quarter_pipe_mesh.template.cc
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26#ifndef OOMPH_QUARTER_PIPE_MESH_TEMPLATE_CC
27#define OOMPH_QUARTER_PIPE_MESH_TEMPLATE_CC
28
30
31
32namespace oomph
33{
34 //====================================================================
35 /// Constructor: Pass number of elements in various directions,
36 /// the inner and outer radius and the length of the tube
37 //====================================================================
38 template<class ELEMENT>
40 const unsigned& nr,
41 const unsigned& nz,
42 const double& rmin,
43 const double& rmax,
44 const double& length,
45 TimeStepper* time_stepper_pt)
46 : SimpleCubicMesh<ELEMENT>(
47 ntheta, nr, nz, 1.0, 1.0, length, time_stepper_pt)
48 {
49 // Mesh can only be built with 3D Qelements.
50 MeshChecker::assert_geometric_element<QElementGeometricBase, ELEMENT>(3);
51
52 // Variables declaration
53 Ntheta = ntheta;
54 Nr = nr;
55 Nz = nz;
56 Rmin = rmin;
57 Rmax = rmax;
58 Length = length;
59
60 // Build macro element-based domain
62
63 // Loop over all elements
64 unsigned nel = this->nelement();
65 for (unsigned e = 0; e < nel; e++)
66 {
67 // Try to cast to FiniteElement
68 FiniteElement* el_pt = dynamic_cast<FiniteElement*>(this->element_pt(e));
69
70 // Set macro element pointer
72 }
73
74 // Update node coordinates with macroelement coordinates,
75 // updating solid coordinates too.
76 this->node_update(true);
77
78 // Setup boundary coordinates on inner boundary (boundary 1)
79 unsigned b = 1;
80 unsigned nnod = this->nboundary_node(b);
81 for (unsigned j = 0; j < nnod; j++)
82 {
83 // Pointer to node
84 Node* nod_pt = this->boundary_node_pt(b, j);
85
86 // Get the Eulerian coordinates
87 double x = nod_pt->x(0);
88 double y = nod_pt->x(1);
89 double z = nod_pt->x(2);
90
91 // Polar angle
92 double phi = atan2(y, x);
93
94 // Set boundary coordinates
96 zeta[0] = z;
97 zeta[1] = phi;
98 nod_pt->set_coordinates_on_boundary(b, zeta);
99 }
100 this->Boundary_coordinate_exists[b] = true;
101 }
102
103} // namespace oomph
104
105
106#endif
e
Definition cfortran.h:571
MacroElement * macro_element_pt(const unsigned &i)
Access to i-th macro element.
Definition domain.h:116
A general Finite Element class.
Definition elements.h:1317
virtual void set_macro_elem_pt(MacroElement *macro_elem_pt)
Set pointer to macro element – can be overloaded in derived elements to perform additional tasks.
Definition elements.h:1876
unsigned long nboundary_node(const unsigned &ibound) const
Return number of nodes on a particular boundary.
Definition mesh.h:833
std::vector< bool > Boundary_coordinate_exists
Vector of boolean data that indicates whether the boundary coordinates have been set for the boundary...
Definition mesh.h:190
virtual void node_update(const bool &update_all_solid_nodes=false)
Update nodal positions in response to changes in the domain shape. Uses the FiniteElement::get_x(....
Definition mesh.cc:287
const Vector< GeneralisedElement * > & element_pt() const
Return reference to the Vector of elements.
Definition mesh.h:460
unsigned long nelement() const
Return number of elements in the mesh.
Definition mesh.h:590
Node *& boundary_node_pt(const unsigned &b, const unsigned &n)
Return pointer to node n on boundary b.
Definition mesh.h:493
Nodes are derived from Data, but, in addition, have a definite (Eulerian) position in a space of a gi...
Definition nodes.h:906
Domain representing a quarter pipe.
QuarterPipeDomain * Domain_pt
Pointer to domain.
unsigned Nz
Number of elements axial direction.
QuarterPipeMesh(const unsigned &ntheta, const unsigned &nr, const unsigned &nz, const double &rmin, const double &rmax, const double &length, TimeStepper *time_stepper_pt=&Mesh::Default_TimeStepper)
Constructor: Pass number of elements in various directions, the inner and outer radius and the length...
unsigned Nr
Number of elements radial direction.
unsigned Ntheta
Number of elements azimuthal direction.
Simple cubic 3D Brick mesh class.
const unsigned & nz() const
Access function for number of elements in y directions.
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