modelpart_b_TemperatureAndPosition

part b) Determine the temperature as a function of position on the beam

Extends from Icons.Example (Icon for runnable examples).

Components

TypeNameDefaultDescription
Modelica.Blocks.Sources.ConstantL_adistance between anchors
Modelica.Blocks.Sources.Constantwbeam width
Modelica.Blocks.Sources.Constantthbeam thickness
Modelica.Blocks.Sources.Constantalphaheat transfer coefficient
TRANSFORM.HeatAndMassTransfer.BoundaryConditions.Heat.TemperatureT_anchor_aanchor temperature
Modelica.Blocks.Sources.ConstantIcurrent
Modelica.Blocks.Sources.Constantrho_eelectrical resistivity
Modelica.Blocks.Sources.Constantthetabeam slope
TRANSFORM.HeatAndMassTransfer.BoundaryConditions.Heat.Temperature[nNodes_1.k]T_infinityambient temperature
Modelica.Blocks.Sources.ConstantCTRcoefficient of thermal expansion
DiscritizedModels.Conduction_1Dbeam
Modelica.Blocks.Sources.IntegerConstantnNodes_1
Resistances.Heat.Convection[nNodes_1.k]convection
TRANSFORM.HeatAndMassTransfer.BoundaryConditions.Heat.Adiabaticadiabatic
Modelica.Blocks.Sources.RealExpressionL
Modelica.Blocks.Sources.RealExpression[nNodes_1.k]R_e
UserInteraction.Outputs.SpatialPlotTemperaturePositionX - Dimensionless position (-) | T - Temperature (C)
Real[nNodes_1.k]xvalbeam.geometry.cs_1/L.y
Real[nNodes_1.k]yvalTRANSFORM.Units.Conversions.Functions.Temperature_K.to_degC(beam.materials.T)
TRANSFORM.Utilities.ErrorAnalysis.UnitTestsunitTests