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Select the Axis of rotation. The choice x-axis corresponds to a rotational axis (1, 0, 0) with the origin as the base point. This is the same for the y-axis and z-axis. If User defined is selected, enter values into these fields: Rotation axis base point and Rotation axis direction. The z-axis is the default choice and the default in the fields for User defined are those for the z-axis.

Select a Rotational frequencyRevolutions per time or Angular velocity.

3D

If Revolutions per time is selected, enter a value or expression in the field (SI unit: 1/s) and select a Rotational directionPositive angular velocity

(the default) or Negative angular velocity.

If Angular velocity is selected, enter an Angular velocity w (SI unit: rad/s).

Initial Values

The Initial Values feature for The Single-Phase Flow, Rotating Machinery Interfaces adds initial values for the variables that can serve as an initial condition for a transient simulation or as an initial guess for a nonlinear solver.

D O M A I N S E L E C T I O N

From the Selection list, choose the domains to define initial values.

I N I T I A L V A L U E S

Enter values or expressions for the initial value of the Velocity field u (SI unit: m/s) and for the Pressure p (SI unit: Pa). The default values are 0.

For the Turbulent Flow, k- interface also enter values for the Turbulent kinetic energy

(SI unit: m2/s2) and Turbulent dissipation rate (SI unit: m2/s3).

Rotating Wall

The Rotating Wall node is a boundary condition for The Single-Phase Flow, Rotating Machinery Interfaces. It applies to boundaries surrounding the rotating domain.

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

Select the boundaries that form the rotating wall.

106 | 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

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

The boundary features in this section are for all interfaces found under the

Fluid Flow>Single-Phase Flow branch ( ) in the Model Wizard.

Note

In this section:

Wall

Inlet

Outlet

Symmetry

Open Boundary

Boundary Stress

Periodic Flow Condition

Flow Continuity

Pressure Point Constraint

 

For 2D axisymmetric models, COMSOL Multiphysics takes the axial

 

symmetry boundaries (at r 0) into account and automatically adds an

2D Axi

Axial Symmetry feature to the model that is valid on the axial symmetry

boundaries only.

 

 

The theory about most boundary conditions is found in P.M. Gresho and

 

R.L. Sani, Incompressible Flow and the Finite Element Method, Volume

Note

2: Isothermal Laminar Flow, John Wiley & Sons, 2000.

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 | 107

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