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TrioCFD  documentation - Home
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    • How to write a data file
      • HOW TO DEFINE MESHING ?
      • HOW TO DEFINE PRESSURE SOLVER ?
      • HOW TO DEFINE BOUNDARY CONDITIONS ?
      • HOW TO DEFINE INITIAL CONDITIONS ?
      • HOW TO VISUALISE RESULTS ?
      • HOW TO DEFINE A STATIONNARY TEST-CASE ?
      • HOW TO DEFINE A STATIONNARY TEST-CASE WITH THERMAL EFFECTS ?
      • HOW TO DEFINE AN UNSTEADY TEST-CASE ?
      • HOW TO DEFINE TIME SCHEMES FOR RANS k-epsilon MODELLING ?
      • HOW TO DEFINE CONVECTION SCHEMES FOR RANS k-epsilon MODELLING ?
      • WHAT ARE CONVECTION SCHEMES AVAILABLE ?
      • WHAT ARE k-EPSILON MODELS AVAILABLE ?
      • WHAT ARE DIFFERENCES BETWEEN VDF MESH OPTIONS ?
    • Physical Models
      • Turbulence modeling
        • Turbulence bibliography
        • Large-eddy simulation
        • Reynolds-averaged Navier-Stokes modeling
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      • Multiphase CFD
        • Multiphase turbulence RANS modeling
        • Fluid proprieties
        • Interfacial forces models
        • Dispersed phase size modeling
        • Thermal modeling
        • Other types of models
        • Homogeneous Mixture model
        • Post-processing
        • Best practices for multiphase RANS modeling
    • Numerical methods in TrioCFD
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      • Objet_u
  • TrioCFD Tutorials
    • Turbulent Flow with Concentration
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    • FAQ
    • C++ API (Doxygen)
      • Doxygen Documentation
        • Classes
          • ALE_Neumann_BC_for_grid_problem
          • AbstractIO
          • Acceleration_QC_VDF_Face
          • Acceleration_QC_VEF_P1NC
          • Aire_interfaciale
          • Algorithmes_Transport_FT_Disc
          • Analyse_Angle
          • Aretes
          • Array_base
          • AssembleurPVDF_PF
          • Assembleur_P_EF
          • Assembleur_P_PolyMAC
          • Assembleur_P_PolyMAC_P0
          • Assembleur_P_PolyMAC_P0P1NC
          • Assembleur_P_VDF
          • Assembleur_P_VDF_Q4
          • Assembleur_P_VEF
          • Assembleur_P_VEFPreP1B
          • Assembleur_base
          • Associer
          • Axi
          • Beam_model
          • Bidim_Axi
          • BilanQdmVEF
          • BlocData
          • Boundary_Conditions
          • Boundary_Conditions_Thermique
          • Boundary_field_inward
          • Boundary_field_keps_from_ud
          • Boundary_field_uniform_keps_from_ud
          • Build_Map_to_Structured
          • CSR_Builder
          • Calcul_Production_K_VDF
          • Calcul_Production_K_VEF
          • Calcul_integrale_locale
          • Calculer_Moments
          • Candidate
          • Candidate_with_direct_value
          • Catch_SIGINIT
          • Ch_front_Vortex
          • Ch_front_input
          • Ch_front_input_ALE
          • Ch_front_input_P1
          • Ch_front_input_uniforme
          • Ch_front_var_instationnaire_dep
          • Ch_front_var_instationnaire_indep
          • Ch_front_var_stationnaire
          • Ch_input_uniforme
          • Champ_Composite
          • Champ_Critere_Q
          • Champ_Don_Face_lu
          • Champ_Don_Fonc_txyz
          • Champ_Don_Fonc_xyz
          • Champ_Don_base
          • Champ_Don_lu
          • Champ_Elem_DG
          • Champ_Elem_PolyMAC
          • Champ_Elem_PolyMAC_P0
          • Champ_Elem_PolyMAC_P0P1NC
          • Champ_Face_PolyMAC
          • Champ_Face_PolyMAC_P0
          • Champ_Face_PolyMAC_P0P1NC
          • Champ_Face_VDF
          • Champ_Face_VDF_implementation
          • Champ_Face_base
          • Champ_Fonc_Elem_DG
          • Champ_Fonc_Elem_PolyMAC
          • Champ_Fonc_Elem_PolyMAC_P0_TC
          • Champ_Fonc_Elem_PolyMAC_P0_rot
          • Champ_Fonc_Face_PolyMAC
          • Champ_Fonc_Face_VDF
          • Champ_Fonc_Fonction
          • Champ_Fonc_Fonction_txyz
          • Champ_Fonc_Fonction_txyz_Morceaux
          • Champ_Fonc_Interp
          • Champ_Fonc_MED
          • Champ_Fonc_MED_Table_Temps
          • Champ_Fonc_MED_Tabule
          • Champ_Fonc_Morceaux
          • Champ_Fonc_P0_EF
          • Champ_Fonc_P0_MED
          • Champ_Fonc_P0_VDF
          • Champ_Fonc_P0_VEF
          • Champ_Fonc_P0_base
          • Champ_Fonc_P1NC
          • Champ_Fonc_P1_DG
          • Champ_Fonc_P1_EF
          • Champ_Fonc_P1_MED
          • Champ_Fonc_P1_VDF
          • Champ_Fonc_P1_VEF
          • Champ_Fonc_P1_base
          • Champ_Fonc_P1_isoP1Bulle
          • Champ_Fonc_Q1NC
          • Champ_Fonc_Q1_EF
          • Champ_Fonc_Q1_MED
          • Champ_Fonc_Q1_VDF
          • Champ_Fonc_Q1_VEF
          • Champ_Fonc_Q1_base
          • Champ_Fonc_Som_PolyMAC
          • Champ_Fonc_Tabule
          • Champ_Fonc_Tabule_Elem_PolyMAC
          • Champ_Fonc_Tabule_Morceaux
          • Champ_Fonc_Tabule_Morceaux_Interp
          • Champ_Fonc_Tabule_Morceaux::CHTAB
          • Champ_Fonc_Tabule_P0_EF
          • Champ_Fonc_Tabule_P0_VDF
          • Champ_Fonc_Tabule_P0_VEF
          • Champ_Fonc_base
          • Champ_Fonc_reprise
          • Champ_Fonc_reprise_IJK
          • Champ_Fonc_t
          • Champ_Front_Composite
          • Champ_Front_Fonction
          • Champ_Front_MUSIG
          • Champ_Front_xyz_Tabule
          • Champ_Gen_de_Champs_Gen
          • Champ_Generique_Champ
          • Champ_Generique_Correlation
          • Champ_Generique_Divergence
          • Champ_Generique_Ecart_Type
          • Champ_Generique_Extraction
          • Champ_Generique_Gradient
          • Champ_Generique_Interpolation
          • Champ_Generique_Morceau_Equation
          • Champ_Generique_Moyenne
          • Champ_Generique_Operateur_base
          • Champ_Generique_Predefini
          • Champ_Generique_Reduction_0D
          • Champ_Generique_Statistiques_base
          • Champ_Generique_Tparoi_VEF
          • Champ_Generique_Transformation
          • Champ_Generique_base
          • Champ_Generique_erreur
          • Champ_Generique_modifier_pour_QC
          • Champ_Generique_refChamp
          • Champ_Generique_refChamp_special
          • Champ_Inc_P0_base
          • Champ_Inc_P1_base
          • Champ_Inc_Q1_base
          • Champ_Inc_base
          • Champ_Input_P0_Composite
          • Champ_Input_Proto
          • Champ_MUSIG
          • Champ_Ostwald
          • Champ_Ostwald_VDF
          • Champ_Ostwald_VEF
          • Champ_P0_EF
          • Champ_P0_VDF
          • Champ_P0_VEF
          • Champ_P1NC
          • Champ_P1NC_implementation
          • Champ_P1_EF
          • Champ_P1_VEF
          • Champ_P1_isoP1Bulle
          • Champ_P1iP1B_implementation
          • Champ_Parametrique
          • Champ_Post_Operateur_Eqn
          • Champ_Proto
          • Champ_Q1NC
          • Champ_Q1NC_implementation
          • Champ_Q1_EF
          • Champ_Q4_implementation
          • Champ_Rotationnel
          • Champ_Som_PolyMAC
          • Champ_Tabule_Temps
          • Champ_Tabule_lu
          • Champ_Uniforme
          • Champ_Uniforme_Morceaux
          • Champ_Uniforme_Morceaux_Tabule_Temps
          • Champ_Uniforme_Morceaux_inst
          • Champ_Uniforme_inst
          • Champ_base
          • Champ_front_ALE
          • Champ_front_ALE_Beam
          • Champ_front_ALE_projection
          • Champ_front_MED
          • Champ_front_Parametrique
          • Champ_front_Tabule
          • Champ_front_Tabule_lu
          • Champ_front_base
          • Champ_front_bruite
          • Champ_front_calc
          • Champ_front_calc_interne
          • Champ_front_contact_VEF
          • Champ_front_contact_fictif_VEF
          • Champ_front_contact_rayo_semi_transp_VEF
          • Champ_front_contact_rayo_transp_VEF
          • Champ_front_debit
          • Champ_front_debit_QC
          • Champ_front_debit_QC_fonc_t
          • Champ_front_debit_massique
          • Champ_front_fonc
          • Champ_front_fonc_gradient
          • Champ_front_fonc_gradient_VDF
          • Champ_front_fonc_gradient_VEF
          • Champ_front_fonc_pois_ipsn
          • Champ_front_fonc_pois_tube
          • Champ_front_instationnaire_base
          • Champ_front_lu
          • Champ_front_normal
          • Champ_front_normal_VEF
          • Champ_front_pression_from_u
          • Champ_front_rayonnement
          • Champ_front_recyclage
          • Champ_front_softanalytique
          • Champ_front_synt
          • Champ_front_t
          • Champ_front_tangentiel
          • Champ_front_tangentiel_VEF
          • Champ_front_txyz
          • Champ_front_uniforme
          • Champ_front_var
          • Champ_front_var_instationnaire
          • Champ_front_vide
          • Champ_front_xyz_debit
          • Champ_grad_T
          • Champ_h_conv
          • Champ_implementation
          • Champ_implementation_P0
          • Champ_implementation_P1
          • Champ_implementation_Q1
          • Champ_implementation_divers
          • Champ_implementation_sommet
          • Champ_input_P0
          • Champ_lu_proto
          • Champ_som_lu
          • Champ_som_lu_VDF
          • Champ_som_lu_VEF
          • Champ_val_tot_sur_vol_VDF
          • Champ_val_tot_sur_vol_VEF
          • Champ_val_tot_sur_vol_base
          • Champ_y_plus
          • Champs_Fonc
          • Champs_compris_IJK
          • Champs_compris_IJK_interface
          • Champs_compris_interface
          • Champs_front_ALE_projection
          • Changement_phase_Silver_Simpson
          • Changement_phase_base
          • Char_ptr
          • Chimie
          • Coalescence_bulles_1groupe_PolyMAC_P0
          • Coalescence_bulles_1groupe_Yao_Morel
          • Coalescence_bulles_1groupe_base
          • Coalescence_bulles_2groupes_PolyMAC_P0
          • Coalescence_bulles_2groupes_Smith
          • Coalescence_bulles_2groupes_base
          • Coarsen_Operator_K
          • Coarsen_Operator_Uniform
          • Coarsen_Operator_base
          • Collision_Model_FT_arbitrary
          • Collision_Model_FT_base
          • Collision_Model_FT_sphere
          • Collision_Model_FT_spheroid
          • Comm_Group
          • Comm_Group_MPI
          • Comm_Group_Noparallel
          • ComputeValParCompoInCell
          • ConcatAnsys
          • Cond_Lim_Rayo
          • Cond_Lim_rayo_semi_transp
          • Cond_lim
          • Cond_lim_base
          • Cond_lim_k_complique_transition_flux_nul_demi
          • Cond_lim_k_simple_flux_nul
          • Cond_lim_omega_demi
          • Cond_lim_omega_dix
          • Cond_lim_utilisateur_base
          • Conds_lim
          • Conduction
          • Conduction_IBM
          • Connectivite_frontieres
          • Constante
          • Constituant
          • Convection_Diffusion_Chaleur_Fluide_Dilatable_base
          • Convection_Diffusion_Chaleur_QC
          • Convection_Diffusion_Chaleur_Turbulent_QC
          • Convection_Diffusion_Chaleur_WC
          • Convection_Diffusion_Concentration
          • Convection_Diffusion_Concentration_FT_Disc
          • Convection_Diffusion_Concentration_Turbulent
          • Convection_Diffusion_Concentration_Turbulent_FT_Disc
          • Convection_Diffusion_Espece_Binaire_QC
          • Convection_Diffusion_Espece_Binaire_Turbulent_QC
          • Convection_Diffusion_Espece_Binaire_WC
          • Convection_Diffusion_Espece_Binaire_base
          • Convection_Diffusion_Espece_Fluide_Dilatable_base
          • Convection_Diffusion_Espece_Multi_QC
          • Convection_Diffusion_Espece_Multi_Turbulent_QC
          • Convection_Diffusion_Espece_Multi_WC
          • Convection_Diffusion_Espece_Multi_base
          • Convection_Diffusion_Fluide_Dilatable_Proto
          • Convection_Diffusion_Fluide_Dilatable_base
          • Convection_Diffusion_Phase_field
          • Convection_Diffusion_Temperature
          • Convection_Diffusion_Temperature_FT_Disc
          • Convection_Diffusion_Temperature_IBM
          • Convection_Diffusion_Temperature_IBM_Turbulent
          • Convection_Diffusion_Temperature_Turbulent
          • Convection_Diffusion_Temperature_base
          • Convection_Diffusion_Temperature_sensibility
          • Convection_Diffusion_Turbulent
          • Convection_Diffusion_std
          • Convection_diffusion_turbulence_multiphase
          • CoolProp_to_TRUST
          • CoolProp_to_TRUST_Sat_generique
          • CoolProp_to_TRUST_generique
          • Correction_Antal_PolyMAC_P0
          • Correction_Antal_VDF
          • Correction_Lubchenko_PolyMAC_P0
          • Correction_Tomiyama_PolyMAC_P0
          • Correlation_Vec_Sca_VDF
          • Correlation_Vec_Sca_VEF
          • Correlation_base
          • Corrige_flux_FT_base
          • Corrige_flux_FT_temperature_conv
          • Corrige_flux_FT_temperature_subresolution
          • Counter
          • Couplage_Parietal_PolyMAC_helper
          • Couplage_Tubes_IBC
          • Couplage_U
          • Courant_maille_Champ_Face
          • Create_domain_from_sub_domain
          • Critere_Q_Champ_Face
          • Critere_Q_Champ_P1NC
          • CutCell_GlobalInfo
          • CutCell_Properties
          • CutFace_Properties
          • Cut_cell_FT_Disc
          • Cut_cell_conv_scheme
          • Cut_cell_convection_auxiliaire
          • Cut_cell_correction_petites_cellules
          • Cut_cell_data
          • Cut_cell_diffusion_auxiliaire
          • Cut_cell_double
          • Cut_cell_schema_auxiliaire
          • Cut_cell_surface_efficace
          • DG_discretisation
          • DNS_QC_double
          • DP_Impose
          • DP_Impose_PolyMAC_Face
          • DP_Impose_VEF_Face
          • Darcy_QC_VDF_Face
          • Darcy_QC_VEF_P1NC
          • Deactivate_SIGINT_Catch
          • Debog
          • DebogFT
          • DebogIJK
          • Debog_Pb
          • Debog_Pb_Wrapper
          • Decouper_Bord_coincident
          • Decouper_multi
          • DescStructure
          • Desc_Structure_FT
          • Descripteur
          • Descripteur_FT
          • DeviceMemory
          • Diametre_bulles_champ
          • Diametre_bulles_constant
          • Diametre_bulles_musig
          • Diametre_hyd_champ
          • Diffu_k
          • Diffu_laminaire
          • Diffu_lm
          • Diffu_scal_lm
          • Diffu_totale_base
          • Diffu_totale_hyd_base
          • Diffu_totale_scal_base
          • Diffusion_croisee_echelle_temp_taux_diss_turb_PolyMAC_P0
          • Diffusion_croisee_echelle_temp_taux_diss_turb_VDF
          • Diffusion_supplementaire_echelle_temp_turb_PolyMAC_P0
          • Diffusion_supplementaire_echelle_temp_turb_VDF
          • Dilate
          • Dimension
          • Dirichlet
          • Dirichlet_entree_fluide
          • Dirichlet_homogene
          • Dirichlet_loi_paroi
          • Dirichlet_paroi_defilante
          • Dirichlet_paroi_fixe
          • Dirichlet_paroi_fixe_iso_Genepi2
          • Disable_TU
          • Discr_inst
          • Discret_Thermique
          • Discret_Thyd
          • Discretisation_base
          • Discretisation_tools
          • Discretiser
          • Discretiser_domaine
          • Dispersion_bulles_PolyMAC_P0
          • Dispersion_bulles_VDF
          • Dispersion_bulles_base
          • Dispersion_bulles_base::input_t
          • Dispersion_bulles_base::output_t
          • Dispersion_bulles_constante
          • Dispersion_bulles_turbulente_Bazin
          • Dispersion_bulles_turbulente_Bertodano
          • Dispersion_bulles_turbulente_Burns
          • Dispersion_bulles_turbulente_Lavieville
          • Dispersion_bulles_turbulente_constante
          • Dissipation_WIT_PolyMAC_P0
          • Dissipation_echelle_temp_taux_diss_turb_PolyMAC_P0
          • Dissipation_echelle_temp_taux_diss_turb_VDF
          • Dissipation_energie_cin_turb_PolyMAC_P0
          • Dissipation_energie_cin_turb_VDF
          • Distanceparoi
          • Domain_Graph
          • Domaine_ALE
          • Domaine_Cl_DG
          • Domaine_Cl_EF
          • Domaine_Cl_PolyMAC
          • Domaine_Cl_VDF
          • Domaine_Cl_VEF
          • Domaine_Cl_dis_base
          • Domaine_DG
          • Domaine_EF
          • Domaine_EF_axi
          • Domaine_IJK
          • Domaine_PolyMAC
          • Domaine_PolyMAC_P0
          • Domaine_PolyMAC_P0P1NC
          • Domaine_Poly_base
          • Domaine_VDF
          • Domaine_VEF
          • Domaine_VF
          • Domaine_VF_inst
          • Domaine_base
          • Domaine_dis_base
          • Domaine_dis_cache
          • EChaine
          • EChaineJDD
          • EDO_Pression_th_VDF
          • EDO_Pression_th_VDF_Gaz_Parfait
          • EDO_Pression_th_VDF_Gaz_Reel
          • EDO_Pression_th_VEF
          • EDO_Pression_th_VEF_Gaz_Parfait
          • EDO_Pression_th_VEF_Gaz_Reel
          • EDO_Pression_th_base
          • EF_axi_discretisation
          • EF_discretisation
          • EFichier
          • EFichierBin
          • EOS_Tools_VDF
          • EOS_Tools_VEF
          • EOS_Tools_base
          • EOS_to_TRUST
          • EOS_to_TRUST_Sat_generique
          • EOS_to_TRUST_generique
          • Echange_EV_Options
          • Echange_contact_Colburn_VDF
          • Echange_contact_Correlation_VDF
          • Echange_contact_Correlation_VEF
          • Echange_contact_ODVM_VDF
          • Echange_contact_PolyMAC
          • Echange_contact_PolyMAC_P0
          • Echange_contact_PolyMAC_P0P1NC
          • Echange_contact_Rayo_transp_VDF
          • Echange_contact_Rayo_transp_sans_relax_VDF
          • Echange_contact_VDF
          • Echange_contact_VDF_FT_Disc
          • Echange_contact_VDF_FT_Disc_solid
          • Echange_contact_VDF_Plaque_Flux_Cte
          • Echange_contact_rayo_semi_transp_VDF
          • Echange_couplage_thermique
          • Echange_externe_impose
          • Echange_externe_impose_H
          • Echange_externe_impose_rayo_semi_transp
          • Echange_externe_impose_rayo_transp
          • Echange_externe_radiatif
          • Echange_global_impose
          • Echange_global_impose_rayo_semi_transp
          • Echange_global_impose_turbulent
          • Echange_impose_base
          • Echange_interne_global_impose
          • Echange_interne_global_parfait
          • Echange_interne_impose
          • Echange_interne_parfait
          • Echelle_temporelle_turbulente
          • EcrFicCollecte
          • EcrFicCollecteBin
          • EcrFicPartage
          • EcrFicPartageBin
          • EcrFicPartageMPIIO
          • Ecr_fic_Ansys
          • Ecrire
          • Ecrire_CGNS
          • Ecrire_Champ_MED
          • Ecrire_Fichier
          • Ecrire_Fichier_Formatte
          • Ecrire_YAML
          • Ecrire_YAML::Pb2Save
          • Ecrire_fichier_xyz_valeur
          • EcritureLectureSpecial
          • Elem_EF_base
          • Elem_VEF_base
          • Elem_poly_base
          • Energie_Multiphase
          • Energie_Multiphase_Enthalpie
          • Energie_cinetique_turbulente
          • Energie_cinetique_turbulente_WIT
          • Ensemble_Faces_base
          • Ensemble_Lagrange_base
          • Entree
          • Entree_Brute
          • Entree_Fichier_base
          • Entree_Sortie_Error
          • Entree_complete
          • Entree_fluide_Fluctu_Temperature_imposee
          • Entree_fluide_Flux_Chaleur_Turbulente_imposee
          • Entree_fluide_K_Eps_impose
          • Entree_fluide_K_Omega_impose
          • Entree_fluide_T_h_imposee
          • Entree_fluide_V2_impose
          • Entree_fluide_alpha_impose
          • Entree_fluide_concentration_imposee
          • Entree_fluide_fraction_massique_imposee
          • Entree_fluide_temperature_imposee
          • Entree_fluide_temperature_imposee_H
          • Entree_fluide_vitesse_imposee
          • Entree_fluide_vitesse_imposee_ALE
          • Entree_fluide_vitesse_imposee_libre
          • Eq_ODVM
          • Eq_couch_lim
          • Eq_rayo_semi_transp_VDF
          • Eq_rayo_semi_transp_VEF
          • Equation_IBM_proto
          • Equation_base
          • Equation_rayonnement_base
          • Esp_Dist
          • Esp_Virt
          • Espece
          • Estimateur_Aposteriori_P0_VEF
          • Eval_Amont_PolyMAC_Elem
          • Eval_Amont_VDF_Elem
          • Eval_Amont_VDF_Face
          • Eval_Centre4_VDF_Elem
          • Eval_Centre4_VDF_Face
          • Eval_Centre_VDF_Elem
          • Eval_Centre_VDF_Face
          • Eval_Conv_PolyMAC
          • Eval_Conv_VDF
          • Eval_Conv_VDF_tools
          • Eval_Darcy_VDF_Face
          • Eval_Darcy_VEF_Face
          • Eval_Darcy_VEF_Face_View
          • Eval_Diff_Eps_VDF_Elem
          • Eval_Diff_K_Eps_Bas_Re_VDF_const
          • Eval_Diff_K_Eps_Bas_Re_VDF_const_Elem
          • Eval_Diff_K_Eps_Bas_Re_VDF_const_Elem_Axi
          • Eval_Diff_K_Eps_Bas_Re_VDF_var
          • Eval_Diff_K_Eps_Bas_Re_VDF_var_Elem
          • Eval_Diff_K_Eps_QC_VDF_Elem
          • Eval_Diff_K_Eps_QC_var_VDF_Elem
          • Eval_Diff_K_Eps_VDF
          • Eval_Diff_K_Eps_VDF_Elem
          • Eval_Diff_K_Eps_VDF_Elem_Axi
          • Eval_Diff_K_Eps_VDF_const
          • Eval_Diff_K_Eps_VDF_var
          • Eval_Diff_K_Eps_var_VDF_Elem
          • Eval_Diff_K_Omega_VDF
          • Eval_Diff_K_Omega_VDF_Elem
          • Eval_Diff_K_Omega_VDF_const
          • Eval_Diff_K_Omega_VDF_var
          • Eval_Diff_K_Omega_var_VDF_Elem
          • Eval_Diff_K_VDF_Elem
          • Eval_Diff_K_ou_Eps_VDF_const
          • Eval_Diff_VDF
          • Eval_Diff_VDF_Elem
          • Eval_Diff_VDF_Elem_Axi
          • Eval_Diff_VDF_Elem_aniso
          • Eval_Diff_VDF_Face
          • Eval_Diff_VDF_Multi_inco_Elem
          • Eval_Diff_VDF_Multi_inco_Elem_Axi
          • Eval_Diff_VDF_Multi_inco_Multi_scalar_Elem
          • Eval_Dift_Multiphase_VDF
          • Eval_Dift_Multiphase_VDF_Elem
          • Eval_Dift_Multiphase_VDF_Face
          • Eval_Dift_VDF
          • Eval_Dift_VDF_Elem
          • Eval_Dift_VDF_Elem_Axi
          • Eval_Dift_VDF_Face
          • Eval_Dift_VDF_Multi_inco_Elem
          • Eval_Dift_VDF_Multi_inco_Elem_Axi
          • Eval_Dirac_VDF_Elem
          • Eval_Dirac_VEF_Face
          • Eval_Dirac_VEF_Face_View
          • Eval_Div_VDF
          • Eval_Div_VDF_Elem
          • Eval_Echange_Himp_VDF_Elem
          • Eval_Forchheimer_VDF_Face
          • Eval_Forchheimer_VEF_Face
          • Eval_Forchheimer_VEF_Face_View
          • Eval_Gravite_VDF_Face
          • Eval_PolyMAC_Elem
          • Eval_Puiss_Neutr_VDF_Elem
          • Eval_Puiss_Th_DG_Elem
          • Eval_Puiss_Th_EF
          • Eval_Puiss_Th_PolyMAC_Elem
          • Eval_Puiss_Th_QC_EF
          • Eval_Puiss_Th_QC_VDF_Elem
          • Eval_Puiss_Th_QC_VEF_Face
          • Eval_Puiss_Th_QC_VEF_Face_View
          • Eval_Puiss_Th_VDF_Elem
          • Eval_Puiss_Th_VEF_Face
          • Eval_Puiss_Th_VEF_Face_View
          • Eval_Quick_VDF_Elem
          • Eval_Quick_VDF_Face
          • Eval_Quick_VDF_Face_Axi
          • Eval_Source_C_PolyMAC_Elem
          • Eval_Source_C_VDF_Elem
          • Eval_Source_C_VEF_Face
          • Eval_Source_C_VEF_Face_View
          • Eval_VDF_Elem
          • Eval_VDF_Face
          • Eval_centre_PolyMAC_Elem
          • Evaluateur_PolyMAC
          • Evaluateur_Source
          • Evaluateur_Source_EF_Som
          • Evaluateur_Source_Elem
          • Evaluateur_Source_Face
          • Evaluateur_Source_VEF_Face
          • Evaluateur_VDF
          • Execute_parallel
          • Expert_mode_K_Omega
          • Extraire_domaine
          • Extraire_plan
          • Extraire_surface
          • Extraire_surface_ALE
          • ExtrudeBord
          • ExtrudeParoi
          • Extruder
          • Extruder_en20
          • Extruder_en3
          • FT_Field
          • Face_Rayonnante
          • Faces_VDF
          • Faces_builder
          • Facettes_Interp_FT
          • Faisceau_Tubes
          • FichierHDF
          • FichierHDFPar
          • Fichier_Lata
          • Fichier_Lata_maitre
          • Field_base
          • Field_uniform_keps_from_ud
          • Filter_kernel_base
          • Filter_kernel_box
          • Filter_kernel_laplacian
          • Filter_kernel_weight_12_14_base
          • Filter_kernel_weight_12_14_conservatif
          • Filter_kernel_weight_12_14_pondere
          • Filter_kernel_weight_12_14_sansponderation
          • Filter_kernel_weight_13_13_base
          • Filter_kernel_weight_13_13_conservatif
          • Filter_kernel_weight_13_13_pondere
          • Filter_kernel_weight_13_13_sansponderation
          • Filter_kernel_weight_14_14_18_base
          • Filter_kernel_weight_14_14_18_conservatif
          • Filter_kernel_weight_14_14_18_pondere
          • Filter_kernel_weight_14_14_18_sansponderation
          • Filter_kernel_weight_14_38_base
          • Filter_kernel_weight_14_38_conservatif
          • Filter_kernel_weight_14_38_pondere
          • Filter_kernel_weight_14_38_sansponderation
          • Filter_kernel_weight_15_15_15_base
          • Filter_kernel_weight_15_15_15_conservatif
          • Filter_kernel_weight_15_15_15_pondere
          • Filter_kernel_weight_15_15_15_sansponderation
          • Filter_kernel_weight_16_16_16_112_base
          • Filter_kernel_weight_16_16_16_112_conservatif
          • Filter_kernel_weight_16_16_16_112_pondere
          • Filter_kernel_weight_16_16_16_112_sansponderation
          • Filter_kernel_weight_23_16_base
          • Filter_kernel_weight_23_16_conservatif
          • Filter_kernel_weight_23_16_pondere
          • Filter_kernel_weight_23_16_sansponderation
          • Fluide_Dilatable_base
          • Fluide_Diphasique
          • Fluide_Diphasique_IJK
          • Fluide_Incompressible
          • Fluide_MUSIG
          • Fluide_Ostwald
          • Fluide_Quasi_Compressible
          • Fluide_R12_c1_gaz
          • Fluide_R12_c1_liquide
          • Fluide_Weakly_Compressible
          • Fluide_base
          • Fluide_eau_c3_gaz
          • Fluide_eau_c3_liquide
          • Fluide_generique_CoolProp
          • Fluide_generique_EOS
          • Fluide_generique_TPPI_base
          • Fluide_reel_base
          • Fluide_reel_base::H_to_T
          • Fluide_reel_base::T_to_H
          • Fluide_sodium_gaz
          • Fluide_sodium_liquide
          • Fluide_stiffened_gas
          • Flux_2groupes_PolyMAC_P0
          • Flux_2groupes_Smith
          • Flux_2groupes_base
          • Flux_2groupes_base::input_coeffs
          • Flux_2groupes_base::input_therms
          • Flux_2groupes_base::output_coeffs
          • Flux_2groupes_base::output_therms
          • Flux_interfacial_Chen_Mayinger
          • Flux_interfacial_Coef_Constant
          • Flux_interfacial_Kim_Park
          • Flux_interfacial_PolyMAC_P0P1NC
          • Flux_interfacial_Ranz_Marshall
          • Flux_interfacial_VDF
          • Flux_interfacial_Wolfert
          • Flux_interfacial_Wolfert_composant
          • Flux_interfacial_Zeitoun
          • Flux_interfacial_base
          • Flux_interfacial_base::input_t
          • Flux_interfacial_base::output_t
          • Flux_interfacial_constant_Nu
          • Flux_parietal_Hibiki
          • Flux_parietal_Kommajosyula
          • Flux_parietal_Kurul_Podowski
          • Flux_parietal_Nusselt
          • Flux_parietal_adaptatif
          • Flux_parietal_base
          • Flux_parietal_base::input_t
          • Flux_parietal_base::output_t
          • Flux_parietal_bilineaire
          • Flux_parietal_diphasique_simple_lineaire
          • Flux_radiatif_VDF
          • Flux_radiatif_VEF
          • Flux_radiatif_base
          • Force_Centrifuge_VDF_Face_Axi
          • Force_Tchen_PolyMAC_P0
          • Force_Tchen_VDF
          • Force_ph
          • Force_sp
          • Forchheimer_QC_VDF_Face
          • Forchheimer_QC_VEF_P1NC
          • Format_Post_CGNS
          • Format_Post_Lata
          • Format_Post_Lml
          • Format_Post_Med
          • Format_Post_base
          • Fourier_trans
          • Front_VF
          • Frontiere_Ouverte_Rayo_transp
          • Frontiere_Ouverte_temperature_imposee_Rayo_transp
          • Frontiere_dis_base
          • Frontiere_ouverte_rayo_semi_transp
          • Frontiere_ouverte_rho_u_impose
          • Frontiere_ouverte_temperature_imposee_rayo_semi_transp
          • Frontiere_ouverte_vitesse_vortex
          • Frottement_externe_impose
          • Frottement_global_impose
          • Frottement_impose_base
          • Frottement_interfacial_Garnier
          • Frottement_interfacial_Ishii_Zuber
          • Frottement_interfacial_Ishii_Zuber_Deformable
          • Frottement_interfacial_Kumar_Brooks
          • Frottement_interfacial_PolyMAC_P0
          • Frottement_interfacial_Rusche
          • Frottement_interfacial_Simonnet
          • Frottement_interfacial_Sonnenburg
          • Frottement_interfacial_Tomiyama
          • Frottement_interfacial_Tomiyama_complet
          • Frottement_interfacial_VDF
          • Frottement_interfacial_Wallis
          • Frottement_interfacial_Weber
          • Frottement_interfacial_Zenit
          • Frottement_interfacial_base
          • Frottement_interfacial_bulles_composant
          • Frottement_interfacial_bulles_constant
          • Gravite_Multiphase
          • Hexa_EF
          • Hexa_VEF
          • Hexa_poly
          • ICE
          • ICoCo::Init_Params
          • ICoCo::ProblemTrio
          • IJK_Composantes_Connex
          • IJK_Field_tools
          • IJK_Finite_Difference_One_Dimensional_Matrix_Assembler
          • IJK_Ghost_Fluid_Fields
          • IJK_Grid_Geometry
          • IJK_Interfaces
          • IJK_Lata_Swap_JK
          • IJK_MonofluidVar
          • IJK_One_Dimensional_Subproblem
          • IJK_One_Dimensional_Subproblem_Geometry
          • IJK_One_Dimensional_Subproblem_Velocity
          • IJK_One_Dimensional_Subproblems
          • IJK_One_Dimensional_Subproblems_Geometry
          • IJK_One_Dimensional_Subproblems_Interfaces_Fields
          • IJK_One_Dimensional_Subproblems_Tools
          • IJK_One_Dimensional_Subproblems_Velocity
          • IJK_Shear_Periodic_helpler
          • IJK_SolveSys_FD_thermal
          • IJK_Striped_Writer
          • IJK_Test_Multigrille
          • IJK_Thermal_Multiple_Subresolutions
          • IJK_Thermal_Onefluid
          • IJK_Thermal_Outputs
          • IJK_Thermal_Subresolution
          • IJK_Thermal_base
          • IJK_Thermal_cut_cell
          • IJK_Thermals
          • IJK_VDF_converter
          • IJK_discretisation
          • IJ_layout
          • ILU_SP
          • Implicit_steady
          • Implicite
          • Implicite_ALE
          • Imposer_vit_bords_ALE
          • Imprimer_Fichiers_RANS_VDF
          • Imprimer_Fichiers_RANS_VEF
          • Imprimer_flux
          • Imprimer_flux_sum
          • InOutCommBuffers
          • IndexCoefficient
          • Init_par_partie
          • Init_spectral
          • Injection_QDM_nulle_PolyMAC_P0
          • Injection_QDM_nulle_VDF
          • Injection_masse_PolyMAC_P0
          • InputCommBuffer
          • IntListsListe
          • Integrale_tps_Champ
          • Integrale_tps_produit_champs
          • Integrer_champ_med
          • Interface_base
          • Interface_sigma_constant
          • Interpolation_IBM_aucune
          • Interpolation_IBM_base
          • Interpolation_IBM_elem_fluid
          • Interpolation_IBM_hybrid
          • Interpolation_IBM_mean_gradient
          • Interpolation_IBM_mean_gradient_proto
          • Interpolation_IBM_power_law_tbl
          • Interpolation_IBM_power_law_tbl_proto
          • Interpolation_IBM_power_law_tbl_u_star
          • Interprete
          • Interprete_bloc
          • Intersection_Interface_ijk
          • Intersection_Interface_ijk_cell
          • Intersection_Interface_ijk_face
          • Intersections_Elem_Facettes
          • Intersections_Elem_Facettes_Data
          • Iterateur_PolyMAC_base
          • Iterateur_Source_base
          • Iterateur_VDF_base
          • KerasLayer
          • KerasLayerActivation
          • KerasLayerConvolution2d
          • KerasLayerDense
          • KerasLayerElu
          • KerasLayerEmbedding
          • KerasLayerFlatten
          • KerasLayerLSTM
          • KerasLayerMaxPooling2d
          • KerasModel
          • KerasTimer
          • Lata_2_CGNS
          • Lata_2_MED
          • Lata_2_Other
          • Leap_frog
          • LecFicDiffuse
          • LecFicDiffuseBin
          • LecFicDiffuse_JDD
          • LecFicDistribue
          • LecFicDistribueBin
          • LecFicDistribue_sansnum
          • Lec_Diffuse_base
          • Lecture_Champ
          • Lecture_Table
          • Link_CGNS_Files
          • Lire
          • Lire_Fichier
          • Lire_Fichier_Bin
          • Lire_Ideas
          • Lire_Tgrid
          • List_Equations_Scalaires_Passifs_Especes
          • Liste_Champ_Generique
          • Liste_bloc
          • Liste_bloc_curseur
          • Lml_2_Lata
          • LoiParoiHybride
          • LoiParoiHybride_VDF
          • LoiParoiHybride_VEF
          • Loi_2couches_base
          • Loi_Etat_Binaire_GP_QC
          • Loi_Etat_Binaire_GP_WC
          • Loi_Etat_Binaire_GP_base
          • Loi_Etat_CoolProp_QC
          • Loi_Etat_CoolProp_WC
          • Loi_Etat_EOS_QC
          • Loi_Etat_EOS_WC
          • Loi_Etat_GP_QC
          • Loi_Etat_GP_WC
          • Loi_Etat_GP_base
          • Loi_Etat_GR_base
          • Loi_Etat_Melange_GP_base
          • Loi_Etat_Mono_GP_base
          • Loi_Etat_Multi_GP_QC
          • Loi_Etat_Multi_GP_WC
          • Loi_Etat_Multi_GP_base
          • Loi_Etat_TPPI_QC_base
          • Loi_Etat_TPPI_WC_base
          • Loi_Etat_TPPI_base
          • Loi_Etat_base
          • Loi_Etat_rhoT_GP_QC
          • Loi_Etat_rhoT_GR_QC
          • Loi_Fermeture_Test
          • Loi_Fermeture_base
          • Loi_Paroi_Nu_Impose_VDF
          • Loi_Paroi_Nu_Impose_VEF
          • Loi_convforcee
          • Loi_convnat
          • Loi_expert_hydr_EF
          • Loi_expert_hydr_VDF
          • Loi_expert_hydr_VEF
          • Loi_expert_scalaire_EF
          • Loi_expert_scalaire_VDF
          • Loi_expert_scalaire_VEF
          • Loi_horaire
          • Loi_paroi_Ramstorfer
          • Loi_paroi_adaptative
          • Loi_paroi_base
          • Loi_paroi_log
          • Loi_perso
          • MD_Vector
          • MD_Vector_base
          • MD_Vector_composite
          • MD_Vector_mono
          • MD_Vector_renumber
          • MD_Vector_seq
          • MD_Vector_std
          • MD_Vector_tools
          • Maillage_FT_Disc
          • Maillage_FT_Disc_Data_Cache
          • Maillage_FT_IJK
          • MaillerParallel
          • Marching_Cubes
          • Marqueur_FT
          • Marqueur_Lagrange_base
          • Mass_Redistribution_Phase_Field
          • Masse_DG_Elem
          • Masse_DG_base
          • Masse_Multiphase
          • Masse_PolyMAC_Elem
          • Masse_PolyMAC_Face
          • Masse_PolyMAC_P0P1NC_Elem
          • Masse_PolyMAC_P0P1NC_Face
          • Masse_PolyMAC_P0P1NC_base
          • Masse_PolyMAC_P0_Face
          • Masse_PolyMAC_base
          • Masse_VDF_Elem
          • Masse_VDF_Face
          • Masse_VDF_base
          • Masse_VEF_P1NC
          • Masse_ajoutee_Cai
          • Masse_ajoutee_Coef_Constant
          • Masse_ajoutee_Wijngaarden
          • Masse_ajoutee_Zuber
          • Masse_ajoutee_base
          • Matrice
          • Matrice33
          • Matrice_Base
          • Matrice_Bloc
          • Matrice_Bloc_Sym
          • Matrice_Dense
          • Matrice_Diagonale
          • Matrice_Grossiere
          • Matrice_Morse
          • Matrice_Morse_Diag
          • Matrice_Morse_Sym
          • Matrice_Morse_View
          • Matrice_Nulle
          • Matrice_Petsc
          • Matrice_SuperMorse
          • Matrice_Sym
          • Matrix_tools
          • Memoire
          • Memoire_ptr
          • Merge_MED
          • Metis_String_Option
          • Milieu_MUSIG
          • Milieu_base
          • Milieu_composite
          • Mkdir
          • ModPerm_Carman_Kozeny
          • ModPerm_Cte
          • ModPerm_ErgunPourDarcy
          • ModPerm_ErgunPourForch
          • Mod_echelle_LRM_base
          • Mod_echelle_cv_forcee
          • Mod_echelle_cv_naturelle
          • Modele_EASM_Baglietto_VEF
          • Modele_F1F2FMU_unitaire_VDF
          • Modele_Fonc_Bas_Reynolds_Base
          • Modele_Fonc_Bas_Reynolds_Thermique_Base
          • Modele_Fonc_Realisable_base
          • Modele_Jones_Launder_Thermique_VDF
          • Modele_Jones_Launder_VDF
          • Modele_Jones_Launder_VEF
          • Modele_Lam_Bremhorst_VEF
          • Modele_Launder_Sharma_VDF
          • Modele_Launder_Sharma_VEF
          • Modele_Permeabilite_base
          • Modele_Rayonnement_Milieu_Transparent
          • Modele_Rayonnement_base
          • Modele_Shih_Zhu_Lumley_VDF
          • Modele_Shih_Zhu_Lumley_VEF
          • Modele_rayo_semi_transp
          • Modele_standard_KEps_VEF
          • Modele_turbulence_hyd_0_eq_base
          • Modele_turbulence_hyd_2_eq_base
          • Modele_turbulence_hyd_7_eq_base
          • Modele_turbulence_hyd_K_Eps
          • Modele_turbulence_hyd_K_Eps_2_Couches
          • Modele_turbulence_hyd_K_Eps_Bas_Reynolds
          • Modele_turbulence_hyd_K_Eps_Bicephale
          • Modele_turbulence_hyd_K_Eps_Realisable
          • Modele_turbulence_hyd_K_Eps_Realisable_Bicephale
          • Modele_turbulence_hyd_K_Omega
          • Modele_turbulence_hyd_LES_1elt_VEF
          • Modele_turbulence_hyd_LES_1elt_selectif_mod_VEF
          • Modele_turbulence_hyd_LES_DSGS_VDF
          • Modele_turbulence_hyd_LES_Fst_VEF
          • Modele_turbulence_hyd_LES_Fst_sel_VEF
          • Modele_turbulence_hyd_LES_SMAGO_DYN_VDF
          • Modele_turbulence_hyd_LES_Smago_VDF
          • Modele_turbulence_hyd_LES_Smago_VEF
          • Modele_turbulence_hyd_LES_Smago_filtre_VEF
          • Modele_turbulence_hyd_LES_VDF
          • Modele_turbulence_hyd_LES_VDF_base
          • Modele_turbulence_hyd_LES_VEF
          • Modele_turbulence_hyd_LES_VEF_base
          • Modele_turbulence_hyd_LES_Wale_VDF
          • Modele_turbulence_hyd_LES_Wale_VEF
          • Modele_turbulence_hyd_LES_axi_VDF
          • Modele_turbulence_hyd_LES_base
          • Modele_turbulence_hyd_LES_selectif_VDF
          • Modele_turbulence_hyd_LES_selectif_mod_VDF
          • Modele_turbulence_hyd_Longueur_Melange_VDF
          • Modele_turbulence_hyd_Longueur_Melange_VEF
          • Modele_turbulence_hyd_Longueur_Melange_base
          • Modele_turbulence_hyd_RANS_Bicephale_base
          • Modele_turbulence_hyd_RANS_K_Eps_base
          • Modele_turbulence_hyd_RANS_K_Omega_base
          • Modele_turbulence_hyd_base
          • Modele_turbulence_hyd_combinaison
          • Modele_turbulence_hyd_null
          • Modele_turbulence_scal_Fluctuation_Temperature
          • Modele_turbulence_scal_Fluctuation_Temperature_W
          • Modele_turbulence_scal_Fluctuation_Temperature_W_Bas_Re
          • Modele_turbulence_scal_LES_dyn_VDF
          • Modele_turbulence_scal_Prandtl
          • Modele_turbulence_scal_Schmidt
          • Modele_turbulence_scal_base
          • Modele_turbulence_scal_diffturb_base
          • Modele_turbulence_scal_null
          • ModifyDomaineAxi1D
          • MorEqn
          • Motcle
          • Motcles
          • Moyenne_volumique
          • MuLambda_TBLE_Cte
          • MuLambda_TBLE_Fcts_T
          • MuLambda_TBLE_base
          • Multi_Sch_ThHyd
          • Multigrille_Adrien
          • Multigrille_base
          • MultipleFiles
          • Multiplicateur_diphasique_Friedel
          • Multiplicateur_diphasique_Lottes_Flinn
          • Multiplicateur_diphasique_Muhler_Steinhagen
          • Multiplicateur_diphasique_base
          • Multiplicateur_diphasique_homogene
          • My_Comm_Group
          • Navier
          • Navier_Stokes_Aposteriori
          • Navier_Stokes_FTD_IJK
          • Navier_Stokes_FT_Disc
          • Navier_Stokes_FT_Disc_interne
          • Navier_Stokes_Fluide_Dilatable_Proto
          • Navier_Stokes_Fluide_Dilatable_base
          • Navier_Stokes_IBM
          • Navier_Stokes_IBM_Turbulent
          • Navier_Stokes_QC
          • Navier_Stokes_Turbulent
          • Navier_Stokes_Turbulent_ALE
          • Navier_Stokes_Turbulent_QC
          • Navier_Stokes_WC
          • Navier_Stokes_phase_field
          • Navier_Stokes_std
          • Navier_Stokes_std_ALE
          • Navier_Stokes_std_sensibility
          • Neumann
          • Neumann_homogene
          • Neumann_paroi
          • Neumann_paroi_adiabatique
          • Neumann_paroi_flux_nul
          • Neumann_paroi_rayo_semi_transp_VDF
          • Neumann_paroi_rayo_semi_transp_VEF
          • Neumann_sortie_libre
          • Neumann_sortie_libre_Temp_H
          • Neumann_val_ext
          • Nom
          • Noms
          • Nucleation_paroi_PolyMAC_P0
          • OBuffer
          • Objet_U
          • Objet_U_ptr
          • Objet_a_lire
          • OctreeLoc
          • OpConvAmontIJK_double
          • OpConvCentre2IJKScalar_double
          • OpConvCentre2IJK_double
          • OpConvCentre4IJK_double
          • OpConvDiscQuickIJKScalar_double
          • OpConvQuickIJKScalar_cut_cell_double
          • OpConvQuickIJKScalar_double
          • OpConvQuickInterfaceIJKScalar_double
          • OpConvQuickInterfaceOnefluidIJKScalar_double
          • OpConvQuickSharpIJK_double
          • OpDiffAnisotropicIJKScalar_double
          • OpDiffAnisotropicIJK_double
          • OpDiffIJKScalar_cut_cell_double
          • OpDiffIJKScalar_double
          • OpDiffIJK_double
          • OpDiffStdWithLaminarTransposeAndDivergenceAnisotropicIJK_double
          • OpDiffStdWithLaminarTransposeAndDivergenceIJK_double
          • OpDiffStdWithLaminarTransposeAndDivergenceTensorialAnisotropicZeroatwallIJK_double
          • OpDiffStdWithLaminarTransposeAndDivergenceTensorialZeroatwallIJK_double
          • OpDiffStdWithLaminarTransposeAnisotropicIJK_double
          • OpDiffStdWithLaminarTransposeIJK_double
          • OpDiffStdWithLaminarTransposeTensorialAnisotropicZeroatwallIJK_double
          • OpDiffStdWithLaminarTransposeTensorialZeroatwallIJK_double
          • OpDiffStructuralOnlyIJKScalar_double
          • OpDiffStructuralOnlyZeroatwallIJK_double
          • OpDiffTensorialAnisotropicZeroatwallIJK_double
          • OpDiffTensorialZeroatwallIJK_double
          • OpDiffTurbIJK_double
          • OpDiffUniformIJKScalarCorrection_double
          • OpDiffUniformIJKScalar_double
          • OpDiffVectorialAnisotropicIJKScalar_double
          • OpDiffVectorialIJKScalar_double
          • OpGradCentre2IJKScalar_double
          • OpGradFluxCentre2IJKScalar_double
          • OpGradFluxQuickIJKScalar_double
          • OpGradQuickIJKScalar_double
          • OpHessCentre2IJKScalar_double
          • OpHessFluxCentre2IJKScalar_double
          • OpVEF_Centre
          • OpVEF_Centre4
          • OpVEF_Quick
          • Op_Conv_ALE
          • Op_Conv_ALE_VDF
          • Op_Conv_ALE_VEF
          • Op_Conv_AmontNew_VEF_Face
          • Op_Conv_Amont_PolyMAC_Elem
          • Op_Conv_Amont_PolyMAC_Face
          • Op_Conv_Amont_PolyMAC_P0P1NC_Elem
          • Op_Conv_Amont_PolyMAC_P0P1NC_Face
          • Op_Conv_Amont_PolyMAC_P0_Face
          • Op_Conv_Amont_VDF_Elem
          • Op_Conv_Amont_VDF_Face
          • Op_Conv_Amont_VEF_Face
          • Op_Conv_Amont_VPoly_VDF_Face
          • Op_Conv_Amont_old_VEF_Face
          • Op_Conv_BTD_EF
          • Op_Conv_Centre4_VDF_Elem
          • Op_Conv_Centre4_VDF_Face
          • Op_Conv_Centre_EF_VEF_Face
          • Op_Conv_Centre_PolyMAC_Elem
          • Op_Conv_Centre_PolyMAC_Face
          • Op_Conv_Centre_PolyMAC_P0P1NC_Elem
          • Op_Conv_Centre_PolyMAC_P0P1NC_Face
          • Op_Conv_Centre_PolyMAC_P0_Face
          • Op_Conv_Centre_VDF_Elem
          • Op_Conv_Centre_VDF_Face
          • Op_Conv_Centre_VEF_Face
          • Op_Conv_Centre_old_VEF_Face
          • Op_Conv_DI_L2_VEF_Face
          • Op_Conv_EF
          • Op_Conv_EF_Stab_PolyMAC_Face
          • Op_Conv_EF_Stab_PolyMAC_P0P1NC_Elem
          • Op_Conv_EF_Stab_PolyMAC_P0P1NC_Face
          • Op_Conv_EF_Stab_PolyMAC_P0_Face
          • Op_Conv_EF_VEF_P1NC
          • Op_Conv_EF_VEF_P1NC_Stab
          • Op_Conv_EF_base
          • Op_Conv_Muscl3_VEF_Face
          • Op_Conv_Muscl_New_VEF_Face
          • Op_Conv_Muscl_VEF_Face
          • Op_Conv_Muscl_old_VEF_Face
          • Op_Conv_PolyMAC_base
          • Op_Conv_PolyMAC_iterateur_base
          • Op_Conv_Quick_VDF_Elem
          • Op_Conv_Quick_VDF_Face
          • Op_Conv_Quick_VDF_Face_Axi
          • Op_Conv_RT_VEF_Face
          • Op_Conv_SUPG_EF
          • Op_Conv_VDF_base
          • Op_Conv_VEF_Face
          • Op_Conv_VEF_base
          • Op_Conv_Vort_VEF_Face
          • Op_Conv_kschemas_VEF
          • Op_Conv_kschemas_centre_VEF
          • Op_Conv_negligeable
          • Op_Correlation
          • Op_Curl_VEFP1B
          • Op_Diff_DG_Elem
          • Op_Diff_DG_base
          • Op_Diff_EF
          • Op_Diff_EF_base
          • Op_Diff_Eps_VDF_Elem
          • Op_Diff_Fluctu_Temp
          • Op_Diff_Fluctu_Temp_Base
          • Op_Diff_Fluctu_Temp_negligeable
          • Op_Diff_Flux_Chaleur_Turb
          • Op_Diff_Flux_Chaleur_Turb_Base
          • Op_Diff_Flux_Chaleur_Turb_negligeable
          • Op_Diff_K_Eps_Bas_Re_VDF_Elem
          • Op_Diff_K_Eps_Bas_Re_VDF_Elem_Axi
          • Op_Diff_K_Eps_Bas_Re_VDF_base
          • Op_Diff_K_Eps_Bas_Re_VDF_var_Elem
          • Op_Diff_K_Eps_QC_VDF_Elem
          • Op_Diff_K_Eps_QC_VEF_Face
          • Op_Diff_K_Eps_VDF_Elem
          • Op_Diff_K_Eps_VDF_Elem_Axi
          • Op_Diff_K_Eps_VDF_base
          • Op_Diff_K_Eps_VEF_Face
          • Op_Diff_K_Eps_VEF_base
          • Op_Diff_K_Eps_var_QC_VDF_Elem
          • Op_Diff_K_Eps_var_VDF_Elem
          • Op_Diff_K_Omega_VDF_Elem
          • Op_Diff_K_Omega_VDF_base
          • Op_Diff_K_Omega_VEF_Face
          • Op_Diff_K_Omega_VEF_base
          • Op_Diff_K_Omega_var_VDF_Elem
          • Op_Diff_K_VDF_Elem
          • Op_Diff_Nonlinear_PolyMAC_Elem
          • Op_Diff_P1NC_barprim
          • Op_Diff_PolyMAC_Elem
          • Op_Diff_PolyMAC_Face
          • Op_Diff_PolyMAC_Gen_base
          • Op_Diff_PolyMAC_P0P1NC_Elem
          • Op_Diff_PolyMAC_P0P1NC_Face
          • Op_Diff_PolyMAC_P0P1NC_base
          • Op_Diff_PolyMAC_P0_Elem
          • Op_Diff_PolyMAC_P0_Face
          • Op_Diff_PolyMAC_P0_base
          • Op_Diff_PolyMAC_base
          • Op_Diff_RotRot
          • Op_Diff_Turbulent_PolyMAC_P0_Elem
          • Op_Diff_Turbulent_PolyMAC_P0_Face
          • Op_Diff_Turbulent_base
          • Op_Diff_VDF_Elem
          • Op_Diff_VDF_Elem_Axi
          • Op_Diff_VDF_Elem_aniso
          • Op_Diff_VDF_Elem_base
          • Op_Diff_VDF_Face
          • Op_Diff_VDF_Face_Axi
          • Op_Diff_VDF_Face_Axi_base
          • Op_Diff_VDF_Face_base
          • Op_Diff_VDF_Multi_inco_Elem
          • Op_Diff_VDF_Multi_inco_Elem_Axi
          • Op_Diff_VDF_Multi_inco_Multi_scalar_Elem
          • Op_Diff_VDF_base
          • Op_Diff_VEFP1NCP1B_Face
          • Op_Diff_VEF_Anisotrope_Face
          • Op_Diff_VEF_Face
          • Op_Diff_VEF_Face_Penalise
          • Op_Diff_VEF_Face_Q1
          • Op_Diff_VEF_Face_Stab
          • Op_Diff_VEF_base
          • Op_Diff_negligeable
          • Op_Diff_option_EF
          • Op_Dift_EF_Q1
          • Op_Dift_EF_Q1_option
          • Op_Dift_EF_base
          • Op_Dift_Multiphase_VDF_Elem
          • Op_Dift_Multiphase_VDF_Face
          • Op_Dift_Multiphase_proto
          • Op_Dift_Nonlinear_PolyMAC_Elem
          • Op_Dift_PolyMAC_Elem
          • Op_Dift_PolyMAC_P0_Elem
          • Op_Dift_Stab_VEF_Face
          • Op_Dift_VDF_Elem
          • Op_Dift_VDF_Elem_Axi
          • Op_Dift_VDF_Elem_base
          • Op_Dift_VDF_Face
          • Op_Dift_VDF_Face_Axi
          • Op_Dift_VDF_Face_Axi_base
          • Op_Dift_VDF_Face_base
          • Op_Dift_VDF_Multi_inco_Elem
          • Op_Dift_VDF_Multi_inco_Elem_Axi
          • Op_Dift_VDF_base
          • Op_Dift_VEF_Face
          • Op_Dift_VEF_Face_Q1
          • Op_Dift_VEF_P1NCP1B_Face
          • Op_Dift_VEF_base
          • Op_Dift_negligeable
          • Op_Dift_standard_VEF_Face
          • Op_Div_EF
          • Op_Div_PolyMAC
          • Op_Div_PolyMAC_P0
          • Op_Div_PolyMAC_P0P1NC
          • Op_Div_VDF_Elem
          • Op_Div_VDF_base
          • Op_Div_VEFP1B_Elem
          • Op_EF_base
          • Op_Ecart_type
          • Op_Evanescence_Homogene_Elem_base
          • Op_Evanescence_Homogene_Face_base
          • Op_Evanescence_Homogene_PolyMAC_P0P1NC_Elem
          • Op_Evanescence_Homogene_PolyMAC_P0P1NC_Face
          • Op_Evanescence_Homogene_PolyMAC_P0_Face
          • Op_Evanescence_Homogene_VDF_Elem
          • Op_Evanescence_Homogene_VDF_Face
          • Op_Grad_EF
          • Op_Grad_P0_to_Face
          • Op_Grad_P1NC_to_P0
          • Op_Grad_PolyMAC_Face
          • Op_Grad_PolyMAC_P0P1NC_Face
          • Op_Grad_PolyMAC_P0_Face
          • Op_Grad_VDF_Face
          • Op_Grad_VDF_Face_base
          • Op_Grad_VEF_P1B_Face
          • Op_Moyenne
          • Op_PolyMAC_Elem
          • Op_Rot_VEFP1B
          • Op_VDF_Elem
          • Op_VDF_Face
          • Op_VEF_Face
          • Operateur
          • Operateur_Conv
          • Operateur_Conv_base
          • Operateur_Conv_sensibility
          • Operateur_Conv_sensibility_VEF
          • Operateur_Diff
          • Operateur_Diff_base
          • Operateur_Div
          • Operateur_Div_base
          • Operateur_Evanescence
          • Operateur_Evanescence_base
          • Operateur_Grad
          • Operateur_Grad_base
          • Operateur_IJK_data_channel
          • Operateur_IJK_elem_base_double
          • Operateur_IJK_elem_conv
          • Operateur_IJK_elem_conv_base_double
          • Operateur_IJK_elem_diff
          • Operateur_IJK_elem_diff_base_double
          • Operateur_IJK_faces_base_double
          • Operateur_IJK_faces_conv
          • Operateur_IJK_faces_conv_base_double
          • Operateur_IJK_faces_diff
          • Operateur_IJK_faces_diff_base_double
          • Operateur_Statistique_tps_base
          • Operateur_base
          • Operateur_negligeable
          • Operateurs_Statistique_tps
          • Operator_FT_Disc
          • Option_CGNS
          • Option_DG
          • Option_IJK
          • Option_Interpolation
          • Option_PolyMAC
          • Option_VDF
          • Orienter_Simplexes
          • OutputCommBuffer
          • PCShell_Jacobi
          • PCShell_base
          • PCstruct
          • PDF_model
          • PE_Groups
          • PNode
          • PNodePod
          • Parallel_io_parameters
          • Param
          • Parametre_diffusion_implicite
          • Parametre_equation_base
          • Parametre_implicite
          • ParcoursIJKDir
          • Parcours_interface
          • ParoiVDF_TBLE
          • ParoiVDF_TBLE_LRM
          • ParoiVEF_TBLE
          • ParoiVEF_TBLE_scal
          • Paroi_2couches_VDF
          • Paroi_2couches_scal_VDF
          • Paroi_Cisaillement_Imp_VEF
          • Paroi_FT_disc
          • Paroi_Knudsen_non_negligeable
          • Paroi_ODVM_scal_VDF
          • Paroi_Rayo_transp
          • Paroi_TAU_NUL_VDF
          • Paroi_TBLE_QDM
          • Paroi_TBLE_QDM_Scal
          • Paroi_TBLE_scal_VDF
          • Paroi_Temperature_imposee
          • Paroi_UTAU_IMP_Impl
          • Paroi_UTAU_IMP_VDF
          • Paroi_adiabatique
          • Paroi_contact
          • Paroi_contact_fictif
          • Paroi_contact_fictif_rayo
          • Paroi_contact_rayo
          • Paroi_decalee_Robin
          • Paroi_flux_impose
          • Paroi_flux_impose_Rayo_transp
          • Paroi_frottante_loi
          • Paroi_frottante_simple
          • Paroi_hyd_base_EF
          • Paroi_hyd_base_VDF
          • Paroi_hyd_base_VEF
          • Paroi_log_QDM
          • Paroi_loi_Ciofalo_hyd_VDF
          • Paroi_loi_WW_hyd_EF
          • Paroi_loi_WW_hyd_VDF
          • Paroi_loi_WW_hyd_VEF
          • Paroi_loi_WW_scal_VDF
          • Paroi_loi_WW_scal_VEF
          • Paroi_negligeable_EF
          • Paroi_negligeable_VDF
          • Paroi_negligeable_VEF
          • Paroi_negligeable_scal_EF
          • Paroi_negligeable_scal_VDF
          • Paroi_negligeable_scal_VEF
          • Paroi_rugueuse
          • Paroi_scal_analytique_VEF
          • Paroi_scal_hyd_base_EF
          • Paroi_scal_hyd_base_VDF
          • Paroi_scal_hyd_base_VEF
          • Paroi_std_hyd_EF
          • Paroi_std_hyd_VDF
          • Paroi_std_hyd_VDF_diphasique
          • Paroi_std_hyd_VEF
          • Paroi_std_hyd_VEF_3couches
          • Paroi_std_hyd_VEF_diphasique
          • Paroi_std_scal_hyd_EF
          • Paroi_std_scal_hyd_VDF
          • Paroi_std_scal_hyd_VEF
          • Parser
          • ParserView
          • ParserView::StackEntry
          • Parser_Eval
          • Parser_U
          • Partitionneur_Fichier_Decoupage
          • Partitionneur_Fichier_MED
          • Partitionneur_Parmetis
          • Partitionneur_Partition
          • Partitionneur_Ptscotch
          • Partitionneur_Sous_Domaine
          • Partitionneur_Sous_Domaines
          • Partitionneur_Union
          • Pb_Conduction
          • Pb_Conduction_IBM
          • Pb_Conduction_Scalaires_Passifs
          • Pb_Couple_Optimisation_IBM
          • Pb_Couple_Rayonnement
          • Pb_Couple_rayo_semi_transp
          • Pb_Dilatable_Proto
          • Pb_Dilatable_base
          • Pb_Fluide_base
          • Pb_Hydraulique
          • Pb_Hydraulique_ALE
          • Pb_Hydraulique_Aposteriori
          • Pb_Hydraulique_Cloned_Concentration
          • Pb_Hydraulique_Cloned_Concentration_Turbulent
          • Pb_Hydraulique_Concentration
          • Pb_Hydraulique_Concentration_Scalaires_Passifs
          • Pb_Hydraulique_Concentration_Turbulent
          • Pb_Hydraulique_Concentration_Turbulent_Scalaires_Passifs
          • Pb_Hydraulique_IBM
          • Pb_Hydraulique_IBM_Turbulent
          • Pb_Hydraulique_List_Concentration
          • Pb_Hydraulique_List_Concentration_Turbulent
          • Pb_Hydraulique_Melange_Binaire_QC
          • Pb_Hydraulique_Melange_Binaire_Turbulent_QC
          • Pb_Hydraulique_Melange_Binaire_WC
          • Pb_Hydraulique_Turbulent
          • Pb_Hydraulique_Turbulent_ALE
          • Pb_Hydraulique_sensibility
          • Pb_MED
          • Pb_Multiphase
          • Pb_Multiphase_Enthalpie
          • Pb_Multiphase_HEM
          • Pb_Phase_field
          • Pb_QC_base
          • Pb_Rayo_Conduction
          • Pb_Rayo_Hydraulique
          • Pb_Rayo_Hydraulique_Turbulent
          • Pb_Rayo_Thermohydraulique
          • Pb_Rayo_Thermohydraulique_QC
          • Pb_Rayo_Thermohydraulique_Turbulent
          • Pb_Rayo_Thermohydraulique_Turbulent_QC
          • Pb_Thermohydraulique
          • Pb_Thermohydraulique_Cloned_Concentration
          • Pb_Thermohydraulique_Cloned_Concentration_Turbulent
          • Pb_Thermohydraulique_Concentration
          • Pb_Thermohydraulique_Concentration_Scalaires_Passifs
          • Pb_Thermohydraulique_Concentration_Turbulent
          • Pb_Thermohydraulique_Concentration_Turbulent_Scalaires_Passifs
          • Pb_Thermohydraulique_Especes_QC
          • Pb_Thermohydraulique_Especes_Turbulent_QC
          • Pb_Thermohydraulique_Especes_WC
          • Pb_Thermohydraulique_IBM
          • Pb_Thermohydraulique_IBM_Turbulent
          • Pb_Thermohydraulique_List_Concentration
          • Pb_Thermohydraulique_List_Concentration_Turbulent
          • Pb_Thermohydraulique_QC
          • Pb_Thermohydraulique_Scalaires_Passifs
          • Pb_Thermohydraulique_Turbulent
          • Pb_Thermohydraulique_Turbulent_QC
          • Pb_Thermohydraulique_Turbulent_Scalaires_Passifs
          • Pb_Thermohydraulique_WC
          • Pb_Thermohydraulique_sensibility
          • Pb_WC_base
          • Pbc_MED
          • Perf_counters
          • Perf_counters::Impl
          • Periodique
          • Perte_Charge
          • Perte_Charge_Anisotrope_PolyMAC_Face
          • Perte_Charge_Anisotrope_PolyMAC_P0P1NC_Face
          • Perte_Charge_Anisotrope_QC_VEF_P1NC
          • Perte_Charge_Anisotrope_VDF_Face
          • Perte_Charge_Anisotrope_VEF_P1NC
          • Perte_Charge_Circulaire_PolyMAC_Face
          • Perte_Charge_Circulaire_PolyMAC_P0P1NC_Face
          • Perte_Charge_Circulaire_QC_VEF_P1NC
          • Perte_Charge_Circulaire_VDF_Face
          • Perte_Charge_Circulaire_VEF_P1NC
          • Perte_Charge_Directionnelle_PolyMAC_Face
          • Perte_Charge_Directionnelle_PolyMAC_P0P1NC_Face
          • Perte_Charge_Directionnelle_QC_VEF_P1NC
          • Perte_Charge_Directionnelle_VDF_Face
          • Perte_Charge_Directionnelle_VEF_P1NC
          • Perte_Charge_Gen
          • Perte_Charge_Isotrope_PolyMAC_Face
          • Perte_Charge_Isotrope_PolyMAC_P0P1NC_Face
          • Perte_Charge_Isotrope_QC_VEF_P1NC
          • Perte_Charge_Isotrope_VDF_Face
          • Perte_Charge_Isotrope_VEF_P1NC
          • Perte_Charge_PolyMAC
          • Perte_Charge_PolyMAC_Face
          • Perte_Charge_Reguliere
          • Perte_Charge_Reguliere_QC_VDF_Face
          • Perte_Charge_Reguliere_QC_VEF_P1NC
          • Perte_Charge_Reguliere_VDF_Face
          • Perte_Charge_Reguliere_VEF_P1NC
          • Perte_Charge_Singuliere
          • Perte_Charge_Singuliere_PolyMAC_Face
          • Perte_Charge_Singuliere_PolyMAC_P0P1NC_Face
          • Perte_Charge_Singuliere_QC_VDF_Face
          • Perte_Charge_Singuliere_QC_VEF_P1NC
          • Perte_Charge_Singuliere_VDF_Face
          • Perte_Charge_Singuliere_VEF_Face
          • Perte_Charge_VDF_Face
          • Perte_Charge_VDF_base
          • Perte_Charge_VEF
          • Perte_Charge_VEF_Face
          • Pilote_ICoCo
          • Piso
          • PlaqThVDF
          • Point2D
          • Point3D
          • Point_EF
          • PolyMAC_P0P1NC_discretisation
          • PolyMAC_P0_discretisation
          • PolyMAC_discretisation
          • Polyedre_poly
          • Polygone_poly
          • Polynome
          • Porosites
          • Porosites_champ
          • Portance_interfaciale_Constante
          • Portance_interfaciale_PolyMAC_P0
          • Portance_interfaciale_Sugrue
          • Portance_interfaciale_Sugrue_Modifiee
          • Portance_interfaciale_Tomiyama
          • Portance_interfaciale_Tomiyama_complet
          • Portance_interfaciale_VDF
          • Portance_interfaciale_base
          • Portance_interfaciale_base::input_t
          • Portance_interfaciale_base::output_t
          • Post_Processing_Hydrodynamic_Forces
          • Post_Processing_Hydrodynamic_Forces_Stokes
          • Postprocessing_IJK
          • Postraitement
          • Postraitement_base
          • Postraitement_ft_lata
          • Postraitements
          • Postraiter_domaine
          • PrePostNN
          • PrecisionGeom
          • PrecondA
          • PrecondSolv
          • Precond_base
          • Precond_local
          • Pred_Cor
          • Prepro_IBM_Ponderation
          • Prepro_IBM_Uzawa
          • Prepro_IBM_base
          • Probleme_Couple
          • Probleme_FTD_IJK
          • Probleme_FTD_IJK_base
          • Probleme_FTD_IJK_cut_cell
          • Probleme_FT_Disc_gen
          • Probleme_U
          • Probleme_base
          • Probleme_base_interface_proto
          • Process
          • Production_HZDR_PolyMAC_P0
          • Production_WIT_PolyMAC_P0
          • Production_echelle_temp_taux_diss_turb_PolyMAC_P0
          • Production_echelle_temp_taux_diss_turb_VDF
          • Production_energie_cin_turb_PolyMAC_P0
          • Production_energie_cin_turb_VDF
          • Projection_ALE_boundary
          • Proprietes_part_vol
          • Puissance_Thermique_EF
          • Puissance_Thermique_QC_EF
          • QDM_Multiphase
          • Quadrature_Ord1_Polygone
          • Quadrature_Ord3_Polygone
          • Quadrature_Ord5_Polygone
          • Quadrature_base
          • Quadri_EF
          • Quadri_VEF
          • Quadri_poly
          • RK2
          • RK2_Classique
          • RK3
          • RK3_Classique
          • RK3_FT
          • RK3_MassRedistrib
          • RK4
          • RK4_Classique
          • RK4_Classique_3_8
          • RRK2
          • RTabInt
          • Raffiner_isotrope_parallele
          • Random_process
          • Reaction
          • Read_MED_For_Testing_No_Verify_Option
          • Read_unsupported_ASCII_file_from_ICEM
          • Rectify_Mesh
          • Redistribute_Field
          • Redresser_hexaedres_vdf
          • Refine_Mesh
          • Remaillage_FT
          • Remaillage_FT_IJK
          • Remailleur_Collision_FT_Juric
          • Remailleur_Collision_FT_Thomas
          • Remailleur_Collision_FT_base
          • Remove_Invalid_Internal_Boundaries
          • Remove_elem
          • Resoudre
          • Reynolds_maille_Champ_Face
          • Robin_VEF
          • Rotation
          • Rotationnel_Champ_Face
          • Rotationnel_Champ_P1NC
          • Rotationnel_Champ_P1_EF
          • Rotationnel_Champ_Q1NC
          • Rotationnel_Champ_Q1_EF
          • Roue
          • Roue_ptr
          • Rupture_bulles_1groupe_PolyMAC_P0
          • Rupture_bulles_1groupe_Yao_Morel
          • Rupture_bulles_1groupe_base
          • Rupture_bulles_2groupes_PolyMAC_P0
          • Rupture_bulles_2groupes_Smith
          • Rupture_bulles_2groupes_base
          • SChaine
          • SETS
          • SFichier
          • SFichierBin
          • SSOR
          • Saturation_R12_c1
          • Saturation_base
          • Saturation_constant
          • Saturation_eau_c3
          • Saturation_generique_CoolProp
          • Saturation_generique_EOS
          • Saturation_generique_TPPI_base
          • Saturation_sodium
          • Sauvegarde_Reprise_Maillage_FT
          • Save_Restart
          • Scalaire_impose_paroi
          • ScalarRegister
          • Scatter
          • ScatterMED
          • Sch_CN_EX_iteratif
          • Sch_CN_iteratif
          • Schema_Adams_Bashforth_base
          • Schema_Adams_Bashforth_order_2
          • Schema_Adams_Bashforth_order_3
          • Schema_Adams_Moulton_base
          • Schema_Adams_Moulton_order_2
          • Schema_Adams_Moulton_order_3
          • Schema_Backward_Differentiation_base
          • Schema_Backward_Differentiation_order_2
          • Schema_Backward_Differentiation_order_3
          • Schema_Comm
          • Schema_Comm_Vecteurs
          • Schema_Comm_Vecteurs_Static_Data
          • Schema_Comm_statique
          • Schema_Euler_Implicite
          • Schema_Euler_Implicite_Stationnaire
          • Schema_Euler_explicite
          • Schema_Euler_explicite_ALE
          • Schema_Euler_explicite_IJK
          • Schema_Euler_explicite_Phase_field
          • Schema_Explicite_Multi_TimeStep_base
          • Schema_Implicite_Multi_TimeStep_base
          • Schema_Implicite_base
          • Schema_Phase_field
          • Schema_RK3_IJK
          • Schema_Temps_IJK_base
          • Schema_Temps_Inutile
          • Schema_Temps_base
          • Segment_EF
          • Segment_EF_axi
          • Segment_poly
          • Senseur_Interface
          • Separateur
          • Simd_int
          • Simple
          • Simpler
          • Simpler_Base
          • Solid_Particle_arbitrary
          • Solid_Particle_base
          • Solid_Particle_sphere
          • Solid_Particle_spheroid
          • Solide
          • SolvElem_BiCGStab
          • SolvElem_Gmres
          • SolvElem_base
          • Solv_AMG
          • Solv_AMGX
          • Solv_Cholesky
          • Solv_Externe
          • Solv_GCP
          • Solv_GCP_NS
          • Solv_Gen
          • Solv_Gmres
          • Solv_Optimal
          • Solv_Petsc
          • Solv_Petsc_GPU
          • Solv_TDMA
          • Solv_cuDSS
          • Solver_moving_mesh_ALE
          • SolveurPP1B
          • SolveurSys
          • SolveurSys_base
          • Solveur_Implicite_base
          • Solveur_Lineaire_Std
          • Solveur_Masse_EF
          • Solveur_Masse_Elem_proto
          • Solveur_Masse_Face_proto
          • Solveur_Masse_base
          • Solveur_U_P
          • Solveur_lineaire
          • Solveur_non_lineaire
          • Sommet
          • Sonde
          • Sonde_IJK
          • Sonde_Int
          • Sondes
          • Sondes_Int
          • Sortie
          • Sortie_Brute
          • Sortie_Fichier_base
          • Sortie_Nulle
          • Sortie_libre_Gradient_Pression_impose
          • Sortie_libre_Gradient_Pression_impose_VEF
          • Sortie_libre_Gradient_Pression_impose_VEFPreP1B
          • Sortie_libre_Gradient_Pression_libre_VEF
          • Sortie_libre_Gradient_Pression_libre_VEFPreP1B
          • Sortie_libre_Pression_imposee_Orlansky
          • Sortie_libre_Text_H_ext
          • Sortie_libre_pression_imposee
          • Sortie_libre_pression_imposee_QC
          • Sortie_libre_pression_moyenne_imposee
          • Sortie_libre_rho_variable
          • Source
          • SourceFiltree_FT_disc_VEF_P1NC
          • SourceFiltree_FT_disc_base
          • Source_Action_Particules
          • Source_BIF_PolyMAC_P0
          • Source_Chaleur_Fluide_Dilatable_base
          • Source_Con_Phase_field
          • Source_Con_Phase_field_base
          • Source_Darcy_VDF_Face
          • Source_Darcy_VEF_Face
          • Source_Diffusion_croisee_echelle_temp_taux_diss_turb
          • Source_Diffusion_supplementaire_echelle_temp_turb
          • Source_Dirac_VDF_Elem
          • Source_Dirac_VEF_Face
          • Source_Dispersion_bulles_base
          • Source_Dissipation_HZDR_PolyMAC_P0
          • Source_Dissipation_echelle_temp_taux_diss_turb
          • Source_Dissipation_energie_cin_turb
          • Source_Echange_Th_VDF
          • Source_Flottabilite
          • Source_Fluide_Dilatable_VDF_Proto
          • Source_Fluide_Dilatable_VEF_Proto
          • Source_Flux_interfacial_base
          • Source_Force_Tchen_base
          • Source_Forchheimer_VDF_Face
          • Source_Forchheimer_VEF_Face
          • Source_Frottement_interfacial_base
          • Source_Generique_Face_PolyMAC
          • Source_Generique_Face_PolyMAC_P0P1NC
          • Source_Generique_P0_Elem
          • Source_Generique_VDF_Face
          • Source_Generique_VEF
          • Source_Generique_base
          • Source_Gravite_Fluide_Dilatable_base
          • Source_Gravite_PF_VDF
          • Source_Masse_Ajoutee
          • Source_Masse_Fluide_Dilatable_VDF
          • Source_Masse_Fluide_Dilatable_VEF
          • Source_Masse_Fluide_Dilatable_base
          • Source_Neutronique
          • Source_Neutronique_VDF
          • Source_PDF_EF
          • Source_PDF_base
          • Source_Portance
          • Source_Portance_interfaciale_base
          • Source_Production_echelle_temp_taux_diss_turb
          • Source_Production_energie_cin_turb
          • Source_QC_Chaleur
          • Source_QC_Chaleur_VDF
          • Source_QC_Chaleur_VEF
          • Source_QC_Chaleur_Verif
          • Source_QC_Chaleur_Verif_VEF
          • Source_QC_Chaleur_Verif_VEF_P1NC
          • Source_QC_Gravite_VDF
          • Source_QC_Gravite_VEF
          • Source_QC_QDM_Gen
          • Source_Qdm_EF
          • Source_Qdm_VDF_Phase_field
          • Source_Reaction_Particules
          • Source_Reaction_Particules_VDF
          • Source_Reaction_Particules_VEF
          • Source_Robin
          • Source_Robin_Scalaire
          • Source_Scalaire_EF
          • Source_Trainee
          • Source_Transport_Bas_Reynolds_VDF_Elem_base
          • Source_Transport_Eps_Realisable_VDF_Elem
          • Source_Transport_Eps_Realisable_VEF_Face
          • Source_Transport_Eps_Realisable_aniso_concen_VDF_Elem
          • Source_Transport_Eps_Realisable_aniso_concen_VEF_Face
          • Source_Transport_Eps_Realisable_aniso_therm_concen_VDF_Elem
          • Source_Transport_Eps_Realisable_aniso_therm_concen_VEF_Face
          • Source_Transport_Eps_Realisable_anisotherme_VDF_Elem
          • Source_Transport_Eps_Realisable_anisotherme_VEF_Face
          • Source_Transport_Eps_VDF_Elem
          • Source_Transport_Eps_VEF_Face
          • Source_Transport_Eps_aniso_concen_VEF_Face
          • Source_Transport_Eps_aniso_therm_concen_VDF_Elem
          • Source_Transport_Eps_aniso_therm_concen_VEF_Face
          • Source_Transport_Eps_anisotherme_VDF_Elem
          • Source_Transport_Eps_anisotherme_VEF_Face
          • Source_Transport_Eps_concen_VDF_Elem
          • Source_Transport_Fluctuation_Temperature_VDF_Elem
          • Source_Transport_Fluctuation_Temperature_W_Bas_Re_VDF_Elem
          • Source_Transport_Fluctuation_Temperature_W_VDF_Elem
          • Source_Transport_Flux_Chaleur_Turbulente_VDF_Face
          • Source_Transport_K_Eps_Bas_Reynolds_VDF_Elem
          • Source_Transport_K_Eps_Bas_Reynolds_VEF_Face
          • Source_Transport_K_Eps_Bas_Reynolds_W_VDF_Elem
          • Source_Transport_K_Eps_Bas_Reynolds_aniso_therm_concen_VDF_Elem
          • Source_Transport_K_Eps_Bas_Reynolds_anisotherme_QC_VDF_Elem
          • Source_Transport_K_Eps_Bas_Reynolds_anisotherme_VDF_Elem
          • Source_Transport_K_Eps_Bas_Reynolds_anisotherme_VEF_Face
          • Source_Transport_K_Eps_Bas_Reynolds_anisotherme_W_VDF_Elem
          • Source_Transport_K_Eps_Realisable_VDF_Elem
          • Source_Transport_K_Eps_Realisable_VEF_Face
          • Source_Transport_K_Eps_Realisable_aniso_concen_VDF_Elem
          • Source_Transport_K_Eps_Realisable_aniso_concen_VEF_Face
          • Source_Transport_K_Eps_Realisable_aniso_therm_concen_VDF_Elem
          • Source_Transport_K_Eps_Realisable_aniso_therm_concen_VEF_Face
          • Source_Transport_K_Eps_Realisable_anisotherme_VDF_Elem
          • Source_Transport_K_Eps_Realisable_anisotherme_VEF_Face
          • Source_Transport_K_Eps_VDF_Elem
          • Source_Transport_K_Eps_VEF_Face
          • Source_Transport_K_Eps_aniso_concen_VEF_Face
          • Source_Transport_K_Eps_aniso_therm_concen_VDF_Elem
          • Source_Transport_K_Eps_aniso_therm_concen_VEF_Face
          • Source_Transport_K_Eps_anisotherme_VDF_Elem
          • Source_Transport_K_Eps_anisotherme_VEF_Face
          • Source_Transport_K_Eps_concen_VDF_Elem
          • Source_Transport_K_KEps_VDF_Elem
          • Source_Transport_K_KEps_anisotherme_VDF_Elem
          • Source_Transport_K_Omega_VDF_Elem
          • Source_Transport_K_Omega_VDF_Elem_base
          • Source_Transport_K_Omega_VEF_Face
          • Source_Transport_K_Omega_VEF_Face_base
          • Source_Transport_K_Realisable_VDF_Elem
          • Source_Transport_K_Realisable_VEF_Face
          • Source_Transport_K_Realisable_aniso_concen_VDF_Elem
          • Source_Transport_K_Realisable_aniso_concen_VEF_Face
          • Source_Transport_K_Realisable_aniso_therm_concen_VDF_Elem
          • Source_Transport_K_Realisable_aniso_therm_concen_VEF_Face
          • Source_Transport_K_Realisable_anisotherme_VDF_Elem
          • Source_Transport_K_Realisable_anisotherme_VEF_Face
          • Source_Transport_K_VDF_Elem
          • Source_Transport_K_VEF_Face
          • Source_Transport_K_aniso_concen_VEF_Face
          • Source_Transport_K_aniso_therm_concen_VDF_Elem
          • Source_Transport_K_aniso_therm_concen_VEF_Face
          • Source_Transport_K_anisotherme_VDF_Elem
          • Source_Transport_K_anisotherme_VEF_Face
          • Source_Transport_K_concen_VDF_Elem
          • Source_Transport_Realisable_VDF_Elem_base
          • Source_Transport_Realisable_VEF_Face_base
          • Source_Transport_VDF_Elem_base
          • Source_Transport_VEF_Face_base
          • Source_Transport_proto
          • Source_Travail_pression_Elem_base
          • Source_WC_Chaleur
          • Source_WC_Chaleur_VDF
          • Source_WC_Chaleur_VEF
          • Source_WC_Gravite_VDF
          • Source_WC_Gravite_VEF
          • Source_base
          • Source_dep_inco_base
          • Source_injection_QDM_base
          • Source_injection_masse_base
          • Source_qdm_QC_VDF_Face
          • Source_qdm_QC_VEF_P1NC
          • Source_rayo_semi_transp_QC_VDF_P0_VDF
          • Source_rayo_semi_transp_QC_VEF_P1NC
          • Source_rayo_semi_transp_VDF_P0_VDF
          • Source_rayo_semi_transp_VEF_P1NC
          • Source_rayo_semi_transp_base
          • Sources
          • Sources_Multiphase_base
          • Sous_domaine_VF
          • Sous_domaine_dis_base
          • StatComm
          • Stat_per_proc_perf_log
          • Statistiques_dns_ijk
          • Statistiques_dns_ijk_FT
          • Statistiques_dns_ijk_monophasique
          • Statistiques_dns_qc_ijk
          • StringTokenizer
          • Structural_dynamic_mesh_model
          • Support_Champ_Masse_Volumique
          • SurfaceVapeurIJKComputation
          • Sutherland
          • Switch_FT_double
          • Switch_double
          • Symetrie
          • Synonyme_info
          • System
          • TBNN
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          • TPPI
          • TRUST_2_PDI
          • TRUST_Deriv_Objet_U
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          • TRUST_Ref_Objet_U
          • TRUST_Vector::ConstIteratorWrapper
          • TRUST_Vector::IteratorWrapper
          • T_paroi_Champ_P0_VDF
          • T_paroi_Champ_P1NC
          • Table
          • Taux_cisaillement_P0_VDF
          • Taux_cisaillement_P0_VEF
          • Taux_dissipation_turbulent
          • Tayl_Green
          • Temperature_imposee_paroi
          • Temperature_imposee_paroi_H
          • Temperature_imposee_paroi_rayo_semi_transp
          • Temperature_imposee_paroi_rayo_transp
          • Tenseur_Reynolds_Externe_VDF_Face
          • Tensor
          • Tensors_Computation_VDF
          • Tensors_Computation_VEF
          • Terme_Boussinesq_PolyMAC_Face
          • Terme_Boussinesq_Sensibility_VEFPreP1B_Face
          • Terme_Boussinesq_VDF_Face
          • Terme_Boussinesq_VEFPreP1B_Face
          • Terme_Boussinesq_VEF_Face
          • Terme_Boussinesq_base
          • Terme_Gravite
          • Terme_Gravite_VDF_Face
          • Terme_Puissance_Thermique
          • Terme_Puissance_Thermique_DG_Elem
          • Terme_Puissance_Thermique_DG_base
          • Terme_Puissance_Thermique_Echange_Impose_Elem_PolyMAC
          • Terme_Puissance_Thermique_Echange_Impose_Elem_base
          • Terme_Puissance_Thermique_Echange_Impose_P0_VDF
          • Terme_Puissance_Thermique_Echange_Impose_VEF_Face
          • Terme_Puissance_Thermique_PolyMAC_Elem
          • Terme_Puissance_Thermique_PolyMAC_base
          • Terme_Puissance_Thermique_QC_VDF_Elem
          • Terme_Puissance_Thermique_QC_VEF_Face
          • Terme_Puissance_Thermique_VDF_Elem
          • Terme_Puissance_Thermique_VDF_base
          • Terme_Puissance_Thermique_VEF_Face
          • Terme_Puissance_Thermique_VEF_base
          • Terme_Source_Acceleration
          • Terme_Source_Acceleration_VDF_Face
          • Terme_Source_Acceleration_VEF_Face
          • Terme_Source_Canal_RANS_LES_VDF_Elem
          • Terme_Source_Canal_RANS_LES_VDF_Face
          • Terme_Source_Canal_RANS_LES_VEF_Face
          • Terme_Source_Canal_perio
          • Terme_Source_Canal_perio_QC_VDF_Face
          • Terme_Source_Canal_perio_QC_VEF_P1NC
          • Terme_Source_Canal_perio_VDF_Face
          • Terme_Source_Canal_perio_VDF_P0
          • Terme_Source_Canal_perio_VEF_P1NC
          • Terme_Source_Constituant
          • Terme_Source_Constituant_PolyMAC_Elem
          • Terme_Source_Constituant_VDF_Elem
          • Terme_Source_Constituant_VEF_Face
          • Terme_Source_Constituant_Vortex_VEF_Face
          • Terme_Source_Coriolis_QC_VDF_Face
          • Terme_Source_Coriolis_VDF_Face
          • Terme_Source_Coriolis_base
          • Terme_Source_DG_base
          • Terme_Source_Decroissance_Radioactive_Elem_PolyMAC
          • Terme_Source_Decroissance_Radioactive_VEF_Face
          • Terme_Source_EF_base
          • Terme_Source_PolyMAC_base
          • Terme_Source_Qdm
          • Terme_Source_Qdm_Face_PolyMAC
          • Terme_Source_Qdm_Face_PolyMAC_P0P1NC
          • Terme_Source_Qdm_VDF_Face
          • Terme_Source_Qdm_VEF_Face
          • Terme_Source_Qdm_lambdaup_VEF_Face
          • Terme_Source_Rappel_T_VEF_Face
          • Terme_Source_Solide_SWIFT_VDF
          • Terme_Source_Th_TdivU_VEF_Face
          • Terme_Source_VDF_base
          • Terme_Source_VEF_base
          • Terme_Source_inc_VDF_Face
          • Terme_Source_inc_base
          • Terme_Source_inc_th
          • Terme_Source_inc_th_VDF_Face
          • Test_SSE_Kernels
          • Test_solveur
          • Testeur
          • Testeur_MEDCoupling
          • Tetra_EF
          • Tetra_VEF
          • Tetra_poly
          • Tetraedriser
          • Tetraedriser_homogene
          • Tetraedriser_homogene_compact
          • Tetraedriser_homogene_fin
          • Tetraedriser_par_prisme
          • Topologie_Maillage_FT
          • Traduction_Indice_Global_Local
          • Traitement_particulier_NS_Brech_VEF
          • Traitement_particulier_NS_CEG
          • Traitement_particulier_NS_CEG_VEF
          • Traitement_particulier_NS_EC
          • Traitement_particulier_NS_EC_VDF
          • Traitement_particulier_NS_EC_VEF
          • Traitement_particulier_NS_Pression
          • Traitement_particulier_NS_Pression_VDF
          • Traitement_particulier_NS_Pression_VEF
          • Traitement_particulier_NS_Profils
          • Traitement_particulier_NS_Profils_VDF
          • Traitement_particulier_NS_Profils_thermo_VDF
          • Traitement_particulier_NS_THI
          • Traitement_particulier_NS_THI_VDF
          • Traitement_particulier_NS_THI_VEF
          • Traitement_particulier_NS_THI_VEF_new
          • Traitement_particulier_NS_THI_new
          • Traitement_particulier_NS_THI_thermo_VDF
          • Traitement_particulier_NS_VEF
          • Traitement_particulier_NS_base
          • Traitement_particulier_NS_canal
          • Traitement_particulier_NS_canal_VDF
          • Traitement_particulier_NS_canal_VEF
          • Traitement_particulier_NS_chmoy_faceperio
          • Traitement_particulier_NS_chmoy_faceperio_VEF
          • Traitement_particulier_NS_temperature
          • Traitement_particulier_NS_temperature_VEF
          • Traitement_particulier_Solide_base
          • Traitement_particulier_Solide_canal
          • Traitement_particulier_Solide_canal_VDF
          • Transport_2eq_base
          • Transport_Fluctuation_Temperature
          • Transport_Fluctuation_Temperature_W
          • Transport_Fluctuation_Temperature_W_Bas_Re
          • Transport_Flux_Chaleur_Turbulente
          • Transport_Interfaces_FT_Disc
          • Transport_Interfaces_FT_Disc::map_element_post_FT
          • Transport_Interfaces_FT_Disc_interne
          • Transport_Interfaces_base
          • Transport_K_Eps
          • Transport_K_Eps_ALE
          • Transport_K_Eps_Bas_Reynolds
          • Transport_K_Eps_Realisable
          • Transport_K_Eps_base
          • Transport_K_Eps_non_std
          • Transport_K_KEps
          • Transport_K_Omega
          • Transport_K_Omega_base
          • Transport_K_ou_Eps
          • Transport_K_ou_Eps_Realisable
          • Transport_K_ou_Eps_base
          • Transport_K_ou_Eps_non_std
          • Transport_Marqueur_FT
          • Transport_turbulent_GGDH
          • Transport_turbulent_GGDH_WIT
          • Transport_turbulent_Prandtl
          • Transport_turbulent_SGDH
          • Transport_turbulent_SGDH_WIT
          • Transport_turbulent_aire_interfaciale
          • Transport_turbulent_base
          • Travail_pression_PolyMAC_P0P1NC
          • Travail_pression_VDF
          • Tri_EF
          • Tri_VEF
          • Tri_poly
          • Triangulation_base
          • Trianguler
          • Trianguler_H
          • Trianguler_fin
          • Triple_Line_Model_FT_Disc
          • TroisDto2Daxi
          • Tube_base
          • Tube_impose
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          • Turbulence_paroi_base
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          • Turbulent_viscosity_amd
          • Turbulent_viscosity_amd_comp
          • Turbulent_viscosity_amdnoclip
          • Turbulent_viscosity_amdscalar
          • Turbulent_viscosity_amdscalarnoclip
          • Turbulent_viscosity_base
          • Turbulent_viscosity_constant
          • Turbulent_viscosity_kobayashi
          • Turbulent_viscosity_rds
          • Turbulent_viscosity_sigma
          • Turbulent_viscosity_smagorinsky
          • Turbulent_viscosity_unsrho
          • Turbulent_viscosity_vreman
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          • Turbulent_viscosity_wale
          • Type_info
          • Typer_Lire
          • UnaryFunction
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          • VDF_discretisation
          • VDF_to_IJK
          • VECT_Ensemble_Faces
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          • Value_Input_Int
          • Variation_rho
          • Vecteur3
          • VerifierCoin
          • Viscosite_turbulente_LES_base
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          • Viscosite_turbulente_base
          • Viscosite_turbulente_k_omega
          • Viscosite_turbulente_k_tau
          • Viscosite_turbulente_l_melange
          • Viscosite_turbulente_multiple
          • Viscosite_turbulente_sato
          • Vitesse_derive_Forces
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          • Vitesse_derive_base
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          • Vitesse_relative_base
          • Vitesse_relative_base::input_t
          • Vitesse_relative_base::output_t
          • YAML_data
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          • _sig_ucontext
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          • champ_init_canal_sinal
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          • grad_Champ_Face_PolyMAC_P0
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          • grad_U_Champ_P1NC
          • h_conv_Champ_P1NC
          • init_forcage_THI
          • interface_CALCULBIJ
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          • option
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        • Templates
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          • ConstInnerType
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          • Eval_Conv_VDF_Elem
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          • Faces_32_64
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          • IJKArray_with_ghost
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          • Impl_32_64
          • InnerType
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          • IntBoxData
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          • Op_Conv_VDF
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          • OrienteFacesBord_32_64
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          • PoolImpl_
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          • Raffiner_Simplexes_32_64
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          • Simd_Array_template
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Navier_Stokes_std_ALE

Contents

  • How to reference this class
  • Detailed description
  • Inherits from
  • Inherited by
  • Inheritance graph
  • Member Functions: Public
  • Member Functions: Static Public
  • Member Functions: Protected
  • Member Functions: Private
  • Complete Member Function Documentation
    • data_a_sauvegarder
    • discretiser
    • div_ale_derivative
    • duplique
    • get_info
    • getCouplingInfoForFiltering
    • mettre_a_jour
    • Navier_Stokes_std_ALE
    • renewing_jacobians
    • reprendre
    • sauvegarder
    • setPressureTimeN
    • taille_memoire
    • update_pressure_matrix
    • updateFluidForce
    • ~Navier_Stokes_std_ALE
    • cree_instance
    • info
    • self_cast
    • self_cast
    • printOn
    • readOn
    • create_field
    • generate_field_tag
    • make_yaml
  • Attributes Documentation

Navier_Stokes_std_ALE#

#include <Navier_Stokes_std_ALE.h>
Brief description

How to reference this class#

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`Navier\_Stokes\_std\_ALE <class-navier-stokes-std-ale>`
[Navier\_Stokes\_std\_ALE](#class-navier-stokes-std-ale)

Detailed description#

Inherits from#

  • Navier_Stokes_std (public)

Inherited by#

  • Navier_Stokes_Turbulent_ALE (public)

Inheritance graph#

If the image is too small, right-click and open in new tab

How to reference this graph

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`Navier_Stokes_std_ALE Inheritance Graph <navier-stokes-std-ale-inherit-graph>`
[Navier_Stokes_std_ALE Inheritance Graph](#navier-stokes-std-ale-inherit-graph)
../../../../_images/classNavier__Stokes__std__ALE__inherit__graph.png

Member Functions: Public#

  • data_a_sauvegarder

  • discretiser

  • div_ale_derivative

  • duplique

  • get_info

  • getCouplingInfoForFiltering

  • mettre_a_jour

  • Navier_Stokes_std_ALE

  • renewing_jacobians

  • reprendre

  • sauvegarder

  • setPressureTimeN

  • taille_memoire

  • update_pressure_matrix

  • updateFluidForce

  • ~Navier_Stokes_std_ALE

Member Functions: Static Public#

  • cree_instance

  • info

  • self_cast

  • self_cast

Member Functions: Protected#

  • printOn

  • readOn

Member Functions: Private#

  • create_field

  • generate_field_tag

  • make_yaml

Complete Member Function Documentation#

data_a_sauvegarder#

Definition
std::vector<YAML_data> Navier_Stokes_std_ALE::data_a_sauvegarder() const override
Brief description

for PDI IO: retrieve name, type and dimensions of the fields to save/restore

Detailed description

Reimplements:

  • data_a_sauvegarder

References
  • Navier_Stokes_std::data_a_sauvegarder

  • Domaine_ALE::getMeshMotionModel

  • TRUSTTab<_TYPE_, _SIZE_>::nb_dim

  • Equation_base::probleme

  • Champ_Inc_base::valeurs

  • Navier_Stokes_std::vitesse

Referenced By
  • Navier_Stokes_Turbulent_ALE::data_a_sauvegarder

How to reference this method:

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`std::vector<YAML_data> Navier_Stokes_std_ALE::data_a_sauvegarder() const override <navier-stokes-std-ale-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](#navier-stokes-std-ale-public-std-vector-yaml-data-navier-stokes-std-ale-data-a-sauvegarder-const-override)

discretiser#

Definition
void Navier_Stokes_std_ALE::discretiser() override
Brief description

Dicretise l’equation.

Detailed description

Reimplements:

  • discretiser

References
  • Field_base::add_synonymous

  • Champs_compris_T<FIELD_TYPE>::ajoute_champ

  • ALEMeshStructuralForces_

  • ALEMeshStructuralPressure_

  • ALEMeshStructuralVonMises_

  • ALEMeshTotalDisplacement_

  • ALEMeshVelocity_

  • Equation_base::champs_compris_

  • Objet_U::dimension

  • Equation_base::discretisation

  • Navier_Stokes_std::discretiser

  • Discretisation_base::discretiser_champ

  • Equation_base::domaine_dis

  • Domaine_ALE::getMeshMotionModel

  • Equation_base::probleme

  • Equation_base::schema_temps

  • TRUST_Deriv<_CLASSE_>::valeur

How to reference this method:

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`void Navier_Stokes_std_ALE::discretiser() override <navier-stokes-std-ale-public-void-navier-stokes-std-ale-discretiser-override>`
[void Navier_Stokes_std_ALE::discretiser() override](#navier-stokes-std-ale-public-void-navier-stokes-std-ale-discretiser-override)

div_ale_derivative#

Definition
void Navier_Stokes_std_ALE::div_ale_derivative(DoubleTrav &deriveeALE, double timestep, DoubleTab &derivee, DoubleTrav &secmemP) override
Brief description
Detailed description

Reimplements:

  • div_ale_derivative

References
  • Navier_Stokes_std::assembleur_pression_

  • Operateur_Div::calculer

  • Objet_U::dimension

  • Navier_Stokes_std::divergence

  • TRUSTVect<_TYPE_, _SIZE_>::echange_espace_virtuel

  • Domaine_ALE::getNewJacobian

  • Domaine_ALE::getOldJacobian

  • Navier_Stokes_std::la_vitesse

  • Assembleur_base::modifier_secmem

  • Equation_base::probleme

  • TRUSTVect<_TYPE_, _SIZE_>::size

  • Champ_Inc_base::valeurs

  • Debog::verifier

  • Domaine_ALE::vitesse_faces

How to reference this method:

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`void Navier_Stokes_std_ALE::div_ale_derivative(DoubleTrav &deriveeALE, double timestep, DoubleTab &derivee, DoubleTrav &secmemP) override <navier-stokes-std-ale-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](#navier-stokes-std-ale-public-void-navier-stokes-std-ale-div-ale-derivative-doubletrav-ref-deriveeale-double-timestep-doubletab-ref-derivee-doubletrav-ref-secmemp-override)

duplique#

Definition
int Navier_Stokes_std_ALE::duplique() const override
Brief description
Detailed description

Reimplements:

  • duplique

How to reference this method:

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`int Navier_Stokes_std_ALE::duplique() const override <navier-stokes-std-ale-public-int-navier-stokes-std-ale-duplique-const-override>`
[int Navier_Stokes_std_ALE::duplique() const override](#navier-stokes-std-ale-public-int-navier-stokes-std-ale-duplique-const-override)

get_info#

Definition
const Type_info * Navier_Stokes_std_ALE::get_info() const override
Brief description

Donne des informations sur le type de l’ Objet_U .

Detailed description

Reimplements:

  • get_info

How to reference this method:

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`const Type_info * Navier_Stokes_std_ALE::get_info() const override <navier-stokes-std-ale-public-const-type-info-ptr-navier-stokes-std-ale-get-info-const-override>`
[const Type_info * Navier_Stokes_std_ALE::get_info() const override](#navier-stokes-std-ale-public-const-type-info-ptr-navier-stokes-std-ale-get-info-const-override)

getCouplingInfoForFiltering#

Definition
bool Navier_Stokes_std_ALE::getCouplingInfoForFiltering() const override
Brief description
Detailed description

Reimplements:

  • getCouplingInfoForFiltering

References
  • Domaine_ALE::getCouplingMethod

  • Equation_base::probleme

How to reference this method:

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`bool Navier_Stokes_std_ALE::getCouplingInfoForFiltering() const override <navier-stokes-std-ale-public-bool-navier-stokes-std-ale-getcouplinginfoforfiltering-const-override>`
[bool Navier_Stokes_std_ALE::getCouplingInfoForFiltering() const override](#navier-stokes-std-ale-public-bool-navier-stokes-std-ale-getcouplinginfoforfiltering-const-override)

mettre_a_jour#

Definition
void Navier_Stokes_std_ALE::mettre_a_jour(double) override
Brief description

Effectue une mise a jour en temps de l’equation.

Detailed description

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:

  • mettre_a_jour

References
  • ALEMeshStructuralForces_

  • ALEMeshStructuralPressure_

  • ALEMeshStructuralVonMises_

  • ALEMeshTotalDisplacement_

  • ALEMeshVelocity_

  • Objet_U::dimension

  • TRUSTVect<_TYPE_, _SIZE_>::echange_espace_virtuel

  • Domaine_ALE::getMeshMotionModel

  • Domaine_ALE::getMeshPbForceFace

  • Domaine_ALE::getMeshPbPressure

  • Domaine_ALE::getMeshPbVonMises

  • Champ_Inc_base::mettre_a_jour

  • Navier_Stokes_std::mettre_a_jour

  • Schema_Temps_base::pas_de_temps

  • Equation_base::probleme

  • Equation_base::schema_temps

  • TRUSTVect<_TYPE_, _SIZE_>::size

  • Champ_Inc_base::valeurs

  • Domaine_ALE::vitesse_faces

Referenced By
  • Navier_Stokes_Turbulent_ALE::mettre_a_jour

How to reference this method:

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`void Navier_Stokes_std_ALE::mettre_a_jour(double) override <navier-stokes-std-ale-public-void-navier-stokes-std-ale-mettre-a-jour-double-override>`
[void Navier_Stokes_std_ALE::mettre_a_jour(double) override](#navier-stokes-std-ale-public-void-navier-stokes-std-ale-mettre-a-jour-double-override)

Navier_Stokes_std_ALE#

Definition
Navier_Stokes_std_ALE::Navier_Stokes_std_ALE()
Brief description
Detailed description
How to reference this method:

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`Navier_Stokes_std_ALE::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()](#navier-stokes-std-ale-public-navier-stokes-std-ale-navier-stokes-std-ale)

renewing_jacobians#

Definition
void Navier_Stokes_std_ALE::renewing_jacobians(DoubleTab &derivee) override
Brief description
Detailed description

Reimplements:

  • renewing_jacobians

References
  • Op_Conv_ALE::ajouterALE

  • Solveur_Masse_base::appliquer

  • Op_Conv_ALE_VEF::calculateALEjacobian

  • Equation_base::discretisation

  • TRUSTVect<_TYPE_, _SIZE_>::echange_espace_virtuel

  • Process::exit

  • Domaine_ALE::getNewJacobian

  • Navier_Stokes_std::la_vitesse

  • Schema_Temps_base::nb_pas_dt

  • Equation_base::probleme

  • Objet_U::que_suis_je

  • Probleme_base::schema_temps

  • Equation_base::solveur_masse

  • Navier_Stokes_std::terme_convectif

  • Domaine_ALE::update_ALEjacobians

  • TRUST_Deriv<_CLASSE_>::valeur

  • Champ_Inc_base::valeurs

  • Debog::verifier

How to reference this method:

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`void Navier_Stokes_std_ALE::renewing_jacobians(DoubleTab &derivee) override <navier-stokes-std-ale-public-void-navier-stokes-std-ale-renewing-jacobians-doubletab-ref-derivee-override>`
[void Navier_Stokes_std_ALE::renewing_jacobians(DoubleTab &derivee) override](#navier-stokes-std-ale-public-void-navier-stokes-std-ale-renewing-jacobians-doubletab-ref-derivee-override)

reprendre#

Definition
int Navier_Stokes_std_ALE::reprendre(Entree &) override
Brief description

Effectue une reprise a partir d’un flot d’entree.

Detailed description

Appelle Equation_base::reprendre() et reprend la pression.

Reimplements:

  • reprendre

References
  • Objet_U::dimension

  • Equation_base::domaine_dis

  • Process::exit

  • Domaine_ALE::getMeshMotionModel

  • Domaine_ALE::getMeshReferenceConfigurationNbComp

  • Domaine_ALE::getMeshStressNbComp

  • Domaine_ALE::getMeshTransformationGradientNbComp

  • EcritureLectureSpecial::is_lecture_special

  • TRUST_2_PDI::is_PDI_restart

  • Process::nproc

  • Equation_base::probleme

  • Navier_Stokes_std::reprendre

  • Domaine_ALE::resumptionJacobianCoords

  • Domaine_ALE::resumptionStructuralDynamicsMesh

  • Equation_base::schema_temps

  • Domaine_ALE::updateMetrics

  • Navier_Stokes_std::vitesse

Referenced By
  • Navier_Stokes_Turbulent_ALE::reprendre

How to reference this method:

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`int Navier_Stokes_std_ALE::reprendre(Entree &) override <navier-stokes-std-ale-public-int-navier-stokes-std-ale-reprendre-entree-ref-override>`
[int Navier_Stokes_std_ALE::reprendre(Entree &) override](#navier-stokes-std-ale-public-int-navier-stokes-std-ale-reprendre-entree-ref-override)

sauvegarder#

Definition
int Navier_Stokes_std_ALE::sauvegarder(Sortie &) const override
Brief description

Appelle Equation_base::sauvegarder(Sortie&) et sauvegarde la pression sur un flot de sortie.

Detailed description

Reimplements:

  • sauvegarder

References
  • TRUSTArray<_TYPE_, _SIZE_>::addr

  • Objet_U::dimension

  • TRUSTTab<_TYPE_, _SIZE_>::dimension_tot

  • Domaine_dis_base::domaine

  • Equation_base::domaine_dis

  • Domaine_ALE::getMeshAcceleration

  • Domaine_ALE::getMeshDisplacement

  • Domaine_ALE::getMeshMotionModel

  • Domaine_ALE::getMeshPosition

  • Domaine_ALE::getMeshReferenceConfiguration

  • Domaine_ALE::getMeshReferenceConfigurationNbComp

  • Domaine_ALE::getMeshStress

  • Domaine_ALE::getMeshStressNbComp

  • Domaine_ALE::getMeshTransformationGradient

  • Domaine_ALE::getMeshTransformationGradientNbComp

  • Domaine_ALE::getMeshVelocity

  • Domaine_ALE::getNewJacobian

  • Domaine_ALE::getOldJacobian

  • EcritureLectureSpecial::is_ecriture_special

  • TRUST_2_PDI::is_PDI_checkpoint

  • Probleme_U::le_nom

  • Domaine_32_64<_SIZE_>::les_sommets

  • Nom::majuscule

  • TRUSTTab<_TYPE_, _SIZE_>::nb_dim

  • Process::nproc

  • Equation_base::probleme

  • Navier_Stokes_std::sauvegarder

  • TRUST_2_PDI::share_TRUSTTab_dimensions

  • TRUSTArray<_TYPE_, _SIZE_>::size_array

  • TRUST_2_PDI::TRUST_start_sharing

  • Navier_Stokes_std::vitesse

Referenced By
  • Navier_Stokes_Turbulent_ALE::sauvegarder

How to reference this method:

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`int Navier_Stokes_std_ALE::sauvegarder(Sortie &) const override <navier-stokes-std-ale-public-int-navier-stokes-std-ale-sauvegarder-sortie-ref-const-override>`
[int Navier_Stokes_std_ALE::sauvegarder(Sortie &) const override](#navier-stokes-std-ale-public-int-navier-stokes-std-ale-sauvegarder-sortie-ref-const-override)

setPressureTimeN#

Definition
void Navier_Stokes_std_ALE::setPressureTimeN() override
Brief description
Detailed description

Reimplements:

  • setPressureTimeN

References
  • Domaine_ALE::getCouplingMethod

  • Navier_Stokes_std::getPressureTimeN

  • Navier_Stokes_std::pression

  • Equation_base::probleme

  • Champ_Inc_base::valeurs

How to reference this method:

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`void Navier_Stokes_std_ALE::setPressureTimeN() override <navier-stokes-std-ale-public-void-navier-stokes-std-ale-setpressuretimen-override>`
[void Navier_Stokes_std_ALE::setPressureTimeN() override](#navier-stokes-std-ale-public-void-navier-stokes-std-ale-setpressuretimen-override)

taille_memoire#

Definition
unsigned Navier_Stokes_std_ALE::taille_memoire() const override
Brief description
Detailed description

Reimplements:

  • taille_memoire

How to reference this method:

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`unsigned Navier_Stokes_std_ALE::taille_memoire() const override <navier-stokes-std-ale-public-unsigned-navier-stokes-std-ale-taille-memoire-const-override>`
[unsigned Navier_Stokes_std_ALE::taille_memoire() const override](#navier-stokes-std-ale-public-unsigned-navier-stokes-std-ale-taille-memoire-const-override)

update_pressure_matrix#

Definition
void Navier_Stokes_std_ALE::update_pressure_matrix()
Brief description
Detailed description
References
  • Assembleur_base::assembler

  • Navier_Stokes_std::assembleur_pression_

  • Navier_Stokes_std::matrice_pression_

  • Navier_Stokes_std::solveur_pression_

Referenced By
  • Domaine_ALE::mettre_a_jour

How to reference this method:

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`void Navier_Stokes_std_ALE::update_pressure_matrix() <navier-stokes-std-ale-public-void-navier-stokes-std-ale-update-pressure-matrix>`
[void Navier_Stokes_std_ALE::update_pressure_matrix()](#navier-stokes-std-ale-public-void-navier-stokes-std-ale-update-pressure-matrix)

updateFluidForce#

Definition
void Navier_Stokes_std_ALE::updateFluidForce(DoubleTab &) override
Brief description
Detailed description

Reimplements:

  • updateFluidForce

References
  • Operateur_Diff::ajouter

  • Op_Grad_VEF_P1B_Face::calculer_flux_bords

  • Navier_Stokes_std::calculer_la_pression_en_pa

  • Domaine_ALE::getCouplingMethod

  • Champ_Inc_base::mettre_a_jour

  • Navier_Stokes_std::operateur_diff

  • Navier_Stokes_std::operateur_gradient

  • Navier_Stokes_std::pression

  • Equation_base::probleme

  • Equation_base::schema_temps

How to reference this method:

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`void Navier_Stokes_std_ALE::updateFluidForce(DoubleTab &) override <navier-stokes-std-ale-public-void-navier-stokes-std-ale-updatefluidforce-doubletab-ref-override>`
[void Navier_Stokes_std_ALE::updateFluidForce(DoubleTab &) override](#navier-stokes-std-ale-public-void-navier-stokes-std-ale-updatefluidforce-doubletab-ref-override)

~Navier_Stokes_std_ALE#

Definition
Navier_Stokes_std_ALE::~Navier_Stokes_std_ALE()
Brief description
Detailed description
How to reference this method:

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`Navier_Stokes_std_ALE::~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()](#navier-stokes-std-ale-public-navier-stokes-std-ale-dtor-navier-stokes-std-ale)

cree_instance#

Definition
Objet_U * Navier_Stokes_std_ALE::cree_instance()
Brief description
Detailed description
How to reference this method:

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`Objet_U * Navier_Stokes_std_ALE::cree_instance() <navier-stokes-std-ale-public-static-objet-u-ptr-navier-stokes-std-ale-cree-instance>`
[Objet_U * Navier_Stokes_std_ALE::cree_instance()](#navier-stokes-std-ale-public-static-objet-u-ptr-navier-stokes-std-ale-cree-instance)

info#

Definition
const Type_info * Navier_Stokes_std_ALE::info()
Brief description
Detailed description
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Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`const Type_info * Navier_Stokes_std_ALE::info() <navier-stokes-std-ale-public-static-const-type-info-ptr-navier-stokes-std-ale-info>`
[const Type_info * Navier_Stokes_std_ALE::info()](#navier-stokes-std-ale-public-static-const-type-info-ptr-navier-stokes-std-ale-info)

self_cast#

Definition
const Navier_Stokes_std_ALE & Navier_Stokes_std_ALE::self_cast(const Objet_U &)
Brief description
Detailed description
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Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`const Navier_Stokes_std_ALE & Navier_Stokes_std_ALE::self_cast(const Objet_U &) <navier-stokes-std-ale-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 &)](#navier-stokes-std-ale-public-static-const-navier-stokes-std-ale-ref-navier-stokes-std-ale-self-cast-const-objet-u-ref)

self_cast#

Definition
Navier_Stokes_std_ALE & Navier_Stokes_std_ALE::self_cast(Objet_U &)
Brief description
Detailed description
How to reference this method:

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`Navier_Stokes_std_ALE & Navier_Stokes_std_ALE::self_cast(Objet_U &) <navier-stokes-std-ale-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 &)](#navier-stokes-std-ale-public-static-navier-stokes-std-ale-ref-navier-stokes-std-ale-self-cast-objet-u-ref)

printOn#

Definition
Sortie & Navier_Stokes_std_ALE::printOn(Sortie &x) const override
Brief description

Surcharge Objet_U::printOn Imprime l’equation et ses composants sur un flot de sortie.

Detailed description

Imprime le nom de l’equation, le solveur masse, les termes sources les conditions aux limites discretisees, les inconnues et les operateurs.

Reimplements:

  • printOn

References
  • Navier_Stokes_std::printOn

How to reference this method:

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`Sortie & Navier_Stokes_std_ALE::printOn(Sortie &x) const override <navier-stokes-std-ale-protected-sortie-ref-navier-stokes-std-ale-printon-sortie-ref-x-const-override>`
[Sortie & Navier_Stokes_std_ALE::printOn(Sortie &x) const override](#navier-stokes-std-ale-protected-sortie-ref-navier-stokes-std-ale-printon-sortie-ref-x-const-override)

readOn#

Definition
Entree & Navier_Stokes_std_ALE::readOn(Entree &) override
Brief description

Appel Equation_base::readOn(Entree& is) En sortie verifie que l’on a bien lu:

Detailed description
  • le terme diffusif, - le terme convectif, - le solveur en pression

Reimplements:

  • readOn

References
  • Navier_Stokes_std::readOn

Referenced By
  • Navier_Stokes_Turbulent_ALE::readOn

How to reference this method:

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`Entree & Navier_Stokes_std_ALE::readOn(Entree &) override <navier-stokes-std-ale-protected-entree-ref-navier-stokes-std-ale-readon-entree-ref-override>`
[Entree & Navier_Stokes_std_ALE::readOn(Entree &) override](#navier-stokes-std-ale-protected-entree-ref-navier-stokes-std-ale-readon-entree-ref-override)

create_field#

Definition
void Navier_Stokes_std_ALE::create_field(TRUST_Deriv< Champ_Inc_base > &, const std::string &, int, const Motcle &) const
Brief description
Detailed description
How to reference this method:

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`void Navier_Stokes_std_ALE::create_field(TRUST_Deriv< Champ_Inc_base > &, const std::string &, int, const Motcle &) const <navier-stokes-std-ale-private-void-navier-stokes-std-ale-create-field-trust-deriv-champ-inc-base-ref-const-std-string-ref-int-const-motcle-ref-const>`
[void Navier_Stokes_std_ALE::create_field(TRUST_Deriv< Champ_Inc_base > &, const std::string &, int, const Motcle &) const](#navier-stokes-std-ale-private-void-navier-stokes-std-ale-create-field-trust-deriv-champ-inc-base-ref-const-std-string-ref-int-const-motcle-ref-const)

generate_field_tag#

Definition
Nom Navier_Stokes_std_ALE::generate_field_tag(const Champ_Inc_base &) const
Brief description
Detailed description
How to reference this method:

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`Nom Navier_Stokes_std_ALE::generate_field_tag(const Champ_Inc_base &) const <navier-stokes-std-ale-private-nom-navier-stokes-std-ale-generate-field-tag-const-champ-inc-base-ref-const>`
[Nom Navier_Stokes_std_ALE::generate_field_tag(const Champ_Inc_base &) const](#navier-stokes-std-ale-private-nom-navier-stokes-std-ale-generate-field-tag-const-champ-inc-base-ref-const)

make_yaml#

Definition
YAML_data Navier_Stokes_std_ALE::make_yaml(const std::string &, int) const
Brief description
Detailed description
How to reference this method:

Copy the following pieces of RST/Markdown code to cite this element in other parts of the sphinx documentation (there is a copy button on the top-right when hovering the code block):

:ref:`YAML_data Navier_Stokes_std_ALE::make_yaml(const std::string &, int) const <navier-stokes-std-ale-private-yaml-data-navier-stokes-std-ale-make-yaml-const-std-string-ref-int-const>`
[YAML_data Navier_Stokes_std_ALE::make_yaml(const std::string &, int) const](#navier-stokes-std-ale-private-yaml-data-navier-stokes-std-ale-make-yaml-const-std-string-ref-int-const)

Attributes Documentation#

info_obj (public)
const Type_info Navier_Stokes_std_ALE::info_obj
ALEMeshStructuralForces_ (protected)
TRUST_Deriv<Champ_Inc_base> Navier_Stokes_std_ALE::ALEMeshStructuralForces_
ALEMeshStructuralPressure_ (protected)
TRUST_Deriv<Champ_Inc_base> Navier_Stokes_std_ALE::ALEMeshStructuralPressure_
ALEMeshStructuralVonMises_ (protected)
TRUST_Deriv<Champ_Inc_base> Navier_Stokes_std_ALE::ALEMeshStructuralVonMises_
ALEMeshTotalDisplacement_ (protected)
TRUST_Deriv<Champ_Inc_base> Navier_Stokes_std_ALE::ALEMeshTotalDisplacement_
ALEMeshVelocity_ (protected)
TRUST_Deriv<Champ_Inc_base> Navier_Stokes_std_ALE::ALEMeshVelocity_
Contents
  • How to reference this class
  • Detailed description
  • Inherits from
  • Inherited by
  • Inheritance graph
  • Member Functions: Public
  • Member Functions: Static Public
  • Member Functions: Protected
  • Member Functions: Private
  • Complete Member Function Documentation
    • data_a_sauvegarder
    • discretiser
    • div_ale_derivative
    • duplique
    • get_info
    • getCouplingInfoForFiltering
    • mettre_a_jour
    • Navier_Stokes_std_ALE
    • renewing_jacobians
    • reprendre
    • sauvegarder
    • setPressureTimeN
    • taille_memoire
    • update_pressure_matrix
    • updateFluidForce
    • ~Navier_Stokes_std_ALE
    • cree_instance
    • info
    • self_cast
    • self_cast
    • printOn
    • readOn
    • create_field
    • generate_field_tag
    • make_yaml
  • Attributes Documentation

By The TrioCFD team

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