Navier_Stokes_std_ALE#
#include <Navier_Stokes_std_ALE.h>
How to cite this class in this doc#
:ref:`Navier\_Stokes\_std\_ALE <class-navier-stokes-std-ale>`
[Navier\_Stokes\_std\_ALE](#class-navier-stokes-std-ale)
Detailed description#
Inherits from#
public : Navier_Stokes_std
Inherited by#
public : Navier_Stokes_Turbulent_ALE
List of Public Methods#
List of Public Static Methods#
List of Protected Methods#
Complete Member Function Documentation#
std::vector<YAML_data> Navier_Stokes_std_ALE::data_a_sauvegarder() const override
for PDI IO: retrieve name, type and dimensions of the fields to save/restore
Reimplements:
References
Referenced By
How to cite in this doc:
:ref:`std::vector<YAML_data> Navier_Stokes_std_ALE::data_a_sauvegarder() const override <public-std-vector-yaml-data-navier-stokes-std-ale-data-a-sauvegarder-const-override>`
[std::vector<YAML_data> Navier_Stokes_std_ALE::data_a_sauvegarder() const override](#public-std-vector-yaml-data-navier-stokes-std-ale-data-a-sauvegarder-const-override)
void Navier_Stokes_std_ALE::discretiser() override
Dicretise l’equation.
Reimplements:
References
How to cite in this doc:
:ref:`void Navier_Stokes_std_ALE::discretiser() override <public-void-navier-stokes-std-ale-discretiser-override>`
[void Navier_Stokes_std_ALE::discretiser() override](#public-void-navier-stokes-std-ale-discretiser-override)
void Navier_Stokes_std_ALE::div_ale_derivative(DoubleTrav &deriveeALE, double timestep, DoubleTab &derivee, DoubleTrav &secmemP) override
Reimplements:
References
How to cite in this doc:
:ref:`void Navier_Stokes_std_ALE::div_ale_derivative(DoubleTrav &deriveeALE, double timestep, DoubleTab &derivee, DoubleTrav &secmemP) override <public-void-navier-stokes-std-ale-div-ale-derivative-doubletrav-ref-deriveeale-double-timestep-doubletab-ref-derivee-doubletrav-ref-secmemp-override>`
[void Navier_Stokes_std_ALE::div_ale_derivative(DoubleTrav &deriveeALE, double timestep, DoubleTab &derivee, DoubleTrav &secmemP) override](#public-void-navier-stokes-std-ale-div-ale-derivative-doubletrav-ref-deriveeale-double-timestep-doubletab-ref-derivee-doubletrav-ref-secmemp-override)
int Navier_Stokes_std_ALE::duplique() const override
Reimplements:
How to cite in this doc:
:ref:`int Navier_Stokes_std_ALE::duplique() const override <public-int-navier-stokes-std-ale-duplique-const-override>`
[int Navier_Stokes_std_ALE::duplique() const override](#public-int-navier-stokes-std-ale-duplique-const-override)
const Type_info * Navier_Stokes_std_ALE::get_info() const override
Donne des informations sur le type de l’ Objet_U .
Reimplements:
How to cite in this doc:
:ref:`const Type_info * Navier_Stokes_std_ALE::get_info() const override <public-const-type-info-ptr-navier-stokes-std-ale-get-info-const-override>`
[const Type_info * Navier_Stokes_std_ALE::get_info() const override](#public-const-type-info-ptr-navier-stokes-std-ale-get-info-const-override)
void Navier_Stokes_std_ALE::mettre_a_jour(double) override
Effectue une mise a jour en temps de l’equation.
Appelle Equation_base::mettre_a_jour(double) et met a jour la pression. Integration des points suivis si le fluide est marque Mise a jour du champ postraitable correspondant
Reimplements:
References
Referenced By
How to cite in this doc:
:ref:`void Navier_Stokes_std_ALE::mettre_a_jour(double) override <public-void-navier-stokes-std-ale-mettre-a-jour-double-override>`
[void Navier_Stokes_std_ALE::mettre_a_jour(double) override](#public-void-navier-stokes-std-ale-mettre-a-jour-double-override)
Navier_Stokes_std_ALE::Navier_Stokes_std_ALE()
How to cite in this doc:
:ref:`Navier_Stokes_std_ALE::Navier_Stokes_std_ALE() <public-navier-stokes-std-ale-navier-stokes-std-ale>`
[Navier_Stokes_std_ALE::Navier_Stokes_std_ALE()](#public-navier-stokes-std-ale-navier-stokes-std-ale)
void Navier_Stokes_std_ALE::renewing_jacobians(DoubleTab &derivee) override
Reimplements:
References
How to cite in this doc:
:ref:`void Navier_Stokes_std_ALE::renewing_jacobians(DoubleTab &derivee) override <public-void-navier-stokes-std-ale-renewing-jacobians-doubletab-ref-derivee-override>`
[void Navier_Stokes_std_ALE::renewing_jacobians(DoubleTab &derivee) override](#public-void-navier-stokes-std-ale-renewing-jacobians-doubletab-ref-derivee-override)
int Navier_Stokes_std_ALE::reprendre(Entree &) override
Effectue une reprise a partir d’un flot d’entree.
Appelle Equation_base::reprendre() et reprend la pression.
Reimplements:
References
Referenced By
How to cite in this doc:
:ref:`int Navier_Stokes_std_ALE::reprendre(Entree &) override <public-int-navier-stokes-std-ale-reprendre-entree-ref-override>`
[int Navier_Stokes_std_ALE::reprendre(Entree &) override](#public-int-navier-stokes-std-ale-reprendre-entree-ref-override)
int Navier_Stokes_std_ALE::sauvegarder(Sortie &) const override
Appelle Equation_base::sauvegarder(Sortie&) et sauvegarde la pression sur un flot de sortie.
Reimplements:
References
Referenced By
How to cite in this doc:
:ref:`int Navier_Stokes_std_ALE::sauvegarder(Sortie &) const override <public-int-navier-stokes-std-ale-sauvegarder-sortie-ref-const-override>`
[int Navier_Stokes_std_ALE::sauvegarder(Sortie &) const override](#public-int-navier-stokes-std-ale-sauvegarder-sortie-ref-const-override)
unsigned Navier_Stokes_std_ALE::taille_memoire() const override
Reimplements:
How to cite in this doc:
:ref:`unsigned Navier_Stokes_std_ALE::taille_memoire() const override <public-unsigned-navier-stokes-std-ale-taille-memoire-const-override>`
[unsigned Navier_Stokes_std_ALE::taille_memoire() const override](#public-unsigned-navier-stokes-std-ale-taille-memoire-const-override)
void Navier_Stokes_std_ALE::update_pressure_matrix() override
Reimplements:
References
How to cite in this doc:
:ref:`void Navier_Stokes_std_ALE::update_pressure_matrix() override <public-void-navier-stokes-std-ale-update-pressure-matrix-override>`
[void Navier_Stokes_std_ALE::update_pressure_matrix() override](#public-void-navier-stokes-std-ale-update-pressure-matrix-override)
Navier_Stokes_std_ALE::~Navier_Stokes_std_ALE()
How to cite in this doc:
:ref:`Navier_Stokes_std_ALE::~Navier_Stokes_std_ALE() <public-navier-stokes-std-ale-dtor-navier-stokes-std-ale>`
[Navier_Stokes_std_ALE::~Navier_Stokes_std_ALE()](#public-navier-stokes-std-ale-dtor-navier-stokes-std-ale)
Objet_U * Navier_Stokes_std_ALE::cree_instance()
How to cite in this doc:
:ref:`Objet_U * Navier_Stokes_std_ALE::cree_instance() <public-static-objet-u-ptr-navier-stokes-std-ale-cree-instance>`
[Objet_U * Navier_Stokes_std_ALE::cree_instance()](#public-static-objet-u-ptr-navier-stokes-std-ale-cree-instance)
const Type_info * Navier_Stokes_std_ALE::info()
How to cite in this doc:
:ref:`const Type_info * Navier_Stokes_std_ALE::info() <public-static-const-type-info-ptr-navier-stokes-std-ale-info>`
[const Type_info * Navier_Stokes_std_ALE::info()](#public-static-const-type-info-ptr-navier-stokes-std-ale-info)
const Navier_Stokes_std_ALE & Navier_Stokes_std_ALE::self_cast(const Objet_U &)
How to cite in this doc:
:ref:`const Navier_Stokes_std_ALE & Navier_Stokes_std_ALE::self_cast(const Objet_U &) <public-static-const-navier-stokes-std-ale-ref-navier-stokes-std-ale-self-cast-const-objet-u-ref>`
[const Navier_Stokes_std_ALE & Navier_Stokes_std_ALE::self_cast(const Objet_U &)](#public-static-const-navier-stokes-std-ale-ref-navier-stokes-std-ale-self-cast-const-objet-u-ref)
Navier_Stokes_std_ALE & Navier_Stokes_std_ALE::self_cast(Objet_U &)
How to cite in this doc:
:ref:`Navier_Stokes_std_ALE & Navier_Stokes_std_ALE::self_cast(Objet_U &) <public-static-navier-stokes-std-ale-ref-navier-stokes-std-ale-self-cast-objet-u-ref>`
[Navier_Stokes_std_ALE & Navier_Stokes_std_ALE::self_cast(Objet_U &)](#public-static-navier-stokes-std-ale-ref-navier-stokes-std-ale-self-cast-objet-u-ref)
Sortie & Navier_Stokes_std_ALE::printOn(Sortie &x) const override
Surcharge Objet_U::printOn Imprime l’equation et ses composants sur un flot de sortie.
Imprime le nom de l’equation, le solveur masse, les termes sources les conditions aux limites discretisees, les inconnues et les operateurs.
Reimplements:
References
How to cite in this doc:
:ref:`Sortie & Navier_Stokes_std_ALE::printOn(Sortie &x) const override <protected-sortie-ref-navier-stokes-std-ale-printon-sortie-ref-x-const-override>`
[Sortie & Navier_Stokes_std_ALE::printOn(Sortie &x) const override](#protected-sortie-ref-navier-stokes-std-ale-printon-sortie-ref-x-const-override)
Entree & Navier_Stokes_std_ALE::readOn(Entree &) override
Appel Equation_base::readOn(Entree& is) En sortie verifie que l’on a bien lu:
le terme diffusif, - le terme convectif, - le solveur en pression
Reimplements:
References
Referenced By
How to cite in this doc:
:ref:`Entree & Navier_Stokes_std_ALE::readOn(Entree &) override <protected-entree-ref-navier-stokes-std-ale-readon-entree-ref-override>`
[Entree & Navier_Stokes_std_ALE::readOn(Entree &) override](#protected-entree-ref-navier-stokes-std-ale-readon-entree-ref-override)
Attributes Documentation#
const Type_info Navier_Stokes_std_ALE::info_obj
TRUST_Deriv<Champ_Inc_base> Navier_Stokes_std_ALE::ALEMeshStructuralForces_
TRUST_Deriv<Champ_Inc_base> Navier_Stokes_std_ALE::ALEMeshStructuralPressure_
TRUST_Deriv<Champ_Inc_base> Navier_Stokes_std_ALE::ALEMeshStructuralVonMises_
TRUST_Deriv<Champ_Inc_base> Navier_Stokes_std_ALE::ALEMeshTotalDisplacement_
TRUST_Deriv<Champ_Inc_base> Navier_Stokes_std_ALE::ALEMeshVelocity_