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noChemistryReduction.C
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1/*---------------------------------------------------------------------------*\
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27
29
30// * * * * * * * * * * * * * * * * Constructors * * * * * * * * * * * * * * //
31
32template<class CompType, class ThermoType>
34(
35 const IOdictionary& dict,
37)
38:
39 chemistryReductionMethod<CompType, ThermoType>(dict, chemistry)
40{
41 this->active_ = false;
42}
43
44
45// * * * * * * * * * * * * * * * * Destructor * * * * * * * * * * * * * * * //
46
47template<class CompType, class ThermoType>
49{}
50
51
52// * * * * * * * * * * * * * * * Member Functions * * * * * * * * * * * * * //
53
54template<class CompType, class ThermoType>
57(
58 const scalarField &c,
59 const scalar T,
60 const scalar p
61)
62{
64}
65
66
67// ************************************************************************* //
IOdictionary is derived from dictionary and IOobject to give the dictionary automatic IO functionalit...
Extends StandardChemistryModel by adding the TDAC method.
Switch active_
Is mechanism reduction active?
chemistryReductionMethod(const IOdictionary &dict, TDACChemistryModel< CompType, ThermoType > &chemistry)
Construct from components.
none(const IOdictionary &dict, TDACChemistryModel< CompType, ThermoType > &chemistry)
Construct from components.
virtual void reduceMechanism(const scalarField &c, const scalar T, const scalar p)
Reduce the mechanism.
volScalarField & p
BasicChemistryModel< psiReactionThermo > & chemistry
#define NotImplemented
Issue a FatalErrorIn for a function not currently implemented.
Definition error.H:688
Field< scalar > scalarField
Specialisation of Field<T> for scalar.
void T(FieldField< Field, Type > &f1, const FieldField< Field, Type > &f2)
dictionary dict