oomph::RefineablePolarTaylorHoodElement Class Reference

#include <refineable_polar_navier_stokes_elements.h>

+ Inheritance diagram for oomph::RefineablePolarTaylorHoodElement:

Public Member Functions

 RefineablePolarTaylorHoodElement ()
 Constructor. More...
 
unsigned required_nvalue (const unsigned &n) const
 
unsigned ncont_interpolated_values () const
 
void rebuild_from_sons (Mesh *&mesh_pt)
 Rebuild from sons: empty. More...
 
unsigned nrecovery_order ()
 
unsigned nvertex_node () const
 Number of vertex nodes in the element. More...
 
Nodevertex_node_pt (const unsigned &j) const
 Pointer to the j-th vertex node in the element. More...
 
void get_interpolated_values (const Vector< double > &s, Vector< double > &values)
 
void get_interpolated_values (const unsigned &t, const Vector< double > &s, Vector< double > &values)
 
void further_setup_hanging_nodes ()
 
Nodeinterpolating_node_pt (const unsigned &n, const int &value_id)
 
double local_one_d_fraction_of_interpolating_node (const unsigned &n1d, const unsigned &i, const int &value_id)
 
Nodeget_interpolating_node_at_local_coordinate (const Vector< double > &s, const int &value_id)
 
unsigned ninterpolating_node_1d (const int &value_id)
 
unsigned ninterpolating_node (const int &value_id)
 
void interpolating_basis (const Vector< double > &s, Shape &psi, const int &value_id) const
 
void insert_load_data (std::set< std::pair< Data *, unsigned >> &paired_load_data)
 
- Public Member Functions inherited from oomph::PolarTaylorHoodElement
 PolarTaylorHoodElement ()
 Constructor, no internal data points. More...
 
virtual int p_nodal_index_pnst ()
 Which nodal value represents the pressure? More...
 
double u_pnst (const unsigned &n, const unsigned &i) const
 
double u_pnst (const unsigned &t, const unsigned &n, const unsigned &i) const
 
double p_pnst (const unsigned &n_p) const
 
unsigned npres_pnst () const
 Return number of pressure values. More...
 
void fix_pressure (const unsigned &p_dof, const double &p_value)
 Pin p_dof-th pressure dof and set it to value specified by p_value. More...
 
void get_load_data (std::set< std::pair< Data *, unsigned >> &paired_load_data)
 
void output (std::ostream &outfile)
 Redirect output to NavierStokesEquations output. More...
 
void output (std::ostream &outfile, const unsigned &Nplot)
 Redirect output to NavierStokesEquations output. More...
 
void output (FILE *file_pt)
 Redirect output to NavierStokesEquations output. More...
 
void output (FILE *file_pt, const unsigned &Nplot)
 Redirect output to NavierStokesEquations output. More...
 
- Public Member Functions inherited from oomph::PolarNavierStokesEquations
 PolarNavierStokesEquations ()
 Constructor: NULL the body force and source function. More...
 
const doublere () const
 Reynolds number. More...
 
const doublealpha () const
 Alpha. More...
 
const doublere_st () const
 Product of Reynolds and Strouhal number (=Womersley number) More...
 
double *& re_pt ()
 Pointer to Reynolds number. More...
 
double *& alpha_pt ()
 Pointer to Alpha. More...
 
double *& re_st_pt ()
 Pointer to product of Reynolds and Strouhal number (=Womersley number) More...
 
const doubleviscosity_ratio () const
 
double *& viscosity_ratio_pt ()
 Pointer to Viscosity Ratio. More...
 
const doubledensity_ratio () const
 
double *& density_ratio_pt ()
 Pointer to Density ratio. More...
 
const doublere_invfr () const
 Global inverse Froude number. More...
 
double *& re_invfr_pt ()
 Pointer to global inverse Froude number. More...
 
const Vector< double > & g () const
 Vector of gravitational components. More...
 
Vector< double > *& g_pt ()
 Pointer to Vector of gravitational components. More...
 
NavierStokesBodyForceFctPtbody_force_fct_pt ()
 Access function for the body-force pointer. More...
 
NavierStokesBodyForceFctPt body_force_fct_pt () const
 Access function for the body-force pointer. Const version. More...
 
NavierStokesSourceFctPtsource_fct_pt ()
 Access function for the source-function pointer. More...
 
NavierStokesSourceFctPt source_fct_pt () const
 Access function for the source-function pointer. Const version. More...
 
virtual unsigned u_index_pnst (const unsigned &i) const
 
double du_dt_pnst (const unsigned &n, const unsigned &i) const
 
double pressure_integral () const
 Integral of pressure over element. More...
 
double dissipation () const
 Return integral of dissipation over element. More...
 
double dissipation (const Vector< double > &s) const
 Return dissipation at local coordinate s. More...
 
double kin_energy () const
 Get integral of kinetic energy over element. More...
 
void strain_rate (const Vector< double > &s, DenseMatrix< double > &strain_rate) const
 Strain-rate tensor: Now returns polar strain. More...
 
void strain_rate_by_r (const Vector< double > &s, DenseMatrix< double > &strain_rate) const
 Function to return polar strain multiplied by r. More...
 
void get_traction (const Vector< double > &s, const Vector< double > &N, Vector< double > &traction)
 
void get_load (const Vector< double > &s, const Vector< double > &xi, const Vector< double > &x, const Vector< double > &N, Vector< double > &load)
 
void full_output (std::ostream &outfile)
 
void full_output (std::ostream &outfile, const unsigned &nplot)
 
void output_veloc (std::ostream &outfile, const unsigned &nplot, const unsigned &t)
 
void output_fct (std::ostream &outfile, const unsigned &nplot, FiniteElement::SteadyExactSolutionFctPt exact_soln_pt)
 
void output_fct (std::ostream &outfile, const unsigned &nplot, const double &time, FiniteElement::UnsteadyExactSolutionFctPt exact_soln_pt)
 
void compute_error (std::ostream &outfile, FiniteElement::UnsteadyExactSolutionFctPt exact_soln_pt, const double &time, double &error, double &norm)
 
void compute_error (std::ostream &outfile, FiniteElement::SteadyExactSolutionFctPt exact_soln_pt, double &error, double &norm)
 
void fill_in_contribution_to_residuals (Vector< double > &residuals)
 Compute the element's residual Vector. More...
 
void fill_in_contribution_to_jacobian (Vector< double > &residuals, DenseMatrix< double > &jacobian)
 
void fill_in_contribution_to_jacobian_and_mass_matrix (Vector< double > &residuals, DenseMatrix< double > &jacobian, DenseMatrix< double > &mass_matrix)
 
void interpolated_u_pnst (const Vector< double > &s, Vector< double > &veloc) const
 Compute vector of FE interpolated velocity u at local coordinate s. More...
 
double interpolated_u_pnst (const Vector< double > &s, const unsigned &i) const
 Return FE interpolated velocity u[i] at local coordinate s. More...
 
double interpolated_p_pnst (const Vector< double > &s) const
 Return FE interpolated pressure at local coordinate s. More...
 
double interpolated_dudx_pnst (const Vector< double > &s, const unsigned &i, const unsigned &j) const
 
- Public Member Functions inherited from oomph::FiniteElement
void set_dimension (const unsigned &dim)
 
void set_nodal_dimension (const unsigned &nodal_dim)
 
void set_nnodal_position_type (const unsigned &nposition_type)
 Set the number of types required to interpolate the coordinate. More...
 
void set_n_node (const unsigned &n)
 
int nodal_local_eqn (const unsigned &n, const unsigned &i) const
 
double dJ_eulerian_at_knot (const unsigned &ipt, Shape &psi, DenseMatrix< double > &djacobian_dX) const
 
 FiniteElement ()
 Constructor. More...
 
virtual ~FiniteElement ()
 
 FiniteElement (const FiniteElement &)=delete
 Broken copy constructor. More...
 
void get_centre_of_gravity_and_max_radius_in_terms_of_zeta (Vector< double > &cog, double &max_radius) const
 
virtual void local_coordinate_of_node (const unsigned &j, Vector< double > &s) const
 
virtual void local_fraction_of_node (const unsigned &j, Vector< double > &s_fraction)
 
virtual double local_one_d_fraction_of_node (const unsigned &n1d, const unsigned &i)
 
MacroElementmacro_elem_pt ()
 Access function to pointer to macro element. More...
 
void get_x (const Vector< double > &s, Vector< double > &x) const
 
void get_x (const unsigned &t, const Vector< double > &s, Vector< double > &x)
 
virtual void set_integration_scheme (Integral *const &integral_pt)
 Set the spatial integration scheme. More...
 
Integral *const & integral_pt () const
 Return the pointer to the integration scheme (const version) More...
 
virtual void shape (const Vector< double > &s, Shape &psi) const =0
 
virtual void shape_at_knot (const unsigned &ipt, Shape &psi) const
 
virtual void dshape_local (const Vector< double > &s, Shape &psi, DShape &dpsids) const
 
virtual void dshape_local_at_knot (const unsigned &ipt, Shape &psi, DShape &dpsids) const
 
virtual void d2shape_local (const Vector< double > &s, Shape &psi, DShape &dpsids, DShape &d2psids) const
 
virtual void d2shape_local_at_knot (const unsigned &ipt, Shape &psi, DShape &dpsids, DShape &d2psids) const
 
virtual double J_eulerian (const Vector< double > &s) const
 
virtual double J_eulerian_at_knot (const unsigned &ipt) const
 
void check_J_eulerian_at_knots (bool &passed) const
 
void check_jacobian (const double &jacobian) const
 
double dshape_eulerian (const Vector< double > &s, Shape &psi, DShape &dpsidx) const
 
virtual double dshape_eulerian_at_knot (const unsigned &ipt, Shape &psi, DShape &dpsidx) const
 
virtual double dshape_eulerian_at_knot (const unsigned &ipt, Shape &psi, DShape &dpsi, DenseMatrix< double > &djacobian_dX, RankFourTensor< double > &d_dpsidx_dX) const
 
double d2shape_eulerian (const Vector< double > &s, Shape &psi, DShape &dpsidx, DShape &d2psidx) const
 
virtual double d2shape_eulerian_at_knot (const unsigned &ipt, Shape &psi, DShape &dpsidx, DShape &d2psidx) const
 
virtual void describe_local_dofs (std::ostream &out, const std::string &current_string) const
 
virtual void describe_nodal_local_dofs (std::ostream &out, const std::string &current_string) const
 
virtual void assign_all_generic_local_eqn_numbers (const bool &store_local_dof_pt)
 
Node *& node_pt (const unsigned &n)
 Return a pointer to the local node n. More...
 
Node *const & node_pt (const unsigned &n) const
 Return a pointer to the local node n (const version) More...
 
unsigned nnode () const
 Return the number of nodes. More...
 
virtual unsigned nnode_1d () const
 
double raw_nodal_position (const unsigned &n, const unsigned &i) const
 
double raw_nodal_position (const unsigned &t, const unsigned &n, const unsigned &i) const
 
double raw_dnodal_position_dt (const unsigned &n, const unsigned &i) const
 
double raw_dnodal_position_dt (const unsigned &n, const unsigned &j, const unsigned &i) const
 
double raw_nodal_position_gen (const unsigned &n, const unsigned &k, const unsigned &i) const
 
double raw_nodal_position_gen (const unsigned &t, const unsigned &n, const unsigned &k, const unsigned &i) const
 
double raw_dnodal_position_gen_dt (const unsigned &n, const unsigned &k, const unsigned &i) const
 
double raw_dnodal_position_gen_dt (const unsigned &j, const unsigned &n, const unsigned &k, const unsigned &i) const
 
double nodal_position (const unsigned &n, const unsigned &i) const
 
double nodal_position (const unsigned &t, const unsigned &n, const unsigned &i) const
 
double dnodal_position_dt (const unsigned &n, const unsigned &i) const
 Return the i-th component of nodal velocity: dx/dt at local node n. More...
 
double dnodal_position_dt (const unsigned &n, const unsigned &j, const unsigned &i) const
 
double nodal_position_gen (const unsigned &n, const unsigned &k, const unsigned &i) const
 
double nodal_position_gen (const unsigned &t, const unsigned &n, const unsigned &k, const unsigned &i) const
 
double dnodal_position_gen_dt (const unsigned &n, const unsigned &k, const unsigned &i) const
 
double dnodal_position_gen_dt (const unsigned &j, const unsigned &n, const unsigned &k, const unsigned &i) const
 
virtual void disable_ALE ()
 
virtual void enable_ALE ()
 
unsigned nnodal_position_type () const
 
bool has_hanging_nodes () const
 
unsigned nodal_dimension () const
 Return the required Eulerian dimension of the nodes in this element. More...
 
virtual Nodeconstruct_node (const unsigned &n)
 
virtual Nodeconstruct_node (const unsigned &n, TimeStepper *const &time_stepper_pt)
 
virtual Nodeconstruct_boundary_node (const unsigned &n)
 
virtual Nodeconstruct_boundary_node (const unsigned &n, TimeStepper *const &time_stepper_pt)
 
int get_node_number (Node *const &node_pt) const
 
virtual Nodeget_node_at_local_coordinate (const Vector< double > &s) const
 
double raw_nodal_value (const unsigned &n, const unsigned &i) const
 
double raw_nodal_value (const unsigned &t, const unsigned &n, const unsigned &i) const
 
double nodal_value (const unsigned &n, const unsigned &i) const
 
double nodal_value (const unsigned &t, const unsigned &n, const unsigned &i) const
 
unsigned dim () const
 
virtual double interpolated_x (const Vector< double > &s, const unsigned &i) const
 Return FE interpolated coordinate x[i] at local coordinate s. More...
 
virtual double interpolated_x (const unsigned &t, const Vector< double > &s, const unsigned &i) const
 
virtual void interpolated_x (const Vector< double > &s, Vector< double > &x) const
 Return FE interpolated position x[] at local coordinate s as Vector. More...
 
virtual void interpolated_x (const unsigned &t, const Vector< double > &s, Vector< double > &x) const
 
virtual double interpolated_dxdt (const Vector< double > &s, const unsigned &i, const unsigned &t)
 
virtual void interpolated_dxdt (const Vector< double > &s, const unsigned &t, Vector< double > &dxdt)
 
unsigned ngeom_data () const
 
Datageom_data_pt (const unsigned &j)
 
void position (const Vector< double > &zeta, Vector< double > &r) const
 
void position (const unsigned &t, const Vector< double > &zeta, Vector< double > &r) const
 
void dposition_dt (const Vector< double > &zeta, const unsigned &t, Vector< double > &drdt)
 
virtual double zeta_nodal (const unsigned &n, const unsigned &k, const unsigned &i) const
 
void interpolated_zeta (const Vector< double > &s, Vector< double > &zeta) const
 
void locate_zeta (const Vector< double > &zeta, GeomObject *&geom_object_pt, Vector< double > &s, const bool &use_coordinate_as_initial_guess=false)
 
virtual void node_update ()
 
virtual void identify_geometric_data (std::set< Data * > &geometric_data_pt)
 
virtual double s_min () const
 Min value of local coordinate. More...
 
virtual double s_max () const
 Max. value of local coordinate. More...
 
double size () const
 
virtual double compute_physical_size () const
 
virtual void point_output_data (const Vector< double > &s, Vector< double > &data)
 
void point_output (std::ostream &outfile, const Vector< double > &s)
 
virtual unsigned nplot_points_paraview (const unsigned &nplot) const
 
virtual unsigned nsub_elements_paraview (const unsigned &nplot) const
 
void output_paraview (std::ofstream &file_out, const unsigned &nplot) const
 
virtual void write_paraview_output_offset_information (std::ofstream &file_out, const unsigned &nplot, unsigned &counter) const
 
virtual void write_paraview_type (std::ofstream &file_out, const unsigned &nplot) const
 
virtual void write_paraview_offsets (std::ofstream &file_out, const unsigned &nplot, unsigned &offset_sum) const
 
virtual unsigned nscalar_paraview () const
 
virtual void scalar_value_paraview (std::ofstream &file_out, const unsigned &i, const unsigned &nplot) const
 
virtual void scalar_value_fct_paraview (std::ofstream &file_out, const unsigned &i, const unsigned &nplot, FiniteElement::SteadyExactSolutionFctPt exact_soln_pt) const
 
virtual void scalar_value_fct_paraview (std::ofstream &file_out, const unsigned &i, const unsigned &nplot, const double &time, FiniteElement::UnsteadyExactSolutionFctPt exact_soln_pt) const
 
virtual std::string scalar_name_paraview (const unsigned &i) const
 
virtual void output (const unsigned &t, std::ostream &outfile, const unsigned &n_plot) const
 
virtual void output_fct (std::ostream &outfile, const unsigned &n_plot, const double &time, const SolutionFunctorBase &exact_soln) const
 Output a time-dependent exact solution over the element. More...
 
virtual void get_s_plot (const unsigned &i, const unsigned &nplot, Vector< double > &s, const bool &shifted_to_interior=false) const
 
virtual std::string tecplot_zone_string (const unsigned &nplot) const
 
virtual void write_tecplot_zone_footer (std::ostream &outfile, const unsigned &nplot) const
 
virtual void write_tecplot_zone_footer (FILE *file_pt, const unsigned &nplot) const
 
virtual unsigned nplot_points (const unsigned &nplot) const
 
virtual void compute_error (FiniteElement::SteadyExactSolutionFctPt exact_soln_pt, double &error, double &norm)
 Calculate the norm of the error and that of the exact solution. More...
 
virtual void compute_error (FiniteElement::UnsteadyExactSolutionFctPt exact_soln_pt, const double &time, double &error, double &norm)
 Calculate the norm of the error and that of the exact solution. More...
 
virtual void compute_error (FiniteElement::SteadyExactSolutionFctPt exact_soln_pt, Vector< double > &error, Vector< double > &norm)
 
virtual void compute_error (FiniteElement::UnsteadyExactSolutionFctPt exact_soln_pt, const double &time, Vector< double > &error, Vector< double > &norm)
 
virtual void compute_error (std::ostream &outfile, FiniteElement::SteadyExactSolutionFctPt exact_soln_pt, Vector< double > &error, Vector< double > &norm)
 
virtual void compute_error (std::ostream &outfile, FiniteElement::UnsteadyExactSolutionFctPt exact_soln_pt, const double &time, Vector< double > &error, Vector< double > &norm)
 
virtual void compute_abs_error (std::ostream &outfile, FiniteElement::SteadyExactSolutionFctPt exact_soln_pt, double &error)
 
void integrate_fct (FiniteElement::SteadyExactSolutionFctPt integrand_fct_pt, Vector< double > &integral)
 Integrate Vector-valued function over element. More...
 
void integrate_fct (FiniteElement::UnsteadyExactSolutionFctPt integrand_fct_pt, const double &time, Vector< double > &integral)
 Integrate Vector-valued time-dep function over element. More...
 
virtual void build_face_element (const int &face_index, FaceElement *face_element_pt)
 
virtual unsigned self_test ()
 
virtual unsigned get_bulk_node_number (const int &face_index, const unsigned &i) const
 
virtual int face_outer_unit_normal_sign (const int &face_index) const
 Get the sign of the outer unit normal on the face given by face_index. More...
 
void face_node_number_error_check (const unsigned &i) const
 Range check for face node numbers. More...
 
virtual CoordinateMappingFctPt face_to_bulk_coordinate_fct_pt (const int &face_index) const
 
virtual BulkCoordinateDerivativesFctPt bulk_coordinate_derivatives_fct_pt (const int &face_index) const
 
- Public Member Functions inherited from oomph::GeneralisedElement
 GeneralisedElement ()
 Constructor: Initialise all pointers and all values to zero. More...
 
virtual ~GeneralisedElement ()
 Virtual destructor to clean up any memory allocated by the object. More...
 
 GeneralisedElement (const GeneralisedElement &)=delete
 Broken copy constructor. More...
 
void operator= (const GeneralisedElement &)=delete
 Broken assignment operator. More...
 
Data *& internal_data_pt (const unsigned &i)
 Return a pointer to i-th internal data object. More...
 
Data *const & internal_data_pt (const unsigned &i) const
 Return a pointer to i-th internal data object (const version) More...
 
Data *& external_data_pt (const unsigned &i)
 Return a pointer to i-th external data object. More...
 
Data *const & external_data_pt (const unsigned &i) const
 Return a pointer to i-th external data object (const version) More...
 
unsigned long eqn_number (const unsigned &ieqn_local) const
 
int local_eqn_number (const unsigned long &ieqn_global) const
 
unsigned add_external_data (Data *const &data_pt, const bool &fd=true)
 
bool external_data_fd (const unsigned &i) const
 
void exclude_external_data_fd (const unsigned &i)
 
void include_external_data_fd (const unsigned &i)
 
void flush_external_data ()
 Flush all external data. More...
 
void flush_external_data (Data *const &data_pt)
 Flush the object addressed by data_pt from the external data array. More...
 
unsigned ninternal_data () const
 Return the number of internal data objects. More...
 
unsigned nexternal_data () const
 Return the number of external data objects. More...
 
unsigned ndof () const
 Return the number of equations/dofs in the element. More...
 
void dof_vector (const unsigned &t, Vector< double > &dof)
 Return the vector of dof values at time level t. More...
 
void dof_pt_vector (Vector< double * > &dof_pt)
 Return the vector of pointers to dof values. More...
 
void set_internal_data_time_stepper (const unsigned &i, TimeStepper *const &time_stepper_pt, const bool &preserve_existing_data)
 
void assign_internal_eqn_numbers (unsigned long &global_number, Vector< double * > &Dof_pt)
 
void describe_dofs (std::ostream &out, const std::string &current_string) const
 
void add_internal_value_pt_to_map (std::map< unsigned, double * > &map_of_value_pt)
 
virtual void assign_local_eqn_numbers (const bool &store_local_dof_pt)
 
virtual void complete_setup_of_dependencies ()
 
virtual void get_residuals (Vector< double > &residuals)
 
virtual void get_jacobian (Vector< double > &residuals, DenseMatrix< double > &jacobian)
 
virtual void get_mass_matrix (Vector< double > &residuals, DenseMatrix< double > &mass_matrix)
 
virtual void get_jacobian_and_mass_matrix (Vector< double > &residuals, DenseMatrix< double > &jacobian, DenseMatrix< double > &mass_matrix)
 
virtual void get_dresiduals_dparameter (double *const &parameter_pt, Vector< double > &dres_dparam)
 
virtual void get_djacobian_dparameter (double *const &parameter_pt, Vector< double > &dres_dparam, DenseMatrix< double > &djac_dparam)
 
virtual void get_djacobian_and_dmass_matrix_dparameter (double *const &parameter_pt, Vector< double > &dres_dparam, DenseMatrix< double > &djac_dparam, DenseMatrix< double > &dmass_matrix_dparam)
 
virtual void get_hessian_vector_products (Vector< double > const &Y, DenseMatrix< double > const &C, DenseMatrix< double > &product)
 
virtual void get_inner_products (Vector< std::pair< unsigned, unsigned >> const &history_index, Vector< double > &inner_product)
 
virtual void get_inner_product_vectors (Vector< unsigned > const &history_index, Vector< Vector< double >> &inner_product_vector)
 
virtual void compute_norm (Vector< double > &norm)
 
virtual void compute_norm (double &norm)
 
virtual unsigned ndof_types () const
 
virtual void get_dof_numbers_for_unknowns (std::list< std::pair< unsigned long, unsigned >> &dof_lookup_list) const
 
- Public Member Functions inherited from oomph::GeomObject
 GeomObject ()
 Default constructor. More...
 
 GeomObject (const unsigned &ndim)
 
 GeomObject (const unsigned &nlagrangian, const unsigned &ndim)
 
 GeomObject (const unsigned &nlagrangian, const unsigned &ndim, TimeStepper *time_stepper_pt)
 
 GeomObject (const GeomObject &dummy)=delete
 Broken copy constructor. More...
 
void operator= (const GeomObject &)=delete
 Broken assignment operator. More...
 
virtual ~GeomObject ()
 (Empty) destructor More...
 
unsigned nlagrangian () const
 Access function to # of Lagrangian coordinates. More...
 
unsigned ndim () const
 Access function to # of Eulerian coordinates. More...
 
void set_nlagrangian_and_ndim (const unsigned &n_lagrangian, const unsigned &n_dim)
 Set # of Lagrangian and Eulerian coordinates. More...
 
TimeStepper *& time_stepper_pt ()
 
TimeSteppertime_stepper_pt () const
 
virtual void position (const double &t, const Vector< double > &zeta, Vector< double > &r) const
 
virtual void dposition (const Vector< double > &zeta, DenseMatrix< double > &drdzeta) const
 
virtual void d2position (const Vector< double > &zeta, RankThreeTensor< double > &ddrdzeta) const
 
virtual void d2position (const Vector< double > &zeta, Vector< double > &r, DenseMatrix< double > &drdzeta, RankThreeTensor< double > &ddrdzeta) const
 
- Public Member Functions inherited from oomph::RefineablePolarNavierStokesEquations
 RefineablePolarNavierStokesEquations ()
 Constructor. More...
 
unsigned num_Z2_flux_terms ()
 Number of 'flux' terms for Z2 error estimation. More...
 
void get_Z2_flux (const Vector< double > &s, Vector< double > &flux)
 
void further_build ()
 Further build, pass the pointers down to the sons. More...
 
- Public Member Functions inherited from oomph::RefineableElement
 RefineableElement ()
 
virtual ~RefineableElement ()
 Destructor, delete the allocated storage for the hanging equations. More...
 
 RefineableElement (const RefineableElement &)=delete
 Broken copy constructor. More...
 
void operator= (const RefineableElement &)=delete
 Broken assignment operator. More...
 
Treetree_pt ()
 Access function: Pointer to quadtree representation of this element. More...
 
void set_tree_pt (Tree *my_tree_pt)
 Set pointer to quadtree representation of this element. More...
 
bool refinement_is_enabled ()
 Flag to indicate suppression of any refinement. More...
 
void disable_refinement ()
 Suppress of any refinement for this element. More...
 
void enable_refinement ()
 Emnable refinement for this element. More...
 
template<class ELEMENT >
void split (Vector< ELEMENT * > &son_pt) const
 
int local_hang_eqn (Node *const &node_pt, const unsigned &i)
 
void set_refinement_level (const int &refine_level)
 Set the refinement level. More...
 
unsigned refinement_level () const
 Return the Refinement level. More...
 
void select_for_refinement ()
 Select the element for refinement. More...
 
void deselect_for_refinement ()
 Deselect the element for refinement. More...
 
void select_sons_for_unrefinement ()
 Unrefinement will be performed by merging the four sons of this element. More...
 
void deselect_sons_for_unrefinement ()
 
bool to_be_refined ()
 Has the element been selected for refinement? More...
 
bool sons_to_be_unrefined ()
 Has the element been selected for unrefinement? More...
 
virtual void unbuild ()
 
virtual void deactivate_element ()
 
virtual bool nodes_built ()
 Return true if all the nodes have been built, false if not. More...
 
long number () const
 Element number (for debugging/plotting) More...
 
void set_number (const long &mynumber)
 Set element number (for debugging/plotting) More...
 
void identify_field_data_for_interactions (std::set< std::pair< Data *, unsigned >> &paired_field_data)
 
void assign_nodal_local_eqn_numbers (const bool &store_local_dof_pt)
 
virtual RefineableElementroot_element_pt ()
 
virtual RefineableElementfather_element_pt () const
 Return a pointer to the father element. More...
 
void get_father_at_refinement_level (unsigned &refinement_level, RefineableElement *&father_at_reflevel_pt)
 
virtual void initial_setup (Tree *const &adopted_father_pt=0, const unsigned &initial_p_order=0)
 
virtual void pre_build (Mesh *&mesh_pt, Vector< Node * > &new_node_pt)
 Pre-build the element. More...
 
void get_dresidual_dnodal_coordinates (RankThreeTensor< double > &dresidual_dnodal_coordinates)
 
unsigned nshape_controlling_nodes ()
 
std::map< Node *, unsignedshape_controlling_node_lookup ()
 
- Public Member Functions inherited from oomph::ElementWithZ2ErrorEstimator
 ElementWithZ2ErrorEstimator ()
 Default empty constructor. More...
 
 ElementWithZ2ErrorEstimator (const ElementWithZ2ErrorEstimator &)=delete
 Broken copy constructor. More...
 
void operator= (const ElementWithZ2ErrorEstimator &)=delete
 Broken assignment operator. More...
 
virtual unsigned ncompound_fluxes ()
 
virtual void compute_exact_Z2_error (std::ostream &outfile, FiniteElement::SteadyExactSolutionFctPt exact_flux_pt, double &error, double &norm)
 
virtual void get_Z2_compound_flux_indices (Vector< unsigned > &flux_index)
 
virtual double geometric_jacobian (const Vector< double > &x)
 
- Public Member Functions inherited from oomph::RefineableQElement< 2 >
 RefineableQElement ()
 Constructor: Pass refinement level (default 0 = root) More...
 
 RefineableQElement (const RefineableQElement< 2 > &dummy)=delete
 Broken copy constructor. More...
 
virtual ~RefineableQElement ()
 Broken assignment operator. More...
 
unsigned required_nsons () const
 A refineable quad element has four sons. More...
 
virtual Nodenode_created_by_neighbour (const Vector< double > &s_fraction, bool &is_periodic)
 
virtual Nodenode_created_by_son_of_neighbour (const Vector< double > &s_fraction, bool &is_periodic)
 
virtual void build (Mesh *&mesh_pt, Vector< Node * > &new_node_pt, bool &was_already_built, std::ofstream &new_nodes_file)
 
void check_integrity (double &max_error)
 
void output_corners (std::ostream &outfile, const std::string &colour) const
 Print corner nodes, use colour. More...
 
QuadTreequadtree_pt ()
 Pointer to quadtree representation of this element. More...
 
QuadTreequadtree_pt () const
 Pointer to quadtree representation of this element. More...
 
void setup_hanging_nodes (Vector< std::ofstream * > &output_stream)
 
void get_boundaries (const int &edge, std::set< unsigned > &boundaries) const
 
void get_bcs (int bound, Vector< int > &bound_cons) const
 
void interpolated_zeta_on_edge (const unsigned &boundary, const int &edge, const Vector< double > &s, Vector< double > &zeta)
 
- Public Member Functions inherited from oomph::QuadElementBase
 QuadElementBase ()
 Constructor. Empty. More...
 
- Public Member Functions inherited from oomph::QElementBase
 QElementBase ()
 Constructor: Initialise pointers to macro element reference coords. More...
 
 QElementBase (const QElementBase &)=delete
 Broken copy constructor. More...
 
virtual ~QElementBase ()
 Broken assignment operator. More...
 
bool local_coord_is_valid (const Vector< double > &s)
 Check whether the local coordinate are valid or not. More...
 
void move_local_coord_back_into_element (Vector< double > &s) const
 
virtual void set_macro_elem_pt (MacroElement *macro_elem_pt)
 
doubles_macro_ll (const unsigned &i)
 
doubles_macro_ur (const unsigned &i)
 
double s_macro_ll (const unsigned &i) const
 
double s_macro_ur (const unsigned &i) const
 
void get_x_from_macro_element (const Vector< double > &s, Vector< double > &x) const
 
void get_x_from_macro_element (const unsigned &t, const Vector< double > &s, Vector< double > &x)
 
unsigned nnode_on_face () const
 
ElementGeometry::ElementGeometry element_geometry () const
 It's a Q element! More...
 
- Public Member Functions inherited from oomph::QElementGeometricBase
 QElementGeometricBase ()
 Empty default constructor. More...
 
 QElementGeometricBase (const QElementGeometricBase &)=delete
 Broken copy constructor. More...
 

Private Member Functions

Nodepressure_node_pt (const unsigned &n_p)
 Pointer to n_p-th pressure node. More...
 
void unpin_elemental_pressure_dofs ()
 Unpin all pressure dofs. More...
 
void pin_elemental_redundant_nodal_pressure_dofs ()
 Pin all nodal pressure dofs that are not required. More...
 

Additional Inherited Members

- Public Types inherited from oomph::PolarNavierStokesEquations
typedef void(* NavierStokesBodyForceFctPt) (const double &time, const Vector< double > &x, Vector< double > &body_force)
 
typedef double(* NavierStokesSourceFctPt) (const double &time, const Vector< double > &x)
 
- Public Types inherited from oomph::FiniteElement
typedef void(* SteadyExactSolutionFctPt) (const Vector< double > &, Vector< double > &)
 
typedef void(* UnsteadyExactSolutionFctPt) (const double &, const Vector< double > &, Vector< double > &)
 
- Public Types inherited from oomph::RefineableQElement< 2 >
typedef void(RefineableQElement< 2 >::* VoidMemberFctPt) ()
 
- Static Public Member Functions inherited from oomph::RefineablePolarNavierStokesEquations
static void pin_redundant_nodal_pressures (const Vector< GeneralisedElement * > &element_pt)
 
static void unpin_all_pressure_dofs (const Vector< GeneralisedElement * > &element_pt)
 Unpin all pressure dofs in elements listed in vector. More...
 
- Static Public Member Functions inherited from oomph::RefineableElement
static doublemax_integrity_tolerance ()
 Max. allowed discrepancy in element integrity check. More...
 
- Static Public Attributes inherited from oomph::PolarNavierStokesEquations
static Vector< doubleGamma
 Vector to decide whether the stress-divergence form is used or not. More...
 
- Static Public Attributes inherited from oomph::FiniteElement
static double Tolerance_for_singular_jacobian = 1.0e-16
 Tolerance below which the jacobian is considered singular. More...
 
static bool Accept_negative_jacobian = false
 
static bool Suppress_output_while_checking_for_inverted_elements
 
- Static Public Attributes inherited from oomph::GeneralisedElement
static bool Suppress_warning_about_repeated_internal_data
 
static bool Suppress_warning_about_repeated_external_data = true
 
static double Default_fd_jacobian_step = 1.0e-8
 
- Protected Member Functions inherited from oomph::PolarTaylorHoodElement
double dshape_and_dtest_eulerian_pnst (const Vector< double > &s, Shape &psi, DShape &dpsidx, Shape &test, DShape &dtestdx) const
 
double dshape_and_dtest_eulerian_at_knot_pnst (const unsigned &ipt, Shape &psi, DShape &dpsidx, Shape &test, DShape &dtestdx) const
 
void pshape_pnst (const Vector< double > &s, Shape &psi) const
 Pressure shape functions at local coordinate s. More...
 
void pshape_pnst (const Vector< double > &s, Shape &psi, Shape &test) const
 Pressure shape and test functions at local coordinte s. More...
 
int p_local_eqn (const unsigned &n)
 Return the local equation numbers for the pressure values. More...
 
- Protected Member Functions inherited from oomph::PolarNavierStokesEquations
void get_body_force (double time, const Vector< double > &x, Vector< double > &result)
 Calculate the body force at a given time and Eulerian position. More...
 
double get_source_fct (double time, const Vector< double > &x)
 
- Protected Member Functions inherited from oomph::FiniteElement
template<unsigned DIM>
double invert_jacobian (const DenseMatrix< double > &jacobian, DenseMatrix< double > &inverse_jacobian) const
 
virtual double invert_jacobian_mapping (const DenseMatrix< double > &jacobian, DenseMatrix< double > &inverse_jacobian) const
 
virtual double local_to_eulerian_mapping (const DShape &dpsids, DenseMatrix< double > &jacobian, DenseMatrix< double > &inverse_jacobian) const
 
double local_to_eulerian_mapping (const DShape &dpsids, DenseMatrix< double > &inverse_jacobian) const
 
virtual void dJ_eulerian_dnodal_coordinates (const DenseMatrix< double > &jacobian, const DShape &dpsids, DenseMatrix< double > &djacobian_dX) const
 
template<unsigned DIM>
void dJ_eulerian_dnodal_coordinates_templated_helper (const DenseMatrix< double > &jacobian, const DShape &dpsids, DenseMatrix< double > &djacobian_dX) const
 
virtual void d_dshape_eulerian_dnodal_coordinates (const double &det_jacobian, const DenseMatrix< double > &jacobian, const DenseMatrix< double > &djacobian_dX, const DenseMatrix< double > &inverse_jacobian, const DShape &dpsids, RankFourTensor< double > &d_dpsidx_dX) const
 
template<unsigned DIM>
void d_dshape_eulerian_dnodal_coordinates_templated_helper (const double &det_jacobian, const DenseMatrix< double > &jacobian, const DenseMatrix< double > &djacobian_dX, const DenseMatrix< double > &inverse_jacobian, const DShape &dpsids, RankFourTensor< double > &d_dpsidx_dX) const
 
virtual void transform_derivatives (const DenseMatrix< double > &inverse_jacobian, DShape &dbasis) const
 
void transform_derivatives_diagonal (const DenseMatrix< double > &inverse_jacobian, DShape &dbasis) const
 
virtual void transform_second_derivatives (const DenseMatrix< double > &jacobian, const DenseMatrix< double > &inverse_jacobian, const DenseMatrix< double > &jacobian2, DShape &dbasis, DShape &d2basis) const
 
template<unsigned DIM>
void transform_second_derivatives_template (const DenseMatrix< double > &jacobian, const DenseMatrix< double > &inverse_jacobian, const DenseMatrix< double > &jacobian2, DShape &dbasis, DShape &d2basis) const
 
template<unsigned DIM>
void transform_second_derivatives_diagonal (const DenseMatrix< double > &jacobian, const DenseMatrix< double > &inverse_jacobian, const DenseMatrix< double > &jacobian2, DShape &dbasis, DShape &d2basis) const
 
void fill_in_jacobian_from_nodal_by_fd (DenseMatrix< double > &jacobian)
 
virtual void update_before_nodal_fd ()
 
virtual void reset_after_nodal_fd ()
 
virtual void update_in_nodal_fd (const unsigned &i)
 
virtual void reset_in_nodal_fd (const unsigned &i)
 
template<>
double invert_jacobian (const DenseMatrix< double > &jacobian, DenseMatrix< double > &inverse_jacobian) const
 Zero-d specialisation of function to calculate inverse of jacobian mapping. More...
 
template<>
double invert_jacobian (const DenseMatrix< double > &jacobian, DenseMatrix< double > &inverse_jacobian) const
 One-d specialisation of function to calculate inverse of jacobian mapping. More...
 
template<>
double invert_jacobian (const DenseMatrix< double > &jacobian, DenseMatrix< double > &inverse_jacobian) const
 Two-d specialisation of function to calculate inverse of jacobian mapping. More...
 
template<>
double invert_jacobian (const DenseMatrix< double > &jacobian, DenseMatrix< double > &inverse_jacobian) const
 
template<>
void dJ_eulerian_dnodal_coordinates_templated_helper (const DenseMatrix< double > &jacobian, const DShape &dpsids, DenseMatrix< double > &djacobian_dX) const
 
template<>
void dJ_eulerian_dnodal_coordinates_templated_helper (const DenseMatrix< double > &jacobian, const DShape &dpsids, DenseMatrix< double > &djacobian_dX) const
 
template<>
void dJ_eulerian_dnodal_coordinates_templated_helper (const DenseMatrix< double > &jacobian, const DShape &dpsids, DenseMatrix< double > &djacobian_dX) const
 
template<>
void dJ_eulerian_dnodal_coordinates_templated_helper (const DenseMatrix< double > &jacobian, const DShape &dpsids, DenseMatrix< double > &djacobian_dX) const
 
template<>
void d_dshape_eulerian_dnodal_coordinates_templated_helper (const double &det_jacobian, const DenseMatrix< double > &jacobian, const DenseMatrix< double > &djacobian_dX, const DenseMatrix< double > &inverse_jacobian, const DShape &dpsids, RankFourTensor< double > &d_dpsidx_dX) const
 
template<>
void d_dshape_eulerian_dnodal_coordinates_templated_helper (const double &det_jacobian, const DenseMatrix< double > &jacobian, const DenseMatrix< double > &djacobian_dX, const DenseMatrix< double > &inverse_jacobian, const DShape &dpsids, RankFourTensor< double > &d_dpsidx_dX) const
 
template<>
void d_dshape_eulerian_dnodal_coordinates_templated_helper (const double &det_jacobian, const DenseMatrix< double > &jacobian, const DenseMatrix< double > &djacobian_dX, const DenseMatrix< double > &inverse_jacobian, const DShape &dpsids, RankFourTensor< double > &d_dpsidx_dX) const
 
template<>
void d_dshape_eulerian_dnodal_coordinates_templated_helper (const double &det_jacobian, const DenseMatrix< double > &jacobian, const DenseMatrix< double > &djacobian_dX, const DenseMatrix< double > &inverse_jacobian, const DShape &dpsids, RankFourTensor< double > &d_dpsidx_dX) const
 
template<>
void transform_second_derivatives_template (const DenseMatrix< double > &jacobian, const DenseMatrix< double > &inverse_jacobian, const DenseMatrix< double > &jacobian2, DShape &dbasis, DShape &d2basis) const
 
template<>
void transform_second_derivatives_template (const DenseMatrix< double > &jacobian, const DenseMatrix< double > &inverse_jacobian, const DenseMatrix< double > &jacobian2, DShape &dbasis, DShape &d2basis) const
 
template<>
void transform_second_derivatives_diagonal (const DenseMatrix< double > &jacobian, const DenseMatrix< double > &inverse_jacobian, const DenseMatrix< double > &jacobian2, DShape &dbasis, DShape &d2basis) const
 
template<>
void transform_second_derivatives_diagonal (const DenseMatrix< double > &jacobian, const DenseMatrix< double > &inverse_jacobian, const DenseMatrix< double > &jacobian2, DShape &dbasis, DShape &d2basis) const
 
- Protected Member Functions inherited from oomph::GeneralisedElement
unsigned add_internal_data (Data *const &data_pt, const bool &fd=true)
 
bool internal_data_fd (const unsigned &i) const
 
void exclude_internal_data_fd (const unsigned &i)
 
void include_internal_data_fd (const unsigned &i)
 
void clear_global_eqn_numbers ()
 
void add_global_eqn_numbers (std::deque< unsigned long > const &global_eqn_numbers, std::deque< double * > const &global_dof_pt)
 
virtual void assign_internal_and_external_local_eqn_numbers (const bool &store_local_dof_pt)
 
virtual void assign_additional_local_eqn_numbers ()
 
int internal_local_eqn (const unsigned &i, const unsigned &j) const
 
int external_local_eqn (const unsigned &i, const unsigned &j)
 
void fill_in_jacobian_from_internal_by_fd (Vector< double > &residuals, DenseMatrix< double > &jacobian, const bool &fd_all_data=false)
 
void fill_in_jacobian_from_internal_by_fd (DenseMatrix< double > &jacobian, const bool &fd_all_data=false)
 
void fill_in_jacobian_from_external_by_fd (Vector< double > &residuals, DenseMatrix< double > &jacobian, const bool &fd_all_data=false)
 
void fill_in_jacobian_from_external_by_fd (DenseMatrix< double > &jacobian, const bool &fd_all_data=false)
 
virtual void update_before_internal_fd ()
 
virtual void reset_after_internal_fd ()
 
virtual void update_in_internal_fd (const unsigned &i)
 
virtual void reset_in_internal_fd (const unsigned &i)
 
virtual void update_before_external_fd ()
 
virtual void reset_after_external_fd ()
 
virtual void update_in_external_fd (const unsigned &i)
 
virtual void reset_in_external_fd (const unsigned &i)
 
virtual void fill_in_contribution_to_mass_matrix (Vector< double > &residuals, DenseMatrix< double > &mass_matrix)
 
virtual void fill_in_contribution_to_dresiduals_dparameter (double *const &parameter_pt, Vector< double > &dres_dparam)
 
virtual void fill_in_contribution_to_djacobian_dparameter (double *const &parameter_pt, Vector< double > &dres_dparam, DenseMatrix< double > &djac_dparam)
 
virtual void fill_in_contribution_to_djacobian_and_dmass_matrix_dparameter (double *const &parameter_pt, Vector< double > &dres_dparam, DenseMatrix< double > &djac_dparam, DenseMatrix< double > &dmass_matrix_dparam)
 
virtual void fill_in_contribution_to_hessian_vector_products (Vector< double > const &Y, DenseMatrix< double > const &C, DenseMatrix< double > &product)
 
virtual void fill_in_contribution_to_inner_products (Vector< std::pair< unsigned, unsigned >> const &history_index, Vector< double > &inner_product)
 
virtual void fill_in_contribution_to_inner_product_vectors (Vector< unsigned > const &history_index, Vector< Vector< double >> &inner_product_vector)
 
- Protected Member Functions inherited from oomph::RefineablePolarNavierStokesEquations
virtual void fill_in_generic_residual_contribution (Vector< double > &residuals, DenseMatrix< double > &jacobian, DenseMatrix< double > &mass_matrix, unsigned flag)
 Start of what would've been refineable_navier_stokes_elements.cc //. More...
 
- Protected Member Functions inherited from oomph::RefineableElement
void assemble_local_to_eulerian_jacobian (const DShape &dpsids, DenseMatrix< double > &jacobian) const
 
void assemble_local_to_eulerian_jacobian2 (const DShape &d2psids, DenseMatrix< double > &jacobian2) const
 
void assemble_eulerian_base_vectors (const DShape &dpsids, DenseMatrix< double > &interpolated_G) const
 
double local_to_eulerian_mapping_diagonal (const DShape &dpsids, DenseMatrix< double > &jacobian, DenseMatrix< double > &inverse_jacobian) const
 
void assign_hanging_local_eqn_numbers (const bool &store_local_dof_pt)
 Assign the local equation numbers for hanging node variables. More...
 
virtual void fill_in_jacobian_from_nodal_by_fd (Vector< double > &residuals, DenseMatrix< double > &jacobian)
 
- Protected Member Functions inherited from oomph::RefineableQElement< 2 >
void setup_father_bounds ()
 
void get_edge_bcs (const int &edge, Vector< int > &bound_cons) const
 Determine Vector of boundary conditions along edge (N/S/W/E) More...
 
void setup_hang_for_value (const int &value_id)
 
virtual void quad_hang_helper (const int &value_id, const int &my_edge, std::ofstream &output_hangfile)
 
- Static Protected Member Functions inherited from oomph::RefineableElement
static void check_value_id (const int &n_continuously_interpolated_values, const int &value_id)
 
- Protected Attributes inherited from oomph::PolarNavierStokesEquations
doubleViscosity_Ratio_pt
 
doubleDensity_Ratio_pt
 
doubleAlpha_pt
 Pointer to the angle alpha. More...
 
doubleRe_pt
 Pointer to global Reynolds number. More...
 
doubleReSt_pt
 Pointer to global Reynolds number x Strouhal number (=Womersley) More...
 
doubleReInvFr_pt
 
Vector< double > * G_pt
 Pointer to global gravity Vector. More...
 
NavierStokesBodyForceFctPt Body_force_fct_pt
 Pointer to body force function. More...
 
NavierStokesSourceFctPt Source_fct_pt
 Pointer to volumetric source function. More...
 
- Protected Attributes inherited from oomph::FiniteElement
MacroElementMacro_elem_pt
 Pointer to the element's macro element (NULL by default) More...
 
- Protected Attributes inherited from oomph::GeomObject
unsigned NLagrangian
 Number of Lagrangian (intrinsic) coordinates. More...
 
unsigned Ndim
 Number of Eulerian coordinates. More...
 
TimeStepperGeom_object_time_stepper_pt
 
- Protected Attributes inherited from oomph::RefineableElement
TreeTree_pt
 A pointer to a general tree object. More...
 
unsigned Refine_level
 Refinement level. More...
 
bool To_be_refined
 Flag for refinement. More...
 
bool Refinement_is_enabled
 Flag to indicate suppression of any refinement. More...
 
bool Sons_to_be_unrefined
 Flag for unrefinement. More...
 
long Number
 Global element number – for plotting/validation purposes. More...
 
- Static Protected Attributes inherited from oomph::PolarTaylorHoodElement
static const unsigned Pconv [] = {0, 2, 6, 8}
 
- Static Protected Attributes inherited from oomph::FiniteElement
static const unsigned Default_Initial_Nvalue = 0
 Default value for the number of values at a node. More...
 
static const double Node_location_tolerance = 1.0e-14
 
static const unsigned N2deriv [] = {0, 1, 3, 6}
 
- Static Protected Attributes inherited from oomph::GeneralisedElement
static DenseMatrix< doubleDummy_matrix
 
static std::deque< double * > Dof_pt_deque
 
- Static Protected Attributes inherited from oomph::RefineableElement
static double Max_integrity_tolerance = 1.0e-8
 Max. allowed discrepancy in element integrity check. More...
 
- Static Protected Attributes inherited from oomph::RefineableQElement< 2 >
static std::map< unsigned, DenseMatrix< int > > Father_bound
 

Detailed Description

Refineable version of Polar Taylor Hood elements. These classes can be written in total generality.

Constructor & Destructor Documentation

◆ RefineablePolarTaylorHoodElement()

oomph::RefineablePolarTaylorHoodElement::RefineablePolarTaylorHoodElement ( )
inline

Constructor.

273  : RefineableElement(),
275  RefineableQElement<2>(),
277  {
278  }
PolarTaylorHoodElement()
Constructor, no internal data points.
Definition: polar_navier_stokes_elements.h:1058
RefineableElement()
Definition: refineable_elements.h:188
RefineablePolarNavierStokesEquations()
Constructor.
Definition: refineable_polar_navier_stokes_elements.h:76

Member Function Documentation

◆ further_setup_hanging_nodes()

void oomph::RefineablePolarTaylorHoodElement::further_setup_hanging_nodes ( )
inlinevirtual

Perform additional hanging node procedures for variables that are not interpolated by all nodes. The pressures are stored at the p_nodal_index_pnst-th location in each node

Implements oomph::RefineableQElement< 2 >.

404  {
406  }
virtual int p_nodal_index_pnst()
Which nodal value represents the pressure?
Definition: polar_navier_stokes_elements.h:1068
void setup_hang_for_value(const int &value_id)
Definition: refineable_quad_element.cc:1506

References oomph::PolarTaylorHoodElement::p_nodal_index_pnst(), and oomph::RefineableQElement< 2 >::setup_hang_for_value().

◆ get_interpolated_values() [1/2]

void oomph::RefineablePolarTaylorHoodElement::get_interpolated_values ( const unsigned t,
const Vector< double > &  s,
Vector< double > &  values 
)
inlinevirtual

Get the function value u in Vector. Note: Given the generality of the interface (this function is usually called from black-box documentation or interpolation routines), the values Vector sets its own size in here.

Implements oomph::RefineableElement.

344  {
345 #ifdef PARANOID
346  // Find out the number of timesteps (present & previous)
347  // (the present element might not have been initialised yet but
348  // its root must know about the time integrator)
349  RefineableElement* root_el_pt = this->tree_pt()->root_pt()->object_pt();
350 
351  unsigned N_prev_time =
352  root_el_pt->node_pt(0)->time_stepper_pt()->nprev_values();
353 
354  if (t > N_prev_time)
355  {
356  std::ostringstream error_message;
357  error_message
358  << "The value of t in get_interpolated_values(...), " << t
359  << std::endl
360  << "is greater than the number of previous stored timesteps";
361 
362  throw OomphLibError(error_message.str(),
365  }
366 #endif
367 
368  // Set size of Vector: u,v,p
369  values.resize(2 + 1);
370 
371  // Initialise
372  for (unsigned i = 0; i < 2 + 1; i++)
373  {
374  values[i] = 0.0;
375  }
376 
377  // Find out how many nodes there are
378  unsigned n_node = this->nnode();
379 
380  // Shape functions
381  Shape psif(n_node);
382  this->shape(s, psif);
383 
384  // Calculate velocities: values[0],...
385  for (unsigned i = 0; i < 2; i++)
386  {
387  // Get the index at which the i-th velocity is stored
388  unsigned u_nodal_index = this->u_index_pnst(i);
389  for (unsigned l = 0; l < n_node; l++)
390  {
391  values[i] += this->nodal_value(t, l, u_nodal_index) * psif[l];
392  }
393  }
394 
395  // Calculate pressure: values[DIM]
396  //(no history is carried in the pressure)
397  values[2] = this->interpolated_p_pnst(s);
398  }
int i
Definition: BiCGSTAB_step_by_step.cpp:9
TimeStepper *& time_stepper_pt()
Return the pointer to the timestepper.
Definition: nodes.h:238
Node *& node_pt(const unsigned &n)
Return a pointer to the local node n.
Definition: elements.h:2175
double nodal_value(const unsigned &n, const unsigned &i) const
Definition: elements.h:2593
virtual void shape(const Vector< double > &s, Shape &psi) const =0
unsigned nnode() const
Return the number of nodes.
Definition: elements.h:2210
virtual unsigned u_index_pnst(const unsigned &i) const
Definition: polar_navier_stokes_elements.h:394
double interpolated_p_pnst(const Vector< double > &s) const
Return FE interpolated pressure at local coordinate s.
Definition: polar_navier_stokes_elements.h:706
Tree * tree_pt()
Access function: Pointer to quadtree representation of this element.
Definition: refineable_elements.h:211
virtual unsigned nprev_values() const =0
Number of previous values available: 0 for static, 1 for BDF<1>,...
RefineableElement * object_pt() const
Definition: tree.h:88
TreeRoot *& root_pt()
Return pointer to root of the tree.
Definition: tree.h:141
t
Definition: plotPSD.py:36
#define OOMPH_EXCEPTION_LOCATION
Definition: oomph_definitions.h:61
#define OOMPH_CURRENT_FUNCTION
Definition: oomph_definitions.h:86

References i, oomph::PolarNavierStokesEquations::interpolated_p_pnst(), oomph::FiniteElement::nnode(), oomph::FiniteElement::nodal_value(), oomph::FiniteElement::node_pt(), oomph::TimeStepper::nprev_values(), oomph::Tree::object_pt(), OOMPH_CURRENT_FUNCTION, OOMPH_EXCEPTION_LOCATION, oomph::Tree::root_pt(), oomph::FiniteElement::shape(), plotPSD::t, oomph::Data::time_stepper_pt(), oomph::RefineableElement::tree_pt(), and oomph::PolarNavierStokesEquations::u_index_pnst().

◆ get_interpolated_values() [2/2]

void oomph::RefineablePolarTaylorHoodElement::get_interpolated_values ( const Vector< double > &  s,
Vector< double > &  values 
)
inlinevirtual

Get the function value u in Vector. Note: Given the generality of the interface (this function is usually called from black-box documentation or interpolation routines), the values Vector sets its own size in here.

Reimplemented from oomph::RefineableElement.

323  {
324  // Set size of Vector: u,v,p and initialise to zero
325  values.resize(3, 0.0);
326 
327  // Calculate velocities: values[0],...
328  for (unsigned i = 0; i < 2; i++)
329  {
330  values[i] = this->interpolated_u_pnst(s, i);
331  }
332 
333  // Calculate pressure: values[DIM]
334  values[2] = this->interpolated_p_pnst(s);
335  }
void interpolated_u_pnst(const Vector< double > &s, Vector< double > &veloc) const
Compute vector of FE interpolated velocity u at local coordinate s.
Definition: polar_navier_stokes_elements.h:662

References i, oomph::PolarNavierStokesEquations::interpolated_p_pnst(), and oomph::PolarNavierStokesEquations::interpolated_u_pnst().

◆ get_interpolating_node_at_local_coordinate()

Node* oomph::RefineablePolarTaylorHoodElement::get_interpolating_node_at_local_coordinate ( const Vector< double > &  s,
const int value_id 
)
inlinevirtual

The velocity nodes are the same as the geometric nodes. The pressure nodes must be calculated by using the same methods as the geometric nodes, but by recalling that there are only two pressure nodes per edge.

Construct the general pressure index from the components.

Reimplemented from oomph::RefineableElement.

451  {
452  // If we are calculating pressure nodes
453  if (value_id == 2)
454  {
455  // Storage for the index of the pressure node
456  unsigned total_index = 0;
457  // The number of nodes along each 1d edge is 2.
458  unsigned NNODE_1D = 2;
459  // Storage for the index along each boundary
460  Vector<int> index(2);
461  // Loop over the coordinates
462  for (unsigned i = 0; i < 2; i++)
463  {
464  // If we are at the lower limit, the index is zero
465  if (s[i] == -1.0)
466  {
467  index[i] = 0;
468  }
469  // If we are at the upper limit, the index is the number of nodes
470  // minus 1
471  else if (s[i] == 1.0)
472  {
473  index[i] = NNODE_1D - 1;
474  }
475  // Otherwise, we have to calculate the index in general
476  else
477  {
478  // For uniformly spaced nodes the 0th node number would be
479  double float_index = 0.5 * (1.0 + s[i]) * (NNODE_1D - 1);
480  index[i] = int(float_index);
481  // What is the excess. This should be safe because the
482  // taking the integer part rounds down
483  double excess = float_index - index[i];
484  // If the excess is bigger than our tolerance there is no node,
485  // return null
487  ((1.0 - excess) > FiniteElement::Node_location_tolerance))
488  {
489  return 0;
490  }
491  }
493  total_index +=
494  index[i] * static_cast<unsigned>(pow(static_cast<float>(NNODE_1D),
495  static_cast<int>(i)));
496  }
497  // If we've got here we have a node, so let's return a pointer to it
498  return this->pressure_node_pt(total_index);
499  }
500  // Otherwise velocity nodes are the same as pressure nodes
501  else
502  {
503  return this->get_node_at_local_coordinate(s);
504  }
505  }
static const double Node_location_tolerance
Definition: elements.h:1374
virtual Node * get_node_at_local_coordinate(const Vector< double > &s) const
Definition: elements.cc:3882
Node * pressure_node_pt(const unsigned &n_p)
Pointer to n_p-th pressure node.
Definition: refineable_polar_navier_stokes_elements.h:227
RealScalar s
Definition: level1_cplx_impl.h:130
return int(ret)+1
EIGEN_STRONG_INLINE EIGEN_DEVICE_FUNC bfloat16 pow(const bfloat16 &a, const bfloat16 &b)
Definition: BFloat16.h:625

References oomph::FiniteElement::get_node_at_local_coordinate(), i, int(), oomph::FiniteElement::Node_location_tolerance, Eigen::bfloat16_impl::pow(), pressure_node_pt(), and s.

◆ insert_load_data()

void oomph::RefineablePolarTaylorHoodElement::insert_load_data ( std::set< std::pair< Data *, unsigned >> &  paired_load_data)
inline

Add to the set paired_load_data pairs containing

  • the pointer to a Data object and
  • the index of the value in that Data object

for all values (pressures, velocities) that affect the load computed in the get_load(...) function. (Overloads non-refineable version and takes hanging nodes into account)

564  {
565  // Get the nodal indices at which the velocities are stored
566  unsigned u_index[2];
567  for (unsigned i = 0; i < 2; i++)
568  {
569  u_index[i] = this->u_index_pnst(i);
570  }
571 
572  // Loop over the nodes
573  unsigned n_node = this->nnode();
574  for (unsigned n = 0; n < n_node; n++)
575  {
576  // Pointer to current node
577  Node* nod_pt = this->node_pt(n);
578 
579  // Check if it's hanging:
580  if (nod_pt->is_hanging())
581  {
582  // It's hanging -- get number of master nodes
583  unsigned nmaster = nod_pt->hanging_pt()->nmaster();
584 
585  // Loop over masters
586  for (unsigned j = 0; j < nmaster; j++)
587  {
588  Node* master_nod_pt = nod_pt->hanging_pt()->master_node_pt(j);
589 
590  // Loop over the velocity components and add pointer to their data
591  // and indices to the vectors
592  for (unsigned i = 0; i < 2; i++)
593  {
594  paired_load_data.insert(
595  std::make_pair(master_nod_pt, u_index[i]));
596  }
597  }
598  }
599  // Not hanging
600  else
601  {
602  // Loop over the velocity components and add pointer to their data
603  // and indices to the vectors
604  for (unsigned i = 0; i < 2; i++)
605  {
606  paired_load_data.insert(
607  std::make_pair(this->node_pt(n), u_index[i]));
608  }
609  }
610  }
611 
612  // Get the nodal index at which the pressure is stored
613  int p_index = this->p_nodal_index_pnst();
614 
615  // Loop over the pressure data
616  unsigned n_pres = this->npres_pnst();
617  for (unsigned l = 0; l < n_pres; l++)
618  {
619  // Get the pointer to the nodal pressure
620  Node* pres_node_pt = this->pressure_node_pt(l);
621  // Check if the pressure dof is hanging
622  if (pres_node_pt->is_hanging(p_index))
623  {
624  // Get the pointer to the hang info object
625  // (pressure is stored as p_index--th nodal dof).
626  HangInfo* hang_info_pt = pres_node_pt->hanging_pt(p_index);
627 
628  // Get number of pressure master nodes (pressure is stored
629  unsigned nmaster = hang_info_pt->nmaster();
630 
631  // Loop over pressure master nodes
632  for (unsigned m = 0; m < nmaster; m++)
633  {
634  // The p_index-th entry in each nodal data is the pressure, which
635  // affects the traction
636  paired_load_data.insert(
637  std::make_pair(hang_info_pt->master_node_pt(m), p_index));
638  }
639  }
640  // It's not hanging
641  else
642  {
643  // The p_index-th entry in each nodal data is the pressure, which
644  // affects the traction
645  paired_load_data.insert(std::make_pair(pres_node_pt, p_index));
646  }
647  }
648  }
const unsigned n
Definition: CG3DPackingUnitTest.cpp:11
unsigned npres_pnst() const
Return number of pressure values.
Definition: polar_navier_stokes_elements.h:1103
int * m
Definition: level2_cplx_impl.h:294
std::ptrdiff_t j
Definition: tut_arithmetic_redux_minmax.cpp:2

References oomph::Node::hanging_pt(), i, oomph::Node::is_hanging(), j, m, oomph::HangInfo::master_node_pt(), n, oomph::HangInfo::nmaster(), oomph::FiniteElement::nnode(), oomph::FiniteElement::node_pt(), oomph::PolarTaylorHoodElement::npres_pnst(), oomph::PolarTaylorHoodElement::p_nodal_index_pnst(), pressure_node_pt(), and oomph::PolarNavierStokesEquations::u_index_pnst().

◆ interpolating_basis()

void oomph::RefineablePolarTaylorHoodElement::interpolating_basis ( const Vector< double > &  s,
Shape psi,
const int value_id 
) const
inlinevirtual

The basis interpolating the pressure is given by pshape(). / The basis interpolating the velocity is shape().

Reimplemented from oomph::RefineableElement.

541  {
542  if (value_id == 2)
543  {
544  return this->pshape_pnst(s, psi);
545  }
546  else
547  {
548  return this->shape(s, psi);
549  }
550  }
void pshape_pnst(const Vector< double > &s, Shape &psi) const
Pressure shape functions at local coordinate s.
Definition: polar_navier_stokes_elements.h:1210

References oomph::PolarTaylorHoodElement::pshape_pnst(), and oomph::FiniteElement::shape().

◆ interpolating_node_pt()

Node* oomph::RefineablePolarTaylorHoodElement::interpolating_node_pt ( const unsigned n,
const int value_id 
)
inlinevirtual

The velocities are isoparametric and so the "nodes" interpolating the velocities are the geometric nodes. The pressure "nodes" are a subset of the nodes, so when value_id==DIM, the n-th pressure node is returned.

Reimplemented from oomph::RefineableElement.

414  {
415  // The only different nodes are the pressure nodes
416  if (value_id == 2)
417  {
418  return this->pressure_node_pt(n);
419  }
420  // The other variables are interpolated via the usual nodes
421  else
422  {
423  return this->node_pt(n);
424  }
425  }

References oomph::FiniteElement::node_pt(), and pressure_node_pt().

◆ local_one_d_fraction_of_interpolating_node()

double oomph::RefineablePolarTaylorHoodElement::local_one_d_fraction_of_interpolating_node ( const unsigned n1d,
const unsigned i,
const int value_id 
)
inlinevirtual

The pressure nodes are the corner nodes, so when n_value==DIM, the fraction is the same as the 1d node number, 0 or 1.

Reimplemented from oomph::RefineableElement.

432  {
433  if (value_id == 2)
434  {
435  // The pressure nodes are just located on the boundaries at 0 or 1
436  return double(n1d);
437  }
438  // Otherwise the velocity nodes are the same as the geometric ones
439  else
440  {
441  return this->local_one_d_fraction_of_node(n1d, i);
442  }
443  }
virtual double local_one_d_fraction_of_node(const unsigned &n1d, const unsigned &i)
Definition: elements.h:1858

References i, and oomph::FiniteElement::local_one_d_fraction_of_node().

◆ ncont_interpolated_values()

unsigned oomph::RefineablePolarTaylorHoodElement::ncont_interpolated_values ( ) const
inlinevirtual

Number of continuously interpolated values: (DIM velocities + 1 pressure)

Implements oomph::RefineableElement.

291  {
292  return 3;
293  }

◆ ninterpolating_node()

unsigned oomph::RefineablePolarTaylorHoodElement::ninterpolating_node ( const int value_id)
inlinevirtual

The number of pressure nodes is 2^DIM. The number of velocity nodes is the same as the number of geometric nodes.

Reimplemented from oomph::RefineableElement.

525  {
526  if (value_id == 2)
527  {
528  return static_cast<unsigned>(pow(2.0, static_cast<int>(2)));
529  }
530  else
531  {
532  return this->nnode();
533  }
534  }

References oomph::FiniteElement::nnode(), and Eigen::bfloat16_impl::pow().

◆ ninterpolating_node_1d()

unsigned oomph::RefineablePolarTaylorHoodElement::ninterpolating_node_1d ( const int value_id)
inlinevirtual

The number of 1d pressure nodes is 2, the number of 1d velocity nodes is the same as the number of 1d geometric nodes.

Reimplemented from oomph::RefineableElement.

511  {
512  if (value_id == 2)
513  {
514  return 2;
515  }
516  else
517  {
518  return this->nnode_1d();
519  }
520  }
virtual unsigned nnode_1d() const
Definition: elements.h:2218

References oomph::FiniteElement::nnode_1d().

◆ nrecovery_order()

unsigned oomph::RefineablePolarTaylorHoodElement::nrecovery_order ( )
inlinevirtual

Order of recovery shape functions for Z2 error estimation: Same order as shape functions.

Implements oomph::ElementWithZ2ErrorEstimator.

301  {
302  return 2;
303  }

◆ nvertex_node()

unsigned oomph::RefineablePolarTaylorHoodElement::nvertex_node ( ) const
inlinevirtual

Number of vertex nodes in the element.

Implements oomph::ElementWithZ2ErrorEstimator.

307  {
309  }
virtual unsigned nvertex_node() const
Definition: elements.h:2491

References oomph::FiniteElement::nvertex_node().

◆ pin_elemental_redundant_nodal_pressure_dofs()

void oomph::RefineablePolarTaylorHoodElement::pin_elemental_redundant_nodal_pressure_dofs ( )
inlineprivatevirtual

Pin all nodal pressure dofs that are not required.

Reimplemented from oomph::RefineablePolarNavierStokesEquations.

247  {
248  // Find the pressure index
249  int p_index = this->p_nodal_index_pnst();
250  // Loop over all nodes
251  unsigned n_node = this->nnode();
252  // loop over all nodes and pin all the nodal pressures
253  for (unsigned n = 0; n < n_node; n++)
254  {
255  this->node_pt(n)->pin(p_index);
256  }
257 
258  // Loop over all actual pressure nodes and unpin if they're not hanging
259  unsigned n_pres = this->npres_pnst();
260  for (unsigned l = 0; l < n_pres; l++)
261  {
262  Node* nod_pt = this->pressure_node_pt(l);
263  if (!nod_pt->is_hanging(p_index))
264  {
265  nod_pt->unpin(p_index);
266  }
267  }
268  }
void pin(const unsigned &i)
Pin the i-th stored variable.
Definition: nodes.h:385

References oomph::Node::is_hanging(), n, oomph::FiniteElement::nnode(), oomph::FiniteElement::node_pt(), oomph::PolarTaylorHoodElement::npres_pnst(), oomph::PolarTaylorHoodElement::p_nodal_index_pnst(), oomph::Data::pin(), pressure_node_pt(), and oomph::Data::unpin().

◆ pressure_node_pt()

Node* oomph::RefineablePolarTaylorHoodElement::pressure_node_pt ( const unsigned n_p)
inlineprivatevirtual

Pointer to n_p-th pressure node.

Reimplemented from oomph::PolarTaylorHoodElement.

228  {
229  return this->node_pt(this->Pconv[n_p]);
230  }
static const unsigned Pconv[]
Definition: polar_navier_stokes_elements.h:1022

References oomph::FiniteElement::node_pt(), and oomph::PolarTaylorHoodElement::Pconv.

Referenced by get_interpolating_node_at_local_coordinate(), insert_load_data(), interpolating_node_pt(), and pin_elemental_redundant_nodal_pressure_dofs().

◆ rebuild_from_sons()

void oomph::RefineablePolarTaylorHoodElement::rebuild_from_sons ( Mesh *&  mesh_pt)
inlinevirtual

Rebuild from sons: empty.

Implements oomph::RefineableElement.

296 {}

◆ required_nvalue()

unsigned oomph::RefineablePolarTaylorHoodElement::required_nvalue ( const unsigned n) const
inlinevirtual

Number of values required at local node n. In order to simplify matters, we allocate storage for pressure variables at all the nodes and then pin those that are not used.

Reimplemented from oomph::PolarTaylorHoodElement.

284  {
285  return 3;
286  }

◆ unpin_elemental_pressure_dofs()

void oomph::RefineablePolarTaylorHoodElement::unpin_elemental_pressure_dofs ( )
inlineprivatevirtual

Unpin all pressure dofs.

Implements oomph::RefineablePolarNavierStokesEquations.

234  {
235  // find the index at which the pressure is stored
236  int p_index = this->p_nodal_index_pnst();
237  unsigned n_node = this->nnode();
238  // loop over nodes
239  for (unsigned n = 0; n < n_node; n++)
240  {
241  this->node_pt(n)->unpin(p_index);
242  }
243  }
void unpin(const unsigned &i)
Unpin the i-th stored variable.
Definition: nodes.h:391

References n, oomph::FiniteElement::nnode(), oomph::FiniteElement::node_pt(), oomph::PolarTaylorHoodElement::p_nodal_index_pnst(), and oomph::Data::unpin().

◆ vertex_node_pt()

Node* oomph::RefineablePolarTaylorHoodElement::vertex_node_pt ( const unsigned j) const
inlinevirtual

Pointer to the j-th vertex node in the element.

Implements oomph::ElementWithZ2ErrorEstimator.

313  {
315  }
virtual Node * vertex_node_pt(const unsigned &j) const
Definition: elements.h:2500

References j, and oomph::FiniteElement::vertex_node_pt().


The documentation for this class was generated from the following file: