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Open Boundary

The Open Boundary node adds boundary conditions that describe boundaries that are open to large volumes of fluid. Fluid can both enter and leave the domain on boundaries with this type of condition.

 

This boundary condition is not available if the Use memory-efficient form

 

check box is selected (click the Show button ( ) and select Advanced

Note

Physics Interface Options>Advanced Settings to display the section) on any

single-phase flow interface Settings window.

 

 

 

B O U N D A R Y S E L E C T I O N

From the Selection list, choose the boundaries that are open boundaries.

B O U N D A R Y C O N D I T I O N S

Select a Boundary condition for the open boundaries.

 

 

 

More Open Boundary Conditions for the Turbulent Flow Interfaces

See Also

 

 

 

Normal Stress

Enter the Normal stress (the default) f0 (SI unit: N/m2) boundary condition.

 

 

 

Inlet

See Also

 

 

 

No Viscous Stress

This boundary condition, which is also available for the Outlet feature, prescribes

vanishing viscous stress:

 

2

u I n = 0

u + u T --

 

3

 

u + u T n = 0

using the compressible and the incompressible formulation respectively.

B O U N D A R Y C O N D I T I O N S F O R T H E S I N G L E - P H A S E F L O W I N T E R F A C E S | 127

This condition can be useful in some situations because it does not impose any constraint on the pressure. A typical example is a model with volume forces that give rise to pressure gradients that are hard to prescribe in advance. To make the model numerically stable, combine this boundary condition with a point constraint on the pressure.

Pressure Point Constraint

See Also

M O R E O P E N B O U N D A R Y C O N D I T I O N S F O R T H E T U R B U L E N T F L O W

I N T E R F A C E S

With any turbulent flow interface, inlet conditions for the turbulence variables also needs to be specified. These conditions are used on the parts of the boundary where u·n 0, that is, where flow enters the computational domain.

For the Turbulent Flow, k- , Turbulent Flow, low Reynolds number k- , and Rotating

Machinery, Turbulent Flow interfaces, these options are available under Exterior

turbulence:

Select Specify turbulent length scale and intensity to enter values or expressions for

the Turbulent intensity IT (unitless), Turbulence length scale LT (SI unit: m), and Reference velocity scale Uref (SI unit: m/s).

These values are related to the turbulence variables via

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

3

 

 

 

 

 

 

 

 

 

 

 

 

C3 4

 

2

--

k

=

3

I

 

U

 

 

2

,

 

=

3 ITUref

2

2--

T

ref

 

---L----T-----

 

-------------2-----------

---

 

 

 

 

 

 

 

 

 

 

 

 

 

Select Specify turbulence variables to enter values or expressions for the Turbulent

kinetic energy k0 (SI unit: m2/s2), and the Turbulent dissipation rate 0

(SI unit: m2/s3).

For the Turbulent Flow, k- interface these options are available:

Select Specify turbulent length scale and intensity to enter values or expressions for

the Turbulent intensity IT (unitless), Turbulence length scale LT (SI unit: m), and

Reference velocity scale Uref (SI unit: m/s).

These values are related to the turbulence variables via

128 | C H A P T E R 4 : S I N G L E - P H A S E F L O W B R A N C H

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