TRUST 1.9.8
HPC thermohydraulic platform
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Loi_Etat_GP_QC.cpp
1/****************************************************************************
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15
16#include <Loi_Etat_GP_QC.h>
17#include <Fluide_Dilatable_base.h>
18
19Implemente_instanciable(Loi_Etat_GP_QC,"Loi_Etat_Gaz_Parfait_QC",Loi_Etat_Mono_GP_base);
20// XD perfect_gaz_QC loi_etat_gaz_parfait_base gaz_parfait_QC BRACE Class for perfect gas state law used with a
21// XD_CONT quasi-compressible fluid.
22// XD attr Cp double Cp REQ Specific heat at constant pressure (J/kg/K).
23// XD attr Cv double Cv OPT Specific heat at constant volume (J/kg/K).
24// XD attr gamma double gamma OPT Cp/Cv
25// XD attr Prandtl double Prandtl REQ Prandtl number of the gas Pr=mu*Cp/lambda
26// XD attr rho_constant_pour_debug field_base rho_constant_pour_debug OPT For developers to debug the code with a
27// XD_CONT constant rho.
28
30{
31 os <<que_suis_je()<< finl;
32 return os;
33}
34
36{
37 Cerr << "Lecture de la loi d'etat gaz parfait pour le QC ... " << finl;
39}
40
41double Loi_Etat_GP_QC::calculer_masse_volumique(double P, double T) const
42{
43 return rho_constant_pour_debug_ ? rho_constant_pour_debug_->valeurs()(0,0) :
45}
46
47// View version
48void Loi_Etat_GP_QC::compute_tab_rho(DoubleTab& tab_rho)
49{
50 double rho_constant = rho_constant_pour_debug_ ? rho_constant_pour_debug_->valeurs()(0,0) : 0;
51 double Pth = le_fluide->pression_th();
52 double R = R_;
53 CDoubleArrView tab_ICh = static_cast<const ArrOfDouble&>(le_fluide->inco_chaleur().valeurs()).view_ro();
54 CDoubleArrView rho_n = static_cast<const ArrOfDouble&>(tab_rho_n).view_ro();
55 DoubleArrView rho_np1 = static_cast<ArrOfDouble&>(tab_rho_np1).view_wo();
56 DoubleArrView rho = static_cast<ArrOfDouble&>(tab_rho).view_wo();
57 Kokkos::parallel_for(start_gpu_timer(__KERNEL_NAME__), tab_rho.size(), KOKKOS_LAMBDA(const int som)
58 {
59 rho_np1(som) = rho_constant ? rho_constant : Loi_Etat_Mono_GP_base::calculer_masse_volumique(Pth, tab_ICh(som), R);
60 rho(som) = 0.5 * (rho_n(som) + rho_np1(som));
61 });
62 end_gpu_timer(__KERNEL_NAME__);
63}
64
65/*! @brief Calcule la masse volumique
66 *
67 */
Class defining operators and methods for all reading operation in an input flow (file,...
Definition Entree.h:42
classe Loi_Etat_GP_QC Cette classe represente la loi d'etat pour les gaz parfaits.
public_for_cuda void compute_tab_rho(DoubleTab &) override
void calculer_masse_volumique() override
Calcule la masse volumique.
double R() const
classe Loi_Etat_Mono_GP_base Cette classe represente la loi d'etat base pour les gaz parfaits.
const DoubleTab & rho_n() const
DoubleTab tab_rho_np1
DoubleTab tab_rho_n
virtual void calculer_masse_volumique()
Recalcule la masse volumique.
const DoubleTab & rho_np1() const
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_ size() const
Definition TRUSTVect.tpp:45