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under Momentum transport and stabilization of the equation for the dispersed phase under Dispersed phase transport.

Isotropic shock capturing, O(h2) for the dispersed phase needs a scale for the volume fraction of the dispersed phase. A suitable scale is then the maximum value of the dispersed phase volume fraction.

D I S C R E T I Z A T I O N

To display this section, click the Show button () and select Discretization. Select a

Discretization of fluidsP1+P1, P2+P1, or P3+P2.

P1+P1 can only be used if consistent streamline diffusion is active for the

momentum equations.

Note

 

Model Builder Options for Physics Feature Node Settings Windows

 

Theory for the Mixture Model Interface

 

Slip Velocity Models

 

The Mixture Model, Turbulent Flow Interface

 

Mixture Properties

See Also

Mass Transfer

 

 

 

Volume Force

 

Gravity

 

Initial Values

 

Boundary Conditions for the Mixture Model Interfaces

 

 

 

The Mixture Model, Turbulent Flow Interface

The Mixture Model, Turbulent Flow interface (), found under the Multiphase Flow>Mixture Model branch () in the Model Wizard, has the equations, boundary conditions, and volume forces for modeling turbulent two-phase flow of mixtures

260 | C H A P T E R 8 : B U B B L Y F L O W A N D M I X T U R E M O D E L B R A N C H E S

consisting of solid particles or liquid droplets immersed in a liquid, solving for the mixture velocity and pressure and for the dispersed phase volume fraction.

Except where indicated below, the rest of the settings for this interface are

the same as for The Mixture Model, Laminar Flow Interface.

Note

P H Y S I C A L M O D E L

The default Turbulence model type is RANS, k- to model turbulent flow.

This interface changes to The Mixture Model, Laminar Flow Interface

when the Turbulence model type selected is None.

Tip

T U R B U L E N C E M O D E L P A R A M E T E R S

Enter the model parameters in each field as required or use the defaults.

D E P E N D E N T V A R I A B L E S

The dependent variables (field variables) are for the Velocity field, Mixture; Pressure;

Volume fraction, dispersed phase; Squared slip velocity; and Number density, dispersed phase. The names can be changed but the names of fields and dependent variables must be unique within a model.

The name for the dependent variables for turbulence can be changed in the Turbulent dissipation rate, Turbulent kinetic energy, and Reciprocal wall distance fields.

S T A B I L I Z A T I O N

In addition to the information described under Stabilization for The Mixture Model, Laminar Flow Interface, when using a turbulence model, the Mixture Model interface applies streamline and crosswind diffusion to the turbulence equations.

T H E M I X T U R E M O D E L I N T E R F A C E S | 261

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