egrMixture.C
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27 
28 #include "egrMixture.H"
29 #include "fvMesh.H"
30 
31 // * * * * * * * * * * * * * * * * Constructors * * * * * * * * * * * * * * //
32 
33 template<class ThermoType>
35 (
36  const dictionary& thermoDict,
37  const fvMesh& mesh,
38  const word& phaseName
39 )
40 :
42  (
43  thermoDict,
44  speciesTable({"ft", "b", "egr"}),
45  mesh,
46  phaseName
47  ),
48 
49  stoicRatio_("stoichiometricAirFuelMassRatio", dimless, thermoDict),
50 
51  fuel_(thermoDict.subDict("fuel")),
52  oxidant_(thermoDict.subDict("oxidant")),
53  products_(thermoDict.subDict("burntProducts")),
54 
55  mixture_("mixture", fuel_),
56 
57  ft_(Y("ft")),
58  b_(Y("b")),
59  egr_(Y("egr"))
60 {}
61 
62 
63 // * * * * * * * * * * * * * * * Member Functions * * * * * * * * * * * * * //
64 
65 template<class ThermoType>
67 (
68  const scalar ft,
69  const scalar b,
70  const scalar egr
71 ) const
72 {
73  if (ft < 0.0001)
74  {
75  return oxidant_;
76  }
77  else
78  {
79 
80  scalar fu = b*ft + (1.0 - b)*fres(ft, stoicRatio().value());
81  scalar ox = 1 - ft - (ft - fu)*stoicRatio().value();
82 
83  fu *= (1.0 - egr);
84  ox *= (1.0 - egr);
85 
86  scalar pr = 1 - fu - ox;
87 
88  mixture_ = fu*fuel_;
89  mixture_ += ox*oxidant_;
90  mixture_ += pr*products_;
91 
92  return mixture_;
93  }
94 }
95 
96 
97 template<class ThermoType>
99 {
100  thermoDict.readEntry("stoichiometricAirFuelMassRatio", stoicRatio_);
101 
102  fuel_ = ThermoType(thermoDict.subDict("fuel"));
103  oxidant_ = ThermoType(thermoDict.subDict("oxidant"));
104  products_ = ThermoType(thermoDict.subDict("burntProducts"));
105 }
106 
107 
108 template<class ThermoType>
110 (
111  const label speciei
112 ) const
113 {
114  if (speciei == 0)
115  {
116  return fuel_;
117  }
118  else if (speciei == 1)
119  {
120  return oxidant_;
121  }
122  else if (speciei == 2)
123  {
124  return products_;
125  }
126  else
127  {
129  << "Unknown specie index " << speciei << ". Valid indices are 0..2"
130  << abort(FatalError);
131 
132  return fuel_;
133  }
134 }
135 
136 
137 // ************************************************************************* //
Foam::egrMixture::getLocalThermo
const ThermoType & getLocalThermo(const label speciei) const
Return thermo based on index.
Definition: egrMixture.C:110
Foam::word
A class for handling words, derived from Foam::string.
Definition: word.H:65
egrMixture.H
Foam::dimensioned::value
const Type & value() const
Return const reference to value.
Definition: dimensionedType.C:434
Foam::constant::physicoChemical::b
const dimensionedScalar b
Wien displacement law constant: default SI units: [m.K].
Definition: createFields.H:27
Foam::speciesTable
hashedWordList speciesTable
A table of species as a hashedWordList.
Definition: speciesTable.H:43
Foam::egrMixture::mixture
const ThermoType & mixture(const scalar, const scalar, const scalar) const
Definition: egrMixture.C:67
Foam::basicCombustionMixture
Specialization of the basicSpecieMixture for combustion.
Definition: basicCombustionMixture.H:53
Foam::FatalError
error FatalError
Foam::dictionary
A list of keyword definitions, which are a keyword followed by a number of values (eg,...
Definition: dictionary.H:123
mesh
dynamicFvMesh & mesh
Definition: createDynamicFvMesh.H:6
Foam::fvMesh
Mesh data needed to do the Finite Volume discretisation.
Definition: fvMesh.H:85
fvMesh.H
Foam::abort
errorManip< error > abort(error &err)
Definition: errorManip.H:144
Y
PtrList< volScalarField > & Y
Definition: createFieldRefs.H:7
FatalErrorInFunction
#define FatalErrorInFunction
Report an error message using Foam::FatalError.
Definition: error.H:453
thermoDict
const dictionary & thermoDict
Definition: EEqn.H:16
Foam::egrMixture::read
void read(const dictionary &)
Read dictionary.
Definition: egrMixture.C:98
Foam::dimless
const dimensionSet dimless
Dimensionless.
Definition: dimensionSets.C:189
Foam::egrMixture
The egr mixture contains species ("ft", "b", "egr").
Definition: egrMixture.H:54