TrioCFD 1.9.9_beta
TrioCFD documentation
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Interpolation_IBM_power_law_tbl_u_star.cpp
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15
16#include <Interpolation_IBM_power_law_tbl_u_star.h>
17#include <TRUSTTrav.h>
18#include <Domaine.h>
19
20Implemente_instanciable( Interpolation_IBM_power_law_tbl_u_star, "Interpolation_IBM_power_law_tbl_u_star|IBM_power_law_tbl_u_star", Interpolation_IBM_mean_gradient ) ;
21// XD Interpolation_IBM_power_law_tbl_u_star interpolation_ibm_mean_gradient Interpolation_IBM_power_law_tbl_u_star BRACE Immersed Boundary Method (IBM): law u star.
22
24{
25 return Objet_U::printOn( os );
26}
27
29{
30 Param param(que_suis_je());
32 param.ajouter("points_solides",&solid_points_lu_,Param::REQUIRED); // XD_ADD_P field_base
33 // XD_CONT Node field giving the projection of the node on the immersed boundary
34 param.ajouter("est_dirichlet",&is_dirichlet_lu_,Param::REQUIRED); // XD_ADD_P field_base
35 // XD_CONT Node field of booleans indicating whether the node belong to an element where the interface is
36 param.ajouter("correspondance_elements",&corresp_elems_lu_,Param::REQUIRED); // XD_ADD_P field_base
37 // XD_CONT Cell field giving the SALOME cell number
38 param.ajouter("elements_solides",&solid_elems_lu_,Param::REQUIRED); // XD_ADD_P field_base
39 // XD_CONT Node field giving the element number containing the solid point
40 param.lire_avec_accolades_depuis(is);
41 return is;
42}
43
45{
47 int nb_comp = Objet_U::dimension;
48 Noms units(nb_comp);
49 Noms c_nam(nb_comp);
50
51 if (corresp_elems_lu_)
52 {
53 dis.discretiser_champ("champ_elem",le_dom_EF,"corresp_elems","none",1,0., corresp_elems_);
54 corresp_elems_->affecter(corresp_elems_lu_);
55 }
56 dis.discretiser_champ("champ_sommets",le_dom_EF,"solid_elems","none",1,0., solid_elems_);
57 solid_elems_->affecter(solid_elems_lu_);
58 dis.discretiser_champ("champ_sommets",le_dom_EF,"is_dirichlet","none",1,0., is_dirichlet_);
59 is_dirichlet_->affecter(is_dirichlet_lu_);
60 computeSommetsVoisins(le_dom_EF, solid_points_, corresp_elems_, has_corresp_);
61}
class Discretisation_base This class represents a spatial discretization scheme, which
void discretiser_champ(const Motcle &directive, const Domaine_dis_base &z, const Nom &nom, const Nom &unite, int nb_comp, int nb_pas_dt, double temps, OWN_PTR(Champ_Inc_base)&champ, const Nom &sous_type=NOM_VIDE) const
class Domaine_dis_base This class is the base of the hierarchy of discretized domains.
Class defining operators and methods for all reading operation in an input flow (file,...
Definition Entree.h:42
void set_param(Param &) const override
virtual void discretise(const Discretisation_base &, Domaine_dis_base &)
void computeSommetsVoisins(Domaine_dis_base &le_dom_, const Champ_Don_base &solid_points, const Champ_Don_base &corresp_elems, bool has_corres)
void discretise(const Discretisation_base &, Domaine_dis_base &la_zone_EF) override
An array of character strings (VECT(Nom)).
Definition Noms.h:26
static int dimension
Definition Objet_U.h:94
const Nom & que_suis_je() const
Returns the string identifying the class.
Definition Objet_U.cpp:104
virtual Entree & readOn(Entree &)
Reads an Objet_U from an input stream. Virtual method to override.
Definition Objet_U.cpp:289
virtual Sortie & printOn(Sortie &) const
Writes the object to an output stream. Virtual method to override.
Definition Objet_U.cpp:278
@ REQUIRED
Definition Param.h:115
Base class for output streams.
Definition Sortie.h:52