Q1699506) (← links)
- A consistent and parallelized height function based scheme for applying contact angle to 3D volume-of-fluid simulations (Q2120773) (← links)
- A level-set method for moving contact lines with contact angle hysteresis (Q2124590) (← links)
- A hybrid VOF-IBM method for the simulation of freezing liquid films and freezing drops (Q2128509) (← links)
- A finite-volume method for simulating contact lines on unstructured meshes in a conservative level-set framework (Q2132674) (← links)
- A second order accuracy preserving method for moving contact lines with Stokes flow (Q2133043) (← links)
- A level-set-based sharp-interface method for moving contact lines (Q2162028) (← links)
- On the use of a friction model in a volume of fluid solver for the simulation of dynamic contact lines (Q2222242) (← links)
- A simple static contact angle-based mesh-dependency correction for 3D capillary flow simulations (Q2245482) (← links)
- Roughness on liquid-infused surfaces induced by capillary waves (Q3389408) (← links)
- Comparison of two dynamic contact line models for driven thin liquid films (Q3419844) (← links)
- Numerical simulation of dynamic contact-line problems (Q4382561) (← links)
- On the modelling of the transition between contact-line and microlayer evaporation regimes in nucleate boiling (Q4988016) (← links)
- Two mechanisms of droplet splashing on a solid substrate (Q5226118) (← links)
- A contact line force model for the simulation of drop impacts on solid surfaces using volume of fluid methods (Q6093445) (← links)