This model calculates medium properties for water in the liquid, gas and two phase regions according to the IAPWS/IF97 standard, i.e., the accepted industrial standard and best compromise between accuracy and computation time. For more details see Modelica.Media.Water.IF97_Utilities. Three variable pairs can be the independent variables of the model:
The following quantities are always computed:
| Variable | Unit | Description | 
| T | K | temperature | 
| u | J/kg | specific internal energy | 
| d | kg/m^3 | density | 
| p | Pa | pressure | 
| h | J/kg | specific enthalpy | 
In some cases additional medium properties are needed. A component that needs these optional properties has to call one of the functions listed in Modelica.Media.UsersGuide.MediumUsage.OptionalProperties and in Modelica.Media.UsersGuide.MediumUsage.TwoPhase.
Many further properties can be computed. Using the well-known Bridgman's Tables, all first partial derivatives of the standard thermodynamic variables can be computed easily.
| Name | Description | 
|---|---|
| Thermodynamic state | |
| Base properties of water | |
| Computes density as a function of pressure and specific enthalpy | |
| Computes temperature as a function of pressure and specific enthalpy | |
| Compute temperature from pressure and specific enthalpy | |
| Computes density as a function of pressure and specific enthalpy | |
| Computes pressure as a function of density and temperature | |
| Computes specific enthalpy as a function of density and temperature | |
| Computes specific enthalpy as a function of pressure and temperature | |
| Computes specific enthalpy as a function of pressure and temperature | |
| Computes density as a function of pressure and temperature | |
| Set the thermodynamic state on the dew line | |
| Set the thermodynamic state on the bubble line | |
| Dynamic viscosity of water | |
| Thermal conductivity of water | |
| Surface tension in two phase region of water | |
| Return pressure of ideal gas | |
| Return temperature of ideal gas | |
| Return density of ideal gas | |
| Return specific enthalpy | |
| Return specific internal energy | |
| Return specific Gibbs energy | |
| Return specific Helmholtz energy | |
| Specific entropy of water | |
| Specific heat capacity at constant pressure of water | |
| Specific heat capacity at constant volume of water | |
| Return isentropic exponent | |
| 
 | 
Isothermal compressibility of water | 
| 
 | 
Isobaric expansion coefficient of water | 
| Return velocity of sound as a function of the thermodynamic state record | |
| Compute h(s,p) | |
| Density derivative by specific enthalpy | |
| Density derivative by pressure | |
| Boiling curve specific enthalpy of water | |
| Dew curve specific enthalpy of water | |
| Boiling curve specific entropy of water | |
| Dew curve specific entropy of water | |
| Boiling curve specific density of water | |
| Dew curve specific density of water | |
| Saturation temperature of water | |
| 
 | 
Derivative of saturation temperature w.r.t. pressure | 
| Saturation pressure of water | |
| 
 | 
Bubble point density derivative | 
| Dew point density derivative | |
| 
 | 
Bubble point specific enthalpy derivative | 
| Dew point specific enthalpy derivative | |
| Return thermodynamic state of water as function of d, T, and optional region | |
| Return thermodynamic state of water as function of p, h, and optional region | |
| Return thermodynamic state of water as function of p, s, and optional region | |
| Return thermodynamic state of water as function of p, T, and optional region | |
| Return thermodynamic state so that it smoothly approximates: if x > 0 then state_a else state_b |