modelConduction_1D

Extends from TRANSFORM.HeatAndMassTransfer.ClosureRelations.Geometry.ConductionIcons, TRANSFORM.HeatAndMassTransfer.Interfaces.Records.InitialConditions.DistributedVolume_solid1D, TRANSFORM.HeatAndMassTransfer.Interfaces.Records.EnergyDynamics.

Parameters

TypeNameDefaultDescription
Integerfigure (from ConductionIcons)1Index for Icon figure
Integer[1]nVsgeometry.ns
Integer[1]ns (from Ts1D){1}Number of nodes in each dimesions {1}
RealnParallel1Number of parallel components
Booleanuse_HeatTransferfalseUse external heat transfer port
IntegernFM_1if exposeState_a1 and exposeState_b1 then nVs[1] - 1 else if not exposeState_a1 and not exposeState_b1 then nVs[1] + 1 else nVs[1]number of flow models
Initialization › Start Value: Temperature
SI.TemperatureT_a1_start (from Ts1D)273.15Temperature at port a1
SI.TemperatureT_b1_start (from Ts1D)T_a1_startTemperature at port b1
SI.Temperature[ns[1]]Ts_start (from Ts1D)fill((T_a1_start + T_b1_start)/2, ns[1])Temperatures {port_a1,...,port_b1}
Assumptions › Dynamics
Modelica.Fluid.Types.DynamicsenergyDynamics (from EnergyDynamics)Modelica.Fluid.Types.Dynamics.DynamicFreeInitialFormulation of energy balances
Advanced
Booleanuse_Densityfalse=true to use uniform input thermal conductivity
Booleanuse_HeatCapacityfalse=true to use uniform input thermal conductivity
Booleanuse_Lambdafalse=true to use uniform input thermal conductivity
Advanced › Model Structure
BooleanexposeState_a1true=true, T is calculated at port_a1 else Q_flow
BooleanexposeState_b1false=true, T is calculated at port_b1 else Q_flow

Connectors

TypeNameDefaultDescription
Modelica.Blocks.Interfaces.RealInput[nVs[1]]Q_gen
Interfaces.HeatPort_Flowport_a1
TRANSFORM.HeatAndMassTransfer.Interfaces.HeatPort_Stateport_b1
Interfaces.HeatPort_Flow[nVs[1]]heatPort_external

Components

TypeNameDefaultDescription
Geometrygeometry
SI.Densityd1Density
SI.SpecificHeatCapacitycp1Specific heat capacity
SI.ThermalConductivitylambda1Thermal conductivity
Volumes.UnitVolume[nVs[1]]unitCell
Resistances.Heat.Plane[nFM_1]conductor_1
BoundaryConditions.Parallel_Real[nVs[1]]nFlow_Q_gen
BoundaryConditions.Heat.ParallelFlownFlow_a1
BoundaryConditions.Heat.ParallelFlownFlow_b1
BoundaryConditions.Heat.ParallelFlow[nVs[1]]nFlow_heatPort_external

Contents

NameDescription
Geometry