Pages that link to "Item:Q2126988"
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The following pages link to A geometric VOF method for interface resolved phase change and conservative thermal energy advection (Q2126988):
Displaying 13 items.
- Consistency and accuracy in the simulation of two-phase flows with phase change using sharp interface capturing methods (Q2083693) (← links)
- Boiling and evaporation model for liquid-gas flows: a sharp and conservative method based on the geometrical VOF approach (Q2133587) (← links)
- A higher-order accurate VOF interface curvature computation scheme for 3D non-orthogonal structured meshes (Q2166591) (← links)
- An interface-resolved phase-change model based on velocity decomposition (Q2683048) (← links)
- An efficient tracking method of evaporative and flat free surfaces for turbulent convection (Q6100101) (← links)
- On the coupling between direct numerical simulation of nucleate boiling and a micro-region model at the contact line (Q6119237) (← links)
- Conservative formulations for heat transfer simulation with sharp interfaces and discontinuous properties in two-phase flows (Q6158463) (← links)
- A consistent volume-of-fluid approach for direct numerical simulation of the aerodynamic breakup of a vaporizing drop (Q6158464) (← links)
- Multicomponent droplet evaporation in a geometric volume-of-fluid framework (Q6553784) (← links)
- A vortex damping outflow forcing for multiphase flows with sharp interfacial jumps (Q6560700) (← links)
- An edge-based interface tracking (EBIT) method for multiphase flows with phase change (Q6572175) (← links)
- A volume-of-fluid method for multicomponent droplet evaporation with Robin boundary conditions (Q6589875) (← links)
- Bubble dissolution in Taylor-Couette flow (Q6653285) (← links)