modelExample_1_9_2_CryogenicCurrentLeads
part a) Find the optimal lead diameter to the cryogenic device
Extends from Icons.Example (Icon for runnable examples).
Components
| Type | Name | Default | Description |
|---|---|---|---|
| Modelica.Blocks.Sources.Constant | D | lead diameter 0.004 to 0.006 | |
| Modelica.Blocks.Sources.Constant | L | lead length | |
| Modelica.Blocks.Sources.IntegerConstant | nNodes_1 | ||
| Real[nNodes_1.k] | xval | lead.geometry.cs_1 | |
| Real[nNodes_1.k] | yval | lead.materials.T | |
| DiscritizedModels.Conduction_1D | lead | ||
| TRANSFORM.HeatAndMassTransfer.BoundaryConditions.Heat.Temperature | T_H | room temperature wall | |
| TRANSFORM.HeatAndMassTransfer.BoundaryConditions.Heat.Temperature | T_C | cold vacuum vessel temperature | |
| Resistances.Heat.Radiation[nNodes_1.k] | radiation | ||
| TRANSFORM.HeatAndMassTransfer.BoundaryConditions.Heat.Temperature[nNodes_1.k] | T__H1 | room temperature wall | |
| Modelica.Blocks.Sources.Constant | epsilon | material emissivity | |
| UserInteraction.Outputs.SpatialPlot | TemperaturePosition | X - Position m-) | T - Temperature (K) | |
| Utilities.Visualizers.displayReal | display | ||
| TRANSFORM.Utilities.ErrorAnalysis.UnitTests | unitTests |