TRUST 1.9.8
HPC thermohydraulic platform
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Eval_Dift_VDF.h
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15
16#ifndef Eval_Dift_VDF_included
17#define Eval_Dift_VDF_included
18
19#include <Turbulence_paroi_scal_base.h>
20#include <Eval_Diff_VDF.h>
21#include <TRUSTVects.h>
22#include <TRUST_Ref.h>
23
25{
26public:
27 inline void mettre_a_jour() override
28 {
31 }
32
33 inline double get_equivalent_distance(int boundary_index, int local_face) const override
34 {
35 return equivalent_distance[boundary_index](local_face);
36 }
37
38 inline double compute_heq_impl(double d0, int i, double d1, int j, int compo) const
39 {
40 const double heq_lam = Eval_Diff_VDF::compute_heq_impl(d0, i, d1, j, compo);
41 const double heq_turb = 0.5 * (tab_diffusivite_turbulente(i, is_multi_ * compo) + tab_diffusivite_turbulente(j, is_multi_ * compo)) / (d1 + d0);
42 return heq_lam + heq_turb;
43 }
44
45 inline double nu_t_impl(int i, int compo) const { return tab_diffusivite_turbulente(i, is_multi_ * compo); }
46
47 inline double nu_lam_impl_face(int i, int j, int k, int l, int compo) const
48 {
49 return Eval_Diff_VDF::nu_2_impl_face(i, j, k, l, compo);
50 }
51
52 inline double nu_lam_impl_face2(int i, int j, int compo) const
53 {
54 return Eval_Diff_VDF::nu_1_impl_face(i, j, compo);
55 }
56
57 inline double nu_1_impl(int i, int compo) const
58 {
59 const double nu_lam = Eval_Diff_VDF::nu_1_impl(i, compo);
60 const double nu_turb = tab_diffusivite_turbulente(i, is_multi_ * compo);
61 return nu_lam + nu_turb;
62 }
63
64 inline double nu_2_impl(int i, int compo) const
65 {
66 return Eval_Diff_VDF::nu_2_impl(i, compo);
67 }
68
69 inline double nu_1_impl_face(int i, int j, int compo) const
70 {
71 return 0.5 * (tab_diffusivite_turbulente(i, is_multi_ * compo) + tab_diffusivite_turbulente(j, is_multi_ * compo));
72 }
73
74 inline double nu_2_impl_face(int i, int j, int k, int l, int compo) const
75 {
76 return 0.25 * (tab_diffusivite_turbulente(i, is_multi_ * compo) + tab_diffusivite_turbulente(j, is_multi_ * compo) +
78 }
79
81 {
82 if (loipar)
83 {
84 int s = loipar->tab_equivalent_distance_size();
85 equivalent_distance.dimensionner(s);
86 for (int i = 0; i < s; i++) equivalent_distance[i].ref(loipar->tab_equivalent_distance(i));
87 }
88 }
89
90 inline const Champ_Fonc_base& diffusivite_turbulente() const { return ref_diffusivite_turbulente_.valeur(); }
91
92 inline void associer_diff_turb(const Champ_Fonc_base& diff_turb)
93 {
94 ref_diffusivite_turbulente_ = diff_turb;
95 tab_diffusivite_turbulente.ref(diff_turb.valeurs());
96 is_multi_ = (diff_turb.valeurs().dimension(1) > 1) ? 1 : 0;
97 }
98
99 inline virtual void associer_loipar(const Turbulence_paroi_scal_base& loi_paroi) { loipar = loi_paroi; }
100 inline virtual void init_ind_fluctu_term() { /* do nothing */}
101
102protected:
103 int is_multi_ = 0;
104 OBS_PTR(Champ_Fonc_base) ref_diffusivite_turbulente_;
108};
109
110#endif /* Eval_Dift_VDF_included */
DoubleTab & valeurs() override
Surcharge Champ_base::valeurs() Renvoie le tableau des valeurs.
classe Champ_Fonc_base Classe de base des champs qui sont fonction d'une grandeur calculee
double nu_2_impl_face(int i, int j, int k, int l, int compo) const
double nu_1_impl(int i, int compo) const
double nu_1_impl_face(int i, int j, int compo) const
virtual void mettre_a_jour()
double nu_2_impl(int i, int compo) const
double compute_heq_impl(double d0, int i, double d1, int j, int compo) const
double nu_lam_impl_face(int i, int j, int k, int l, int compo) const
void associer_diff_turb(const Champ_Fonc_base &diff_turb)
double nu_lam_impl_face2(int i, int j, int compo) const
DoubleTab tab_diffusivite_turbulente
OBS_PTR(Turbulence_paroi_scal_base) loipar
OBS_PTR(Champ_Fonc_base) ref_diffusivite_turbulente_
double nu_t_impl(int i, int compo) const
double nu_2_impl(int i, int compo) const
double get_equivalent_distance(int boundary_index, int local_face) const override
void update_equivalent_distance()
void mettre_a_jour() override
const Champ_Fonc_base & diffusivite_turbulente() const
double nu_2_impl_face(int i, int j, int k, int l, int compo) const
double nu_1_impl_face(int i, int j, int compo) const
double nu_1_impl(int i, int compo) const
double compute_heq_impl(double d0, int i, double d1, int j, int compo) const
virtual void associer_loipar(const Turbulence_paroi_scal_base &loi_paroi)
DoubleVects equivalent_distance
virtual void init_ind_fluctu_term()
Classe Turbulence_paroi_scal_base Classe de base pour la hierarchie des classes representant les mode...