Toggle navigation
Documentation
Big picture
The finite element method
The data structure
Not-so-quick guide
Optimisation
Order of action functions
Example codes and tutorials
List of example codes and tutorials
Meshing
Solvers
MPI parallel processing
Post-processing/visualisation
Other
Change log
Creating documentation
Coding conventions
Index
FAQ
About
People
Contact/Get involved
Publications
Acknowledgements
Copyright
Picture show
Go
src
meshes
one_d_lagrangian_mesh.template.cc
Go to the documentation of this file.
1
// LIC// ====================================================================
2
// LIC// This file forms part of oomph-lib, the object-oriented,
3
// LIC// multi-physics finite-element library, available
4
// LIC// at http://www.oomph-lib.org.
5
// LIC//
6
// LIC// Copyright (C) 2006-2025 Matthias Heil and Andrew Hazel
7
// LIC//
8
// LIC// This library is free software; you can redistribute it and/or
9
// LIC// modify it under the terms of the GNU Lesser General Public
10
// LIC// License as published by the Free Software Foundation; either
11
// LIC// version 2.1 of the License, or (at your option) any later version.
12
// LIC//
13
// LIC// This library is distributed in the hope that it will be useful,
14
// LIC// but WITHOUT ANY WARRANTY; without even the implied warranty of
15
// LIC// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
16
// LIC// Lesser General Public License for more details.
17
// LIC//
18
// LIC// You should have received a copy of the GNU Lesser General Public
19
// LIC// License along with this library; if not, write to the Free Software
20
// LIC// Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
21
// LIC// 02110-1301 USA.
22
// LIC//
23
// LIC// The authors may be contacted at oomph-lib@maths.man.ac.uk.
24
// LIC//
25
// LIC//====================================================================
26
#ifndef OOMPH_ONE_D_LAGRANGIAN_MESH_TEMPLATE_HEADER
27
#define OOMPH_ONE_D_LAGRANGIAN_MESH_TEMPLATE_HEADER
28
29
#ifndef OOMPH_ONE_D_LAGRANGIAN_MESH_HEADER
30
#error __FILE__ should only be included from one_d_lagrangian_mesh.h.
31
#endif
// OOMPH_ONE_D_LAGRANGIAN_MESH_HEADER
32
33
// The templated member functions of OneDLagrangianMesh
34
35
// Include the templated member functions of the OneDMesh
36
#include "
one_d_mesh.h
"
37
38
namespace
oomph
39
{
40
//=======================================================================
41
/// Constructor for 1D mesh:
42
/// n_element : number of elements
43
/// length : length of domain
44
/// undef_eulerian_posn_pt: pointer to geom object that describes
45
/// the initial Eulerian position of the mesh.
46
/// time_stepper_pt : timestepper
47
//=======================================================================
48
template
<
class
ELEMENT>
49
OneDLagrangianMesh<ELEMENT>::OneDLagrangianMesh
(
50
const
unsigned
&
n_element
,
51
const
double
&
length
,
52
GeomObject
*
undef_eulerian_posn_pt
,
53
TimeStepper
*
time_stepper_pt
)
54
:
OneDMesh
<
ELEMENT
>(
n_element
,
length
,
time_stepper_pt
),
55
Undef_eulerian_posn_pt(
undef_eulerian_posn_pt
)
56
{
57
// Mesh can only be built with 1D Qelements.
58
MeshChecker::assert_geometric_element<QElementGeometricBase, ELEMENT>(1);
59
60
// Now set the lagrangian coordinates of the nodes
61
set_lagrangian_nodal_coordinates
();
62
63
// Set the default slopes
64
assign_default_element_gradients
();
65
66
// Now set up the Eulerian position of the nodal points
67
assign_undeformed_positions
();
68
}
69
70
//==================================================
71
/// Constructor for 1D mesh:
72
/// n_element : number of elements
73
/// xmin : minimum coordinate value (LH end)
74
/// xmax : maximum coordinate value (RH end)
75
/// undef_eulerian_posn_pt: pointer to geom object that describes
76
/// the initial Eulerian position of the mesh.
77
/// time_stepper_pt : timestepper
78
//==================================================
79
template
<
class
ELEMENT>
80
OneDLagrangianMesh<ELEMENT>::OneDLagrangianMesh
(
81
const
unsigned
&
n_element
,
82
const
double
&
xmin
,
83
const
double
&
xmax
,
84
GeomObject
*
undef_eulerian_posn_pt
,
85
TimeStepper
*
time_stepper_pt
)
86
:
OneDMesh
<
ELEMENT
>(
n_element
,
xmin
,
xmax
,
time_stepper_pt
),
87
Undef_eulerian_posn_pt(
undef_eulerian_posn_pt
)
88
{
89
// Mesh can only be built with 1D Qelements.
90
MeshChecker::assert_geometric_element<QElementGeometricBase, ELEMENT>(1);
91
92
// Now set the lagrangian coordinates of the nodes
93
set_lagrangian_nodal_coordinates
();
94
95
// Set the default slopes
96
assign_default_element_gradients
();
97
98
// Now set up the Eulerian position of the nodal points
99
assign_undeformed_positions
();
100
}
101
102
//=====================================================================
103
/// Set the default (initial) gradients within each element, which
104
/// are merely the distances between the nodes, scaled by 0.5 because
105
/// the elements have length 2 in local coordinates.
106
/// N.B. This only works for QHermiteElements at the moment
107
//=====================================================================
108
template
<
class
ELEMENT>
109
void
OneDLagrangianMesh<ELEMENT>::assign_default_element_gradients
()
110
{
111
// Find cast pointer to first element
112
ELEMENT
*
cast_element_pt
=
dynamic_cast<
ELEMENT
*
>
(
finite_element_pt
(0));
113
// Do we need to worry about the slopes
114
// Read out number of position dofs
115
unsigned
n_lagrangian_type
=
cast_element_pt
->nnodal_lagrangian_type();
116
117
// If this is greater than 1 set the slopes, which are the distances between
118
// nodes
119
if
(
n_lagrangian_type
> 1)
120
{
121
// Read out the number of linear points in the element
122
unsigned
n_p
=
cast_element_pt
->nnode_1d();
123
// Set the values of the distance between each node
124
double
xstep
=
125
OneDMesh<ELEMENT>::Length
/
double
((
n_p
- 1) *
OneDMesh<ELEMENT>::N
);
126
// Loop over the nodes and set the slopes
127
unsigned
long
n_node
=
nnode
();
128
for
(
unsigned
long
n
= 0;
n
<
n_node
;
n
++)
129
{
130
node_pt
(
n
)->xi_gen(1, 0) = 0.5 *
xstep
;
131
}
132
}
133
}
134
135
//======================================================================
136
/// Set the initial (2D Eulerian!) positions of the nodes
137
//======================================================================
138
template
<
class
ELEMENT>
139
void
OneDLagrangianMesh<ELEMENT>::assign_undeformed_positions
()
140
{
141
// Lagrangian coordinate
142
Vector<double>
xi
(1);
143
144
// Find the number Eulerian coordinates, assume same for all nodes
145
unsigned
n_dim
=
node_pt
(0)->ndim();
146
147
// Find cast pointer to first element
148
ELEMENT
*
cast_element_pt
=
dynamic_cast<
ELEMENT
*
>
(
finite_element_pt
(0));
149
150
// Do we need to worry about the slopes
151
// Read out number of position dofs
152
unsigned
n_lagrangian_type
=
cast_element_pt
->nnodal_lagrangian_type();
153
154
// Setup position Vector and derivatives (they *should* dimension themselves
155
// in call to position() etc)
156
Vector<double>
R
(
n_dim
);
157
// Derivative wrt Lagrangian coordinate
158
DenseMatrix<double>
a
(1,
n_dim
);
159
// Second derivative wrt Lagrangian coordinate
160
RankThreeTensor<double>
dadxi
(1, 1,
n_dim
);
161
162
// Find out how many nodes there are
163
unsigned
long
n_node
=
nnode
();
164
165
// Loop over all the nodes
166
for
(
unsigned
long
n
= 0;
n
<
n_node
;
n
++)
167
{
168
// Lagrangian coordinate of node
169
xi
[0] =
node_pt
(
n
)->xi(0);
170
171
// Get the undeformed midplane
172
Undef_eulerian_posn_pt->d2position(
xi
,
R
,
a
,
dadxi
);
173
174
// Loop over coordinate directions
175
for
(
unsigned
i
= 0;
i
<
n_dim
;
i
++)
176
{
177
// Set the position
178
node_pt
(
n
)->x_gen(0,
i
) =
R
[
i
];
179
180
if
(
n_lagrangian_type
> 1)
181
{
182
// Set the derivative wrt Lagrangian coordinates
183
// Note that we need to scale by the length of each element here!!
184
// and the 0.5 comes from the fact that our reference element has
185
// length 2.0
186
node_pt
(
n
)->x_gen(1,
i
) =
187
0.5 *
a
(0,
i
) *
188
(
OneDMesh<ELEMENT>::Length
/
double
(
OneDMesh<ELEMENT>::N
));
189
}
190
}
191
}
192
}
193
194
}
// namespace oomph
195
#endif
oomph::OneDLagrangianMesh::assign_undeformed_positions
void assign_undeformed_positions()
Assign the undeformed Eulerian positions to the nodes.
Definition
one_d_lagrangian_mesh.template.cc:139
oomph::OneDLagrangianMesh::OneDLagrangianMesh
OneDLagrangianMesh(const unsigned &n_element, const double &length, GeomObject *undef_eulerian_posn_pt, TimeStepper *time_stepper_pt=&Mesh::Default_TimeStepper)
Constructor: Pass number of elements, length, pointer to GeomObject that defines the undeformed Euler...
Definition
one_d_lagrangian_mesh.template.cc:49
oomph::OneDLagrangianMesh::assign_default_element_gradients
void assign_default_element_gradients()
Set the default gradients of the elements.
Definition
one_d_lagrangian_mesh.template.cc:109
oomph::OneDMesh
1D mesh consisting of N one-dimensional elements from the QElement family.
Definition
one_d_mesh.h:52
oomph::RefineableTriangleMesh
Unstructured refineable Triangle Mesh.
Definition
triangle_mesh.h:2225
oomph
Definition
annular_domain.h:35
one_d_mesh.h