Buildings.Obsolete.Controls.OBC.CDL.Psychrometrics
Package with obsolete models for psychrometric calculations
Information
Package that contains obsolete models for psychrometric calculations.
Extends from Modelica.Icons.Package (Icon for standard packages).
Package Content
Name | Description |
---|---|
TDewPoi_TDryBulPhi | Block to compute the dew point temperature based on relative humidity |
TWetBul_TDryBulPhi | Block to compute the wet bulb temperature based on relative humidity |
h_TDryBulPhi | Block to compute the specific enthalpy based on relative humidity |
Validation | Collection of validation models |
Buildings.Obsolete.Controls.OBC.CDL.Psychrometrics.TDewPoi_TDryBulPhi
Block to compute the dew point temperature based on relative humidity
Information
Dew point temperature calculation for moist air above freezing temperature.
The correlation used in this model is valid for dew point temperatures between 0°C and 93°C. It is the correlation from 2009 ASHRAE Handbook Fundamentals, p. 1.9, equation 39.
Extends from Modelica.Icons.ObsoleteModel (Icon for classes that are obsolete and will be removed in later versions).
Connectors
Type | Name | Description |
---|---|---|
input RealInput | TDryBul | Dry bulb temperature [K] |
input RealInput | phi | Relative air humidity [1] |
input RealInput | p | Pressure [Pa] |
output RealOutput | TDewPoi | Dew point temperature [K] |
Modelica definition
Buildings.Obsolete.Controls.OBC.CDL.Psychrometrics.TWetBul_TDryBulPhi
Block to compute the wet bulb temperature based on relative humidity
Information
This block computes the wet bulb temperature for a given dry bulb temperature, relative air humidity and atmospheric pressure.
The block uses the approximation of Stull (2011) to compute the wet bulb temperature without requiring a nonlinear equation. The approximation by Stull is valid for a relative humidity of 5% to 99%, a temperature range from -20°C to 50°C and standard sea level pressure. For this range of data, the approximation error is -1 Kelvin to +0.65 Kelvin, with a mean error of less than 0.3 Kelvin.
The model is validated in Buildings.Obsolete.Controls.OBC.CDL.Psychrometrics.Validation.TWetBul_TDryBulPhi.
For a model that takes the mass fraction instead of the relative humidity as an input, see Buildings.Utilities.Psychrometrics.TWetBul_TDryBulXi.
References
Stull, Roland. Wet-Bulb Temperature from Relative Humidity and Air Temperature Roland Stull. Journal of Applied Meteorology and Climatology. Volume 50, Issue 11, pp. 2267-2269. November 2011 DOI: 10.1175/JAMC-D-11-0143.1
Extends from Modelica.Icons.ObsoleteModel (Icon for classes that are obsolete and will be removed in later versions).
Connectors
Type | Name | Description |
---|---|---|
input RealInput | TDryBul | Dry bulb temperature [K] |
input RealInput | phi | Relative air humidity |
input RealInput | p | Pressure [Pa] |
output RealOutput | TWetBul | Wet bulb temperature [K] |
Modelica definition
Buildings.Obsolete.Controls.OBC.CDL.Psychrometrics.h_TDryBulPhi
Block to compute the specific enthalpy based on relative humidity
Information
The correlation used in this model is from 2009 ASHRAE Handbook Fundamentals, p. 1.9, equation 32.
Extends from Modelica.Icons.ObsoleteModel (Icon for classes that are obsolete and will be removed in later versions).
Connectors
Type | Name | Description |
---|---|---|
input RealInput | TDryBul | Dry bulb temperature [K] |
input RealInput | phi | Relative air humidity |
input RealInput | p | Pressure [Pa] |
output RealOutput | h | Specific enthalpy [J/kg] |