TrioCFD 1.9.9_beta
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PolyMAC_CDO_discretisation.h
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15
16#ifndef PolyMAC_CDO_discretisation_included
17#define PolyMAC_CDO_discretisation_included
18
19/*! @brief class PolyMAC_CDO_discretisation (base scheme) Class that manages the PolyMAC_CDO discretization of the problem.
20 *
21 * This is where:
22 * * the physical properties of the fluid are discretized, notably those of the Ostwald fluid (K, N, Mu, ...)
23 * * the Ostwald field and the hydraulic equation, the fluid and the domaine_dis_base are associated
24 * ** ( new procedures:
25 * void proprietes_physiques_fluide_Ostwald(Domaine_dis_base& ,Fluide_Ostwald& ,
26 * const Navier_Stokes_std& , const Champ_Inc_base& ) const;
27 * requires the Fluide_Ostwald class to access the studied fluid
28 * and Navier_Stokes_Std to access the hydraulic equation
29 *
30 * @sa Discret_Thyd_Turb
31 */
32
33#include <Discret_Thyd.h>
34
37class Fluide_Ostwald;
38
40{
41 Declare_instanciable(PolyMAC_CDO_discretisation);
42
43public:
44 void discretiser_champ(const Motcle& directive, const Domaine_dis_base& z, Nature_du_champ nature, const Noms& nom, const Noms& unite, int nb_comp, int nb_pas_dt, double temps, OWN_PTR(Champ_Inc_base)& champ,
45 const Nom& sous_type = NOM_VIDE) const override;
46 void discretiser_champ(const Motcle& directive, const Domaine_dis_base& z, Nature_du_champ nature, const Noms& nom, const Noms& unite, int nb_comp, double temps, OWN_PTR(Champ_Fonc_base)& champ) const override;
47 void discretiser_champ(const Motcle& directive, const Domaine_dis_base& z, Nature_du_champ nature, const Noms& nom, const Noms& unite, int nb_comp, double temps, OWN_PTR(Champ_Don_base)& champ) const override;
48 Nom domaine_cl_dis_type() const override { return "Domaine_Cl_PolyMAC_family"; }
49
51 void distance_paroi_globale(const Schema_Temps_base&, Domaine_dis_base&, OWN_PTR(Champ_Fonc_base)&) const override;
52
53 void grad_u(const Domaine_dis_base& z, const Domaine_Cl_dis_base& zcl, const Champ_Inc_base& ch_vitesse, OWN_PTR(Champ_Fonc_base)& ch) const override;
55
56 Nom get_name_of_type_for(const Nom& class_operateur, const Nom& type_operateur, const Equation_base& eqn, const OBS_PTR(Champ_base) &champ_sup) const override;
57
58 bool is_PolyMAC_CDO() const override { return true; }
59 bool is_poly_family() const override { return true; }
60
61private:
62 virtual void discretiser_champ_fonc_don(const Motcle& directive, const Domaine_dis_base& z, Nature_du_champ nature, const Noms& nom, const Noms& unite, int nb_comp, double temps, Objet_U& champ) const;
63 void modifier_champ_tabule(const Domaine_dis_base& domaine_vdf, Champ_Fonc_Tabule& lambda_tab, const VECT(OBS_PTR(Champ_base)) &ch_temper) const override;
64};
65
66#endif /* PolyMAC_CDO_discretisation_included */
class Champ_Don_base base class of Given Fields (not calculated)
Class Champ_Fonc_Tabule Derived class of Champ_Fonc_base representing.
class Champ_Fonc_base Base class of fields that are functions of a calculated quantity
Class Champ_Inc_base.
class Champ_base This class is the base of the fields hierarchy.
Definition Champ_base.h:43
class Discret_Thyd This class is the base class representing a discretization
OBS_PTR(Domaine) le_domaine_
static const Nom NOM_VIDE
class Domaine_Cl_dis_base Domaine_Cl_dis_base objects represent discretized boundary conditions
class Domaine_dis_base This class is the base of the hierarchy of discretized domains.
class Equation_base The role of an equation is the calculation of one or more fields....
Represents an incompressible fluid and its properties:
class Fluide_Ostwald
A character string (Nom) in uppercase.
Definition Motcle.h:26
Navier_Stokes_std This class carries the terms of the momentum equation.
class Nom: a character string for naming TRUST objects.
Definition Nom.h:31
An array of character strings (VECT(Nom)).
Definition Noms.h:26
Base class for TRUST objects (Objet_U).
Definition Objet_U.h:68
void distance_paroi_globale(const Schema_Temps_base &, Domaine_dis_base &, OWN_PTR(Champ_Fonc_base)&) const override
type_calcul_du_residu codage_du_calcul_du_residu() const override
void distance_paroi(const Schema_Temps_base &, Domaine_dis_base &, OWN_PTR(Champ_Fonc_base)&) const
void grad_u(const Domaine_dis_base &z, const Domaine_Cl_dis_base &zcl, const Champ_Inc_base &ch_vitesse, OWN_PTR(Champ_Fonc_base)&ch) const override
Discretizes the incompressible fluid in PolyMAC_CDO, i.e., K and N.
Nom get_name_of_type_for(const Nom &class_operateur, const Nom &type_operateur, const Equation_base &eqn, const OBS_PTR(Champ_base) &champ_sup) const override
void discretiser_champ(const Motcle &directive, const Domaine_dis_base &z, Nature_du_champ nature, const Noms &nom, const Noms &unite, int nb_comp, int nb_pas_dt, double temps, OWN_PTR(Champ_Inc_base)&champ, const Nom &sous_type=NOM_VIDE) const override
Discretizes a field for PolyMAC_CDO based on a discretization directive.
class Schema_Temps_base