modelMultizoneMoistAirCO2

Illustrates the use of MultizoneMoistAirCO2

Extends from Modelica.Icons.Example.

Information

This example illustrates the use of AixLib.ThermalZones.ReducedOrder.Multizone.MultizoneMoistAirEquipped. Parameter set is for an office building build as passive house. All boundary conditions are generic to show how to apply different kinds of boundary conditions. The results should show typical profiles for indoor air temperatures, but are not related to a specific building or measurement data.

Components

TypeNameDefaultDescription
AixLib.ThermalZones.ReducedOrder.Multizone.MultizonemultizoneMultizone
AixLib.BoundaryConditions.WeatherData.ReaderTMY3weaDatWeather data reader
Modelica.Blocks.Sources.CombiTimeTabletableInternalGainsProfiles for internal gains
Modelica.Thermal.HeatTransfer.Sources.PrescribedHeatFlow[5]prescribedHeatFlowRadiative heat flow of additional internal gains
Modelica.Blocks.Sources.SinesineSinusoidal excitation for additional internal gains
Modelica.Thermal.HeatTransfer.Sources.PrescribedHeatFlow[5]prescribedHeatFlow1Convective heat flow of additional internal gains
Modelica.Blocks.Math.GaingainSplit additional internal gains into radiative an convective
Modelica.Blocks.Math.Gaingain1Split additional internal gains into radiative an convective
Modelica.Blocks.Routing.ReplicatorreplicatorReplicates sinusoidal excitation for numZones
Modelica.Blocks.Routing.Replicatorreplicator1Replicates sinusoidal excitation for numZones
Modelica.Blocks.Sources.Constant[5]ventRateventilation rate
AixLib.Utilities.Psychrometrics.X_pTphix_pTphiConverter for relative humidity to absolute humidity
AixLib.BoundaryConditions.WeatherData.BusweaBusWeather data bus
Modelica.Blocks.Routing.Replicatorreplicator2Replicates sinusoidal excitation for numZones
Modelica.Blocks.Routing.Replicatorreplicator3Replicates sinusoidal excitation for numZones
Modelica.Blocks.Sources.Constant[5]TSetDummy for heater cooler (not existing in record)

Contents

NameDescription
Medium

Revisions

  • April, 2019, by Martin Kremer:
    First Implementation.