Cantera
2.4.0
include
cantera
thermo
speciesThermoTypes.h
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/**
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* @file speciesThermoTypes.h Contains const definitions for types of species
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* reference-state thermodynamics managers (see \ref spthermo)
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*/
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// This file is part of Cantera. See License.txt in the top-level directory or
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// at http://www.cantera.org/license.txt for license and copyright information.
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#ifndef SPECIES_THERMO_TYPES_H
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#define SPECIES_THERMO_TYPES_H
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//! Constant Cp
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#define CONSTANT_CP 1
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//! Polynomial
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#define POLYNOMIAL_4 2
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//! Two regions of 7 coefficient NASA Polynomials
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//! This is implemented in the class NasaPoly2 in NasaPoly2.h
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#define NASA 4
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//! Two regions of 7 coefficient NASA Polynomials
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//! This is implemented in the class NasaPoly2 in NasaPoly2.h
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#define NASA2 4
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//! Two regions of Shomate Polynomials.
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#define SHOMATE 8
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//! Two regions of Shomate Polynomials.
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#define SHOMATE2 8
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//! Tiger Polynomials. Not implemented here.
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#define TIGER 16
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//! Constant Cp thermo.
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//! This is implemented in ConstCpPoly in constCpPoly.h for one species.
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//! If the whole phase is constcp, SimpleThermo in SimpleThermo.h
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//! implements this for the whole phase.
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#define SIMPLE 32
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//! piecewise interpolation of mu0.
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//! This is implemented in Mu0Poly in Mu0Poly.h
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#define MU0_INTERP 64
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//! one region of Shomate Polynomials used in NIST database
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//! This is implemented in the NIST database.
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//! This is implemented in ShomatePoly in ShomatePoly.h
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#define SHOMATE1 128
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//! 7 coefficient NASA Polynomials
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//! This is implemented in the class NasaPoly1 in NasaPoly1.h
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#define NASA1 256
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//! 9 coefficient NASA Polynomials
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//! This is implemented in the class Nasa9Poly1 in Nasa9Poly1.h
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#define NASA9 512
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//! 9 coefficient NASA Polynomials in multiple temperature regions
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//! This is implemented in the class Nasa9PolyMultiTempRegion in Nasa9Poly1MultiTempRegion
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#define NASA9MULTITEMP 513
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//! Surface Adsorbate Model for a species on a surface.
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//! This is implemented in the class Adsorbate.
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#define ADSORBATE 1024
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//! Type of reference state thermo which is a wrapper around a pressure dependent
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//! standard state object. Basically, the reference state pressure isn't special.
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//! A general object is called with the pressure set at the reference state.
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#define PDSS_TYPE 37
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#endif
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