modelDoor

Model of a door

Extends from BuildingSystems.Buildings.BaseClasses.WallThermalGeneral.

Information

This is a model of an openable door.

Parameters

TypeNameDefaultDescription
Advanced › Numerical Parameters
Integer[constructionData.nLayers]nNodesfill(1, constructionData.nLayers)Number of numerical nodes of each layer
Advanced › Surface variables
Booleanshow_TSurfalseShow surface temperatures on both sides
General › Air change calculation
BooleancalcAirchangefalseTrue: calculation of air exchange through the door, false: no air exchange
IntegernCom10Number of compartments for the discretization
Modelica.Units.SI.AreaLClo0.001Effective leakage area of closed door

Components

TypeNameDefaultDescription
BuildingSystems.HAM.HeatConduction.MultiLayerHeatConduction1DNodesconstruction
BuildingSystems.Interfaces.Temp_KOutputTSur_1toSurfacePort_1.heatPort.TTemperature on surface side 1
BuildingSystems.Interfaces.Temp_KOutputTSur_2toSurfacePort_2.heatPort.TTemperature on surface side 2
BuildingSystems.Airflow.Multizone.DoorDiscretizedOperableopeOpening of the window
Modelica.Blocks.Interfaces.RealInputyPercentage of the openable part of the opening (1.0 = 100 % open, 0.0 = 100 % closed)
Modelica.Fluid.Interfaces.FluidPort_aport_a1Fluid connector a1 (positive design flow direction is from port_a1 to port_b1)
Modelica.Fluid.Interfaces.FluidPort_bport_b1Fluid connector b1 (positive design flow direction is from port_a1 to port_b1)
Modelica.Fluid.Interfaces.FluidPort_aport_a2Fluid connector a2 (positive design flow direction is from port_a2 to port_b2)
Modelica.Fluid.Interfaces.FluidPort_bport_b2Fluid connector b2 (positive design flow direction is from port_a2 to port_b2)

Contents

NameDescription
Medium

Revisions

  • April 24, 2019 by Christoph Nytsch-Geusen:
    Adaptation to flexible geometries.
  • March 19, 2019 by Christoph Nytsch-Geusen:
    Adaptation to the BuildingSystems.Airflow package.
  • March 21, 2017 by Christoph Nytsch-Geusen:
    First implementation.