packageR134a

R134a with IIR reference state

Extends from Interfaces.PartialHelmholtzMedium.

Information

These are the coefficients for R134a. The reference state is set to IIR.
Tillner-Roth, R. and Baehr, H.D.,
An international standard formulation of the thermodynamic properties of 1,1,1,2-tetrafluoroethane (HFC-134a) for temperatures from 170 K to 455 K at pressures up to 70 MPa
J. Phys. Chem. Ref. Data, 23:657-729, 1994.
DOI: 10.1063/1.555958
Huber, M.L., Laesecke, A., and Perkins, R.A.
Model for the Viscosity and Thermal Conductivity of Refrigerants, Including a New Correlation for the Viscosity of R134a
Ind. Eng. Chem. Res., 42:3163-3178, 2003.
DOI: 10.1021/ie0300880
Perkins, R.A., Laesecke, A., Howley, J., Ramires, M.L.V., Gurova, A.N., and Cusco, L.
Experimental thermal conductivity values for the IUPAC round-robin sample of 1,1,1,2-tetrafluoroethane (R134a)
NISTIR, 2000.
Span, R. and Krauss, R.
Properties of R134a
VDI Heat Atlas, Section D2.7, 2010.
DOI: 10.1007/978-3-540-77877-6_11
Lemmon, Eric W.; Huber, M. L. and McLinden, M. O.
NIST Standard Reference Database 23: Reference Fluid Thermodynamic and Transport Properties - REFPROP. 9.0
National Institute of Standards and Technology, Standard Reference Data Program. Gaithersburg
URL: http://www.nist.gov/srd/nist23.cfm

Parameters

TypeNameDefaultDescription
Modelica.Media.Interfaces.Choices.IndependentVariablesThermoStates (from PartialMedium)Enumeration type for independent variables
StringmediumName (from PartialMedium)"unusablePartialMedium"Name of the medium
String[:]substanceNames (from PartialMedium){mediumName}Names of the mixture substances. Set substanceNames={mediumName} if only one substance.
String[:]extraPropertiesNames (from PartialMedium)fill("", 0)Names of the additional (extra) transported properties. Set extraPropertiesNames=fill("",0) if unused
BooleansingleState (from PartialMedium)= true, if u and d are not a function of pressure
BooleanreducedX (from PartialMedium)true= true, if medium contains the equation sum(X) = 1.0; set reducedX=true, if only one substance (see docu for details)
BooleanfixedX (from PartialMedium)false= true, if medium contains the equation X = reference_X
AbsolutePressurereference_p (from PartialMedium)101325Reference pressure of Medium: default 1 atmosphere
Temperaturereference_T (from PartialMedium)298.15Reference temperature of Medium: default 25 deg Celsius
MassFraction[nX]reference_X (from PartialMedium)fill(1/nX, nX)Default mass fractions of medium
AbsolutePressurep_default (from PartialMedium)101325Default value for pressure of medium (for initialization)
TemperatureT_default (from PartialMedium)Modelica.Units.Conversions.from_degC(20)Default value for temperature of medium (for initialization)
SpecificEnthalpyh_default (from PartialMedium)specificEnthalpy_pTX(p_default, T_default, X_default)Default value for specific enthalpy of medium (for initialization)
MassFraction[nX]X_default (from PartialMedium)reference_XDefault value for mass fractions of medium (for initialization)
ExtraProperty[nC]C_default (from PartialMedium)fill(0, nC)Default value for trace substances of medium (for initialization)
IntegernS (from PartialMedium)size(substanceNames, 1)Number of substances
IntegernX (from PartialMedium)nSNumber of mass fractions
IntegernXi (from PartialMedium)if fixedX then 0 else if reducedX then nS - 1 else nSNumber of structurally independent mass fractions (see docu for details)
IntegernC (from PartialMedium)size(extraPropertiesNames, 1)Number of extra (outside of standard mass-balance) transported properties
Real[nC]C_nominal (from PartialMedium)1.0e-6*ones(nC)Default for the nominal values for the extra properties
BooleansmoothModel (from PartialTwoPhaseMedium)false= true, if the (derived) model should not generate state events
BooleanonePhase (from PartialTwoPhaseMedium)false= true, if the (derived) model should never be called with two-phase inputs
FluidConstantsfluidConstants (from PartialTwoPhaseMedium)Constant data for the fluid
HelmholtzMedia.Interfaces.Types.FluidLimitsfluidLimits (from PartialHelmholtzMedium)
EoS.HelmholtzCoefficientshelmholtzCoefficients (from PartialHelmholtzMedium)
Transport.ThermalConductivityCoefficientsthermalConductivityCoefficients (from PartialHelmholtzMedium)
Transport.DynamicViscosityCoefficientsdynamicViscosityCoefficients (from PartialHelmholtzMedium)
Transport.SurfaceTensionCoefficientssurfaceTensionCoefficients (from PartialHelmholtzMedium)
Ancillary.AncillaryCoefficientsancillaryCoefficients (from PartialHelmholtzMedium)
InputChoiceinputChoice (from PartialHelmholtzMedium)InputChoice.phDefault choice of input variables for property computations
FluidConstantsfluidConstantsR134aFluid Constants
FluidLimitsfluidLimitsR134aHelmholtz EoS Limits
EoS.HelmholtzCoefficientshelmholtzCoefficientsR134aCoefficients of the Helmholtz EoS
Transport.ThermalConductivityCoefficientsthermalConductivityCoefficientsR134aCoefficients for the thermal conductivity
Transport.DynamicViscosityCoefficientsdynamicViscosityCoefficientsR134aCoefficients for the dynamic viscosity
Transport.SurfaceTensionCoefficientssurfaceTensionCoefficientsR134aCoefficients for the surface tension
Ancillary.AncillaryCoefficientsancillaryCoefficientsR134aCoefficients for the ancillary equations