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C O N S I S T E N T A N D I N C O N S I S T E N T S T A B I L I Z A T I O N

To display this section, click the Show button () and select Stabilization. Any settings unique to this interface are listed below.

The consistent stabilization methods are applicable to the Navier-Stokes equations and the Turbulence Equations.

When the Crosswind diffusion check box is selected, enter a Tuning parameter Ck for one or both of the Navier-Stokes equations and the Turbulence Equations. The default

for the Navier-Stokes equations is 0.5, and 1 for the Turbulence equations.

The Isotropic diffusion inconsistent stabilization method is available for the

Navier-Stokes equations and the Turbulence equations.

The Anisotropic diffusion inconsistent stabilization method can be activated for the

Navier-Stokes equations. If this check box is selected, also enter a value for the Tuning parameter sd. The default is 0.25.

 

Model Builder Options for Physics Feature Node Settings Windows

 

Domain Level Settings for the Level Set and Phase Field Interfaces

See Also

Boundary Conditions for the Level Set and Phase Field Interfaces

 

 

 

The Turbulent Two-Phase Flow, Phase Field Interface

The Turbulent Two-Phase Flow, Phase Field interface (), found under the Multiphase Flow>Two-Phase Flow, Phase Field branch (), has the equations, boundary conditions, and volume sources for modeling turbulent two-phase flow of two different immiscible fluids, separated by a moving interface, solving for the velocity field, the pressure, and the phase field variables.

The main feature is the Fluid Properties feature, which adds the Navier-Stokes equations and the phase field equations and provides an interface for defining the properties of the fluids and the surface tension.

When this interface is added, these default nodes are also added to the Model BuilderFluid Properties, Wall (with a Wall functions boundary condition), Initial Interface, and

208 | C H A P T E R 6 : M U L T I P H A S E F L O W B R A N C H

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