TrioCFD 1.9.9_beta
TrioCFD documentation
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Pb_Hydraulique.cpp
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15
16#include <Pb_Hydraulique.h>
17#include <Fluide_Ostwald.h>
18
19Implemente_instanciable(Pb_Hydraulique,"Pb_Hydraulique",Pb_Fluide_base);
20// XD pb_hydraulique Pb_base pb_hydraulique INHERITS_BRACE Resolution of the Navier-Stokes equations.
21// XD attr fluide_incompressible fluide_incompressible fluide_incompressible REQ The fluid medium associated with the
22// XD_CONT problem.
23// XD attr correlations bloc_lecture correlations OPT List of correlations used in specific source terms (e.g.
24// XD_CONT wall-friction adaptive law).
25// XD attr navier_stokes_standard navier_stokes_standard navier_stokes_standard REQ Navier-Stokes equations.
26// XD attr Energie_cinetique_turbulente Energie_cinetique_turbulente Energie_cinetique_turbulente OPT Turbulent kinetic
27// XD_CONT Energy conservation equation for a turbulent mono-phase problem (available in TrioCFD).
28// XD attr Echelle_temporelle_turbulente Echelle_temporelle_turbulente Echelle_temporelle_turbulente OPT Turbulent
29// XD_CONT Dissipation time scale equation for a turbulent mono-phase problem (available in TrioCFD).
30// XD attr Taux_dissipation_turbulent Taux_dissipation_turbulent Taux_dissipation_turbulent OPT Turbulent Dissipation
31// XD_CONT frequency equation for a turbulent mono-phase problem (available in TrioCFD).
32
35
36/*! @brief Returns the hydraulic equation of type Navier_Stokes_std if i=0, exits otherwise.
37 *
38 * (const version)
39 *
40 * @param i the index of the equation to return
41 * @return the hydraulic equation of type Navier_Stokes_std
42 */
44{
45 if (i == 0) return eq_hydraulique;
46 else if (i < 1 + eq_opt_.size() && i > 0) return eq_opt_[i - 1].valeur();
47 else
48 {
49 Cerr << "Pb_Hydraulique::equation() : Wrong equation number" << i << "!" << finl;
51 }
52 return eq_hydraulique;
53}
54
55/*! @brief Returns the hydraulic equation of type Navier_Stokes_std if i=0, exits otherwise.
56 *
57 * @param i the index of the equation to return
58 * @return the hydraulic equation of type Navier_Stokes_std
59 */
61{
62 if (i == 0) return eq_hydraulique;
63 else if (i < 1 + eq_opt_.size() && i > 0) return eq_opt_[i - 1].valeur();
64 else
65 {
66 Cerr << "Pb_Hydraulique::equation() : Wrong equation number" << i << "!" << finl;
68 }
69 return eq_hydraulique;
70}
71
72
73
74/*! @brief Associates the medium to the problem.
75 *
76 * The medium must be of type incompressible fluid.
77 *
78 * @param mil the physical medium to associate with the problem
79 * @throws the medium is not of type Fluide_base
80 */
82{
83 if (sub_type(Fluide_base,mil) && ref_cast(Fluide_base, mil).is_incompressible())
84 eq_hydraulique.associer_milieu_base(mil);
85 else if (sub_type(Fluide_Ostwald,mil))
86 {
87 Cerr << "Non-Newtonian fluid detected" << finl;
88 eq_hydraulique.associer_milieu_base(mil);
89 }
90 else
91 {
92 Cerr << "A medium of type " << mil.que_suis_je() << " cannot be associated with "
93 << finl;
94 Cerr << "a problem of type Pb_Hydraulique " << finl;
95 exit();
96 }
97}
98
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....
class Fluide_Ostwald
Base class for an incompressible fluid and its properties:
Definition Fluide_base.h:36
Milieu_base This class is the base of the (physical) medium hierarchy.
Definition Milieu_base.h:50
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
Pb_Fluide_base This class provides a base class for.
Pb_Hydraulique This class represents a standard hydraulic problem in which.
void associer_milieu_base(const Milieu_base &) override
Associates the medium to the problem.
const Equation_base & equation(int) const override
Returns the hydraulic equation of type Navier_Stokes_std if i=0, exits otherwise.
Navier_Stokes_std eq_hydraulique
static void exit(int exit_code=-1)
Exit routine for TRUST within a Kokkos region.
Definition Process.cpp:466
Base class for output streams.
Definition Sortie.h:52