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Cahn_Hilliard_Convection Class Reference

classe Cahn_Hilliard_Convection More...

#include <Cahn_Hilliard_Convection.h>

Inheritance diagram for Cahn_Hilliard_Convection:
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Collaboration diagram for Cahn_Hilliard_Convection:
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Public Member Functions

void set_param (Param &) const override
int lire_motcle_non_standard (const Motcle &, Entree &) override
 Reads non-simple-type parameters of an Objet_U from an input stream.
int nombre_d_operateurs () const override
 Renvoie le nombre d'operateurs de l'equation: Pour Cahn-Hilliard c'est 3.
int nombre_d_operateurs_tot () const override
const Operateuroperateur (int) const override
 Renvoie le i-eme operateur de l'equation:
Operateuroperateur (int) override
 Renvoie le i-eme operateur de l'equation:
DoubleTab & derivee_en_temps_inco (DoubleTab &) override
 Returns the time derivative of the unknown I of the equation: dI/dt = M-1*(sum(operators(I) + sources)).
void associer_vitesse (const Champ_base &vit)
const Champ_basevitesse_pour_transport () const
DoubleTab fonction_residu (const DoubleTab &) override
 Construit la fonction résidu pour un algorithme de Newton :
Public Member Functions inherited from Cahn_Hilliard
Entreelire_cl_potentiel (Entree &)
 Lecture des conditions limites sur un flot d'entree.
const Milieu_basemilieu () const override
 Renvoie le milieu physique de l'equation.
Milieu_basemilieu () override
 Renvoie le milieu physique de l'equation.
void associer_milieu_base (const Milieu_base &) override
 Associe un mileu physique a l'equation en construisant dynamiquement (cast) un objet de type Milieu_Incompressible_Phase_Field.
const Champ_Inc_baseinconnue () const override
 Renvoie la concentration (champ inconnue de l'equation) (version const).
Champ_Inc_baseinconnue () override
 Renvoie la concentration (champ inconnue de l'equation).
double calculer_pas_de_temps () const override
 Calcul du prochain pas de temps.
void discretiser () override
 Dicretise l'equation.
void completer () override
 Complete l'equation base, associe le potentiel chimique généralisé a l'equation, initialise le vecteur résidu et construit les opérateurs de diffusion.
bool initTimeStep (double dt) override
 Allocation and initialization of the unknown and boundary conditions until present+dt.
bool updateGivenFields () override
 cf Equation_base::updateGivenFields()
void mettre_a_jour (double temps) override
 Effectue une mise a jour en temps de l'equation.
void abortTimeStep () override
 Reinitialize what must be.
void resetTime (double time) override
 Reset current time of the equation. Used from ICoCo. See documentation of Problem_base::resetTime().
std::vector< YAML_datadata_a_sauvegarder () const override
 for PDI IO: retrieve name, type and dimensions of the fields to save/restore
int sauvegarder (Sortie &) const override
 Appelle Equation_base::sauvegarder(Sortie&) et sauvegarde le potentiel chimique sur un flot de sortie.
int reprendre (Entree &) override
 Effectue une reprise a partir d'un flot d'entree.
void associer_pb_base (const Probleme_base &) override
 S'associe au probleme: apelle Equation_base::associer_pb_base(const Probleme_base&) les deux termes diffusifs doivent aussi être initialisés puisqu'ils ne sont pas lus dans le JDD.
void associer_sch_tps_base (const Schema_Temps_base &) override
 S'associe au schema_en_temps : peut seulement être Schema_CH_Semi_Implicite pour l'instant.
int preparer_calcul () override
 cf Equation_base::preparer_calcul()
const Motcledomaine_application () const override
 Renvoie le nom du domaine d'application: "Cahn_Hilliard".
int nb_parametres_d_ordre ()
const Champ_Inc_basemutilde () const
Champ_Inc_basemutilde ()
Domaine_Cl_dis_basedomaine_Cl_dis_mutilde ()
const Domaine_Cl_dis_basedomaine_Cl_dis_mutilde () const
int verif_Cl_mutilde () const
 Méthode pour vérifier la compatibilité entre les CL de la concentration et les CL du potentiel.
void compute_mutilde ()
 Calcul de mutilde = beta*dW/dc - ∇. kappa ∇c.
DoubleTab compute_mutilde (const DoubleTab &)
 Calcul de mutilde = beta*dW/dc - ∇. kappa ∇c Stockage dans un autre vecteur.
Champ_Don_basekappa ()
Champ_Don_basemobilite ()
const Fermeture_Thermo_basefermeture () const
Fermeture_Thermo_basefermeture ()
bool mobilite_explicite () const
void initialiser_matrices ()
bool matrices_initialisees ()
void update_terme_mobilite (const DoubleTab &)
void calculer_contribution_CL_concentration (const DoubleTab &)
 Renvoie la contribution des conditions limites sur la concentration sous forme d'un vecteur (multi-composantes).
void calculer_contribution_CL_mutilde (const DoubleTab &)
 Renvoie la contribution des conditions limites sur le potentiel chimique sous forme d'un vecteur (multi-composantes).
Matrice_Morsematrice_mobilite ()
Matrice_Morsematrice_kappa ()
Public Member Functions inherited from Equation_base
void nommer (const Nom &nom) override
 Method called when the object instance is created in the data file (Interprete::ajouter).
virtual void avancer (int i=1)
virtual void reculer (int i=1)
virtual const Operateuroperateur_fonctionnel (int) const
virtual Operateuroperateur_fonctionnel (int)
int sauvegarder (Sortie &) const override
 We save the unknown, then the source terms to an output stream.
int reprendre (Entree &) override
 We resume the unknown from an input stream.
Nom create_polymacfamily_syno (const Nom &field_tag) const
 Create a synonym of a field name in order to ensure backward compatibility with old names of the PolyMAC discretisation family.
virtual void init_save_file ()
virtual void close_save_file ()
int limpr () const
 Ask the time scheme if an output is needed.
virtual void imprimer (Sortie &os) const
 Prints the equation operators if the time scheme indicates it is necessary.
virtual int impr (Sortie &os) const
 Prints the equation operators to an output stream, unconditionally.
virtual void associer_milieu_equation ()
virtual DoubleTab & derivee_en_temps_inco_transport (DoubleTab &derivee)
virtual DoubleTab & corriger_derivee_expl (DoubleTab &)
virtual DoubleTab & corriger_derivee_impl (DoubleTab &)
virtual void valider_iteration ()
 virtual method to correct the unknown during implicit iterations for example K-eps must remain positive
void calculer_pas_de_temps_locaux (DoubleTab &) const
Sourcessources ()
 Returns the source terms associated with the equation.
const Sourcessources () const
 Returns the source terms associated with the equation (const version).
Solveur_Masse_basesolv_masse ()
 Returns the mass solver associated with the equation.
const Solveur_Masse_basesolv_masse () const
 Returns the mass solver associated with the equation (const version).
Probleme_baseprobleme ()
 Returns the problem associated with the equation.
const Probleme_baseprobleme () const
 Returns the problem associated with the equation.
Schema_Temps_baseschema_temps ()
 Returns the time scheme associated with the equation.
const Schema_Temps_baseschema_temps () const
 Returns the time scheme associated with the equation.
virtual void associer_domaine_dis (const Domaine_dis_base &)
 Associates the discretized domain with the equation.
const Discretisation_basediscretisation () const
 Returns the discretization associated with the equation.
virtual Domaine_Cl_dis_basedomaine_Cl_dis ()
 Returns the discretized boundary condition domain associated with the equation.
virtual const Domaine_Cl_dis_basedomaine_Cl_dis () const
 Returns the discretized boundary condition domain associated with the equation (const version).
Domaine_dis_basedomaine_dis ()
 Returns the discretized domain associated with the equation.
const Domaine_dis_basedomaine_dis () const
 Returns the discretized domain associated with the equation.
const Nomle_nom () const override
 Returns the name of the equation.
DoubleVect & get_residu ()
DoubleVect & residu_initial ()
void initialise_residu (int=0)
virtual void imprime_residu (SFichier &)
virtual Nom expression_residu ()
virtual void dimensionner_matrice (Matrice_Morse &mat_morse)
virtual void dimensionner_matrice_sans_mem (Matrice_Morse &mat_morse)
virtual void assembler (Matrice_Morse &mat_morse, const DoubleTab &present, DoubleTab &secmem)
virtual void modifier_pour_Cl (Matrice_Morse &mat_morse, DoubleTab &secmem) const
virtual void assembler_avec_inertie (Matrice_Morse &mat_morse, const DoubleTab &present, DoubleTab &secmem)
virtual void dimensionner_termes_croises (Matrice_Morse &matrice, const Probleme_base &autre_pb, int nl, int nc)
virtual void ajouter_termes_croises (const DoubleTab &inco, const Probleme_base &autre_pb, const DoubleTab &autre_inco, DoubleTab &resu) const
virtual void contribuer_termes_croises (const DoubleTab &inco, const Probleme_base &autre_pb, const DoubleTab &autre_inco, Matrice_Morse &matrice) const
virtual int has_interface_blocs () const
virtual double get_time_factor () const
virtual void dimensionner_blocs (matrices_t matrices, const tabs_t &semi_impl={}) const
virtual void assembler_blocs (matrices_t matrices, DoubleTab &secmem, const tabs_t &semi_impl={}) const
virtual void assembler_blocs_avec_inertie (matrices_t matrices, DoubleTab &secmem, const tabs_t &semi_impl={})
Champ_Inc_basechamp_conserve () const
int has_champ_conserve () const
void init_champ_conserve () const
virtual std::pair< std::string, fonc_calc_t > get_fonc_champ_conserve () const
virtual Champ_Inc_basechamp_convecte () const
virtual int has_champ_convecte () const
virtual void init_champ_convecte () const
virtual void mettre_a_jour_champs_conserves (double temps, int reset=0)
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
virtual void verifie_ch_init_nb_comp (const Champ_Inc_base &ch_ref, const int nb_comp) const
 Verification of the number of components read for the specification of a field.
virtual void verifie_ch_init_nb_comp_cl (const Champ_Inc_base &ch_ref, const int nb_comp, const Cond_lim_base &cl) const
DoubleTab & derivee_en_temps_conv (DoubleTab &, const DoubleTab &)
 Add convection term In: solution is the unknown I.
void Gradient_conjugue_diff_impl (DoubleTrav &secmem, DoubleTab &solution)
void Gradient_conjugue_diff_impl (DoubleTrav &secmem, DoubleTab &solution, const DoubleTab &terme_mul)
 OWN_PTR (Parametre_equation_base) &parametre_equation()
const OWN_PTR (Parametre_equation_base) &parametre_equation() const
virtual const RefObjU & get_modele (Type_modele type) const
virtual int equation_non_resolue () const
int disable_equation_residual () const
virtual const Champ_Inc_basederivee_en_temps () const
virtual Champ_Inc_basederivee_en_temps ()
void set_calculate_time_derivative (int i)
int calculate_time_derivative () const
void set_residuals (const DoubleTab &residual)
virtual bool positive_unkown ()
void add_champs_compris (const Champ_base &ch)
void set_diffusion_multi_scalaire (bool flg=true)
const bool & diffusion_multi_scalaire () const
public_for_cuda void Gradient_conjugue_diff_impl (DoubleTrav &secmem, DoubleTab &solution, int size_terme_mul, const DoubleTab &term_mul)
 Solve: (1/dt + M-1*L)*dI = M-1 * secmem with a Conjugate Gradient matrix-free algorithm by default.
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
 Destructor. Removes the object from the list of objects registered in "memory".
int numero () const
 Returns the index of the object in Memoire::data.
virtual int duplique () const =0
virtual SortieprintOn (Sortie &) const
 Writes the object to an output stream. Virtual method to override.
virtual EntreereadOn (Entree &)
 Reads an Objet_U from an input stream. Virtual method to override.
virtual unsigned taille_memoire () const =0
virtual int est_egal_a (const Objet_U &) const
 Returns 1 if x and *this are the same instance (same memory address).
int get_object_id () const
 Returns the unique identifier of the object (object_id_).
virtual const Type_infoget_info () const
 Returns type information for the Objet_U.
const Nomque_suis_je () const
 Returns the string identifying the class.
const char * le_type () const
 Returns the type name of the Objet_U.
virtual int change_num (const int *const)
 Changes the internal number of the Objet_U.
virtual int associer_ (Objet_U &)
 Associates the Objet_U with another Objet_U. Virtual method to override.
const Interpreteinterprete () const
Interpreteinterprete ()
Public Member Functions inherited from Process
virtual ~Process ()

Protected Member Functions

 OBS_PTR (Champ_Inc_base) vitesse_
Protected Member Functions inherited from Cahn_Hilliard
void lire_terme_mobilite ()
void lire_terme_kappa ()
void discretiser_concentration ()
void discretiser_mutilde ()
void discretiser_kappa ()
void discretiser_mobilite ()
void construire_kappa ()
void construire_mobilite (const DoubleTab &)
 OWN_PTR (Champ_Inc_base) concentration_
 OWN_PTR (Domaine_Cl_dis_base) le_dom_Cl_dis_mutilde_
 OWN_PTR (Champ_Don_base) mobilite_
 OBS_PTR (Milieu_base) milieu_
 OBS_PTR (Fermeture_Thermo_base) fermeture_
Protected Member Functions inherited from Equation_base
 OWN_PTR (Solveur_Masse_base) solveur_masse
 OBS_PTR (Schema_Temps_base) le_schema_en_temps
 OBS_PTR (Domaine_dis_base) le_dom_dis
 OWN_PTR (Domaine_Cl_dis_base) le_dom_Cl_dis
 OBS_PTR (Probleme_base) mon_probleme
int lire_motcle_non_standard (const Motcle &, Entree &) override
 Reads non-simple-type parameters of an Objet_U from an input stream.
virtual Entreelire_sources (Entree &)
 Reading of source terms in an input stream.
virtual Entreelire_cond_init (Entree &)
 Reading of initial conditions in an input stream.
virtual Entreelire_cl (Entree &)
 Reading of boundary conditions in an input stream.
virtual int verif_Cl () const
 Verifies the compatibility of boundary conditions with the equation.
virtual void lire ()
 OWN_PTR (Parametre_equation_base) parametre_equation_
 LIST (RefObjU) liste_modeles_
 OWN_PTR (Champ_Inc_base) champ_conserve_
 OWN_PTR (Champ_Inc_base) champ_convecte_
 OWN_PTR (Champ_Inc_base) derivee_en_temps_
Protected Member Functions inherited from Objet_U
 Objet_U ()
 Default constructor: assigns a unique identifier to the object (object_id_) and registers the object in "memory" by giving it a num_obj number.
 Objet_U (const Objet_U &)
 Copy constructor.
const Objet_Uoperator= (const Objet_U &)
 Assignment operator: does nothing (the number and identifier are preserved).

Protected Attributes

Operateur_Conv terme_convectif_
Protected Attributes inherited from Cahn_Hilliard
 mutilde_
int nb_parametres_d_ordre_ = -123
 kappa_
bool mobilite_explicite_ =false
bool passer_par_ajouter_kappa_ =false
bool passer_par_ajouter_mobilite_ =false
Operateur_Diff terme_mobilite_
Operateur_Diff terme_kappa_
bool matrices_initialisees_ =false
Matrice_Morse mat_mobilite_
Matrice_Morse mat_kappa_
DoubleTab contribution_CL_concentration_
DoubleTab contribution_CL_mutilde_
Protected Attributes inherited from Equation_base
Nom nom_
Sources les_sources
DoubleList dt_op_bak
int sys_invariant_
int implicite_
bool has_time_factor_
Champs_compris champs_compris_
Champs_Fonc list_champ_combi
Matrice_Morse matrice_stockee
int matrice_init
int calculate_time_derivative_
bool diffusion_multi_scalaire_ = false

Additional Inherited Members

Static Public Member Functions inherited from Equation_base
static void calculer_champ_conserve (const Objet_U &obj, DoubleTab &val, DoubleTab &bval, tabs_t &deriv)
Static Public Member Functions inherited from Objet_U
static const Nomnom_du_cas ()
 Returns a constant reference to the case name. This method is static.
static Nomget_set_nom_du_cas ()
 Returns a non-constant reference to the case name (to allow modification). This method is static.
static const Type_infoinfo ()
 Returns type information for the Objet_U (static version).
static const Objet_Uself_cast (const Objet_U &)
 Method added for casting in Python.
static Objet_Uself_cast (Objet_U &)
Static Public Member Functions inherited from Process
static int me ()
 Returns the rank of the local processor in the current communication group. See Comm_Group::rank() and PE_Groups::current_group().
static int nproc ()
 Returns the number of processors in the current group. See Comm_Group::nproc() and PE_Groups::current_group().
static bool is_parallel ()
static void exit (int exit_code=-1)
 Exit routine for TRUST within a Kokkos region.
static double mp_sum (double)
 Computes the sum of x over all processors in the current group.
static float mp_sum (float)
static trustIdType mp_sum (trustIdType)
 Computes the sum of x over all processors in the current group.
static double mp_max (double)
static double mp_min (double)
static int mp_max (int)
 Returns the maximum value of x across all processors in the current group.
static int mp_min (int)
 Returns the minimum value of x across all processors in the current group.
static double mp_sum_as_double (int v)
static trustIdType mppartial_sum (trustIdType i)
 Computes the partial sum of x over processors 0 to me()-1 (returns 0 on processor 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)
 Computes the logical AND of b across all processors in the current group.
static bool mp_or (bool)
static int check_int_overflow (trustIdType)
static int je_suis_maitre ()
 Returns 1 if on the master processor of the current group (i.e. me() == 0), 0 otherwise.
static KOKKOS_INLINE_FUNCTION void Kokkos_exit (const char *)
 Exit routine for TRUST within a Kokkos region.
static int node_master ()
 Returns 1 if on the NUMA node master processor, 0 otherwise.
static void exit (const Nom &message, int exit_code=-1)
static bool is_sequential ()
static void barrier ()
 Synchronizes all processors in the current group (waits until all processors have reached the barrier).
static void abort ()
 Abort routine for TRUST on a fatal error.
static SortieJournal (int message_level=0)
 Returns a static Sortie object used as an event journal.
static double ram_processeur ()
static void imprimer_ram_totale (int all_process=0)
static bool force_single_file (const int ranks, const Nom &filename)
Public Attributes inherited from Equation_base
Matrice_Morse_Diag diag_
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

Detailed Description

classe Cahn_Hilliard_Convection

Hérite de la classe Cahn-Hilliard, et rajoute un terme d'advection.

See also
Cahn_Hilliard

Definition at line 28 of file Cahn_Hilliard_Convection.h.

Member Function Documentation

◆ associer_vitesse()

void Cahn_Hilliard_Convection::associer_vitesse ( const Champ_base & vit)
inline

Definition at line 42 of file Cahn_Hilliard_Convection.h.

◆ derivee_en_temps_inco()

DoubleTab & Cahn_Hilliard_Convection::derivee_en_temps_inco ( DoubleTab & derivee)
overridevirtual

Returns the time derivative of the unknown I of the equation: dI/dt = M-1*(sum(operators(I) + sources)).

In : derivee contains I (but immediatly set to 0) Out: derivee contains dI/dt

Reimplemented from Cahn_Hilliard.

Definition at line 129 of file Cahn_Hilliard_Convection.cpp.

◆ fonction_residu()

DoubleTab Cahn_Hilliard_Convection::fonction_residu ( const DoubleTab & c)
overridevirtual

Construit la fonction résidu pour un algorithme de Newton :

En schéma Euler implicite c^n+1 - c^n - Δt M^-1 D mu^n+1 + CL(mu)^n+1 = 0 avec mu^n+1 = beta*dW/dc^n+1 - M^-1 K c^n+1 - CL(c)^n+1

Nécessite d'être généralisé à toute équation et tout schéma en temps

Reimplemented from Cahn_Hilliard.

Definition at line 170 of file Cahn_Hilliard_Convection.cpp.

◆ lire_motcle_non_standard()

int Cahn_Hilliard_Convection::lire_motcle_non_standard ( const Motcle & motlu,
Entree & is )
overridevirtual

Reads non-simple-type parameters of an Objet_U from an input stream.

Parameters
motluThe name of the keyword to read.
isAn input stream.
Returns
Negative value if the keyword is not understood, otherwise positive value.

Reimplemented from Cahn_Hilliard.

Definition at line 40 of file Cahn_Hilliard_Convection.cpp.

◆ nombre_d_operateurs()

int Cahn_Hilliard_Convection::nombre_d_operateurs ( ) const
overridevirtual

Renvoie le nombre d'operateurs de l'equation: Pour Cahn-Hilliard c'est 3.

Returns
(int) le nombre d'operateur de l'equation

Reimplemented from Cahn_Hilliard.

Definition at line 64 of file Cahn_Hilliard_Convection.cpp.

◆ nombre_d_operateurs_tot()

int Cahn_Hilliard_Convection::nombre_d_operateurs_tot ( ) const
overridevirtual

Reimplemented from Cahn_Hilliard.

Definition at line 69 of file Cahn_Hilliard_Convection.cpp.

◆ OBS_PTR()

Cahn_Hilliard_Convection::OBS_PTR ( Champ_Inc_base )
protected

◆ operateur() [1/2]

const Operateur & Cahn_Hilliard_Convection::operateur ( int i) const
overridevirtual

Renvoie le i-eme operateur de l'equation:

Parameters
(inti) l'index de l'operateur a renvoyer
Returns
(Operateur&) l'operateur indexe par i

Reimplemented from Cahn_Hilliard.

Definition at line 79 of file Cahn_Hilliard_Convection.cpp.

◆ operateur() [2/2]

Operateur & Cahn_Hilliard_Convection::operateur ( int i)
overridevirtual

Renvoie le i-eme operateur de l'equation:

Parameters
(inti) l'index de l'operateur a renvoyer
Returns
(Operateur&) l'operateur indexe par i

Reimplemented from Cahn_Hilliard.

Definition at line 103 of file Cahn_Hilliard_Convection.cpp.

◆ set_param()

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

Reimplemented from Cahn_Hilliard.

Definition at line 32 of file Cahn_Hilliard_Convection.cpp.

◆ vitesse_pour_transport()

const Champ_base & Cahn_Hilliard_Convection::vitesse_pour_transport ( ) const

Definition at line 55 of file Cahn_Hilliard_Convection.cpp.

Member Data Documentation

◆ terme_convectif_

Operateur_Conv Cahn_Hilliard_Convection::terme_convectif_
protected

Definition at line 55 of file Cahn_Hilliard_Convection.h.


The documentation for this class was generated from the following files:
  • /home/docs/checkouts/readthedocs.org/user_builds/triocfd-documentation/checkouts/next/src/Multiphase/Phase_field/Equations/Cahn_Hilliard_Convection.h
  • /home/docs/checkouts/readthedocs.org/user_builds/triocfd-documentation/checkouts/next/src/Multiphase/Phase_field/Equations/Cahn_Hilliard_Convection.cpp