modelMixingVolumeMFactor
A check for verifying the implementation of the parameter mSenFac
Extends from IDEAS.Fluid.MixingVolumes.Validation.MixingVolumeMassFlow.
Information
This model contains two verifications for the implementation of mSenFac:
-
The mixingVolume temperature
vol.Tshould be constant. This is to check the correct implementation of the parametermSenFacfor moist air media. -
The temperature response of
volMFactor.Tandvol1.Tshould be nearly identical. Furthermore the response of the species concentrationXidemonstrates the difference between using anmSenFac = 10and multiplying volume by 10.
See IDEAS.Fluid.MixingVolumes.Validation.MixingVolumeMassFlow for the rational of the selected initial conditions for the volumes.
Components
| Type | Name | Default | Description |
|---|---|---|---|
| IDEAS.Fluid.MixingVolumes.MixingVolume | volMFactor | Mixing volume using mSenFac = 10 | |
| IDEAS.Fluid.MixingVolumes.MixingVolume | vol1 | MixingVolume with V = 10 instead of mSenFac = 10 | |
| IDEAS.Fluid.Sources.MassFlowSource_T | boundaryMFactor | Flow source for mixing volume using mSenFac | |
| IDEAS.Fluid.Sources.MassFlowSource_T | boundary | Flow source for mixing volume using larger volume |
Revisions
-
March 27, 2015 by Michael Wetter:
Set the mass dynamics of the volume toModelica.Fluid.Types.Dynamics.DynamicFreeInitialto avoid an overspecified but consistent initial value problem. The previous implementation caused a warning in Dymola 2015 FD01, and caused in Dymola 2016 beta 2 to not translate the model. The problem was that the boundary condition and the volume both declared an equation for the initial pressure. -
December, 2014 by Filip Jorissen:
Added temperature verification. -
November 25, 2014 by Filip Jorissen:
First implementation.