oomph::RefineableFSIImposeDisplacementByLagrangeMultiplierElement< ELEMENT > Class Template Reference

#include <solid_traction_elements.h>

+ Inheritance diagram for oomph::RefineableFSIImposeDisplacementByLagrangeMultiplierElement< ELEMENT >:

Public Member Functions

 RefineableFSIImposeDisplacementByLagrangeMultiplierElement (FiniteElement *const &element_pt, const int &face_index, const unsigned &id=0)
 
unsigned ncont_interpolated_values () const
 
void fill_in_contribution_to_residuals (Vector< double > &residuals)
 Fill in the residuals. More...
 
void fill_in_contribution_to_jacobian (Vector< double > &residuals, DenseMatrix< double > &jacobian)
 Fill in contribution from Jacobian. More...
 
- Public Member Functions inherited from oomph::FSIImposeDisplacementByLagrangeMultiplierElement< ELEMENT >
void describe_local_dofs (std::ostream &out, const std::string &current_string) const
 
 FSIImposeDisplacementByLagrangeMultiplierElement (FiniteElement *const &element_pt, const int &face_index, const unsigned &id=0, const bool &called_from_refineable_constructor=false)
 
void fill_in_contribution_to_jacobian_and_mass_matrix (Vector< double > &residuals, DenseMatrix< double > &jacobian, DenseMatrix< double > &mass_matrix)
 
void output (std::ostream &outfile, const unsigned &n_plot)
 Output function. More...
 
void output (std::ostream &outfile)
 Output function. More...
 
- Public Member Functions inherited from oomph::SolidFaceElement
double zeta_nodal (const unsigned &n, const unsigned &k, const unsigned &i) const
 
double interpolated_xi (const Vector< double > &s, const unsigned &i) const
 
void interpolated_xi (const Vector< double > &s, Vector< double > &xi) const
 
- Public Member Functions inherited from oomph::FaceElement
 FaceElement ()
 Constructor: Initialise all appropriate member data. More...
 
virtual ~FaceElement ()
 Empty virtual destructor. More...
 
 FaceElement (const FaceElement &)=delete
 Broken copy constructor. More...
 
const unsignedboundary_number_in_bulk_mesh () const
 Broken assignment operator. More...
 
void set_boundary_number_in_bulk_mesh (const unsigned &b)
 Set function for the boundary number in bulk mesh. More...
 
double J_eulerian (const Vector< double > &s) const
 
double J_eulerian_at_knot (const unsigned &ipt) const
 
void check_J_eulerian_at_knots (bool &passed) const
 
double interpolated_x (const Vector< double > &s, const unsigned &i) const
 
double interpolated_x (const unsigned &t, const Vector< double > &s, const unsigned &i) const
 
void interpolated_x (const Vector< double > &s, Vector< double > &x) const
 
void interpolated_x (const unsigned &t, const Vector< double > &s, Vector< double > &x) const
 
double interpolated_dxdt (const Vector< double > &s, const unsigned &i, const unsigned &t)
 
void interpolated_dxdt (const Vector< double > &s, const unsigned &t, Vector< double > &dxdt)
 
intnormal_sign ()
 
int normal_sign () const
 
intface_index ()
 
int face_index () const
 
const Vector< double > * tangent_direction_pt () const
 Public access function for the tangent direction pointer. More...
 
void set_tangent_direction (Vector< double > *tangent_direction_pt)
 Set the tangent direction vector. More...
 
void turn_on_warning_for_discontinuous_tangent ()
 
void turn_off_warning_for_discontinuous_tangent ()
 
void continuous_tangent_and_outer_unit_normal (const Vector< double > &s, Vector< Vector< double >> &tang_vec, Vector< double > &unit_normal) const
 
void continuous_tangent_and_outer_unit_normal (const unsigned &ipt, Vector< Vector< double >> &tang_vec, Vector< double > &unit_normal) const
 
void outer_unit_normal (const Vector< double > &s, Vector< double > &unit_normal) const
 Compute outer unit normal at the specified local coordinate. More...
 
void outer_unit_normal (const unsigned &ipt, Vector< double > &unit_normal) const
 Compute outer unit normal at ipt-th integration point. More...
 
FiniteElement *& bulk_element_pt ()
 Pointer to higher-dimensional "bulk" element. More...
 
FiniteElementbulk_element_pt () const
 Pointer to higher-dimensional "bulk" element (const version) More...
 
CoordinateMappingFctPtface_to_bulk_coordinate_fct_pt ()
 
CoordinateMappingFctPt face_to_bulk_coordinate_fct_pt () const
 
BulkCoordinateDerivativesFctPtbulk_coordinate_derivatives_fct_pt ()
 
BulkCoordinateDerivativesFctPt bulk_coordinate_derivatives_fct_pt () const
 
Vector< doublelocal_coordinate_in_bulk (const Vector< double > &s) const
 
void get_local_coordinate_in_bulk (const Vector< double > &s, Vector< double > &s_bulk) const
 
void get_ds_bulk_ds_face (const Vector< double > &s, DenseMatrix< double > &dsbulk_dsface, unsigned &interior_direction) const
 
unsignedbulk_position_type (const unsigned &i)
 
const unsignedbulk_position_type (const unsigned &i) const
 
void bulk_node_number_resize (const unsigned &i)
 Resize the storage for the bulk node numbers. More...
 
unsignedbulk_node_number (const unsigned &n)
 
const unsignedbulk_node_number (const unsigned &n) const
 
void bulk_position_type_resize (const unsigned &i)
 Resize the storage for bulk_position_type to i entries. More...
 
unsignednbulk_value (const unsigned &n)
 
unsigned nbulk_value (const unsigned &n) const
 
void nbulk_value_resize (const unsigned &i)
 
void resize_nodes (Vector< unsigned > &nadditional_data_values)
 
void output_zeta (std::ostream &outfile, const unsigned &nplot)
 Output boundary coordinate zeta. 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...
 
virtual bool local_coord_is_valid (const Vector< double > &s)
 Broken assignment operator. More...
 
virtual void move_local_coord_back_into_element (Vector< double > &s) const
 
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 get_x_from_macro_element (const Vector< double > &s, Vector< double > &x) const
 
virtual void get_x_from_macro_element (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
 
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_nodal_local_dofs (std::ostream &out, const std::string &current_string) const
 
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 ()
 
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 unsigned nvertex_node () const
 
virtual Nodevertex_node_pt (const unsigned &j) const
 
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 ElementGeometry::ElementGeometry element_geometry () const
 Return the geometry type of the element (either Q or T usually). More...
 
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)
 
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 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 (FILE *file_pt)
 
virtual void output (FILE *file_pt, const unsigned &n_plot)
 
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 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, 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 ()
 
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...
 
virtual unsigned nnode_on_face () const
 
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)
 
- 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::SolidFiniteElement
void set_lagrangian_dimension (const unsigned &lagrangian_dimension)
 
virtual bool has_internal_solid_data ()
 
 SolidFiniteElement ()
 Constructor: Set defaults. More...
 
virtual ~SolidFiniteElement ()
 Destructor to clean up any allocated memory. More...
 
 SolidFiniteElement (const SolidFiniteElement &)=delete
 Broken copy constructor. More...
 
virtual void get_x_and_xi (const Vector< double > &s, Vector< double > &x_fe, Vector< double > &x, Vector< double > &xi_fe, Vector< double > &xi) const
 
virtual void set_macro_elem_pt (MacroElement *macro_elem_pt)
 
virtual void set_macro_elem_pt (MacroElement *macro_elem_pt, MacroElement *undeformed_macro_elem_pt)
 
void set_undeformed_macro_elem_pt (MacroElement *undeformed_macro_elem_pt)
 
MacroElementundeformed_macro_elem_pt ()
 Access function to pointer to "undeformed" macro element. More...
 
double dshape_lagrangian (const Vector< double > &s, Shape &psi, DShape &dpsidxi) const
 
virtual double dshape_lagrangian_at_knot (const unsigned &ipt, Shape &psi, DShape &dpsidxi) const
 
double d2shape_lagrangian (const Vector< double > &s, Shape &psi, DShape &dpsidxi, DShape &d2psidxi) const
 
virtual double d2shape_lagrangian_at_knot (const unsigned &ipt, Shape &psi, DShape &dpsidxi, DShape &d2psidxi) const
 
unsigned lagrangian_dimension () const
 
unsigned nnodal_lagrangian_type () const
 
Nodeconstruct_node (const unsigned &n)
 Construct the local node n and return a pointer to it. More...
 
Nodeconstruct_node (const unsigned &n, TimeStepper *const &time_stepper_pt)
 
Nodeconstruct_boundary_node (const unsigned &n)
 
Nodeconstruct_boundary_node (const unsigned &n, TimeStepper *const &time_stepper_pt)
 
virtual void assign_all_generic_local_eqn_numbers (const bool &store_local_dof_pt)
 
double raw_lagrangian_position (const unsigned &n, const unsigned &i) const
 
double raw_lagrangian_position_gen (const unsigned &n, const unsigned &k, const unsigned &i) const
 
double lagrangian_position (const unsigned &n, const unsigned &i) const
 Return i-th Lagrangian coordinate at local node n. More...
 
double lagrangian_position_gen (const unsigned &n, const unsigned &k, const unsigned &i) const
 
virtual void interpolated_dxids (const Vector< double > &s, DenseMatrix< double > &dxids) const
 
virtual void J_lagrangian (const Vector< double > &s) const
 
virtual double J_lagrangian_at_knot (const unsigned &ipt) const
 
SolidInitialCondition *& solid_ic_pt ()
 Pointer to object that describes the initial condition. More...
 
void enable_solve_for_consistent_newmark_accel ()
 
void disable_solve_for_consistent_newmark_accel ()
 Set to reset the problem being solved to be the standard problem. More...
 
MultiplierFctPtmultiplier_fct_pt ()
 
MultiplierFctPt multiplier_fct_pt () const
 
virtual void get_residuals_for_solid_ic (Vector< double > &residuals)
 
void fill_in_residuals_for_solid_ic (Vector< double > &residuals)
 
void fill_in_jacobian_for_solid_ic (Vector< double > &residuals, DenseMatrix< double > &jacobian)
 
void fill_in_jacobian_for_newmark_accel (DenseMatrix< double > &jacobian)
 
void compute_norm (double &el_norm)
 
int position_local_eqn (const unsigned &n, const unsigned &k, const unsigned &j) const
 
- Public Member Functions inherited from oomph::ElementWithExternalElement
 ElementWithExternalElement ()
 
virtual ~ElementWithExternalElement ()
 The destructor, clean up any allocated memory. More...
 
 ElementWithExternalElement (const ElementWithExternalElement &)=delete
 Broken copy constructor. More...
 
void operator= (const ElementWithExternalElement &)=delete
 Broken assignment operator. More...
 
bool storage_has_been_allocated () const
 Helper function to check if storage has actually been allocated. More...
 
FiniteElement *& external_element_pt (const unsigned &interaction_index, const unsigned &ipt)
 
FiniteElement *const & external_element_pt (const unsigned &interaction_index, const unsigned &ipt) const
 Access function to source element, const version. More...
 
Vector< double > & external_element_local_coord (const unsigned &interaction_index, const unsigned &ipt)
 
Vector< double > const & external_element_local_coord (const unsigned &interaction_index, const unsigned &ipt) const
 Access function to get source element's coords, const version. More...
 
void output_external_elements (std::ostream &outfile, const unsigned &interaction_index)
 
void initialise_external_element_storage ()
 
void flush_all_external_element_storage ()
 Flush the storage for external elements. More...
 
void set_ninteraction (const unsigned &n_interaction)
 
unsigned ninteraction () const
 Return the number of interactions in the element. More...
 
virtual void identify_all_field_data_for_external_interaction (Vector< std::set< FiniteElement * >> const &external_elements_pt, std::set< std::pair< Data *, unsigned >> &paired_interaction_data)
 
virtual void identify_all_geometric_data_for_external_interaction (Vector< std::set< FiniteElement * >> const &external_elements_pt, std::set< Data * > &external_geometric_data_pt)
 
unsigned nexternal_interaction_field_data () const
 
Vector< Data * > external_interaction_field_data_pt () const
 
unsigned nexternal_interaction_geometric_data () const
 
bool add_external_geometric_data ()
 Are we including external geometric data in the element's Jacobian. More...
 
bool add_external_interaction_data ()
 Are we including external data in the element's Jacobian. More...
 
Vector< Data * > external_interaction_geometric_data_pt () const
 
void ignore_external_geometric_data ()
 
void ignore_external_interaction_data ()
 
void include_external_geometric_data ()
 
void include_external_interaction_data ()
 
bool external_geometric_data_is_included () const
 
- Public Member Functions inherited from oomph::NonRefineableElementWithHangingNodes
void build (Mesh *&mesh_pt, Vector< Node * > &new_node_pt, bool &was_already_built, std::ofstream &new_nodes_file)
 Broken build function – shouldn't really be needed. More...
 
void get_interpolated_values (const Vector< double > &s, Vector< double > &values)
 Broken function – this shouldn't really be needed. More...
 
virtual void get_interpolated_values (const unsigned &t, const Vector< double > &s, Vector< double > &values)
 Broken function – this shouldn't really be needed. More...
 
void check_integrity (double &max_error)
 Broken function – this shouldn't really be needed. More...
 
void rebuild_from_sons (Mesh *&mesh_pt)
 Broken function – this shouldn't really be needed. 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...
 
virtual unsigned required_nsons () const
 
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...
 
virtual Nodeinterpolating_node_pt (const unsigned &n, const int &value_id)
 
virtual double local_one_d_fraction_of_interpolating_node (const unsigned &n1d, const unsigned &i, const int &value_id)
 
virtual Nodeget_interpolating_node_at_local_coordinate (const Vector< double > &s, const int &value_id)
 
virtual unsigned ninterpolating_node (const int &value_id)
 
virtual unsigned ninterpolating_node_1d (const int &value_id)
 
virtual void interpolating_basis (const Vector< double > &s, Shape &psi, const int &value_id) const
 
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...
 
virtual void setup_hanging_nodes (Vector< std::ofstream * > &output_stream)
 
virtual void further_setup_hanging_nodes ()
 
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::RefineableSolidElement
 RefineableSolidElement ()
 Constructor. More...
 
virtual ~RefineableSolidElement ()
 Virtual Destructor, delete any allocated storage. More...
 
void assign_solid_local_eqn_numbers (const bool &store_local_dof_pt)
 
unsigned ngeom_data () const
 
Datageom_data_pt (const unsigned &j)
 
void identify_geometric_data (std::set< Data * > &geometric_data_pt)
 
void fill_in_jacobian_from_solid_position_by_fd (Vector< double > &residuals, DenseMatrix< double > &jacobian)
 
bool is_undeformed_macro_element_used_for_new_lagrangian_coords () const
 
void enable_use_of_undeformed_macro_element_for_new_lagrangian_coords ()
 
void disable_use_of_undeformed_macro_element_for_new_lagrangian_coords ()
 
DenseMatrix< int > & local_position_hang_eqn (Node *const &node_pt)
 
virtual void further_build ()
 

Protected Member Functions

void refineable_fill_in_generic_contribution_to_residuals_fsi_displ_lagr_multiplier (Vector< double > &residuals, DenseMatrix< double > &jacobian, const unsigned &flag)
 
- Protected Member Functions inherited from oomph::FSIImposeDisplacementByLagrangeMultiplierElement< ELEMENT >
void fill_in_generic_contribution_to_residuals_fsi_displ_lagr_multiplier (Vector< double > &residuals, DenseMatrix< double > &jacobian, const unsigned &flag)
 
unsigned ndof_types () const
 
void get_dof_numbers_for_unknowns (std::list< std::pair< unsigned long, unsigned >> &dof_lookup_list) const
 
- Protected Member Functions inherited from oomph::FaceElement
void add_additional_values (const Vector< unsigned > &nadditional_values, const unsigned &id)
 
- 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_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::SolidFiniteElement
void fill_in_generic_jacobian_for_solid_ic (Vector< double > &residuals, DenseMatrix< double > &jacobian, const unsigned &flag)
 
void set_nnodal_lagrangian_type (const unsigned &nlagrangian_type)
 
virtual double local_to_lagrangian_mapping (const DShape &dpsids, DenseMatrix< double > &jacobian, DenseMatrix< double > &inverse_jacobian) const
 
double local_to_lagrangian_mapping (const DShape &dpsids, DenseMatrix< double > &inverse_jacobian) const
 
void describe_solid_local_dofs (std::ostream &out, const std::string &current_string) const
 Classifies dofs locally for solid specific aspects. More...
 
void fill_in_jacobian_from_solid_position_by_fd (DenseMatrix< double > &jacobian)
 
virtual void update_before_solid_position_fd ()
 
virtual void reset_after_solid_position_fd ()
 
virtual void update_in_solid_position_fd (const unsigned &i)
 
virtual void reset_in_solid_position_fd (const unsigned &i)
 
- Protected Member Functions inherited from oomph::ElementWithExternalElement
void assign_internal_and_external_local_eqn_numbers (const bool &store_local_dof_pt)
 
void assign_external_interaction_data_local_eqn_numbers (const bool &store_local_dof_pt)
 
void fill_in_jacobian_from_external_interaction_by_fd (Vector< double > &residuals, DenseMatrix< double > &jacobian)
 
void fill_in_jacobian_from_external_interaction_by_fd (DenseMatrix< double > &jacobian)
 
void fill_in_jacobian_from_external_interaction_field_by_fd (Vector< double > &residuals, DenseMatrix< double > &jacobian)
 
void fill_in_jacobian_from_external_interaction_field_by_fd (DenseMatrix< double > &jacobian)
 
void fill_in_jacobian_from_external_interaction_geometric_by_fd (Vector< double > &residuals, DenseMatrix< double > &jacobian)
 
void fill_in_jacobian_from_external_interaction_geometric_by_fd (DenseMatrix< double > &jacobian)
 
virtual void update_before_external_interaction_field_fd ()
 
virtual void reset_after_external_interaction_field_fd ()
 
virtual void update_in_external_interaction_field_fd (const unsigned &i)
 
virtual void reset_in_external_interaction_field_fd (const unsigned &i)
 
virtual void update_before_external_interaction_geometric_fd ()
 
virtual void reset_after_external_interaction_geometric_fd ()
 
virtual void update_in_external_interaction_geometric_fd (const unsigned &i)
 
virtual void reset_in_external_interaction_geometric_fd (const unsigned &i)
 
- 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::RefineableSolidElement
void assemble_local_to_lagrangian_jacobian (const DShape &dpsids, DenseMatrix< double > &jacobian) const
 
void assemble_local_to_lagrangian_jacobian2 (const DShape &d2psids, DenseMatrix< double > &jacobian2) const
 
double local_to_lagrangian_mapping_diagonal (const DShape &dpsids, DenseMatrix< double > &jacobian, DenseMatrix< double > &inverse_jacobian) const
 

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 > &)
 
- Public Types inherited from oomph::SolidFiniteElement
typedef double(* MultiplierFctPt) (const Vector< double > &xi)
 
- 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::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
 
- 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::FSIImposeDisplacementByLagrangeMultiplierElement< ELEMENT >
unsigned Id
 Lagrange Id. More...
 
- Protected Attributes inherited from oomph::FaceElement
unsigned Boundary_number_in_bulk_mesh
 The boundary number in the bulk mesh to which this element is attached. More...
 
FiniteElementBulk_element_pt
 Pointer to the associated higher-dimensional "bulk" element. More...
 
Vector< unsignedBulk_node_number
 
Vector< unsignedNbulk_value
 
Vector< double > * Tangent_direction_pt
 
- 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::SolidFiniteElement
MacroElementUndeformed_macro_elem_pt
 Pointer to the element's "undeformed" macro element (NULL by default) More...
 
SolidInitialConditionSolid_ic_pt
 Pointer to object that specifies the initial condition. More...
 
bool Solve_for_consistent_newmark_accel_flag
 
- Protected Attributes inherited from oomph::ElementWithExternalElement
bool Add_external_interaction_data
 Boolean flag to indicate whether to include the external data. More...
 
bool Add_external_geometric_data
 Boolean flag to indicate whether to include the external geometric data. More...
 
Data ** External_interaction_field_data_pt
 
Data ** External_interaction_geometric_data_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...
 
- Protected Attributes inherited from oomph::RefineableSolidElement
bool Use_undeformed_macro_element_for_new_lagrangian_coords
 
- 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...
 

Detailed Description

template<class ELEMENT>
class oomph::RefineableFSIImposeDisplacementByLagrangeMultiplierElement< ELEMENT >

///////////////////////////////////////////////////////////////////////// ///////////////////////////////////////////////////////////////////////// ///////////////////////////////////////////////////////////////////////// A class for elements that allow the imposition of a displacement constraint for bulk solid elements via a Lagrange multiplier. Prescribed displaced is obtained from an adjacent bulk solid element (rather than from a lower-dimensional GeomObject as in the corresponding ImposeDisplacementByLagrangeMultiplierElement class. The present class is particularly suited for parallel FSI computations. NOTE: Currently (and for the foreseeable future) this element only works with bulk elements that do not have generalised degrees of freedom (so it won't work with Hermite-type elements, say). The additional functionality to deal with such elements could easily be added (once a a suitable test case is written). For now we simply throw errors if an attempt is made to use the element with an unsuitable bulk element.

REFINEABLE VERSION

Constructor & Destructor Documentation

◆ RefineableFSIImposeDisplacementByLagrangeMultiplierElement()

template<class ELEMENT >
oomph::RefineableFSIImposeDisplacementByLagrangeMultiplierElement< ELEMENT >::RefineableFSIImposeDisplacementByLagrangeMultiplierElement ( FiniteElement *const &  element_pt,
const int face_index,
const unsigned id = 0 
)
inline

Constructor takes a "bulk" element and the index that identifies which face the FaceElement is supposed to be attached to. The optional identifier can be used to distinguish the additional nodal values created by this element from thos created by other FaceElements.

3095  : FSIImposeDisplacementByLagrangeMultiplierElement<ELEMENT>(
3096  element_pt, face_index, id, true)
3097  {
3098  }
int & face_index()
Definition: elements.h:4626

Member Function Documentation

◆ fill_in_contribution_to_jacobian()

template<class ELEMENT >
void oomph::RefineableFSIImposeDisplacementByLagrangeMultiplierElement< ELEMENT >::fill_in_contribution_to_jacobian ( Vector< double > &  residuals,
DenseMatrix< double > &  jacobian 
)
inlinevirtual

Fill in contribution from Jacobian.

Reimplemented from oomph::FSIImposeDisplacementByLagrangeMultiplierElement< ELEMENT >.

3120  {
3121  // Call the generic routine with the flag set to 1
3123  residuals, jacobian, 1);
3124 
3125  // Add the contribution of the external interaction by finite differences
3127  }
void fill_in_jacobian_from_external_interaction_by_fd(Vector< double > &residuals, DenseMatrix< double > &jacobian)
Definition: element_with_external_element.h:345
void refineable_fill_in_generic_contribution_to_residuals_fsi_displ_lagr_multiplier(Vector< double > &residuals, DenseMatrix< double > &jacobian, const unsigned &flag)
Definition: solid_traction_elements.h:3133

References oomph::ElementWithExternalElement::fill_in_jacobian_from_external_interaction_by_fd(), and oomph::RefineableFSIImposeDisplacementByLagrangeMultiplierElement< ELEMENT >::refineable_fill_in_generic_contribution_to_residuals_fsi_displ_lagr_multiplier().

◆ fill_in_contribution_to_residuals()

template<class ELEMENT >
void oomph::RefineableFSIImposeDisplacementByLagrangeMultiplierElement< ELEMENT >::fill_in_contribution_to_residuals ( Vector< double > &  residuals)
inlinevirtual

◆ ncont_interpolated_values()

template<class ELEMENT >
unsigned oomph::RefineableFSIImposeDisplacementByLagrangeMultiplierElement< ELEMENT >::ncont_interpolated_values ( ) const
inlinevirtual

Number of continuously interpolated values: Same for all nodes since it's a refineable element

Implements oomph::RefineableElement.

3104  {
3105  return node_pt(0)->nvalue();
3106  }
unsigned nvalue() const
Return number of values stored in data object (incl pinned ones).
Definition: nodes.h:483
Node *& node_pt(const unsigned &n)
Return a pointer to the local node n.
Definition: elements.h:2175

References oomph::FiniteElement::node_pt(), and oomph::Data::nvalue().

◆ refineable_fill_in_generic_contribution_to_residuals_fsi_displ_lagr_multiplier()

template<class ELEMENT >
void oomph::RefineableFSIImposeDisplacementByLagrangeMultiplierElement< ELEMENT >::refineable_fill_in_generic_contribution_to_residuals_fsi_displ_lagr_multiplier ( Vector< double > &  residuals,
DenseMatrix< double > &  jacobian,
const unsigned flag 
)
inlineprotected

Helper function to compute the residuals and, if flag==1, the Jacobian

3137  {
3138  // Find out how many positional dofs there are
3139  unsigned n_position_type = this->nnodal_position_type();
3140 
3141 #ifdef PARANOID
3142  if (n_position_type != 1)
3143  {
3144  throw OomphLibError(
3145  "RefineableImposeDisplacementByLagrangeMultiplierElement \n cannot "
3146  "(currently) be used with elements that have generalised\n "
3147  "positional dofs. Upgrade should be straightforward though the code "
3148  "is in a \n bit of state, with generalised degrees of freedom "
3149  "sometimes half taken into \n account, sometimes completely "
3150  "ignored...",
3153  }
3154 #endif
3155 
3156  // Find out how many nodes there are
3157  unsigned n_node = this->nnode();
3158 
3159  // Dimension of element
3160  unsigned dim_el = this->dim();
3161 
3162  // Set up memory for the shape functions
3163  Shape psi(n_node);
3164  DShape dpsids(n_node, dim_el);
3165 
3166  // Set the value of n_intpt
3167  unsigned n_intpt = this->integral_pt()->nweight();
3168 
3169 
3170  // Integers to store local equation number
3171  int local_eqn = 0;
3172  int local_unknown = 0;
3173 
3174  // Loop over the integration points
3175  for (unsigned ipt = 0; ipt < n_intpt; ipt++)
3176  {
3177  // Get the integral weight
3178  double w = this->integral_pt()->weight(ipt);
3179 
3180  // Only need to call the local derivatives
3181  this->dshape_local_at_knot(ipt, psi, dpsids);
3182 
3183  // Calculate the Eulerian coordinates and Lagrange multiplier
3184  Vector<double> x(dim_el + 1, 0.0);
3185  Vector<double> lambda(dim_el + 1, 0.0);
3186  Vector<double> zeta(dim_el, 0.0);
3187  DenseMatrix<double> interpolated_a(dim_el, dim_el + 1, 0.0);
3188 
3189  // Loop over nodes -- note in these calculations hang-ness is
3190  // automatically taken into account because of calls to position(...)
3191  // etc
3192  for (unsigned j = 0; j < n_node; j++)
3193  {
3194  Node* nod_pt = this->node_pt(j);
3195 
3196  // Cast to a boundary node
3197  BoundaryNodeBase* bnod_pt = dynamic_cast<BoundaryNodeBase*>(nod_pt);
3198 
3199  // Get the index of the first nodal value associated with
3200  // this FaceElement
3201  unsigned first_index =
3202  bnod_pt->index_of_first_value_assigned_by_face_element(this->Id);
3203 
3204  // Assemble higher-dimensional quantities
3205  for (unsigned i = 0; i < dim_el + 1; i++)
3206  {
3207  x[i] += this->nodal_position(j, i) * psi(j);
3208  lambda[i] += nod_pt->value(first_index + i) * psi(j);
3209  for (unsigned ii = 0; ii < dim_el; ii++)
3210  {
3211  interpolated_a(ii, i) +=
3212  this->lagrangian_position(j, i) * dpsids(j, ii);
3213  }
3214  }
3215  }
3216 
3217 
3218  // Now find the local undeformed metric tensor from the tangent Vectors
3219  DenseMatrix<double> a(dim_el);
3220  for (unsigned i = 0; i < dim_el; i++)
3221  {
3222  for (unsigned j = 0; j < dim_el; j++)
3223  {
3224  // Initialise surface metric tensor to zero
3225  a(i, j) = 0.0;
3226  // Take the dot product
3227  for (unsigned k = 0; k < dim_el + 1; k++)
3228  {
3229  a(i, j) += interpolated_a(i, k) * interpolated_a(j, k);
3230  }
3231  }
3232  }
3233 
3234 
3235  // Find the determinant of the metric tensor
3236  double adet = 0.0;
3237  switch (dim_el + 1)
3238  {
3239  case 2:
3240  adet = a(0, 0);
3241  break;
3242 
3243  case 3:
3244  adet = a(0, 0) * a(1, 1) - a(0, 1) * a(1, 0);
3245  break;
3246 
3247  default:
3248  throw OomphLibError(
3249  "Wrong dimension "
3250  "refineable_fill_in_generic_contribution_to_residuals_displ_lagr_"
3251  "multiplier",
3252  "RefineableImposeDisplacementByLagrangeMultiplierElement::"
3253  "refineablefill_in_generic_contribution_to_residuals_displ_lagr_"
3254  "multiplier()",
3256  }
3257 
3258  // Get prescribed wall shape from adjacent bulk element
3259  Vector<double> r_prescribed(dim_el + 1);
3260 
3261  // Get the local coordinate in the solid element (copy
3262  // operation for Vector)
3263  Vector<double> s_adjacent(this->external_element_local_coord(0, ipt));
3264 
3265  // Get the position in the adjacent element
3266  FiniteElement* bulk_el_pt = this->external_element_pt(0, ipt);
3267  bulk_el_pt->interpolated_x(s_adjacent, r_prescribed);
3268 
3269 
3270  // Premultiply the weights and the square-root of the determinant of
3271  // the metric tensor
3272  double W = w * sqrt(adet);
3273 
3274  // Assemble residuals and jacobian
3275 
3276 
3277  // Number of master nodes and storage for the weight of the shape
3278  // function
3279  unsigned n_master = 1;
3280  unsigned n_master2 = 1;
3281  double hang_weight = 1.0;
3282  double hang_weight2 = 1.0;
3283 
3284  // Pointer to hang info object
3285  HangInfo* hang_info_pt = 0;
3286  HangInfo* hang_info2_pt = 0;
3287 
3288 
3289  // Loop over nodes
3290  for (unsigned j = 0; j < n_node; j++)
3291  {
3292  // Local node itself (hanging or not)
3293  Node* local_node_pt = this->node_pt(j);
3294 
3295  // Local boolean to indicate whether the node is hanging
3296  bool is_node_hanging = local_node_pt->is_hanging();
3297 
3298  // If the node is hanging
3299  if (is_node_hanging)
3300  {
3301  hang_info_pt = local_node_pt->hanging_pt();
3302 
3303  // Read out number of master nodes from hanging data
3304  n_master = hang_info_pt->nmaster();
3305  }
3306  // Otherwise the node is its own master
3307  else
3308  {
3309  n_master = 1;
3310  }
3311 
3312  // Loop over the master nodes
3313  for (unsigned m = 0; m < n_master; m++)
3314  {
3315  // Loop over velocity components for equations
3316  for (unsigned i = 0; i < dim_el + 1; i++)
3317  {
3318  // Get the equation number for Lagrange multiplier eqn
3319 
3320  // If the node is hanging
3321  if (is_node_hanging)
3322  {
3323  // Cast to a boundary node
3324  BoundaryNodeBase* bnod_pt = dynamic_cast<BoundaryNodeBase*>(
3325  hang_info_pt->master_node_pt(m));
3326 
3327  // Get the equation number from the master node
3328  local_eqn = this->local_hang_eqn(
3329  hang_info_pt->master_node_pt(m),
3330  bnod_pt->index_of_first_value_assigned_by_face_element(
3331  this->Id) +
3332  i);
3333 
3334  // Get the hang weight from the master node
3335  hang_weight = hang_info_pt->master_weight(m);
3336  }
3337  // If the node is not hanging
3338  else
3339  {
3340  // Cast to a boundary node
3341  BoundaryNodeBase* bnod_pt =
3342  dynamic_cast<BoundaryNodeBase*>(local_node_pt);
3343 
3344  // Local equation number
3345  local_eqn = this->nodal_local_eqn(
3346  j,
3347  bnod_pt->index_of_first_value_assigned_by_face_element(
3348  this->Id) +
3349  i);
3350 
3351  // Node contributes with full weight
3352  hang_weight = 1.0;
3353  }
3354 
3355  // If it's not a boundary condition...
3356  if (local_eqn >= 0)
3357  {
3358  residuals[local_eqn] +=
3359  (x[i] - r_prescribed[i]) * psi(j) * W * hang_weight;
3360 
3361  // Do Jacobian too?
3362  if (flag == 1)
3363  {
3364  // Loop over the nodes again for unknowns (only diagonal
3365  // contribution to direction!).
3366  for (unsigned jj = 0; jj < n_node; jj++)
3367  {
3368  // Local node itself (hanging or not)
3369  Node* local_node2_pt = this->node_pt(jj);
3370 
3371  // Local boolean to indicate whether the node is hanging
3372  bool is_node_hanging2 = local_node2_pt->is_hanging();
3373 
3374  // If the node is hanging
3375  if (is_node_hanging2)
3376  {
3377  hang_info2_pt = local_node2_pt->hanging_pt();
3378 
3379  // Read out number of master nodes from hanging data
3380  n_master2 = hang_info2_pt->nmaster();
3381  }
3382  // Otherwise the node is its own master
3383  else
3384  {
3385  n_master2 = 1;
3386  }
3387 
3388  // Loop over the master nodes
3389  for (unsigned m2 = 0; m2 < n_master2; m2++)
3390  {
3391  // Storage for local equation numbers at node indexed by
3392  // type and direction
3393  DenseMatrix<int> position_local_eqn_at_node2(
3394  n_position_type, dim_el + 1);
3395 
3396  if (is_node_hanging2)
3397  {
3398  // Find the equation numbers
3399  position_local_eqn_at_node2 = local_position_hang_eqn(
3400  local_node2_pt->hanging_pt()->master_node_pt(m2));
3401 
3402  // Find the hanging node weight
3403  hang_weight2 =
3404  local_node2_pt->hanging_pt()->master_weight(m2);
3405  }
3406  else
3407  {
3408  // Non-loop of types of dofs
3409  // for(unsigned k2=0;k2<n_position_type;k2++)
3410  // {
3411  unsigned k2 = 0;
3412 
3413  // Loop over the displacement components
3414  // for(unsigned i2=0;i2<dim_el+1;i2++)
3415  unsigned i2 =
3416  i; // only need that one, but need to store
3417  // information in this container because
3418  // it's required for hanging case.
3419  {
3420  position_local_eqn_at_node2(k2, i2) =
3421  this->position_local_eqn(jj, k2, i2);
3422  }
3423 
3424  // Hang weight is one
3425  hang_weight2 = 1.0;
3426  }
3427 
3428  unsigned k2 = 0;
3429  local_unknown = position_local_eqn_at_node2(k2, i);
3430  if (local_unknown >= 0)
3431  {
3432  jacobian(local_eqn, local_unknown) +=
3433  psi(jj) * psi(j) * W * hang_weight * hang_weight2;
3434  }
3435  }
3436  }
3437  }
3438 
3439 
3440  // Add Lagrange multiplier contribution to bulk equations
3441 
3442 
3443  // Storage for local equation numbers at node indexed by
3444  // type and direction
3445  DenseMatrix<int> position_local_eqn_at_node(n_position_type,
3446  dim_el + 1);
3447 
3448  if (is_node_hanging)
3449  {
3450  // Find the equation numbers
3451  position_local_eqn_at_node = local_position_hang_eqn(
3452  local_node_pt->hanging_pt()->master_node_pt(m));
3453  }
3454  else
3455  {
3456  // Non-loop of types of dofs
3457  // for(unsigned k2=0;k2<n_position_type;k2++)
3458  // {
3459  unsigned k2 = 0;
3460 
3461  // Loop over the displacement components
3462  // for(unsigned i2=0;i2<dim_el+1;i2++)
3463  unsigned i2 = i; // only need that one, but need to store
3464  // information in this container because
3465  // it's required for hanging case.
3466  {
3467  position_local_eqn_at_node(k2, i2) =
3468  this->position_local_eqn(j, k2, i2);
3469  }
3470  }
3471  unsigned k = 0;
3472  local_eqn = position_local_eqn_at_node(k, i);
3473 
3474  /*IF it's not a boundary condition*/
3475  if (local_eqn >= 0)
3476  {
3477  // Add to residual
3478  residuals[local_eqn] += lambda[i] * psi(j) * W * hang_weight;
3479 
3480  // Do Jacobian too?
3481  if (flag == 1)
3482  {
3483  // Loop over the nodes again for unknowns (only diagonal
3484  // contribution to direction!).
3485  for (unsigned jj = 0; jj < n_node; jj++)
3486  {
3487  // Local node itself (hanging or not)
3488  Node* local_node2_pt = this->node_pt(jj);
3489 
3490  // Local boolean to indicate whether the node is hanging
3491  bool is_node_hanging2 = local_node2_pt->is_hanging();
3492 
3493  // If the node is hanging
3494  if (is_node_hanging2)
3495  {
3496  hang_info2_pt = local_node2_pt->hanging_pt();
3497 
3498  // Read out number of master nodes from hanging data
3499  n_master2 = hang_info2_pt->nmaster();
3500  }
3501  // Otherwise the node is its own master
3502  else
3503  {
3504  n_master2 = 1;
3505  }
3506 
3507  // Loop over the master nodes
3508  for (unsigned m2 = 0; m2 < n_master2; m2++)
3509  {
3510  // Get the equation number for Lagrange multiplier eqn
3511 
3512  // If the node is hanging
3513  if (is_node_hanging2)
3514  {
3515  // Cast to a boundary node
3516  BoundaryNodeBase* bnod2_pt =
3517  dynamic_cast<BoundaryNodeBase*>(
3518  hang_info2_pt->master_node_pt(m2));
3519 
3520  // Get the equation number from the master node
3521  local_unknown = this->local_hang_eqn(
3522  hang_info2_pt->master_node_pt(m2),
3523  bnod2_pt
3524  ->index_of_first_value_assigned_by_face_element(
3525  this->Id) +
3526  i);
3527 
3528  // Get the hang weight from the master node
3529  hang_weight2 = hang_info2_pt->master_weight(m2);
3530  }
3531  // If the node is not hanging
3532  else
3533  {
3534  // Cast to a boundary node
3535  BoundaryNodeBase* bnod2_pt =
3536  dynamic_cast<BoundaryNodeBase*>(local_node2_pt);
3537 
3538  // Local equation number
3539  local_unknown = this->nodal_local_eqn(
3540  jj,
3541  bnod2_pt
3542  ->index_of_first_value_assigned_by_face_element(
3543  this->Id) +
3544  i);
3545 
3546  // Node contributes with full weight
3547  hang_weight2 = 1.0;
3548  }
3549 
3550  if (local_unknown >= 0)
3551  {
3552  jacobian(local_eqn, local_unknown) +=
3553  psi(jj) * psi(j) * W * hang_weight * hang_weight2;
3554  }
3555  }
3556  }
3557  }
3558  }
3559  }
3560  }
3561  }
3562  }
3563 
3564  } // End of loop over the integration points
3565  }
AnnoyingScalar sqrt(const AnnoyingScalar &x)
Definition: AnnoyingScalar.h:134
int i
Definition: BiCGSTAB_step_by_step.cpp:9
cout<< "The eigenvalues of A are:"<< endl<< ces.eigenvalues()<< endl;cout<< "The matrix of eigenvectors, V, is:"<< endl<< ces.eigenvectors()<< endl<< endl;complex< float > lambda
Definition: ComplexEigenSolver_compute.cpp:9
RowVector3d w
Definition: Matrix_resize_int.cpp:3
MatrixType m2(n_dims)
Vector< double > & external_element_local_coord(const unsigned &interaction_index, const unsigned &ipt)
Definition: element_with_external_element.h:136
FiniteElement *& external_element_pt(const unsigned &interaction_index, const unsigned &ipt)
Definition: element_with_external_element.h:107
unsigned Id
Lagrange Id.
Definition: solid_traction_elements.h:3040
unsigned nnodal_position_type() const
Definition: elements.h:2463
virtual void dshape_local_at_knot(const unsigned &ipt, Shape &psi, DShape &dpsids) const
Definition: elements.cc:3239
int nodal_local_eqn(const unsigned &n, const unsigned &i) const
Definition: elements.h:1432
unsigned dim() const
Definition: elements.h:2611
unsigned nnode() const
Return the number of nodes.
Definition: elements.h:2210
Integral *const & integral_pt() const
Return the pointer to the integration scheme (const version)
Definition: elements.h:1963
double nodal_position(const unsigned &n, const unsigned &i) const
Definition: elements.h:2317
FiniteElement()
Constructor.
Definition: elements.h:1782
virtual unsigned nweight() const =0
Return the number of integration points of the scheme.
virtual double weight(const unsigned &i) const =0
Return weight of i-th integration point.
int local_hang_eqn(Node *const &node_pt, const unsigned &i)
Definition: refineable_elements.h:278
DenseMatrix< int > & local_position_hang_eqn(Node *const &node_pt)
Definition: refineable_elements.h:1005
double lagrangian_position(const unsigned &n, const unsigned &i) const
Return i-th Lagrangian coordinate at local node n.
Definition: elements.h:3905
int position_local_eqn(const unsigned &n, const unsigned &k, const unsigned &j) const
Definition: elements.h:4137
const Scalar * a
Definition: level2_cplx_impl.h:32
int * m
Definition: level2_cplx_impl.h:294
char char char int int * k
Definition: level2_impl.h:374
EIGEN_STRONG_INLINE const Eigen::CwiseBinaryOp< Eigen::internal::scalar_zeta_op< typename DerivedX::Scalar >, const DerivedX, const DerivedQ > zeta(const Eigen::ArrayBase< DerivedX > &x, const Eigen::ArrayBase< DerivedQ > &q)
Definition: SpecialFunctionsArrayAPI.h:152
@ W
Definition: quadtree.h:63
list x
Definition: plotDoE.py:28
#define OOMPH_EXCEPTION_LOCATION
Definition: oomph_definitions.h:61
#define OOMPH_CURRENT_FUNCTION
Definition: oomph_definitions.h:86
std::ptrdiff_t j
Definition: tut_arithmetic_redux_minmax.cpp:2

References a, oomph::FiniteElement::dim(), oomph::FiniteElement::dshape_local_at_knot(), oomph::ElementWithExternalElement::external_element_local_coord(), oomph::ElementWithExternalElement::external_element_pt(), oomph::Node::hanging_pt(), i, oomph::FSIImposeDisplacementByLagrangeMultiplierElement< ELEMENT >::Id, oomph::BoundaryNodeBase::index_of_first_value_assigned_by_face_element(), oomph::FiniteElement::integral_pt(), oomph::FiniteElement::interpolated_x(), oomph::Node::is_hanging(), j, k, oomph::SolidFiniteElement::lagrangian_position(), lambda, oomph::RefineableElement::local_hang_eqn(), oomph::RefineableSolidElement::local_position_hang_eqn(), m, m2(), oomph::HangInfo::master_node_pt(), oomph::HangInfo::master_weight(), oomph::HangInfo::nmaster(), oomph::FiniteElement::nnodal_position_type(), oomph::FiniteElement::nnode(), oomph::FiniteElement::nodal_local_eqn(), oomph::FiniteElement::nodal_position(), oomph::FiniteElement::node_pt(), oomph::Integral::nweight(), OOMPH_CURRENT_FUNCTION, OOMPH_EXCEPTION_LOCATION, oomph::SolidFiniteElement::position_local_eqn(), sqrt(), oomph::Node::value(), w, oomph::QuadTreeNames::W, oomph::Integral::weight(), plotDoE::x, and Eigen::zeta().

Referenced by oomph::RefineableFSIImposeDisplacementByLagrangeMultiplierElement< ELEMENT >::fill_in_contribution_to_jacobian(), and oomph::RefineableFSIImposeDisplacementByLagrangeMultiplierElement< ELEMENT >::fill_in_contribution_to_residuals().


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