modelOneOpenDoor

Model with one open and one closed door
Diagram of OneOpenDoor

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

Information

This model consists of two doors with the same geometry. For t ≤ 1000 seconds, the door dooOpeClo is closed, and afterwards it is open. The door dooOpe is always open. Heat is added to the volume volB, which causes a density difference between volA and volB. This density difference induces a bi-directional airflow through both doors. Both doors have exactly the same bi-directional airflow rates.

Components

TypeNameDefaultDescription
IBPSA.Airflow.Multizone.DoorDiscretizedOpendooOpeDiscretized door
IBPSA.Fluid.MixingVolumes.MixingVolumevolAControl volume
IBPSA.Fluid.MixingVolumes.MixingVolumevolBControl volume
Modelica.Thermal.HeatTransfer.Sources.PrescribedHeatFlowpreHeaFloPrescribed heat flow rate boundary condition
Modelica.Blocks.Sources.SineheaSouSignal for heat flow rate boundary condition
Modelica.Blocks.Math.GaingaiGain for heat flow rate boundary condition
IBPSA.Airflow.Multizone.DoorDiscretizedOperabledooOpeCloDiscretized door
Modelica.Blocks.Sources.RamprampRamp signal for door opening

Contents

NameDescription
Medium

Revisions

  • March 26, 2021 by Michael Wetter:
    Updated comments for IBPSA, #515.
  • December 22, 2014 by Michael Wetter:
    Removed Modelica.Fluid.System to address issue #311.
  • October 8, 2013, by Michael Wetter:
    Removed parameter show_V_flow.
  • November 10, 2011, by Michael Wetter:
    Added documentation.