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src
meshes
backward_step_mesh.template.cc
Go to the documentation of this file.
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// LIC// ====================================================================
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// LIC// This file forms part of oomph-lib, the object-oriented,
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// LIC// multi-physics finite-element library, available
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// LIC// at http://www.oomph-lib.org.
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// LIC//
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// LIC// Copyright (C) 2006-2024 Matthias Heil and Andrew Hazel
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// LIC//
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// LIC// This library is free software; you can redistribute it and/or
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// LIC// modify it under the terms of the GNU Lesser General Public
10
// LIC// License as published by the Free Software Foundation; either
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// LIC// version 2.1 of the License, or (at your option) any later version.
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// LIC//
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// LIC// This library is distributed in the hope that it will be useful,
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// LIC// but WITHOUT ANY WARRANTY; without even the implied warranty of
15
// LIC// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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// LIC// Lesser General Public License for more details.
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// LIC//
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// LIC// You should have received a copy of the GNU Lesser General Public
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// LIC// License along with this library; if not, write to the Free Software
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// LIC// Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
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// LIC// 02110-1301 USA.
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// LIC//
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// LIC// The authors may be contacted at oomph-lib@maths.man.ac.uk.
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// LIC//
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// LIC//====================================================================
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#ifndef OOMPH_BACKWARD_STEP_MESH_TEMPLATE_CC
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#define OOMPH_BACKWARD_STEP_MESH_TEMPLATE_CC
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#include <set>
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#include <map>
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#include "
backward_step_mesh.template.h
"
32
33
namespace
oomph
34
{
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//=================================================================
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/// Actual build function. Pass overall number of elements in the
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/// horizontal and vertical directions, nx and ny, and the corresponding
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/// dimensions, lx and ly. nx_cut_out and ny_cut_out elements
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/// are cut out from the lower right corner to create the
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/// (reversed) backward step geometry. Timestepper defaults
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/// to Steady.
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//=================================================================
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template
<
class
ELEMENT>
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void
BackwardStepQuadMesh<ELEMENT>::build_mesh
(
const
unsigned
& nx,
45
const
unsigned
& ny,
46
const
unsigned
&
nx_cut_out
,
47
const
unsigned
&
ny_cut_out
,
48
const
double
&
lx
,
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const
double
&
ly
)
50
{
51
// Mesh can only be built with 2D Qelements.
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MeshChecker::assert_geometric_element<QElementGeometricBase, ELEMENT>(2);
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// By default nobody's claiming any nodes
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std::map<Node*, bool>
keep
;
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// Get elements outside lower right block
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Vector<FiniteElement*>
el_retained_pt
;
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Vector<FiniteElement*>
el_killed_pt
;
60
for
(
unsigned
i
= 0;
i
< nx;
i
++)
61
{
62
for
(
unsigned
j
= 0;
j
< ny;
j
++)
63
{
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FiniteElement
*
el_pt
= this->finite_element_pt(
i
+ nx *
j
);
65
if
((
i
> (
nx_cut_out
- 1)) && (
j
<
ny_cut_out
))
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{
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el_killed_pt
.push_back(
el_pt
);
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}
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else
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{
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el_retained_pt
.push_back(
el_pt
);
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unsigned
nnod_el
=
el_pt
->
nnode
();
73
for
(
unsigned
jj
= 0;
jj
<
nnod_el
;
jj
++)
74
{
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keep
[
el_pt
->
node_pt
(
jj
)] =
true
;
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}
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}
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}
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}
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// By default nobody's claiming the nodes; also store old
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// boundary ids
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std::map<Node*, std::set<unsigned>>
boundaries
;
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unsigned
nnod
= this->
nnode
();
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for
(
unsigned
j
= 0;
j
<
nnod
;
j
++)
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{
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std::set<unsigned>*
aux_pt
= 0;
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this->
node_pt
(
j
)->
get_boundaries_pt
(
aux_pt
);
90
if
(
aux_pt
!= 0)
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{
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boundaries
[this->
node_pt
(
j
)] = (*aux_pt);
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}
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}
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// Remove information about boundary nodes
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this->remove_boundary_nodes();
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// Reset number of boundaries
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this->set_nboundary(6);
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// Kill superfluous nodes
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Vector<Node*>
node_backup_pt
(this->
Node_pt
);
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this->
Node_pt
.clear();
105
for
(
unsigned
j
= 0;
j
<
nnod
;
j
++)
106
{
107
Node
*
nod_pt
=
node_backup_pt
[
j
];
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if
(
keep
[
nod_pt
])
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{
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this->
Node_pt
.push_back(nod_pt);
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std::set<unsigned>
aux
=
boundaries
[
nod_pt
];
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for
(std::set<unsigned>::iterator
it
=
boundaries
[
nod_pt
].
begin
();
113
it
!=
boundaries
[
nod_pt
].end();
114
it
++)
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{
116
unsigned
b = (*it);
117
if
(b > 0) b += 2;
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this->add_boundary_node(b,
nod_pt
);
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}
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}
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else
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{
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delete
node_backup_pt
[
j
];
124
}
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}
126
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// Add nodes to new boundary 1
128
unsigned
i
=
nx_cut_out
- 1;
129
for
(
unsigned
j
= 0;
j
<
ny_cut_out
;
j
++)
130
{
131
FiniteElement
*
el_pt
= this->finite_element_pt(
i
+ nx *
j
);
132
unsigned
nnod_1d
=
el_pt
->
nnode_1d
();
133
for
(
unsigned
jj
= 0;
jj
<
nnod_1d
;
jj
++)
134
{
135
unsigned
jnod
= (
nnod_1d
- 1) +
jj
*
nnod_1d
;
136
if
(!(
el_pt
->
node_pt
(
jnod
)->
is_on_boundary
()))
137
{
138
Node
*
nod_pt
=
el_pt
->
node_pt
(
jnod
);
139
this->convert_to_boundary_node(
nod_pt
);
140
}
141
this->add_boundary_node(1,
el_pt
->
node_pt
(
jnod
));
142
}
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}
144
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// Add nodes to new boundary 2
146
unsigned
j
=
ny_cut_out
;
147
for
(
unsigned
i
=
nx_cut_out
;
i
< nx;
i
++)
148
{
149
FiniteElement
*
el_pt
= this->finite_element_pt(
i
+ nx *
j
);
150
unsigned
nnod_1d
=
el_pt
->
nnode_1d
();
151
for
(
unsigned
jj
= 0;
jj
<
nnod_1d
;
jj
++)
152
{
153
unsigned
jnod
=
jj
;
154
if
(!(
el_pt
->
node_pt
(
jnod
)->
is_on_boundary
()))
155
{
156
Node
*
nod_pt
=
el_pt
->
node_pt
(
jnod
);
157
this->convert_to_boundary_node(
nod_pt
);
158
}
159
this->add_boundary_node(2,
el_pt
->
node_pt
(
jnod
));
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}
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}
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163
164
// Kill redundant elements
165
this->Element_pt.clear();
166
unsigned
n_retained
=
el_retained_pt
.
size
();
167
for
(
unsigned
e
= 0;
e
<
n_retained
;
e
++)
168
{
169
this->Element_pt.push_back(
el_retained_pt
[
e
]);
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}
171
unsigned
n_killed
=
el_killed_pt
.
size
();
172
for
(
unsigned
e
= 0;
e
<
n_killed
;
e
++)
173
{
174
delete
el_killed_pt
[
e
];
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}
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// Re-setup lookup scheme that establishes which elements are located
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// on the mesh boundaries
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this->setup_boundary_element_info();
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}
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}
// namespace oomph
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#endif
backward_step_mesh.template.h
e
e
Definition
cfortran.h:571
i
cstr elem_len * i
Definition
cfortran.h:603
oomph::BackwardStepQuadMesh::build_mesh
void build_mesh(const unsigned &nx, const unsigned &ny, const unsigned &nx_cut_out, const unsigned &ny_cut_out, const double &lx, const double &ly)
Actual build function.
Definition
backward_step_mesh.template.cc:44
oomph::FiniteElement
A general Finite Element class.
Definition
elements.h:1317
oomph::FiniteElement::size
double size() const
Calculate the size of the element (length, area, volume,...) in Eulerian computational coordinates....
Definition
elements.cc:4320
oomph::FiniteElement::nnode
unsigned nnode() const
Return the number of nodes.
Definition
elements.h:2214
oomph::FiniteElement::Node_pt
Node ** Node_pt
Storage for pointers to the nodes in the element.
Definition
elements.h:1323
oomph::FiniteElement::node_pt
Node *& node_pt(const unsigned &n)
Return a pointer to the local node n.
Definition
elements.h:2179
oomph::FiniteElement::nnode_1d
virtual unsigned nnode_1d() const
Return the number of nodes along one edge of the element Default is to return zero — must be overload...
Definition
elements.h:2222
oomph::Node
Nodes are derived from Data, but, in addition, have a definite (Eulerian) position in a space of a gi...
Definition
nodes.h:906
oomph::Node::is_on_boundary
virtual bool is_on_boundary() const
Test whether the Node lies on a boundary. The "bulk" Node cannot lie on a boundary,...
Definition
nodes.h:1373
oomph::Node::get_boundaries_pt
virtual void get_boundaries_pt(std::set< unsigned > *&boundaries_pt)
Return a pointer to set of mesh boundaries that this node occupies; this will be overloaded by Bounda...
Definition
nodes.h:1365
oomph::TAdvectionDiffusionReactionElement
//////////////////////////////////////////////////////////////////////
Definition
Tadvection_diffusion_reaction_elements.h:66
oomph::TAdvectionDiffusionReactionElement::TAdvectionDiffusionReactionElement
TAdvectionDiffusionReactionElement()
Constructor: Call constructors for TElement and AdvectionDiffusionReaction equations.
Definition
Tadvection_diffusion_reaction_elements.h:70
oomph
//////////////////////////////////////////////////////////////////// ////////////////////////////////...
Definition
advection_diffusion_elements.cc:30