TrioCFD 1.9.9_beta
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Cut_cell_schema_auxiliaire Class Referenceabstract

#include <Cut_cell_schema_auxiliaire.h>

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

void initialise (Cut_cell_FT_Disc &cut_cell_disc)
void set_param (Param &param) const override
virtual double dying_cells_flux (int num_face, int phase, int n, const Cut_field_vector3_double &cut_field_total_velocity, const Cut_field_double &cut_field_temperature)=0
virtual double small_nascent_cells_flux (int num_face, int phase, int n, const Cut_field_vector3_double &cut_field_total_velocity, const Cut_field_double &cut_field_temperature)=0
void compute_flux_dying_cells (const Cut_field_vector3_double &cut_field_total_velocity, const Cut_field_double &cut_field_temperature)
void compute_flux_small_nascent_cells (const Cut_field_vector3_double &cut_field_total_velocity, Cut_field_double &cut_field_temperature)
void calcule_valeur_remplissage (double timestep, double lambda_liquid, double lambda_vapour, const IJK_Field_double &flux_interface_ns, const ArrOfDouble &interfacial_temperature, const IJK_Field_double &temperature_ft, const Cut_field_vector3_double &cut_field_total_velocity, const Cut_field_double &cut_field_temperature)
void add_dying_cells (const Cut_field_vector3_double &cut_field_total_velocity, Cut_field_double &cut_field_temperature, bool write_flux, Cut_field_vector3_double &cut_field_current_fluxes)
void add_small_nascent_cells (const Cut_field_vector3_double &cut_field_total_velocity, Cut_field_double &cut_field_temperature, bool write_flux, Cut_field_vector3_double &cut_field_current_fluxes)
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).
virtual const Nomle_nom () const
 Returns the name of the Objet_U. Virtual method to override: returns "neant" in this implementation.
virtual void nommer (const Nom &)
 Assigns a name to the Objet_U. Virtual method to override.
virtual int reprendre (Entree &)
 Restores an Objet_U from an input stream. Virtual method to override.
virtual int sauvegarder (Sortie &) const
 Saves an Objet_U to an output stream. Virtual method to override.
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 lire_motcle_non_standard (const Motcle &motlu, Entree &is)
 Reads non-simple-type parameters of an Objet_U from an input stream.
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

void calcule_valeur_remplissage_copie_directe (const Cut_field_double &cut_field_temperature, DoubleTabFT_cut_cell_scalar &valeur_remplissage)
void calcule_valeur_remplissage_ponderation_voisin (bool est_directionnel, const Cut_field_vector3_double &cut_field_total_velocity, const Cut_field_double &cut_field_temperature, DoubleTabFT_cut_cell_scalar &valeur_remplissage)
void calcule_valeur_remplissage_semi_lagrangien (double timestep, double lambda_liquid, double lambda_vapour, const IJK_Field_double &flux_interface_ns, const Cut_field_double &cut_field_temperature, DoubleTabFT_cut_cell_scalar &valeur_remplissage)
void calcule_valeur_remplissage_semi_lagrangien_interpolate (double timestep, const ArrOfDouble &interfacial_temperature, const IJK_Field_double &temperature_ft, const Cut_field_double &cut_field_temperature, DoubleTabFT_cut_cell_scalar &valeur_remplissage)
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

CORRECTION_PETITES_CELLULES correction_petites_cellules_
DoubleTabFT_cut_cell_vector6 flux_naive_
DoubleTabFT_cut_cell_scalar temperature_remplissage_
METHODE_TEMPERATURE_REMPLISSAGE methode_valeur_remplissage_
bool no_static_update_
int tolerate_not_within_tetrahedron_

Additional Inherited Members

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)
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

Definition at line 40 of file Cut_cell_schema_auxiliaire.h.

Member Function Documentation

◆ add_dying_cells()

void Cut_cell_schema_auxiliaire::add_dying_cells ( const Cut_field_vector3_double & cut_field_total_velocity,
Cut_field_double & cut_field_temperature,
bool write_flux,
Cut_field_vector3_double & cut_field_current_fluxes )

Definition at line 764 of file Cut_cell_schema_auxiliaire.cpp.

◆ add_small_nascent_cells()

void Cut_cell_schema_auxiliaire::add_small_nascent_cells ( const Cut_field_vector3_double & cut_field_total_velocity,
Cut_field_double & cut_field_temperature,
bool write_flux,
Cut_field_vector3_double & cut_field_current_fluxes )

Definition at line 905 of file Cut_cell_schema_auxiliaire.cpp.

◆ calcule_valeur_remplissage()

void Cut_cell_schema_auxiliaire::calcule_valeur_remplissage ( double timestep,
double lambda_liquid,
double lambda_vapour,
const IJK_Field_double & flux_interface_ns,
const ArrOfDouble & interfacial_temperature,
const IJK_Field_double & temperature_ft,
const Cut_field_vector3_double & cut_field_total_velocity,
const Cut_field_double & cut_field_temperature )

Definition at line 74 of file Cut_cell_schema_auxiliaire.cpp.

◆ calcule_valeur_remplissage_copie_directe()

void Cut_cell_schema_auxiliaire::calcule_valeur_remplissage_copie_directe ( const Cut_field_double & cut_field_temperature,
DoubleTabFT_cut_cell_scalar & valeur_remplissage )
protected

Definition at line 344 of file Cut_cell_schema_auxiliaire.cpp.

◆ calcule_valeur_remplissage_ponderation_voisin()

void Cut_cell_schema_auxiliaire::calcule_valeur_remplissage_ponderation_voisin ( bool est_directionnel,
const Cut_field_vector3_double & cut_field_total_velocity,
const Cut_field_double & cut_field_temperature,
DoubleTabFT_cut_cell_scalar & valeur_remplissage )
protected

Definition at line 374 of file Cut_cell_schema_auxiliaire.cpp.

◆ calcule_valeur_remplissage_semi_lagrangien()

void Cut_cell_schema_auxiliaire::calcule_valeur_remplissage_semi_lagrangien ( double timestep,
double lambda_liquid,
double lambda_vapour,
const IJK_Field_double & flux_interface_ns,
const Cut_field_double & cut_field_temperature,
DoubleTabFT_cut_cell_scalar & valeur_remplissage )
protected

Definition at line 539 of file Cut_cell_schema_auxiliaire.cpp.

◆ calcule_valeur_remplissage_semi_lagrangien_interpolate()

void Cut_cell_schema_auxiliaire::calcule_valeur_remplissage_semi_lagrangien_interpolate ( double timestep,
const ArrOfDouble & interfacial_temperature,
const IJK_Field_double & temperature_ft,
const Cut_field_double & cut_field_temperature,
DoubleTabFT_cut_cell_scalar & valeur_remplissage )
protected

Definition at line 648 of file Cut_cell_schema_auxiliaire.cpp.

◆ compute_flux_dying_cells()

void Cut_cell_schema_auxiliaire::compute_flux_dying_cells ( const Cut_field_vector3_double & cut_field_total_velocity,
const Cut_field_double & cut_field_temperature )

Definition at line 103 of file Cut_cell_schema_auxiliaire.cpp.

◆ compute_flux_small_nascent_cells()

void Cut_cell_schema_auxiliaire::compute_flux_small_nascent_cells ( const Cut_field_vector3_double & cut_field_total_velocity,
Cut_field_double & cut_field_temperature )

Definition at line 220 of file Cut_cell_schema_auxiliaire.cpp.

◆ dying_cells_flux()

virtual double Cut_cell_schema_auxiliaire::dying_cells_flux ( int num_face,
int phase,
int n,
const Cut_field_vector3_double & cut_field_total_velocity,
const Cut_field_double & cut_field_temperature )
pure virtual

◆ initialise()

void Cut_cell_schema_auxiliaire::initialise ( Cut_cell_FT_Disc & cut_cell_disc)

Definition at line 68 of file Cut_cell_schema_auxiliaire.cpp.

◆ set_param()

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

Reimplemented from Objet_U.

Definition at line 46 of file Cut_cell_schema_auxiliaire.cpp.

◆ small_nascent_cells_flux()

virtual double Cut_cell_schema_auxiliaire::small_nascent_cells_flux ( int num_face,
int phase,
int n,
const Cut_field_vector3_double & cut_field_total_velocity,
const Cut_field_double & cut_field_temperature )
pure virtual

Member Data Documentation

◆ correction_petites_cellules_

CORRECTION_PETITES_CELLULES Cut_cell_schema_auxiliaire::correction_petites_cellules_
protected

Definition at line 66 of file Cut_cell_schema_auxiliaire.h.

◆ flux_naive_

DoubleTabFT_cut_cell_vector6 Cut_cell_schema_auxiliaire::flux_naive_
protected

Definition at line 68 of file Cut_cell_schema_auxiliaire.h.

◆ methode_valeur_remplissage_

METHODE_TEMPERATURE_REMPLISSAGE Cut_cell_schema_auxiliaire::methode_valeur_remplissage_
protected

Definition at line 70 of file Cut_cell_schema_auxiliaire.h.

◆ no_static_update_

bool Cut_cell_schema_auxiliaire::no_static_update_
protected

Definition at line 72 of file Cut_cell_schema_auxiliaire.h.

◆ temperature_remplissage_

DoubleTabFT_cut_cell_scalar Cut_cell_schema_auxiliaire::temperature_remplissage_
protected

Definition at line 69 of file Cut_cell_schema_auxiliaire.h.

◆ tolerate_not_within_tetrahedron_

int Cut_cell_schema_auxiliaire::tolerate_not_within_tetrahedron_
protected

Definition at line 74 of file Cut_cell_schema_auxiliaire.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/Front_tracking_discontinu/IJK/Cut_Cell/Cut_cell_schema_auxiliaire.h
  • /home/docs/checkouts/readthedocs.org/user_builds/triocfd-documentation/checkouts/next/src/Multiphase/Front_tracking_discontinu/IJK/Cut_Cell/Cut_cell_schema_auxiliaire.cpp