Buildings.Media.Water
Package with model for liquid water with constant density
Information
This medium package models liquid water.
The mass density is computed using a constant value of 995.586 kg/s. For a medium model in which the density is a function of temperature, use Buildings.Media.Specialized.Water.TemperatureDependentDensity which may have considerably higher computing time.
For the specific heat capacities at constant pressure and at constant volume, a constant value of 4184 J/(kg K), which corresponds to 20°C is used. The figure below shows the relative error of the specific heat capacity that is introduced by this simplification.
The enthalpy is computed using the convention that h=0 if T=0 °C.
Limitations
Density, specific heat capacity, thermal conductivity and viscosity are constant. Water is modeled as an incompressible liquid. There are no phase changes.
Extends from Modelica.Media.Water.ConstantPropertyLiquidWater (Water: Simple liquid water medium (incompressible, constant data)), Modelica.Icons.Package (Icon for standard packages).
Package Content
Name | Description |
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Base properties (p, d, T, h, u, R, MM and X and Xi) of a medium |
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Return the specific enthalpy of liquid |
Inherited | |
simpleWaterConstants | |
cp_const=4184 | Constant specific heat capacity at constant pressure |
cv_const=cp_const | Constant specific heat capacity at constant volume |
d_const=995.586 | Constant density |
eta_const=1.e-3 | Constant dynamic viscosity |
lambda_const=0.598 | Constant thermal conductivity |
a_const=1484 | Constant velocity of sound |
T_min=Cv.from_degC(-1) | Minimum temperature valid for medium model |
T_max=Cv.from_degC(130) | Maximum temperature valid for medium model |
T0=273.15 | Zero enthalpy temperature |
MM_const=0.018015268 | Molar mass |
fluidConstants=simpleWaterConstants | Fluid constants |
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Thermodynamic state |
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Return thermodynamic state from p, T, and X or Xi |
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Return thermodynamic state from p, h, and X or Xi |
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Return thermodynamic state from p, s, and X or Xi |
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Return thermodynamic state from d, T, and X or Xi |
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Return thermodynamic state so that it smoothly approximates: if x > 0 then state_a else state_b |
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Return dynamic viscosity |
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Return thermal conductivity |
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Return pressure |
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Return temperature |
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Return density |
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Return specific enthalpy |
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Return specific heat capacity at constant pressure |
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Return specific heat capacity at constant volume |
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Return isentropic exponent |
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Return velocity of sound |
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Return specific enthalpy from p, T, and X or Xi |
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Return temperature from p, h, and X or Xi |
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Return density from p, h, and X or Xi |
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Return specific internal energy |
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Return specific entropy |
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Return specific Gibbs energy |
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Return specific Helmholtz energy |
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Return isentropic enthalpy |
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Returns overall the isobaric expansion coefficient beta |
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Returns overall the isothermal compressibility factor |
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Returns the partial derivative of density with respect to pressure at constant temperature |
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Returns the partial derivative of density with respect to temperature at constant pressure |
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Returns the partial derivative of density with respect to mass fractions at constant pressure and temperature |
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Return the molar mass of the medium |
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Return thermodynamic state from p and T |
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Return thermodynamic state from p and h |
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Return thermodynamic state from p and s |
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Return thermodynamic state from d and T |
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Return density from p and h |
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Return temperature from p and h |
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Return pressure from d and T |
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Return specific enthalpy from d and T |
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Return specific enthalpy from p and s |
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Return temperature from p and s |
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Return density from p and s |
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Return specific enthalpy from p and T |
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Return density from p and T |
ThermoStates=Modelica.Media.Interfaces.Choices.IndependentVariables.pT | Enumeration type for independent variables |
mediumName="SimpleLiquidWater" | Name of the medium |
substanceNames={mediumName} | Names of the mixture substances. Set substanceNames={mediumName} if only one substance. |
extraPropertiesNames=fill("", 0) | Names of the additional (extra) transported properties. Set extraPropertiesNames=fill("",0) if unused |
singleState=true | = true, if u and d are not a function of pressure |
reducedX=true | = true if medium contains the equation sum(X) = 1.0; set reducedX=true if only one substance (see docu for details) |
fixedX=true | = true if medium contains the equation X = reference_X |
reference_p=300000 | Reference pressure of Medium: default 1 atmosphere |
reference_T=273.15 | Reference temperature of Medium: default 25 deg Celsius |
reference_X={1} | Default mass fractions of medium |
p_default=300000 | Default value for pressure of medium (for initialization) |
T_default=Modelica.Units.Conversions.from_degC(20) | Default value for temperature of medium (for initialization) |
h_default=specificEnthalpy_pTX(p_default, T_default, X_default) | Default value for specific enthalpy of medium (for initialization) |
X_default=reference_X | Default value for mass fractions of medium (for initialization) |
C_default=fill(0, nC) | Default value for trace substances of medium (for initialization) |
nS=size(substanceNames, 1) | Number of substances |
nX=nS | Number of mass fractions |
nXi=if fixedX then 0 else if reducedX then nS - 1 else nS | Number of structurally independent mass fractions (see docu for details) |
nC=size(extraPropertiesNames, 1) | Number of extra (outside of standard mass-balance) transported properties |
C_nominal=1.0e-6*ones(nC) | Default for the nominal values for the extra properties |
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Critical, triple, molecular and other standard data of fluid |
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Return the Prandtl number |
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Alias for deprecated name |
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Alias for deprecated name |
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Alias for isobaricExpansionCoefficient for user convenience |
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Alias of isothermalCompressibility for user convenience |
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Return density derivative w.r.t. pressure at const specific enthalpy |
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Return density derivative w.r.t. specific enthalpy at constant pressure |
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Return specific enthalpy from p, T, and X or Xi |
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Return density from p, T, and X or Xi |
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Return temperature from p,s, and X or Xi |
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Return density from p, s, and X or Xi |
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Return specific enthalpy from p, s, and X or Xi |
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Type for mass flow rate with medium specific attributes |
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Type for absolute pressure with medium specific attributes |
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Type for density with medium specific attributes |
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Type for dynamic viscosity with medium specific attributes |
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Type for enthalpy flow rate with medium specific attributes |
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Type for mass fraction with medium specific attributes |
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Type for mole fraction with medium specific attributes |
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Type for molar mass with medium specific attributes |
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Type for molar volume with medium specific attributes |
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Type for isentropic exponent with medium specific attributes |
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Type for specific energy with medium specific attributes |
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Type for specific internal energy with medium specific attributes |
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Type for specific enthalpy with medium specific attributes |
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Type for specific entropy with medium specific attributes |
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Type for specific heat capacity with medium specific attributes |
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Type for surface tension with medium specific attributes |
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Type for temperature with medium specific attributes |
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Type for thermal conductivity with medium specific attributes |
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Type for Prandtl number with medium specific attributes |
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Type for velocity of sound with medium specific attributes |
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Type for unspecified, mass-specific property transported by flow |
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Type for conserved integral of unspecified, mass specific property |
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Type for flow rate of unspecified, mass-specific property |
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Type for isobaric expansion coefficient with medium specific attributes |
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Type for dipole moment with medium specific attributes |
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Type for partial derivative of density with respect to pressure with medium specific attributes |
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Type for partial derivative of density with respect to enthalpy with medium specific attributes |
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Type for partial derivative of enthalpy with respect to pressure with medium specific attributes |
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Type for partial derivative of density with respect to temperature with medium specific attributes |
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Type for partial derivative of temperature with respect to pressure with medium specific attributes |
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Saturation properties of two phase medium |
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Validity limits for fluid model |
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Phase of the fluid: 1 for 1-phase, 2 for two-phase, 0 for not known, e.g., interactive use |
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The most basic version of a record used in several degrees of detail |
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The ideal gas version of a record used in several degrees of detail |
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The two phase fluid version of a record used in several degrees of detail |
Buildings.Media.Water.BaseProperties
Base properties (p, d, T, h, u, R, MM and X and Xi) of a medium
Information
Model with basic thermodynamic properties.
This base properties model is identical to
Modelica.Media.Water.ConstantPropertyLiquidWater,
except that the equation
u = cv_const*(T - reference_T)
has been replaced by u=h
because
cp_const=cv_const
.
This model provides equation for the following thermodynamic properties:
Variable | Unit | Description |
T | K | temperature |
p | Pa | absolute pressure |
d | kg/m3 | density |
h | J/kg | specific enthalpy |
u | J/kg | specific internal energy |
Xi[nXi] | kg/kg | independent mass fractions m_i/m |
R | J/kg.K | gas constant |
M | kg/mol | molar mass |
Parameters
Type | Name | Default | Description |
---|---|---|---|
Advanced | |||
Boolean | preferredMediumStates | false | = true if StateSelect.prefer shall be used for the independent property variables of the medium |
Modelica definition
Buildings.Media.Water.enthalpyOfLiquid
Return the specific enthalpy of liquid
Information
Enthalpy of the water.
Extends from Modelica.Icons.Function (Icon for functions).
Inputs
Type | Name | Default | Description |
---|---|---|---|
Temperature | T | Temperature [K] |
Outputs
Type | Name | Description |
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SpecificEnthalpy | h | Specific enthalpy [J/kg] |
Modelica definition
Buildings.Media.Water.BaseProperties.InputAbsolutePressure
Pressure as input signal connector
Modelica definition
Buildings.Media.Water.BaseProperties.InputMassFraction
Mass fraction as input signal connector
Modelica definition
Buildings.Media.Water.BaseProperties.InputSpecificEnthalpy
Specific enthalpy as input signal connector