TrioCFD 1.9.9_beta
TrioCFD documentation
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Paroi_contact_fictif.cpp
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15
16#include <Paroi_contact_fictif.h>
17#include <Discretisation_base.h>
18#include <Probleme_base.h>
19#include <Equation_base.h>
20
21Implemente_instanciable(Paroi_contact_fictif, "paroi_contact_fictif", Cond_lim_utilisateur_base);
22// XD paroi_contact_fictif condlim_base paroi_contact_fictif INHERITS_BRACE This keyword is derivated from paroi_contact
23// XD_CONT and is especially dedicated to compute coupled fluid/solid/fluid problem in case of thin material. Thanks to
24// XD_CONT this option, solid is considered as a fictitious media (no mesh, no domain associated), and coupling is
25// XD_CONT performed by considering instantaneous thermal equilibrium in it (for the moment).
26// XD attr autrepb ref_Pb_base autrepb REQ Name of other problem.
27// XD attr nameb chaine nameb REQ Name of bord.
28// XD attr conduct_fictif floattant conduct_fictif REQ thermal conductivity
29// XD attr ep_fictive floattant ep_fictive REQ thickness of the fictitious media
30
32{
33 return s << que_suis_je() << " " << nom_autre_pb << " " << nom_autre_bord << " " << conduct_fictif << " " << ep_fictif;
34}
35
37{
38 s >> nom_autre_pb;
39 s >> nom_autre_bord;
40 s >> conduct_fictif;
41 s >> ep_fictif;
42 return s;
43}
44
46{
47 const Nom& nom_mon_pb = mon_equation->probleme().le_nom();
48 if (mon_equation->discretisation().is_vdf())
49 {
50 ajout = "paroi_echange_contact_VDF ";
51 ajout += nom_autre_pb;
52 ajout += " ";
53 ajout += nom_autre_bord;
54 ajout += " temperature ";
55 ajout += Nom(conduct_fictif / ep_fictif, "%e");
56 }
57 else if (mon_equation->discretisation().is_PolyMAC_CDO())
58 {
59 ajout = "paroi_echange_contact_PolyMAC_CDO ";
60 ajout += nom_autre_pb;
61 ajout += " ";
62 ajout += nom_autre_bord;
63 ajout += " temperature ";
64 ajout += Nom(conduct_fictif / ep_fictif, "%e");
65 }
66 else if (mon_equation->discretisation().is_PolyMAC_HFV())
67 {
68 ajout = "paroi_echange_contact_PolyMAC_HFV ";
69 ajout += nom_autre_pb;
70 ajout += " ";
71 ajout += nom_autre_bord;
72 ajout += " temperature ";
73 ajout += Nom(conduct_fictif / ep_fictif, "%e");
74 }
75 else if (mon_equation->discretisation().is_PolyMAC_MPFA())
76 {
77 ajout = "paroi_echange_contact_PolyMAC_MPFA ";
78 ajout += nom_autre_pb;
79 ajout += " ";
80 ajout += nom_autre_bord;
81 ajout += " temperature ";
82 ajout += Nom(conduct_fictif / ep_fictif, "%e");
83 }
84 else
85 {
86 ajout = "temperature_imposee_paroi ";
87 ajout += "Champ_Front_contact_fictif_VEF ";
88 ajout += nom_mon_pb;
89 ajout += " ";
90 ajout += nom_bord_;
91 ajout += " ";
92 ajout += nom_autre_pb;
93 ajout += " ";
94 ajout += nom_autre_bord;
95 ajout += " ";
96 ajout += Nom(conduct_fictif, "%e");
97 ajout += " ";
98 ajout += Nom(ep_fictif, "%e");
99 }
100}
class Cond_lim_utilisateur_base: Classes inheriting from this class are user classes
Class defining operators and methods for all reading operation in an input flow (file,...
Definition Entree.h:42
class Nom: a character string for naming TRUST objects.
Definition Nom.h:31
const Nom & le_nom() const override
Returns *this.
Definition Nom.cpp:555
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 Sortie & printOn(Sortie &) const
Writes the object to an output stream. Virtual method to override.
Definition Objet_U.cpp:278
void complement(Nom &nom) override
Base class for output streams.
Definition Sortie.h:52