TrioCFD 1.9.9_beta
TrioCFD documentation
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Terme_Source_Constituant_VDF_Elem.cpp
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15
16#include <Convection_Diffusion_Concentration.h>
17#include <Terme_Source_Constituant_VDF_Elem.h>
18#include <Discretisation_base.h>
19#include <Probleme_base.h>
20#include <Domaine_Cl_VDF.h>
21#include <Domaine_VDF.h>
22
23Implemente_instanciable_sans_constructeur(Terme_Source_Constituant_VDF_Elem,"Source_Constituant_VDF_P0_VDF",Terme_Source_VDF_base);
24// XD source_constituant source_base source_constituant NO_BRACE Keyword to specify source rates, in [[C]/s], for each
25// XD_CONT one of the nb constituents. [C] is the concentration unit.
26// XD attr ch field_base ch REQ Field type.
27
29
31{
33 set_fichier("Source_Constituant");
34 set_description("Injection rate = Integral(source_C*dv) [mol/s]");
35 return s;
36}
37
43
45{
46 const Domaine_VDF& zvdf = ref_cast(Domaine_VDF,domaine_dis);
47 const Domaine_Cl_VDF& zclvdf = ref_cast(Domaine_Cl_VDF,domaine_cl_dis);
48 iter_->associer_domaines(zvdf, zclvdf);
49 Eval_Source_C_VDF_Elem& eval_puis = static_cast<Eval_Source_C_VDF_Elem&> (iter_->evaluateur());
50 eval_puis.associer_domaines(zvdf,zclvdf);
51}
52
54{
55 const Equation_base& eqn = pb.equation(0);
56 eqn.discretisation().nommer_completer_champ_physique(eqn.domaine_dis(),la_source_constituant->le_nom(),"",la_source_constituant,pb);
57 Eval_Source_C_VDF_Elem& eval_puis = static_cast<Eval_Source_C_VDF_Elem&> (iter_->evaluateur());
58 eval_puis.associer_champs(la_source_constituant);
59}
void nommer_completer_champ_physique(const Domaine_dis_base &domaine_vdf, const Nom &nom_champ, const Nom &unite, Champ_base &champ, const Probleme_base &pbi) const
class Domaine_Cl_VDF
class Domaine_Cl_dis_base Domaine_Cl_dis_base objects represent discretized boundary conditions
class Domaine_VDF
Definition Domaine_VDF.h:61
class Domaine_dis_base This class is the base of the hierarchy of discretized domains.
Class defining operators and methods for all reading operation in an input flow (file,...
Definition Entree.h:42
class Equation_base The role of an equation is the calculation of one or more fields....
const Discretisation_base & discretisation() const
Returns the discretization associated with the equation.
Domaine_dis_base & domaine_dis()
Returns the discretized domain associated with the equation.
void associer_champs(const Champ_Don_base &)
void associer_domaines(const Domaine_dis_base &domaine, const Domaine_Cl_dis_base &domaine_cl)
const Equation_base & equation() const
Returns the reference to the equation pointed to by MorEqn::mon_equation.
Definition MorEqn.h:62
const Nom & que_suis_je() const
Returns the string identifying the class.
Definition Objet_U.cpp:104
virtual Entree & readOn(Entree &)
Reads an Objet_U from an input stream. Virtual method to override.
Definition Objet_U.cpp:289
virtual const Nom & le_nom() const
Returns the name of the Objet_U. Virtual method to override: returns "neant" in this implementation.
Definition Objet_U.cpp:317
virtual Sortie & printOn(Sortie &) const
Writes the object to an output stream. Virtual method to override.
Definition Objet_U.cpp:278
class Probleme_base It is a Probleme_U that is not a coupling.
virtual const Equation_base & equation(int) const =0
Base class for output streams.
Definition Sortie.h:52
void set_fichier(const Nom &)
void set_description(const Nom &nom)
Definition Source_base.h:83
class Terme_Source_Constituant_VDF_Elem This class represents a source term of the heat equation
void associer_domaines(const Domaine_dis_base &, const Domaine_Cl_dis_base &) override
void associer_pb(const Probleme_base &) override
void completer() override
Updates internal references of the Source_base object.
void lire_donnees(Entree &)
Reads the power term from an input stream.
int completer(const Champ_Inc_base &inco)
void completer() override
Updates internal references of the Source_base object.