Setting Up the Air and Coolant Physics Continua
Physics models are required to define the behavior of the air and coolant continua.
- Rename the Air. node to
-
For the physics continuum,
, select the following models in order:
Group Box Model Enabled Models Three Dimensional (Selected automatically) Time Steady Material Gas Flow Segregated Flow Gradients (Selected automatically) Equation of State Constant Density Viscous Regime Turbulent Reynolds-Averaged Navier-Stokes (Selected automatically) Reynolds-Averaged Turbulence K-Epsilon Turbulence Realizable K-Epsilon Two-Layer (Selected automatically) Two-Layer All y+ Wall Treatment (Selected automatically) Wall Distance Wall Distance (Selected automatically) Optional Models Segregated Fluid Temperature - Click Close.
-
To review the models, open the
node.
- To specify the physics models for the coolant, right-click the Continua node and select New Physics Continuum.
- Rename the Coolant. node to
-
For the physics continuum,
, select the following models in order:
Group Box Model Space Three Dimensional Time Steady Material Liquid Flow Segregated Flow Gradients (Selected automatically) Equation of State Constant Density Viscous Regime Turbulent Reynolds-Averaged Navier-Stokes (Selected automatically) Reynolds-Averaged Turbulence K-Epsilon Turbulence Realizable K-Epsilon Two-Layer (Selected automatically) Two-Layer All y+ Wall Treatment (Selected automatically) Wall Distance Wall Distance (Selected automatically) Optional Models Segregated Fluid Temperature - Click Close.
-
To review the models, open the
node.
After physics continua have been defined, you can assign them to their
corresponding regions.
-
Edit the Regions node and set the following
properties:
Node Property Setting Coolant Core Physics Continuum Coolant Coolant Base Physics Continuum Coolant Coolant Top Physics Continuum Coolant - Save the simulation.