modelTWetBul_TDryBulPhi

Model to test the wet bulb temperature computation

Information

This examples is a unit test for the dew point temperature computation Buildings.Obsolete.Controls.OBC.CDL.Psychrometrics.TWetBul_TDryBulPhi.

The model contains an assert that validates the model based on a single operating point from Example 17.1 in Ananthanarayanan (2013).

References

Ananthanarayanan, P. N. Basic refrigeration and air conditioning. Tata McGraw-Hill Education, 2013.

Components

TypeNameDefaultDescription
Buildings.Obsolete.Controls.OBC.CDL.Psychrometrics.TWetBul_TDryBulPhiwetBulPhiModel for wet bulb temperature
Buildings.Controls.OBC.CDL.Reals.Sources.ConstantpPressure
Buildings.Controls.OBC.CDL.Reals.Sources.RampphiRelative humidity
Buildings.Controls.OBC.CDL.Reals.Sources.ConstantTDryBulDry bulb temperature
Buildings.Utilities.Psychrometrics.TWetBul_TDryBulPhiwetBulPhi_BuiLibModel for wet bulb temperature
Buildings.Utilities.Psychrometrics.TWetBul_TDryBulXiwetBulXiModel for wet bulb temperature using Xi as an input, used to verify consistency with wetBulPhi
Buildings.Utilities.Psychrometrics.X_pTphix_pTphiComputes mass fraction
Buildings.Controls.OBC.CDL.Reals.SubtractsubWet bulb temperature difference
Buildings.Controls.OBC.CDL.Reals.Subtractsub1Wet bulb temperature difference

Contents

NameDescription
MediumMedium model

Revisions

  • April 7, 2017, by Jianjun Hu:
    First implementation in CDL package.
  • June 23, 2016, by Michael Wetter:
    Changed graphical annotation.
  • May 24, 2016, by Filip Jorissen:
    Updated example with validation data. See #474 for a discussion.
  • October 1, 2012 by Michael Wetter:
    First implementation.