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It is very fast, but obviously has all the limitations of the ideal gas model: it cannot compute liquid properties and cannot deal with vapor-liquid equilibrium.
It can be used to model any mixture, but obviously with limited accuracy as the interaction between the consituents are not taken into account.
Alternatively, you can buy Ref Prop at the same price from Asimptote as part of the Fluid Prop package Free Stan Mix implements the PRSV cubic equation of state, which is one of the most accurate cubic equations of state to predict the properties of non-ideal fluids.
In particular provides accurate estimations of saturation properties up to the vicinity of the critical point.
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Fluid Prop is the ultimate thermodynamic property library: Fluid Prop is more than just a fluid property library: it is a common interface to various state-of-the-art thermodynamic and transport property models: independently of the model implementation, the user needs to know one single logical syntax to call the function for the desired property or set of properties.
This Fluid Prop interface also provides an extremely rich set of partial derivatives of thermodynamic properties, or so-called secondary thermodynamic properties. These are typically needed in complex simulations such as CFD and dynamic energy system modeling.
Ref Prop contains an advanced mixture model for natural gas components, namely the GERG-2008 model.
You can use your copy of Ref Prop if you already bought it from NIST and more easily couple it to your program through the Fluid Prop interface.
In addition, being a simpler model than the ones implemented in Ref Prop, it is faster, thus the model of choice when computational time is more important than extreme accuracy.