oomph::QElement< 1, NNODE_1D > Class Template Reference

General QElement class specialised to one spatial dimension. More...

#include <Qelements.h>

+ Inheritance diagram for oomph::QElement< 1, NNODE_1D >:

Public Member Functions

 QElement ()
 Constructor. More...
 
 QElement (const QElement &)=delete
 Broken copy constructor. More...
 
void shape (const Vector< double > &s, Shape &psi) const
 Broken assignment operator. More...
 
void dshape_local (const Vector< double > &s, Shape &psi, DShape &dpsids) const
 Derivatives of shape functions for specific QElement<1,..> More...
 
void d2shape_local (const Vector< double > &s, Shape &psi, DShape &dpsids, DShape &d2psids) const
 
double invert_jacobian_mapping (const DenseMatrix< double > &jacobian, DenseMatrix< double > &inverse_jacobian) const
 
double s_min () const
 Min. value of local coordinate. More...
 
double s_max () const
 Max. value of local coordinate. More...
 
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 local_coordinate_of_node (const unsigned &j, Vector< double > &s) const
 Get local coordinates of node j in the element; vector sets its own size. More...
 
void local_fraction_of_node (const unsigned &j, Vector< double > &s_fraction)
 Get the local fraction of node j in the element. More...
 
double local_one_d_fraction_of_node (const unsigned &n1d, const unsigned &i)
 
Nodeget_node_at_local_coordinate (const Vector< double > &s) const
 Get the node at the specified local coordinate. More...
 
unsigned nnode_1d () const
 Number of nodes along each element edge. More...
 
unsigned nplot_points_paraview (const unsigned &nplot) const
 
unsigned nsub_elements_paraview (const unsigned &nplot) const
 
void write_paraview_output_offset_information (std::ofstream &file_out, const unsigned &nplot, unsigned &counter) const
 
void write_paraview_type (std::ofstream &file_out, const unsigned &nplot) const
 
void write_paraview_offsets (std::ofstream &file_out, const unsigned &nplot, unsigned &offset_sum) const
 
void output (std::ostream &outfile)
 Output. More...
 
void output (std::ostream &outfile, const unsigned &n_plot)
 Output at n_plot points. More...
 
void output (FILE *file_pt)
 C-style output. More...
 
void output (FILE *file_pt, const unsigned &n_plot)
 C_style output at n_plot points. More...
 
void get_s_plot (const unsigned &i, const unsigned &nplot, Vector< double > &s, const bool &use_equally_spaced_interior_sample_points=false) const
 
std::string tecplot_zone_string (const unsigned &nplot) const
 
unsigned nplot_points (const unsigned &nplot) const
 
unsigned get_bulk_node_number (const int &face_index, const unsigned &i) const
 
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...
 
CoordinateMappingFctPt face_to_bulk_coordinate_fct_pt (const int &face_index) const
 
BulkCoordinateDerivativesFctPt bulk_coordinate_derivatives_fct_pt (const int &face_index) const
 
- Public Member Functions inherited from oomph::LineElementBase
 LineElementBase ()
 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...
 
- 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
 
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_at_knot (const unsigned &ipt, Shape &psi) const
 
virtual void dshape_local_at_knot (const unsigned &ipt, Shape &psi, DShape &dpsids) 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 assign_nodal_local_eqn_numbers (const bool &store_local_dof_pt)
 
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...
 
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 get_dresidual_dnodal_coordinates (RankThreeTensor< double > &dresidual_dnodal_coordinates)
 
virtual void disable_ALE ()
 
virtual void enable_ALE ()
 
virtual unsigned required_nvalue (const unsigned &n) const
 
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
 
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_field_data_for_interactions (std::set< std::pair< Data *, unsigned >> &paired_field_data)
 
virtual void identify_geometric_data (std::set< Data * > &geometric_data_pt)
 
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)
 
void output_paraview (std::ofstream &file_out, const unsigned &nplot) 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, FiniteElement::SteadyExactSolutionFctPt exact_soln_pt)
 Output an exact solution over the element. More...
 
virtual void output_fct (std::ostream &outfile, const unsigned &n_plot, const double &time, FiniteElement::UnsteadyExactSolutionFctPt exact_soln_pt)
 Output a time-dependent exact solution over the element. More...
 
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 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 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, double &error, double &norm)
 
virtual void compute_error (std::ostream &outfile, FiniteElement::UnsteadyExactSolutionFctPt exact_soln_pt, const double &time, double &error, 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 ()
 
void face_node_number_error_check (const unsigned &i) const
 Range check for face node numbers. More...
 
- 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
 

Static Private Attributes

static Gauss< 1, NNODE_1D > Default_integration_scheme
 Assign the static Default_integration_scheme. More...
 

Additional Inherited Members

- Public Types inherited from oomph::FiniteElement
typedef void(* SteadyExactSolutionFctPt) (const Vector< double > &, Vector< double > &)
 
typedef void(* UnsteadyExactSolutionFctPt) (const double &, const Vector< double > &, Vector< double > &)
 
- 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::FiniteElement
virtual void assemble_local_to_eulerian_jacobian (const DShape &dpsids, DenseMatrix< double > &jacobian) const
 
virtual void assemble_local_to_eulerian_jacobian2 (const DShape &d2psids, DenseMatrix< double > &jacobian2) const
 
virtual void assemble_eulerian_base_vectors (const DShape &dpsids, DenseMatrix< double > &interpolated_G) const
 
template<unsigned DIM>
double invert_jacobian (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 double local_to_eulerian_mapping_diagonal (const DShape &dpsids, DenseMatrix< double > &jacobian, 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
 
virtual void fill_in_jacobian_from_nodal_by_fd (Vector< double > &residuals, DenseMatrix< double > &jacobian)
 
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)
 
void fill_in_contribution_to_jacobian (Vector< double > &residuals, DenseMatrix< double > &jacobian)
 
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)
 
virtual void fill_in_contribution_to_residuals (Vector< double > &residuals)
 
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_jacobian_and_mass_matrix (Vector< double > &residuals, DenseMatrix< double > &jacobian, 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 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
 
- 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
 

Detailed Description

template<unsigned NNODE_1D>
class oomph::QElement< 1, NNODE_1D >

General QElement class specialised to one spatial dimension.

Constructor & Destructor Documentation

◆ QElement() [1/2]

template<unsigned NNODE_1D>
oomph::QElement< 1, NNODE_1D >::QElement ( )
inline

Constructor.

495  {
496  // There are NNODE_1D nodes in this element
497  this->set_n_node(NNODE_1D);
498  // Set the dimensions of the element and the nodes, by default, both 1D
499  this->set_dimension(1);
500  // Assign pointer to default (full) integration_scheme
502  }
void set_dimension(const unsigned &dim)
Definition: elements.h:1380
void set_n_node(const unsigned &n)
Definition: elements.h:1404
virtual void set_integration_scheme(Integral *const &integral_pt)
Set the spatial integration scheme.
Definition: elements.cc:3210
static Gauss< 1, NNODE_1D > Default_integration_scheme
Assign the static Default_integration_scheme.
Definition: Qelements.h:490

◆ QElement() [2/2]

template<unsigned NNODE_1D>
oomph::QElement< 1, NNODE_1D >::QElement ( const QElement< 1, NNODE_1D > &  )
delete

Broken copy constructor.

Member Function Documentation

◆ bulk_coordinate_derivatives_fct_pt()

template<unsigned NNODE_1D>
BulkCoordinateDerivativesFctPt oomph::QElement< 1, NNODE_1D >::bulk_coordinate_derivatives_fct_pt ( const int face_index) const
inlinevirtual

Get a pointer to the derivative of the mapping from face to bulk coordinates.

Reimplemented from oomph::FiniteElement.

799  {
800  if (face_index == 1)
801  {
803  }
804  else if (face_index == -1)
805  {
807  }
808  else
809  {
810  std::string err = "Face index should be in {-1, +1}.";
811  throw OomphLibError(
813  }
814  }
std::string string(const unsigned &i)
Definition: oomph_definitions.cc:286
void faces0(const Vector< double > &s, DenseMatrix< double > &dsbulk_dsface, unsigned &interior_direction)
Function for both faces – the bulk coordinate is fixed on both.
Definition: Qelement_face_coordinate_translation_schemes.cc:59
#define OOMPH_EXCEPTION_LOCATION
Definition: oomph_definitions.h:61
#define OOMPH_CURRENT_FUNCTION
Definition: oomph_definitions.h:86

References oomph::QElement1BulkCoordinateDerivatives::faces0(), OOMPH_CURRENT_FUNCTION, OOMPH_EXCEPTION_LOCATION, and oomph::Global_string_for_annotation::string().

◆ d2shape_local()

template<unsigned NNODE_1D>
void oomph::QElement< 1, NNODE_1D >::d2shape_local ( const Vector< double > &  s,
Shape psi,
DShape dpsids,
DShape d2psids 
) const
virtual

Compute the geometric shape functions, derivatives and second derivatives w.r.t. local coordinates at local coordinate s d2psids(i,0) = \( d^2 \psi_j / d s^2 \)

Second derivatives of shape functions for specific QElement<1,..>: d2psids(i,0) = \( d^2 \psi_j / d s^2 \)

Reimplemented from oomph::FiniteElement.

149  {
150  // Local storage for the shape functions
151  double Psi[NNODE_1D];
152  double DPsi[NNODE_1D];
153  double D2Psi[NNODE_1D];
154  // Call the shape functions and derivatives
155  OneDimLagrange::shape<NNODE_1D>(s[0], Psi);
156  OneDimLagrange::dshape<NNODE_1D>(s[0], DPsi);
157  OneDimLagrange::d2shape<NNODE_1D>(s[0], D2Psi);
158 
159  // Loop over shape functions in element and assign to psi
160  for (unsigned l = 0; l < NNODE_1D; l++)
161  {
162  psi[l] = Psi[l];
163  dpsids(l, 0) = DPsi[l];
164  d2psids(l, 0) = D2Psi[l];
165  }
166  }
RealScalar s
Definition: level1_cplx_impl.h:130

References s.

◆ dshape_local()

template<unsigned NNODE_1D>
void oomph::QElement< 1, NNODE_1D >::dshape_local ( const Vector< double > &  s,
Shape psi,
DShape dpsids 
) const
virtual

Derivatives of shape functions for specific QElement<1,..>

Compute the geometric shape functions and derivatives w.r.t. local coordinates at local coordinate s

Reimplemented from oomph::FiniteElement.

124  {
125  // Local storage
126  double Psi[NNODE_1D];
127  double DPsi[NNODE_1D];
128  // Call the shape functions and derivatives
129  OneDimLagrange::shape<NNODE_1D>(s[0], Psi);
130  OneDimLagrange::dshape<NNODE_1D>(s[0], DPsi);
131 
132  // Loop over shape functions in element and assign to psi
133  for (unsigned l = 0; l < NNODE_1D; l++)
134  {
135  psi[l] = Psi[l];
136  dpsids(l, 0) = DPsi[l];
137  }
138  }

References s.

◆ face_outer_unit_normal_sign()

template<unsigned NNODE_1D>
int oomph::QElement< 1, NNODE_1D >::face_outer_unit_normal_sign ( const int face_index) const
inlinevirtual

Get the sign of the outer unit normal on the face given by face_index.

Reimplemented from oomph::FiniteElement.

762  {
763 #ifdef PARANOID
764  if (std::abs(face_index) != 1)
765  {
766  std::string err = "Face index should be in {-1, +1}.";
767  throw OomphLibError(
769  }
770 #endif
771  return face_index;
772  }
AnnoyingScalar abs(const AnnoyingScalar &x)
Definition: AnnoyingScalar.h:135

References abs(), OOMPH_CURRENT_FUNCTION, OOMPH_EXCEPTION_LOCATION, and oomph::Global_string_for_annotation::string().

◆ face_to_bulk_coordinate_fct_pt()

template<unsigned NNODE_1D>
CoordinateMappingFctPt oomph::QElement< 1, NNODE_1D >::face_to_bulk_coordinate_fct_pt ( const int face_index) const
inlinevirtual

Get a pointer to the function mapping face coordinates to bulk coordinates

Reimplemented from oomph::FiniteElement.

778  {
779  if (face_index == 1)
780  {
782  }
783  else if (face_index == -1)
784  {
786  }
787  else
788  {
789  std::string err = "Face index should be in {-1, +1}.";
790  throw OomphLibError(
792  }
793  }
void face1(const Vector< double > &s, Vector< double > &s_bulk)
The translation scheme for the face s0 = 1.0.
Definition: Qelement_face_coordinate_translation_schemes.cc:44
void face0(const Vector< double > &s, Vector< double > &s_bulk)
The translation scheme for the face s0 = -1.0.
Definition: Qelement_face_coordinate_translation_schemes.cc:38

References oomph::QElement1FaceToBulkCoordinates::face0(), oomph::QElement1FaceToBulkCoordinates::face1(), OOMPH_CURRENT_FUNCTION, OOMPH_EXCEPTION_LOCATION, and oomph::Global_string_for_annotation::string().

◆ get_bulk_node_number()

template<unsigned NNODE_1D>
unsigned oomph::QElement< 1, NNODE_1D >::get_bulk_node_number ( const int face_index,
const unsigned i 
) const
inlinevirtual

Get the number of the ith node on face face_index in the bulk node vector.

Reimplemented from oomph::FiniteElement.

741  {
743 
744  if (face_index == -1)
745  {
746  return 0;
747  }
748  else if (face_index == +1)
749  {
750  return nnode_1d() - 1;
751  }
752  else
753  {
754  std::string err = "Face index should be in {-1, +1}.";
755  throw OomphLibError(
757  }
758  }
int i
Definition: BiCGSTAB_step_by_step.cpp:9
void face_node_number_error_check(const unsigned &i) const
Range check for face node numbers.
Definition: elements.h:3395
unsigned nnode_1d() const
Number of nodes along each element edge.
Definition: Qelements.h:609

References i, OOMPH_CURRENT_FUNCTION, OOMPH_EXCEPTION_LOCATION, and oomph::Global_string_for_annotation::string().

◆ get_node_at_local_coordinate()

template<unsigned NNODE_1D>
Node * oomph::QElement< 1, NNODE_1D >::get_node_at_local_coordinate ( const Vector< double > &  s) const
virtual

Get the node at the specified local coordinate.

Return the node at the specified local coordinate.

Reimplemented from oomph::FiniteElement.

50  {
51  // Load the tolerance into a local variable
53  // There is one possible index.
54  Vector<int> index(1);
55 
56  // Determine the index
57  // -------------------
58 
59  // If we are at the lower limit, the index is zero
60  if (std::fabs(s[0] + 1.0) < tol)
61  {
62  index[0] = 0;
63  }
64  // If we are at the upper limit, the index is the number of nodes minus 1
65  else if (std::fabs(s[0] - 1.0) < tol)
66  {
67  index[0] = NNODE_1D - 1;
68  }
69  // Otherwise, we have to calculate the index in general
70  else
71  {
72  // For uniformly spaced nodes the node number would be
73  double float_index = 0.5 * (1.0 + s[0]) * (NNODE_1D - 1);
74  // Convert to an integer by taking the floor (rounding down)
75  index[0] = static_cast<int>(std::floor(float_index));
76  // What is the excess. This should be safe because the
77  // we have rounded down
78  double excess = float_index - index[0];
79  // If the excess is bigger than our tolerance there is no node,
80  // return null
81  // Note that we test at both lower and upper ends.
82  if ((excess > tol) && ((1.0 - excess) > tol))
83  {
84  return 0;
85  }
86  // If we are at the upper end (i.e. the system has actually rounded up)
87  // we need to add one to the index
88  if ((1.0 - excess) <= tol)
89  {
90  index[0] += 1;
91  }
92  }
93  // If we've got here we have a node, so let's return a pointer to it
94  return node_pt(index[0]);
95  }
Node *& node_pt(const unsigned &n)
Return a pointer to the local node n.
Definition: elements.h:2175
static const double Node_location_tolerance
Definition: elements.h:1374
EIGEN_STRONG_INLINE EIGEN_DEVICE_FUNC bfloat16 floor(const bfloat16 &a)
Definition: BFloat16.h:643
Real fabs(const Real &a)
Definition: boostmultiprec.cpp:117

References boost::multiprecision::fabs(), Eigen::bfloat16_impl::floor(), oomph::FiniteElement::Node_location_tolerance, and s.

◆ get_s_plot()

template<unsigned NNODE_1D>
void oomph::QElement< 1, NNODE_1D >::get_s_plot ( const unsigned i,
const unsigned nplot,
Vector< double > &  s,
const bool use_equally_spaced_interior_sample_points = false 
) const
inlinevirtual

Get cector of local coordinates of plot point i (when plotting nplot points in each "coordinate direction).

Reimplemented from oomph::FiniteElement.

697  {
698  if (nplot > 1)
699  {
700  s[0] = -1.0 + 2.0 * double(i) / double(nplot - 1);
701  if (use_equally_spaced_interior_sample_points)
702  {
703  double range = 2.0;
704  double dx_new = range / double(nplot);
705  double range_new = double(nplot - 1) * dx_new;
706  s[0] = -1.0 + 0.5 * dx_new + range_new * (1.0 + s[0]) / range;
707  }
708  }
709  else
710  {
711  s[0] = 0.0;
712  }
713  }

References i, and s.

◆ invert_jacobian_mapping()

template<unsigned NNODE_1D>
double oomph::QElement< 1, NNODE_1D >::invert_jacobian_mapping ( const DenseMatrix< double > &  jacobian,
DenseMatrix< double > &  inverse_jacobian 
) const
inlinevirtual

Overload the template-free interface for the calculation of inverse jacobian matrix. This is a one-dimensional element, so use the 1D version.

Reimplemented from oomph::FiniteElement.

532  {
533  return FiniteElement::invert_jacobian<1>(jacobian, inverse_jacobian);
534  }

◆ local_coordinate_of_node()

template<unsigned NNODE_1D>
void oomph::QElement< 1, NNODE_1D >::local_coordinate_of_node ( const unsigned j,
Vector< double > &  s 
) const
inlinevirtual

Get local coordinates of node j in the element; vector sets its own size.

Reimplemented from oomph::FiniteElement.

581  {
582  s.resize(1);
583  s[0] = this->s_min() +
584  double(j) / double(NNODE_1D - 1) * (this->s_max() - this->s_min());
585  }
double s_min() const
Min. value of local coordinate.
Definition: Qelements.h:537
double s_max() const
Max. value of local coordinate.
Definition: Qelements.h:543
std::ptrdiff_t j
Definition: tut_arithmetic_redux_minmax.cpp:2

References j, and s.

◆ local_fraction_of_node()

template<unsigned NNODE_1D>
void oomph::QElement< 1, NNODE_1D >::local_fraction_of_node ( const unsigned j,
Vector< double > &  s_fraction 
)
inlinevirtual

Get the local fraction of node j in the element.

Reimplemented from oomph::FiniteElement.

590  {
591  s_fraction.resize(1);
592  s_fraction[0] = double(j) / double(NNODE_1D - 1);
593  }

References j.

◆ local_one_d_fraction_of_node()

template<unsigned NNODE_1D>
double oomph::QElement< 1, NNODE_1D >::local_one_d_fraction_of_node ( const unsigned n1d,
const unsigned i 
)
inlinevirtual

This function returns the local fraction of all nodes at the n-th position in a one dimensional expansion along the i-th local coordinate

Reimplemented from oomph::FiniteElement.

600  {
601  // It's just the value of the node divided by the number of 1-D nodes
602  return double(n1d) / double(NNODE_1D - 1);
603  }

◆ nnode_1d()

template<unsigned NNODE_1D>
unsigned oomph::QElement< 1, NNODE_1D >::nnode_1d ( ) const
inlinevirtual

Number of nodes along each element edge.

Reimplemented from oomph::FiniteElement.

610  {
611  return NNODE_1D;
612  }

◆ nplot_points()

template<unsigned NNODE_1D>
unsigned oomph::QElement< 1, NNODE_1D >::nplot_points ( const unsigned nplot) const
inlinevirtual

Return total number of plot points (when plotting nplot points in each "coordinate direction)

Reimplemented from oomph::FiniteElement.

727  {
728  unsigned DIM = 1;
729  unsigned np = 1;
730  for (unsigned i = 0; i < DIM; i++)
731  {
732  np *= nplot;
733  }
734  return np;
735  }
#define DIM
Definition: linearised_navier_stokes_elements.h:44

References DIM, and i.

◆ nplot_points_paraview()

template<unsigned NNODE_1D>
unsigned oomph::QElement< 1, NNODE_1D >::nplot_points_paraview ( const unsigned nplot) const
inlinevirtual

Return the number of actual plot points for paraview plot with parameter nplot.

Reimplemented from oomph::FiniteElement.

617  {
618  return nplot;
619  }

◆ nsub_elements_paraview()

template<unsigned NNODE_1D>
unsigned oomph::QElement< 1, NNODE_1D >::nsub_elements_paraview ( const unsigned nplot) const
inlinevirtual

Return the number of local sub-elements for paraview plot with parameter nplot.

Reimplemented from oomph::FiniteElement.

624  {
625  return (nplot - 1);
626  }

◆ nvertex_node()

template<unsigned NNODE_1D>
unsigned oomph::QElement< 1, NNODE_1D >::nvertex_node ( ) const
inlinevirtual

Number of vertex nodes in the element.

Implements oomph::LineElementBase.

550  {
551  return 2;
552  }

◆ output() [1/4]

template<unsigned NNODE_1D>
void oomph::QElement< 1, NNODE_1D >::output ( FILE *  file_pt)
virtual

C-style output.

C style output function for general 1D QElements.

Reimplemented from oomph::FiniteElement.

Reimplemented in oomph::SolidQElement< 1, NNODE_1D >.

213  {
214  output(file_pt, NNODE_1D);
215  }
void output(std::ostream &outfile)
Output.
Definition: Qelements.cc:172

References oomph::output().

◆ output() [2/4]

template<unsigned NNODE_1D>
void oomph::QElement< 1, NNODE_1D >::output ( FILE *  file_pt,
const unsigned n_plot 
)
virtual

C_style output at n_plot points.

C style output function for n_plot points in each coordinate direction.

Reimplemented from oomph::FiniteElement.

Reimplemented in oomph::SolidQElement< 1, NNODE_1D >.

222  {
223  // Local variables
224  Vector<double> s(1);
225 
226  // Tecplot header info
227  // outfile << "ZONE I=" << n_plot << std::endl;
228  fprintf(file_pt, "ZONE I=%i\n", n_plot);
229 
230  // Find the dimension of the first node
231  unsigned n_dim = this->nodal_dimension();
232 
233  // Loop over plot points
234  for (unsigned l = 0; l < n_plot; l++)
235  {
236  s[0] = -1.0 + l * 2.0 / (n_plot - 1);
237 
238  // Output the coordinates
239  for (unsigned i = 0; i < n_dim; i++)
240  {
241  // outfile << interpolated_x(s,i) << " " ;
242  fprintf(file_pt, "%g ", interpolated_x(s, i));
243  }
244  // outfile << std::endl;
245  fprintf(file_pt, "\n");
246  }
247  // outfile << std::endl;
248  fprintf(file_pt, "\n");
249  }
virtual double interpolated_x(const Vector< double > &s, const unsigned &i) const
Return FE interpolated coordinate x[i] at local coordinate s.
Definition: elements.cc:3962
unsigned nodal_dimension() const
Return the required Eulerian dimension of the nodes in this element.
Definition: elements.h:2484

References i, and s.

◆ output() [3/4]

template<unsigned NNODE_1D>
void oomph::QElement< 1, NNODE_1D >::output ( std::ostream &  outfile)
virtual

Output.

The output function for general 1D QElements.

Reimplemented from oomph::FiniteElement.

Reimplemented in oomph::SolidQElement< 1, NNODE_1D >.

173  {
174  output(outfile, NNODE_1D);
175  }

References oomph::output().

◆ output() [4/4]

template<unsigned NNODE_1D>
void oomph::QElement< 1, NNODE_1D >::output ( std::ostream &  outfile,
const unsigned n_plot 
)
virtual

Output at n_plot points.

The output function for n_plot points in each coordinate direction.

Reimplemented from oomph::FiniteElement.

Reimplemented in oomph::SolidQElement< 1, NNODE_1D >.

183  {
184  // Local variables
185  Vector<double> s(1);
186 
187  // Tecplot header info
188  outfile << "ZONE I=" << n_plot << std::endl;
189 
190  // Find the dimension of the nodes
191  unsigned n_dim = this->nodal_dimension();
192 
193  // Loop over plot points
194  for (unsigned l = 0; l < n_plot; l++)
195  {
196  s[0] = -1.0 + l * 2.0 / (n_plot - 1);
197  // Output the coordinates
198  for (unsigned i = 0; i < n_dim; i++)
199  {
200  outfile << interpolated_x(s, i) << " ";
201  }
202  outfile << std::endl;
203  }
204  outfile << std::endl;
205  }

References i, and s.

◆ s_max()

template<unsigned NNODE_1D>
double oomph::QElement< 1, NNODE_1D >::s_max ( ) const
inlinevirtual

Max. value of local coordinate.

Reimplemented from oomph::FiniteElement.

544  {
545  return 1.0;
546  }

◆ s_min()

template<unsigned NNODE_1D>
double oomph::QElement< 1, NNODE_1D >::s_min ( ) const
inlinevirtual

Min. value of local coordinate.

Reimplemented from oomph::FiniteElement.

538  {
539  return -1.0;
540  }

◆ shape()

template<unsigned NNODE_1D>
void oomph::QElement< 1, NNODE_1D >::shape ( const Vector< double > &  s,
Shape psi 
) const
virtual

Broken assignment operator.

Shape function for specific QElement<1,..>

Calculate the geometric shape functions at local coordinate s

Implements oomph::FiniteElement.

103  {
104  // Local storage for the shape functions
105  double Psi[NNODE_1D];
106  // Call the OneDimensional Shape functions
107  OneDimLagrange::shape<NNODE_1D>(s[0], Psi);
108 
109  // Now let's loop over the nodal points in the element
110  // and copy the values back in
111  for (unsigned i = 0; i < NNODE_1D; i++)
112  {
113  psi[i] = Psi[i];
114  }
115  }

References i, and s.

◆ tecplot_zone_string()

template<unsigned NNODE_1D>
std::string oomph::QElement< 1, NNODE_1D >::tecplot_zone_string ( const unsigned nplot) const
inlinevirtual

Return string for tecplot zone header (when plotting nplot points in each "coordinate direction)

Reimplemented from oomph::FiniteElement.

718  {
719  std::ostringstream header;
720  header << "ZONE I=" << nplot << "\n";
721  return header.str();
722  }

◆ vertex_node_pt()

template<unsigned NNODE_1D>
Node* oomph::QElement< 1, NNODE_1D >::vertex_node_pt ( const unsigned j) const
inlinevirtual

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

Implements oomph::LineElementBase.

556  {
557  unsigned n_node_1d = nnode_1d();
558  Node* nod_pt;
559  switch (j)
560  {
561  case 0:
562  nod_pt = node_pt(0);
563  break;
564  case 1:
565  nod_pt = node_pt(n_node_1d - 1);
566  break;
567  default:
568  std::ostringstream error_message;
569  error_message << "Vertex node number is " << j
570  << " but must be from 0 to 1\n";
571 
572  throw OomphLibError(error_message.str(),
575  }
576  return nod_pt;
577  }

References j, OOMPH_CURRENT_FUNCTION, and OOMPH_EXCEPTION_LOCATION.

◆ write_paraview_offsets()

template<unsigned NNODE_1D>
void oomph::QElement< 1, NNODE_1D >::write_paraview_offsets ( std::ofstream &  file_out,
const unsigned nplot,
unsigned offset_sum 
) const
inlinevirtual

Return the offsets for the paraview sub-elements. Needs to be implemented for each new geometric element type; see http://www.vtk.org/VTK/img/file-formats.pdf

Reimplemented from oomph::FiniteElement.

666  {
667  // Loop over all local elements and add its offset to the overall
668  // offset_sum
669  unsigned local_loop = nsub_elements_paraview(nplot);
670  for (unsigned i = 0; i < local_loop; i++)
671  {
672  offset_sum += 2;
673  file_out << offset_sum << std::endl;
674  }
675  }
unsigned nsub_elements_paraview(const unsigned &nplot) const
Definition: Qelements.h:623

References i.

◆ write_paraview_output_offset_information()

template<unsigned NNODE_1D>
void oomph::QElement< 1, NNODE_1D >::write_paraview_output_offset_information ( std::ofstream &  file_out,
const unsigned nplot,
unsigned counter 
) const
inlinevirtual

Fill in the offset information for paraview plot. Needs to be implemented for each new geometric element type; see http://www.vtk.org/VTK/img/file-formats.pdf

Reimplemented from oomph::FiniteElement.

634  {
635  // Number of local elements we want to plot over
636  unsigned plot = nsub_elements_paraview(nplot);
637 
638  // loops over the i-th local element in parent element
639  for (unsigned i = 0; i < plot; i++)
640  {
641  file_out << i + counter << " " << i + 1 + counter << std::endl;
642  }
643  counter += nplot_points_paraview(nplot);
644  }
unsigned nplot_points_paraview(const unsigned &nplot) const
Definition: Qelements.h:616
void plot()
Plot.
Definition: sphere_scattering.cc:180

References i, and PlanarWave::plot().

◆ write_paraview_type()

template<unsigned NNODE_1D>
void oomph::QElement< 1, NNODE_1D >::write_paraview_type ( std::ofstream &  file_out,
const unsigned nplot 
) const
inlinevirtual

Return the paraview element type. Needs to be implemented for each new geometric element type; see http://www.vtk.org/VTK/img/file-formats.pdf Use type "VTK_LINE" (== 3) for 2D quad elements

Reimplemented from oomph::FiniteElement.

652  {
653  unsigned local_loop = nsub_elements_paraview(nplot);
654  for (unsigned i = 0; i < local_loop; i++)
655  {
656  file_out << "3" << std::endl;
657  }
658  }

References i.

Member Data Documentation

◆ Default_integration_scheme

template<unsigned NNODE_1D>
Gauss< 1, NNODE_1D > oomph::QElement< 1, NNODE_1D >::Default_integration_scheme
staticprivate

Assign the static Default_integration_scheme.

Default integration rule: Gaussian integration of same 'order' as the element


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