TRUST 1.9.8
HPC thermohydraulic platform
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Fluide_reel_base Class Referenceabstract

Classe Fluide_reel_base Cette classe represente un fluide reel ainsi que. More...

#include <Fluide_reel_base.h>

Inheritance diagram for Fluide_reel_base:
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Collaboration diagram for Fluide_reel_base:
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Classes

struct  H_to_T
struct  T_to_H

Public Member Functions

 Fluide_reel_base ()
bool initTimeStep (double dt) override
int initialiser (const double temps) override
 Initialise les parametres du fluide.
int check_unknown_range () const override
int is_incompressible () const override
void abortTimeStep () override
void mettre_a_jour (double temps) override
 Effectue une mise a jour en temps du milieu, et donc de ses parametres caracteristiques.
void preparer_calcul () override
void set_param (Param &param) const override
void discretiser (const Probleme_base &pb, const Discretisation_base &dis) override
void creer_champs_non_lus () override
virtual std::map< std::string, std::array< double, 2 > > unknown_range () const
virtual std::map< std::string, std::array< double, 2 > > unknown_range_h () const
virtual double calculer_vitesse_son (const double &rho, const double &p) const
virtual double calculer_pression (const double &rho, const double &rhou, const double &rhoE) const
virtual double init_energie_tot (const double &rho, const double &norm_U, const double &u) const
void _rho_h_ (const double h, const double P, SpanD res) const
void _dP_rho_h_ (const double h, const double P, SpanD res) const
void _dh_rho_h_ (const double h, const double P, SpanD res) const
void _T_ (const double h, const double P, SpanD res) const
void _dP_T_ (const double h, const double P, SpanD res) const
void _dh_T_ (const double h, const double P, SpanD res) const
void _cp_h_ (const double h, const double P, SpanD res) const
void _beta_h_ (const double h, const double P, SpanD res) const
void _mu_h_ (const double h, const double P, SpanD res) const
void _lambda_h_ (const double h, const double P, SpanD res) const
void _compute_CPMLB_pb_multiphase_h_ (MLoiSpanD_h) const
void _compute_all_pb_multiphase_h_ (MLoiSpanD_h, MLoiSpanD_h) const
Public Member Functions inherited from Fluide_base
void verifier_coherence_champs (int &err, Nom &message) override
 Verifie que les champs lus l'ont ete correctement.
virtual void set_h0_T0 (double h0, double T0)
const Champ_baseenergie_interne () const
Champ_baseenergie_interne ()
const Champ_baseenthalpie () const
Champ_baseenthalpie ()
const Champ_basetemperature_multiphase () const
Champ_basetemperature_multiphase ()
const Champ_Don_baseviscosite_cinematique () const
Champ_Don_baseviscosite_cinematique ()
const Champ_Don_baseviscosite_dynamique () const
Champ_Don_baseviscosite_dynamique ()
bool has_viscosite_dynamique () const
const Champ_Don_basebeta_c () const
Champ_Don_basebeta_c ()
bool has_beta_c () const
Champ_Don_basekappa ()
const Champ_Don_basekappa () const
bool has_kappa () const
Champ_Don_baseindice ()
const Champ_Don_baseindice () const
Champ_Don_baselongueur_rayo ()
const Champ_Don_baselongueur_rayo () const
void typer_longeur_rayo (const Nom &typ)
bool is_rayo_semi_transp () const override
bool is_rayo_transp () const override
void set_rayo_transp_flag ()
bool is_longueur_rayo_discretised () const
Public Member Functions inherited from Milieu_base
int lire_motcle_non_standard (const Motcle &, Entree &) override
 Lecture des parametres de type non simple d'un objet_U a partir d'un flot d'entree.
int associer_ (Objet_U &) override
 Associe la gravite en controlant dynamiquement le type de l'objet a associer.
void nommer (const Nom &) override
 Donne un nom a l'Objet_U Methode virtuelle a surcharger.
const Nomle_nom () const override
 Donne le nom de l'Objet_U Methode a surcharger : renvoie "neant" dans cette implementation.
DoubleVect & porosite_elem ()
const DoubleVect & porosite_elem () const
double porosite_elem (const int i) const
bool has_porosites () const
DoubleVect & porosite_face ()
const DoubleVect & porosite_face () const
const Champ_Don_baseget_porosites_champ () const
double porosite_face (const int i) const
const DoubleVect & section_passage_face () const
double section_passage_face (int i) const
DoubleTab & diametre_hydraulique_elem ()
const DoubleTab & diametre_hydraulique_elem () const
DoubleVect & diametre_hydraulique_face ()
const DoubleVect & diametre_hydraulique_face () const
double diametre_hydraulique_face (int i) const
virtual int est_deja_associe ()
 Renvoie 0 si le milieu est deja associe a un probleme, 1 sinon.
virtual void resetTime (double time)
virtual void associer_gravite (const Champ_Don_base &)
 Associe (affecte) un champ de gravite au milieu.
virtual const Champ_basemasse_volumique () const
 Renvoie la masse volumique du milieu.
virtual Champ_basemasse_volumique ()
 Renvoie la masse volumique du milieu.
bool has_masse_volumique () const
virtual const Champ_Don_basediffusivite () const
 Renvoie la diffusivite du milieu.
virtual Champ_Don_basediffusivite ()
 Renvoie la diffusivite du milieu.
bool has_diffusivite () const
virtual const Champ_Don_basediffusivite_fois_rho () const
virtual Champ_Don_basediffusivite_fois_rho ()
virtual const Champ_Don_baseconductivite () const
 Renvoie la conductivite du milieu.
virtual Champ_Don_baseconductivite ()
 Renvoie la conductivite du milieu.
bool has_conductivite () const
virtual const Champ_Don_basecapacite_calorifique () const
 Renvoie la capacite calorifique du milieu.
virtual Champ_Don_basecapacite_calorifique ()
 Renvoie la capacite calorifique du milieu.
bool has_capacite_calorifique () const
virtual const Champ_Don_basebeta_t () const
 Renvoie beta_t du milieu.
virtual Champ_Don_basebeta_t ()
 Renvoie beta_t du milieu.
bool has_beta_t () const
virtual const Champ_Don_basegravite () const
 Renvoie la gravite du milieu si elle a ete associe provoque une erreur sinon.
virtual Champ_Don_basegravite ()
 Renvoie la gravite du milieu si elle a ete associe provoque une erreur sinon.
virtual int a_gravite () const
 Renvoie 1 si la gravite a ete initialisee.
virtual void update_rho_cp (double temps)
virtual void associer_equation (const Equation_base *eqn) const
virtual const Equation_baseequation (const std::string &nom_inc) const
void creer_champ (const Motcle &motlu) override
const Champ_baseget_champ (const Motcle &nom) const override
void get_noms_champs_postraitables (Noms &nom, Option opt=NONE) const override
bool has_champ (const Motcle &nom, OBS_PTR(Champ_base) &ref_champ) const override
bool has_champ (const Motcle &nom) const override
const bool & has_hydr_diam ()
void set_id_composite (const int i)
const LIST (OBS_PTR(Champ_Don_base)) &champs_don() const
virtual bool is_dilatable () const
Public Member Functions inherited from Champs_compris_interface
virtual ~Champs_compris_interface ()
virtual bool has_champ (const Motcle &nom, OBS_PTR(Champ_base)&ref_champ) const =0
Public Member Functions inherited from Objet_U
 ~Objet_U () override
 Destructeur, supprime l'objet de la liste d'objets enregistres dans "memoire".
int numero () const
 Renvoie l'indice de l'objet dans Memoire::data.
virtual int duplique () const =0
virtual SortieprintOn (Sortie &) const
 Ecriture de l'objet sur un flot de sortie Methode a surcharger.
virtual EntreereadOn (Entree &)
 Lecture d'un Objet_U sur un flot d'entree Methode a surcharger.
virtual unsigned taille_memoire () const =0
virtual int est_egal_a (const Objet_U &) const
 Renvoie 1 si l'objet x et *this sont une seule et meme instance (meme adresse en memoire).
virtual int reprendre (Entree &)
 Reprise d'un Objet_U sur un flot d'entree Methode a surcharger.
virtual int sauvegarder (Sortie &) const
 Sauvegarde d'un Objet_U sur un flot de sortie Methode a surcharger.
int get_object_id () const
 Renvoie l'identifiant unique de l'objet object_id_.
virtual const Type_infoget_info () const
 Donne des informations sur le type de l'Objet_U.
const Nomque_suis_je () const
 renvoie la chaine identifiant la classe.
const char * le_type () const
 Donne le nom du type de l'Objet_U.
virtual int change_num (const int *const)
 Change le numero interne de l'Objet_U.
const Interpreteinterprete () const
Interpreteinterprete ()
Public Member Functions inherited from Process
virtual ~Process ()

Public Attributes

H_to_T converter_H_to_T_
T_to_H converter_T_to_H_
Public Attributes inherited from Milieu_base
int id_composite_ = -1

Protected Member Functions

void calculate_fluid_properties_incompressible ()
void calculate_fluid_properties ()
void calculate_fluid_properties_enthalpie_incompressible ()
void calculate_fluid_properties_enthalpie ()
virtual void rho_ (const SpanD T, const SpanD P, SpanD R, int ncomp=1, int id=0) const =0
virtual void dP_rho_ (const SpanD T, const SpanD P, SpanD dP_R, int ncomp=1, int id=0) const =0
virtual void dT_rho_ (const SpanD T, const SpanD P, SpanD dT_R, int ncomp=1, int id=0) const =0
virtual void h_ (const SpanD T, const SpanD P, SpanD H, int ncomp=1, int id=0) const =0
virtual void dP_h_ (const SpanD T, const SpanD P, SpanD dP_H, int ncomp=1, int id=0) const =0
virtual void dT_h_ (const SpanD T, const SpanD P, SpanD dT_H, int ncomp=1, int id=0) const =0
virtual void cp_ (const SpanD T, const SpanD P, SpanD CP, int ncomp=1, int id=0) const =0
virtual void beta_ (const SpanD T, const SpanD P, SpanD B, int ncomp=1, int id=0) const =0
virtual void mu_ (const SpanD T, const SpanD P, SpanD M, int ncomp=1, int id=0) const =0
virtual void lambda_ (const SpanD T, const SpanD P, SpanD L, int ncomp=1, int id=0) const =0
virtual void compute_CPMLB_pb_multiphase_ (const MSpanD, MLoiSpanD, int ncomp=1, int id=0) const
virtual void compute_all_pb_multiphase_ (const MSpanD, MLoiSpanD, MLoiSpanD, int ncomp=1, int id=0) const
double _rho_ (const double T, const double P) const
double _dP_rho_ (const double T, const double P) const
double _dT_rho_ (const double T, const double P) const
double _h_ (const double T, const double P) const
double _dP_h_ (const double T, const double P) const
double _dT_h_ (const double T, const double P) const
double _cp_ (const double T, const double P) const
double _beta_ (const double T, const double P) const
double _mu_ (const double T, const double P) const
double _lambda_ (const double T, const double P) const
virtual void rho_h_ (const SpanD h, const SpanD P, SpanD R, int ncomp=1, int id=0) const =0
virtual void dP_rho_h_ (const SpanD h, const SpanD P, SpanD dP_R, int ncomp=1, int id=0) const =0
virtual void dh_rho_h_ (const SpanD h, const SpanD P, SpanD dT_R, int ncomp=1, int id=0) const =0
virtual void T_ (const SpanD h, const SpanD P, SpanD H, int ncomp=1, int id=0) const =0
virtual void dP_T_ (const SpanD h, const SpanD P, SpanD dP_H, int ncomp=1, int id=0) const =0
virtual void dh_T_ (const SpanD h, const SpanD P, SpanD dT_H, int ncomp=1, int id=0) const =0
virtual void cp_h_ (const SpanD h, const SpanD P, SpanD CP, int ncomp=1, int id=0) const =0
virtual void beta_h_ (const SpanD h, const SpanD P, SpanD B, int ncomp=1, int id=0) const =0
virtual void mu_h_ (const SpanD h, const SpanD P, SpanD M, int ncomp=1, int id=0) const =0
virtual void lambda_h_ (const SpanD h, const SpanD P, SpanD L, int ncomp=1, int id=0) const =0
virtual void compute_CPMLB_pb_multiphase_h_ (const MSpanD, MLoiSpanD_h, int ncomp=1, int id=0) const
virtual void compute_all_pb_multiphase_h_ (const MSpanD, MLoiSpanD_h, MLoiSpanD_h, int ncomp=1, int id=0) const
double _rho_h_ (const double h, const double P) const
double _dP_rho_h_ (const double h, const double P) const
double _dh_rho_h_ (const double h, const double P) const
double _T_ (const double h, const double P) const
double _dP_T_ (const double h, const double P) const
double _dh_T_ (const double h, const double P) const
double _cp_h_ (const double h, const double P) const
double _beta_h_ (const double h, const double P) const
double _mu_h_ (const double h, const double P) const
double _lambda_h_ (const double h, const double P) const
Protected Member Functions inherited from Fluide_base
void creer_e_int () const
void creer_temperature_multiphase () const
void calculer_temperature_multiphase () const
 OWN_PTR (Champ_base) ch_e_int_
 OWN_PTR (Champ_Don_base) ch_mu_
 OWN_PTR (Champ_Don_base) coeff_absorption_
 OWN_PTR (Champ_Don_base) longueur_rayo_
void creer_nu ()
 Si l'objet reference par nu et du type Champ_Uniforme type nu en "Champ_Uniforme" et le remplit.
virtual void calculer_nu ()
Protected Member Functions inherited from Milieu_base
 OBS_PTR (Domaine_dis_base) zdb_
 OWN_PTR (Champ_base) ch_rho_
 OWN_PTR (Champ_Don_base) ch_g_
 OWN_PTR (Champ_Fonc_base) ch_rho_Cp_elem_
 LIST (OBS_PTR(Champ_Don_base)) champs_don_
virtual void calculer_alpha ()
 Calcul de alpha=lambda/(rho*Cp).
void ecrire (Sortie &) const
 Ecrit un objet milieu sur un flot de sortie.
void creer_alpha ()
void discretiser_porosite (const Probleme_base &pb, const Discretisation_base &dis)
void discretiser_diametre_hydro (const Probleme_base &pb, const Discretisation_base &dis)
virtual void set_additional_params (Param &param) const
virtual void calculate_face_porosity ()
virtual void calculate_face_hydr_diam ()
void mettre_a_jour_porosite (double temps)
void fill_section_passage_face ()
int initialiser_porosite (const double temps)
void check_gravity_vector () const
Protected Member Functions inherited from Objet_U
 Objet_U ()
 Constructeur par defaut : attribue un numero d'identifiant unique a l'objet (object_id_), et enregistre l'objet en "memoire".
 Objet_U (const Objet_U &)
 Constructeur par copie.
const Objet_Uoperator= (const Objet_U &)
 Operateur= : ne fait rien (on conserve le numero et l'identifiant).

Protected Attributes

double T_ref_ = -1.
double P_ref_ = -1.
double h_ref_ = -1.
double t_init_ = -1.
int first_maj_ = 1
bool res_en_T_ = true
Protected Attributes inherited from Fluide_base
int e_int_auto_ = 0
 ch_h_ou_T_
 ch_nu_
 ch_beta_co_
double h0_ = 0
double T0_ = 0
bool is_rad_transp_med_ = false
 indice_refraction_
Protected Attributes inherited from Milieu_base
 ch_alpha_
 ch_lambda_
 ch_alpha_fois_rho_
 ch_Cp_
 ch_beta_th_
 ch_porosites_
 ch_diametre_hyd_
 ch_rho_Cp_comme_T_
Champs_compris champs_compris_
DoubleVect porosite_face_
DoubleVect section_passage_face_
DoubleVect diametre_hydraulique_face_
Nom nom_
std::map< std::string, const Equation_base * > equation_

Additional Inherited Members

Static Public Member Functions inherited from Objet_U
static const Nomnom_du_cas ()
 Renvoie une reference constante vers le nom du cas.
static Nomget_set_nom_du_cas ()
 Renvoie une reference non constante vers le nom du cas (pour pouvoir le modifier).
static const Type_infoinfo ()
 Donne des informations sur le type de l'Objet_U.
static const Objet_Uself_cast (const Objet_U &)
 methode ajoutee pour caster en python
static Objet_Uself_cast (Objet_U &)
Static Public Member Functions inherited from Process
static int me ()
 renvoie mon rang dans le groupe de communication courant.
static int nproc ()
 renvoie le nombre de processeurs dans le groupe courant Voir Comm_Group::nproc() et PE_Groups::current_group()
static bool is_parallel ()
static void exit (int exit_code=-1)
 Routine de sortie de TRUST dans une region Kokkos.
static double mp_sum (double)
 Calcule la somme de x sur tous les processeurs du groupe courant.
static float mp_sum (float)
static trustIdType mp_sum (trustIdType)
 Calcule la somme de x sur tous les processeurs du groupe courant.
static double mp_max (double)
static double mp_min (double)
static int mp_max (int)
 renvoie le plus grand int i sur l'ensemble des processeurs du groupe courant.
static int mp_min (int)
 renvoie le plus petit int i sur l'ensemble des processeurs du groupe courant.
static double mp_sum_as_double (int v)
static trustIdType mppartial_sum (trustIdType i)
 Calul de la somme partielle de i sur les processeurs 0 a me()-1 (renvoie 0 sur le processeur 0).
template<typename T>
static void mp_sum_for_each (T &arg1, T &arg2)
 C++14 compatible mp_sum_for_each: combine multiple mp_sum calls into one collective operation Usage: mp_sum_for_each(a, b); mp_sum_for_each(a, b, c); mp_sum_for_each(a, b, c, d); mp_sum_for_each(a, b, c, d, e); All arguments must be of the same type (double or int) and are modified in place. Supports 2-5 parameters.
template<typename T>
static void mp_sum_for_each (T &arg1, T &arg2, T &arg3)
template<typename T>
static void mp_sum_for_each (T &arg1, T &arg2, T &arg3, T &arg4)
template<typename T>
static void mp_sum_for_each (T &arg1, T &arg2, T &arg3, T &arg4, T &arg5)
template<typename T>
static void mp_max_for_each (T &arg1, T &arg2)
 C++14 compatible mp_max_for_each: combine multiple mp_max calls into one collective operation.
template<typename T>
static void mp_max_for_each (T &arg1, T &arg2, T &arg3)
template<typename T>
static void mp_max_for_each (T &arg1, T &arg2, T &arg3, T &arg4)
template<typename T>
static void mp_max_for_each (T &arg1, T &arg2, T &arg3, T &arg4, T &arg5)
template<typename T>
static void mp_min_for_each (T &arg1, T &arg2)
 C++14 compatible mp_min_for_each: combine multiple mp_min calls into one collective operation.
template<typename T>
static void mp_min_for_each (T &arg1, T &arg2, T &arg3)
template<typename T>
static void mp_min_for_each (T &arg1, T &arg2, T &arg3, T &arg4)
template<typename T>
static void mp_min_for_each (T &arg1, T &arg2, T &arg3, T &arg4, T &arg5)
template<typename _TYPE_>
static void mp_sum_for_each_item (TRUSTArray< _TYPE_ > &x, int n=-1)
template<typename _TYPE_>
static void mp_max_for_each_item (TRUSTArray< _TYPE_ > &x, int n=-1)
template<typename _TYPE_>
static void mp_min_for_each_item (TRUSTArray< _TYPE_ > &x, int n=-1)
static bool mp_and (bool)
 Calcule le 'et' logique de b sur tous les processeurs du groupe courant.
static bool mp_or (bool)
static int check_int_overflow (trustIdType)
static int je_suis_maitre ()
 renvoie 1 si on est sur le processeur maitre du groupe courant (c'est a dire me() == 0), 0 sinon.
static KOKKOS_INLINE_FUNCTION void Kokkos_exit (const char *)
 Routine de sortie de TRUST dans une region Kokkos.
static int node_master ()
 renvoie 1 si on est sur le processeur maitre du noeud numa, 0 sinon.
static void exit (const Nom &message, int exit_code=-1)
static bool is_sequential ()
static void barrier ()
 Synchronise tous les processeurs du groupe courant (attend que tous les processeurs soient arrives a la barriere).
static void abort ()
 Routine de sortie de Trio-U sur une erreur abort().
static SortieJournal (int message_level=0)
 Renvoie un objet statique de type Sortie qui sert de journal d'evenements.
static double ram_processeur ()
static void imprimer_ram_totale (int all_process=0)
static bool force_single_file (const int ranks, const Nom &filename)
Static Public Attributes inherited from Objet_U
static double precision_geom = 1e-10
static constexpr bool HAS_POINTER = false
static int dimension =0
static int format_precision_geom =11
static int axi =0
static int bidim_axi =0
static int DEACTIVATE_SIGINT_CATCH =0
static Type_info info_obj
static bool disable_TU =false
 Flag to disable or not the writing of the .TU files.
static bool stat_per_proc_perf_log =false
 Flag to enable the writing of the statistics detailed per processor in _csv.TU file.
Static Public Attributes inherited from Process
static int exception_sur_exit =0
static int multiple_files =5120
Static Protected Member Functions inherited from Fluide_base
static void calculer_e_int (const Objet_U &obj, DoubleTab &val, DoubleTab &bval, tabs_t &deriv)

Detailed Description

Classe Fluide_reel_base Cette classe represente un fluide reel ainsi que.

ses proprietes:

  • viscosite cinematique, (mu)
  • viscosite dynamique, (nu)
  • masse volumique, (rho)
  • diffusivite, (alpha)
  • conductivite, (lambda)
  • capacite calorifique, (Cp)
  • dilatabilite thermique du constituant (beta_co)
See also
Milieu_base

Definition at line 51 of file Fluide_reel_base.h.

Constructor & Destructor Documentation

◆ Fluide_reel_base()

Fluide_reel_base::Fluide_reel_base ( )
inline

Definition at line 55 of file Fluide_reel_base.h.

Member Function Documentation

◆ _beta_()

double Fluide_reel_base::_beta_ ( const double T,
const double P ) const
inlineprotected

Definition at line 141 of file Fluide_reel_base.h.

◆ _beta_h_() [1/2]

double Fluide_reel_base::_beta_h_ ( const double h,
const double P ) const
inlineprotected

Definition at line 176 of file Fluide_reel_base.h.

◆ _beta_h_() [2/2]

void Fluide_reel_base::_beta_h_ ( const double h,
const double P,
SpanD res ) const
inline

Definition at line 284 of file Fluide_reel_base.h.

◆ _compute_all_pb_multiphase_h_()

void Fluide_reel_base::_compute_all_pb_multiphase_h_ ( MLoiSpanD_h inter,
MLoiSpanD_h bord ) const

Definition at line 558 of file Fluide_reel_base.cpp.

◆ _compute_CPMLB_pb_multiphase_h_()

void Fluide_reel_base::_compute_CPMLB_pb_multiphase_h_ ( MLoiSpanD_h prop) const

Definition at line 548 of file Fluide_reel_base.cpp.

◆ _cp_()

double Fluide_reel_base::_cp_ ( const double T,
const double P ) const
inlineprotected

Definition at line 140 of file Fluide_reel_base.h.

◆ _cp_h_() [1/2]

double Fluide_reel_base::_cp_h_ ( const double h,
const double P ) const
inlineprotected

Definition at line 175 of file Fluide_reel_base.h.

◆ _cp_h_() [2/2]

void Fluide_reel_base::_cp_h_ ( const double h,
const double P,
SpanD res ) const
inline

Definition at line 283 of file Fluide_reel_base.h.

◆ _dh_rho_h_() [1/2]

double Fluide_reel_base::_dh_rho_h_ ( const double h,
const double P ) const
inlineprotected

Definition at line 169 of file Fluide_reel_base.h.

◆ _dh_rho_h_() [2/2]

void Fluide_reel_base::_dh_rho_h_ ( const double h,
const double P,
SpanD res ) const
inline

Definition at line 277 of file Fluide_reel_base.h.

◆ _dh_T_() [1/2]

double Fluide_reel_base::_dh_T_ ( const double h,
const double P ) const
inlineprotected

Definition at line 173 of file Fluide_reel_base.h.

◆ _dh_T_() [2/2]

void Fluide_reel_base::_dh_T_ ( const double h,
const double P,
SpanD res ) const
inline

Definition at line 281 of file Fluide_reel_base.h.

◆ _dP_h_()

double Fluide_reel_base::_dP_h_ ( const double T,
const double P ) const
inlineprotected

Definition at line 137 of file Fluide_reel_base.h.

◆ _dP_rho_()

double Fluide_reel_base::_dP_rho_ ( const double T,
const double P ) const
inlineprotected

Definition at line 133 of file Fluide_reel_base.h.

◆ _dP_rho_h_() [1/2]

double Fluide_reel_base::_dP_rho_h_ ( const double h,
const double P ) const
inlineprotected

Definition at line 168 of file Fluide_reel_base.h.

◆ _dP_rho_h_() [2/2]

void Fluide_reel_base::_dP_rho_h_ ( const double h,
const double P,
SpanD res ) const
inline

Definition at line 276 of file Fluide_reel_base.h.

◆ _dP_T_() [1/2]

double Fluide_reel_base::_dP_T_ ( const double h,
const double P ) const
inlineprotected

Definition at line 172 of file Fluide_reel_base.h.

◆ _dP_T_() [2/2]

void Fluide_reel_base::_dP_T_ ( const double h,
const double P,
SpanD res ) const
inline

Definition at line 280 of file Fluide_reel_base.h.

◆ _dT_h_()

double Fluide_reel_base::_dT_h_ ( const double T,
const double P ) const
inlineprotected

Definition at line 138 of file Fluide_reel_base.h.

◆ _dT_rho_()

double Fluide_reel_base::_dT_rho_ ( const double T,
const double P ) const
inlineprotected

Definition at line 134 of file Fluide_reel_base.h.

◆ _h_()

double Fluide_reel_base::_h_ ( const double T,
const double P ) const
inlineprotected

Definition at line 136 of file Fluide_reel_base.h.

◆ _lambda_()

double Fluide_reel_base::_lambda_ ( const double T,
const double P ) const
inlineprotected

Definition at line 143 of file Fluide_reel_base.h.

◆ _lambda_h_() [1/2]

double Fluide_reel_base::_lambda_h_ ( const double h,
const double P ) const
inlineprotected

Definition at line 178 of file Fluide_reel_base.h.

◆ _lambda_h_() [2/2]

void Fluide_reel_base::_lambda_h_ ( const double h,
const double P,
SpanD res ) const
inline

Definition at line 286 of file Fluide_reel_base.h.

◆ _mu_()

double Fluide_reel_base::_mu_ ( const double T,
const double P ) const
inlineprotected

Definition at line 142 of file Fluide_reel_base.h.

◆ _mu_h_() [1/2]

double Fluide_reel_base::_mu_h_ ( const double h,
const double P ) const
inlineprotected

Definition at line 177 of file Fluide_reel_base.h.

◆ _mu_h_() [2/2]

void Fluide_reel_base::_mu_h_ ( const double h,
const double P,
SpanD res ) const
inline

Definition at line 285 of file Fluide_reel_base.h.

◆ _rho_()

double Fluide_reel_base::_rho_ ( const double T,
const double P ) const
inlineprotected

Definition at line 132 of file Fluide_reel_base.h.

◆ _rho_h_() [1/2]

double Fluide_reel_base::_rho_h_ ( const double h,
const double P ) const
inlineprotected

Definition at line 167 of file Fluide_reel_base.h.

◆ _rho_h_() [2/2]

void Fluide_reel_base::_rho_h_ ( const double h,
const double P,
SpanD res ) const
inline

Definition at line 275 of file Fluide_reel_base.h.

◆ _T_() [1/2]

double Fluide_reel_base::_T_ ( const double h,
const double P ) const
inlineprotected

Definition at line 171 of file Fluide_reel_base.h.

◆ _T_() [2/2]

void Fluide_reel_base::_T_ ( const double h,
const double P,
SpanD res ) const
inline

Definition at line 279 of file Fluide_reel_base.h.

◆ abortTimeStep()

void Fluide_reel_base::abortTimeStep ( )
overridevirtual

Reimplemented from Milieu_base.

Definition at line 288 of file Fluide_reel_base.cpp.

◆ beta_()

virtual void Fluide_reel_base::beta_ ( const SpanD T,
const SpanD P,
SpanD B,
int ncomp = 1,
int id = 0 ) const
protectedpure virtual

◆ beta_h_()

virtual void Fluide_reel_base::beta_h_ ( const SpanD h,
const SpanD P,
SpanD B,
int ncomp = 1,
int id = 0 ) const
protectedpure virtual

◆ calculate_fluid_properties()

void Fluide_reel_base::calculate_fluid_properties ( )
protected

Definition at line 401 of file Fluide_reel_base.cpp.

◆ calculate_fluid_properties_enthalpie()

void Fluide_reel_base::calculate_fluid_properties_enthalpie ( )
protected

Definition at line 458 of file Fluide_reel_base.cpp.

◆ calculate_fluid_properties_enthalpie_incompressible()

void Fluide_reel_base::calculate_fluid_properties_enthalpie_incompressible ( )
protected

Definition at line 358 of file Fluide_reel_base.cpp.

◆ calculate_fluid_properties_incompressible()

void Fluide_reel_base::calculate_fluid_properties_incompressible ( )
protected

Definition at line 315 of file Fluide_reel_base.cpp.

◆ calculer_pression()

virtual double Fluide_reel_base::calculer_pression ( const double & rho,
const double & rhou,
const double & rhoE ) const
inlinevirtual

Reimplemented in Fluide_stiffened_gas.

Definition at line 82 of file Fluide_reel_base.h.

◆ calculer_vitesse_son()

virtual double Fluide_reel_base::calculer_vitesse_son ( const double & rho,
const double & p ) const
inlinevirtual

Reimplemented in Fluide_stiffened_gas.

Definition at line 77 of file Fluide_reel_base.h.

◆ check_unknown_range()

int Fluide_reel_base::check_unknown_range ( ) const
overridevirtual

Reimplemented from Milieu_base.

Definition at line 268 of file Fluide_reel_base.cpp.

◆ compute_all_pb_multiphase_()

void Fluide_reel_base::compute_all_pb_multiphase_ ( const MSpanD input,
MLoiSpanD inter,
MLoiSpanD bord,
int ncomp = 1,
int id = 0 ) const
protectedvirtual

Reimplemented in Fluide_generique_TPPI_base.

Definition at line 595 of file Fluide_reel_base.cpp.

◆ compute_all_pb_multiphase_h_()

void Fluide_reel_base::compute_all_pb_multiphase_h_ ( const MSpanD input,
MLoiSpanD_h inter,
MLoiSpanD_h bord,
int ncomp = 1,
int id = 0 ) const
protectedvirtual

Reimplemented in Fluide_generique_TPPI_base.

Definition at line 647 of file Fluide_reel_base.cpp.

◆ compute_CPMLB_pb_multiphase_()

void Fluide_reel_base::compute_CPMLB_pb_multiphase_ ( const MSpanD input,
MLoiSpanD prop,
int ncomp = 1,
int id = 0 ) const
protectedvirtual

Reimplemented in Fluide_generique_TPPI_base.

Definition at line 576 of file Fluide_reel_base.cpp.

◆ compute_CPMLB_pb_multiphase_h_()

void Fluide_reel_base::compute_CPMLB_pb_multiphase_h_ ( const MSpanD input,
MLoiSpanD_h prop,
int ncomp = 1,
int id = 0 ) const
protectedvirtual

Reimplemented in Fluide_generique_TPPI_base.

Definition at line 628 of file Fluide_reel_base.cpp.

◆ cp_()

virtual void Fluide_reel_base::cp_ ( const SpanD T,
const SpanD P,
SpanD CP,
int ncomp = 1,
int id = 0 ) const
protectedpure virtual

◆ cp_h_()

virtual void Fluide_reel_base::cp_h_ ( const SpanD h,
const SpanD P,
SpanD CP,
int ncomp = 1,
int id = 0 ) const
protectedpure virtual

◆ creer_champs_non_lus()

void Fluide_reel_base::creer_champs_non_lus ( )
inlineoverridevirtual

Reimplemented from Fluide_base.

Definition at line 70 of file Fluide_reel_base.h.

◆ dh_rho_h_()

virtual void Fluide_reel_base::dh_rho_h_ ( const SpanD h,
const SpanD P,
SpanD dT_R,
int ncomp = 1,
int id = 0 ) const
protectedpure virtual

◆ dh_T_()

virtual void Fluide_reel_base::dh_T_ ( const SpanD h,
const SpanD P,
SpanD dT_H,
int ncomp = 1,
int id = 0 ) const
protectedpure virtual

◆ discretiser()

void Fluide_reel_base::discretiser ( const Probleme_base & pb,
const Discretisation_base & dis )
overridevirtual

Reimplemented from Fluide_base.

Definition at line 52 of file Fluide_reel_base.cpp.

◆ dP_h_()

virtual void Fluide_reel_base::dP_h_ ( const SpanD T,
const SpanD P,
SpanD dP_H,
int ncomp = 1,
int id = 0 ) const
protectedpure virtual

◆ dP_rho_()

virtual void Fluide_reel_base::dP_rho_ ( const SpanD T,
const SpanD P,
SpanD dP_R,
int ncomp = 1,
int id = 0 ) const
protectedpure virtual

◆ dP_rho_h_()

virtual void Fluide_reel_base::dP_rho_h_ ( const SpanD h,
const SpanD P,
SpanD dP_R,
int ncomp = 1,
int id = 0 ) const
protectedpure virtual

◆ dP_T_()

virtual void Fluide_reel_base::dP_T_ ( const SpanD h,
const SpanD P,
SpanD dP_H,
int ncomp = 1,
int id = 0 ) const
protectedpure virtual

◆ dT_h_()

virtual void Fluide_reel_base::dT_h_ ( const SpanD T,
const SpanD P,
SpanD dT_H,
int ncomp = 1,
int id = 0 ) const
protectedpure virtual

◆ dT_rho_()

virtual void Fluide_reel_base::dT_rho_ ( const SpanD T,
const SpanD P,
SpanD dT_R,
int ncomp = 1,
int id = 0 ) const
protectedpure virtual

◆ h_()

virtual void Fluide_reel_base::h_ ( const SpanD T,
const SpanD P,
SpanD H,
int ncomp = 1,
int id = 0 ) const
protectedpure virtual

◆ init_energie_tot()

virtual double Fluide_reel_base::init_energie_tot ( const double & rho,
const double & norm_U,
const double & u ) const
inlinevirtual

Reimplemented in Fluide_stiffened_gas.

Definition at line 87 of file Fluide_reel_base.h.

◆ initialiser()

int Fluide_reel_base::initialiser ( const double temps)
overridevirtual

Initialise les parametres du fluide.

Reimplemented from Fluide_base.

Definition at line 117 of file Fluide_reel_base.cpp.

◆ initTimeStep()

bool Fluide_reel_base::initTimeStep ( double dt)
overridevirtual

Reimplemented from Fluide_base.

Definition at line 296 of file Fluide_reel_base.cpp.

◆ is_incompressible()

int Fluide_reel_base::is_incompressible ( ) const
inlineoverridevirtual

Reimplemented from Fluide_base.

Definition at line 64 of file Fluide_reel_base.h.

◆ lambda_()

virtual void Fluide_reel_base::lambda_ ( const SpanD T,
const SpanD P,
SpanD L,
int ncomp = 1,
int id = 0 ) const
protectedpure virtual

◆ lambda_h_()

virtual void Fluide_reel_base::lambda_h_ ( const SpanD h,
const SpanD P,
SpanD L,
int ncomp = 1,
int id = 0 ) const
protectedpure virtual

◆ mettre_a_jour()

void Fluide_reel_base::mettre_a_jour ( double temps)
overridevirtual

Effectue une mise a jour en temps du milieu, et donc de ses parametres caracteristiques.

Les champs uniformes sont recalcules pour le nouveau temps specifie, les autres sont mis a par un appel a CLASSE_DU_CHAMP::mettre_a_jour(double temps).

Parameters
(doubletemps) le temps de mise a jour

Reimplemented from Fluide_base.

Definition at line 178 of file Fluide_reel_base.cpp.

◆ mu_()

virtual void Fluide_reel_base::mu_ ( const SpanD T,
const SpanD P,
SpanD M,
int ncomp = 1,
int id = 0 ) const
protectedpure virtual

◆ mu_h_()

virtual void Fluide_reel_base::mu_h_ ( const SpanD h,
const SpanD P,
SpanD M,
int ncomp = 1,
int id = 0 ) const
protectedpure virtual

◆ preparer_calcul()

void Fluide_reel_base::preparer_calcul ( )
overridevirtual

Reimplemented from Milieu_base.

Definition at line 176 of file Fluide_reel_base.cpp.

◆ rho_()

virtual void Fluide_reel_base::rho_ ( const SpanD T,
const SpanD P,
SpanD R,
int ncomp = 1,
int id = 0 ) const
protectedpure virtual

◆ rho_h_()

virtual void Fluide_reel_base::rho_h_ ( const SpanD h,
const SpanD P,
SpanD R,
int ncomp = 1,
int id = 0 ) const
protectedpure virtual

◆ set_param()

void Fluide_reel_base::set_param ( Param & param) const
overridevirtual

Reimplemented from Fluide_base.

Reimplemented in Fluide_stiffened_gas.

Definition at line 44 of file Fluide_reel_base.cpp.

◆ T_()

virtual void Fluide_reel_base::T_ ( const SpanD h,
const SpanD P,
SpanD H,
int ncomp = 1,
int id = 0 ) const
protectedpure virtual

◆ unknown_range()

virtual std::map< std::string, std::array< double, 2 > > Fluide_reel_base::unknown_range ( ) const
inlinevirtual

Reimplemented in Fluide_generique_TPPI_base.

Definition at line 73 of file Fluide_reel_base.h.

◆ unknown_range_h()

virtual std::map< std::string, std::array< double, 2 > > Fluide_reel_base::unknown_range_h ( ) const
inlinevirtual

Reimplemented in Fluide_generique_TPPI_base.

Definition at line 74 of file Fluide_reel_base.h.

Member Data Documentation

◆ converter_H_to_T_

H_to_T Fluide_reel_base::converter_H_to_T_

Definition at line 271 of file Fluide_reel_base.h.

◆ converter_T_to_H_

T_to_H Fluide_reel_base::converter_T_to_H_

Definition at line 272 of file Fluide_reel_base.h.

◆ first_maj_

int Fluide_reel_base::first_maj_ = 1
protected

Definition at line 95 of file Fluide_reel_base.h.

◆ h_ref_

double Fluide_reel_base::h_ref_ = -1.
protected

Definition at line 94 of file Fluide_reel_base.h.

◆ P_ref_

double Fluide_reel_base::P_ref_ = -1.
protected

Definition at line 94 of file Fluide_reel_base.h.

◆ res_en_T_

bool Fluide_reel_base::res_en_T_ = true
protected

Definition at line 96 of file Fluide_reel_base.h.

◆ t_init_

double Fluide_reel_base::t_init_ = -1.
protected

Definition at line 94 of file Fluide_reel_base.h.

◆ T_ref_

double Fluide_reel_base::T_ref_ = -1.
protected

Definition at line 94 of file Fluide_reel_base.h.


The documentation for this class was generated from the following files:
  • /home/docs/checkouts/readthedocs.org/user_builds/cea-trust-platform/checkouts/v1.9.8/src/ThHyd/Multiphase/Milieu/Fluide_reel_base.h
  • /home/docs/checkouts/readthedocs.org/user_builds/cea-trust-platform/checkouts/v1.9.8/src/ThHyd/Multiphase/Milieu/Fluide_reel_base.cpp