TRUST 1.9.8
HPC thermohydraulic platform
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Loi_Etat_TPPI_QC_base.cpp
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15
16#include <Fluide_Dilatable_base.h>
17#include <Loi_Etat_TPPI_QC_base.h>
18#include <Champ_Uniforme.h>
19#include <Domaine_VF.h>
20
21
22Implemente_base(Loi_Etat_TPPI_QC_base, "Loi_Etat_TPPI_QC_base", Loi_Etat_TPPI_base);
23// XD loi_etat_tppi_base loi_etat_base loi_etat_tppi_base INHERITS_BRACE Basic class for thermo-physical properties
24// XD_CONT interface (TPPI) used for dilatable problems
25
26Sortie& Loi_Etat_TPPI_QC_base::printOn(Sortie& os) const { return os << que_suis_je() << finl; }
28
30{
32 if (!vec_press_filled_) init_vec_press();
33}
34
35void Loi_Etat_TPPI_QC_base::init_vec_press()
36{
37 const double Pth = le_fluide->pression_th();
38 vec_press_.resize(le_fluide->inco_chaleur().valeurs().dimension(0));
39 for (auto &itr : vec_press_) itr = Pth;
40 vec_press_filled_ = true;
41}
42
43// Dans l'ordre on fait ca
44//
45// calculer_Cp();
46// calculer_mu();
47// calculer_lambda();
48// calculer_nu();
49// calculer_alpha();
50// calculer_mu_sur_Sc();
51// calculer_nu_sur_Sc();
53{
54 if (!vec_press_filled_) init_vec_press();
55 const DoubleTab& tab_ICh = le_fluide->inco_chaleur().valeurs();
56 SpanD temp_span = tab_ICh.get_span(), p_span = SpanD(vec_press_);
57
58 /* Step 2 : Mu */
59 Champ_Don_base& mu = le_fluide->viscosite_dynamique();
60 DoubleTab& tab_mu = mu.valeurs();
61 TPPI_->tppi_get_mu_pT(p_span, temp_span, tab_mu.get_span());
63 mu.mettre_a_jour(temperature_->temps());
64
65 /* Step 3 : Lambda */
66 Champ_Don_base& lambda = le_fluide->conductivite();
67 DoubleTab& tab_lambda = lambda.valeurs();
68 TPPI_->tppi_get_lambda_pT(p_span, temp_span, tab_lambda.get_span());
69 tab_lambda.echange_espace_virtuel();
70
71 /* Step 4 : Alpha */
72 Champ_Don_base& alpha = le_fluide->diffusivite();
73 DoubleTab& tab_alpha = alpha.valeurs();
74 const DoubleTab& tab_rho = le_fluide->masse_volumique().valeurs();
75
76 const bool isVDF = (alpha.que_suis_je() == "Champ_Fonc_P0_VDF") ? true : false;
77
78 if (isVDF)
79 for (int i = 0; i < tab_alpha.dimension(0); i++)
80 tab_alpha(i, 0) = tab_lambda(i, 0) / (tab_rho(i, 0) * Cp_);
81 else
82 {
83 const IntTab& elem_faces = ref_cast(Domaine_VF, le_fluide->vitesse().domaine_dis_base()).elem_faces();
84 const int nfe = elem_faces.line_size();
85 for (int i = 0; i < tab_alpha.dimension(0); i++)
86 {
87 double rhoelem = 0.;
88 for (int face = 0; face < nfe; face++)
89 rhoelem += tab_rho(elem_faces(i, face), 0);
90 rhoelem /= nfe;
91 tab_alpha(i, 0) = tab_lambda(i, 0) / (rhoelem * Cp_);
92 }
93 }
94 tab_alpha.echange_espace_virtuel();
95}
96
98{
99 if (!vec_press_filled_) init_vec_press();
100 const DoubleTab& tab_ICh = le_fluide->inco_chaleur().valeurs();
101 DoubleTab& tab_rho = le_fluide->masse_volumique().valeurs();
102 SpanD temp_span = tab_ICh.get_span(), p_span = SpanD(vec_press_), rho_span = tab_rho_np1.get_span();
103 TPPI_->tppi_get_rho_pT(p_span, temp_span, rho_span);
104
105 for (int som = 0; som < tab_rho.size(); som++) tab_rho(som, 0) = 0.5 * (tab_rho_n(som) + tab_rho_np1(som));
106
107 tab_rho.echange_espace_virtuel();
108 tab_rho_np1.echange_espace_virtuel();
109 le_fluide->calculer_rho_face(tab_rho_np1);
110}
classe Champ_Don_base classe de base des Champs donnes (non calcules)
void mettre_a_jour(double temps) override
Mise a jour en temps.
DoubleTab & valeurs() override
Surcharge Champ_base::valeurs() Renvoie le tableau des valeurs.
class Domaine_VF
Definition Domaine_VF.h:44
Class defining operators and methods for all reading operation in an input flow (file,...
Definition Entree.h:42
void preparer_calcul() override
Prepare le fluide au calcul.
void calculer_masse_volumique() override
Recalcule la masse volumique.
void calculer_Cp() override
Calcule le Cp NE FAIT RIEN : le Cp est constant.
void preparer_calcul() override
Prepare le fluide au calcul.
std::shared_ptr< TPPI > TPPI_
DoubleTab tab_rho_np1
DoubleTab tab_rho_n
const Nom & que_suis_je() const
renvoie la chaine identifiant la classe.
Definition Objet_U.cpp:104
virtual Entree & readOn(Entree &)
Lecture d'un Objet_U sur un flot d'entree Methode a surcharger.
Definition Objet_U.cpp:293
virtual Sortie & printOn(Sortie &) const
Ecriture de l'objet sur un flot de sortie Methode a surcharger.
Definition Objet_U.cpp:282
Classe de base des flux de sortie.
Definition Sortie.h:52
_SIZE_ dimension(int d) const
Definition TRUSTTab.tpp:133
_SIZE_ size() const
Definition TRUSTVect.tpp:45
int line_size() const
Definition TRUSTVect.tpp:67
Span_ get_span() override
Definition TRUSTVect.h:181
virtual void echange_espace_virtuel(IsExchangeBlocking exchange_type=IsExchangeBlocking::DefaultBlocking, const std::string kernel_name="noname")