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16 changes: 8 additions & 8 deletions docs/documentation.html
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</ul>
</li>
<li class="toctree-l1"><a class="reference internal" href="tutorials.html">Tutorials</a><ul>
<li class="toctree-l2"><a class="reference internal" href="tutorials.html#d-elastic-bar-of-square-cross-section">3D elastic bar of square cross-section</a></li>
<li class="toctree-l2"><a class="reference internal" href="tutorials.html#d-elastic-bar-of-square-cross-section-with-parallelization">3D elastic bar of square cross-section with parallelization</a></li>
<li class="toctree-l2"><a class="reference internal" href="tutorials.html#d-elastic-bar-of-square-cross-section-buried-into-a-pml-external-medium">3D elastic bar of square cross-section buried into a PML external medium</a></li>
<li class="toctree-l2"><a class="reference internal" href="tutorials.html#d-elastic-bar-of-square-cross-section-buried-into-a-pml-external-medium-using-gmsh">3D elastic bar of square cross-section buried into a PML external medium using gmsh</a></li>
<li class="toctree-l2"><a class="reference internal" href="tutorials.html#excitation-of-a-3d-elastic-bar-of-circular-cross-section">Excitation of a 3D elastic bar of circular cross-section</a></li>
<li class="toctree-l2"><a class="reference internal" href="tutorials.html#excitation-of-a-3d-elastic-bar-of-circular-cross-section-with-parallelization">Excitation of a 3D elastic bar of circular cross-section with parallelization</a></li>
<li class="toctree-l2"><a class="reference internal" href="tutorials.html#time-response-of-a-plate-excited-near-its-first-zgv-resonance">Time response of a plate excited near its first ZGV resonance</a></li>
<li class="toctree-l2"><a class="reference internal" href="tutorials.html#dispersion-curves-of-a-rail">Dispersion curves of a rail</a></li>
<li class="toctree-l2"><a class="reference internal" href="tutorials.html#d-elastic-bar-of-square-cross-section">0. 3D elastic bar of square cross-section</a></li>
<li class="toctree-l2"><a class="reference internal" href="tutorials.html#d-elastic-bar-of-square-cross-section-with-parallelization">1. 3D elastic bar of square cross-section with parallelization</a></li>
<li class="toctree-l2"><a class="reference internal" href="tutorials.html#d-elastic-bar-of-square-cross-section-buried-into-a-pml-external-medium">2. 3D elastic bar of square cross-section buried into a PML external medium</a></li>
<li class="toctree-l2"><a class="reference internal" href="tutorials.html#d-elastic-bar-of-square-cross-section-buried-into-a-pml-external-medium-using-gmsh">3. 3D elastic bar of square cross-section buried into a PML external medium using gmsh</a></li>
<li class="toctree-l2"><a class="reference internal" href="tutorials.html#excitation-of-a-3d-elastic-bar-of-circular-cross-section">4. Excitation of a 3D elastic bar of circular cross-section</a></li>
<li class="toctree-l2"><a class="reference internal" href="tutorials.html#excitation-of-a-3d-elastic-bar-of-circular-cross-section-with-parallelization">5. Excitation of a 3D elastic bar of circular cross-section with parallelization</a></li>
<li class="toctree-l2"><a class="reference internal" href="tutorials.html#time-response-of-a-plate-excited-near-its-first-zgv-resonance">6. Time response of a plate excited near its first ZGV resonance</a></li>
<li class="toctree-l2"><a class="reference internal" href="tutorials.html#dispersion-curves-of-a-rail">7. Dispersion curves of a rail</a></li>
</ul>
</li>
</ul>
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32 changes: 16 additions & 16 deletions docs/tutorials.html
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</ul>
</li>
<li class="toctree-l1 current"><a class="current reference internal" href="#">Tutorials</a><ul>
<li class="toctree-l2"><a class="reference internal" href="#d-elastic-bar-of-square-cross-section">3D elastic bar of square cross-section</a></li>
<li class="toctree-l2"><a class="reference internal" href="#d-elastic-bar-of-square-cross-section-with-parallelization">3D elastic bar of square cross-section with parallelization</a></li>
<li class="toctree-l2"><a class="reference internal" href="#d-elastic-bar-of-square-cross-section-buried-into-a-pml-external-medium">3D elastic bar of square cross-section buried into a PML external medium</a></li>
<li class="toctree-l2"><a class="reference internal" href="#d-elastic-bar-of-square-cross-section-buried-into-a-pml-external-medium-using-gmsh">3D elastic bar of square cross-section buried into a PML external medium using gmsh</a></li>
<li class="toctree-l2"><a class="reference internal" href="#excitation-of-a-3d-elastic-bar-of-circular-cross-section">Excitation of a 3D elastic bar of circular cross-section</a></li>
<li class="toctree-l2"><a class="reference internal" href="#excitation-of-a-3d-elastic-bar-of-circular-cross-section-with-parallelization">Excitation of a 3D elastic bar of circular cross-section with parallelization</a></li>
<li class="toctree-l2"><a class="reference internal" href="#time-response-of-a-plate-excited-near-its-first-zgv-resonance">Time response of a plate excited near its first ZGV resonance</a></li>
<li class="toctree-l2"><a class="reference internal" href="#dispersion-curves-of-a-rail">Dispersion curves of a rail</a></li>
<li class="toctree-l2"><a class="reference internal" href="#d-elastic-bar-of-square-cross-section">0. 3D elastic bar of square cross-section</a></li>
<li class="toctree-l2"><a class="reference internal" href="#d-elastic-bar-of-square-cross-section-with-parallelization">1. 3D elastic bar of square cross-section with parallelization</a></li>
<li class="toctree-l2"><a class="reference internal" href="#d-elastic-bar-of-square-cross-section-buried-into-a-pml-external-medium">2. 3D elastic bar of square cross-section buried into a PML external medium</a></li>
<li class="toctree-l2"><a class="reference internal" href="#d-elastic-bar-of-square-cross-section-buried-into-a-pml-external-medium-using-gmsh">3. 3D elastic bar of square cross-section buried into a PML external medium using gmsh</a></li>
<li class="toctree-l2"><a class="reference internal" href="#excitation-of-a-3d-elastic-bar-of-circular-cross-section">4. Excitation of a 3D elastic bar of circular cross-section</a></li>
<li class="toctree-l2"><a class="reference internal" href="#excitation-of-a-3d-elastic-bar-of-circular-cross-section-with-parallelization">5. Excitation of a 3D elastic bar of circular cross-section with parallelization</a></li>
<li class="toctree-l2"><a class="reference internal" href="#time-response-of-a-plate-excited-near-its-first-zgv-resonance">6. Time response of a plate excited near its first ZGV resonance</a></li>
<li class="toctree-l2"><a class="reference internal" href="#dispersion-curves-of-a-rail">7. Dispersion curves of a rail</a></li>
</ul>
</li>
</ul>
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<section id="tutorials">
<h1>Tutorials<a class="headerlink" href="#tutorials" title="Permalink to this heading"></a></h1>
<section id="d-elastic-bar-of-square-cross-section">
<h2>3D elastic bar of square cross-section<a class="headerlink" href="#d-elastic-bar-of-square-cross-section" title="Permalink to this heading"></a></h2>
<h2>0. 3D elastic bar of square cross-section<a class="headerlink" href="#d-elastic-bar-of-square-cross-section" title="Permalink to this heading"></a></h2>
<p>3D (visco-)elastic waveguide example.
The cross-section is a 2D square with free boundary conditions on its boundaries.
Material: viscoelastic steel.
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</div>
</section>
<section id="d-elastic-bar-of-square-cross-section-with-parallelization">
<h2>3D elastic bar of square cross-section with parallelization<a class="headerlink" href="#d-elastic-bar-of-square-cross-section-with-parallelization" title="Permalink to this heading"></a></h2>
<h2>1. 3D elastic bar of square cross-section with parallelization<a class="headerlink" href="#d-elastic-bar-of-square-cross-section-with-parallelization" title="Permalink to this heading"></a></h2>
<p>3D (visco-)elastic waveguide example.
The cross-section is a 2D square with free boundary conditions on its 1D boundaries.
Material: viscoelastic steel.
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</div>
</section>
<section id="d-elastic-bar-of-square-cross-section-buried-into-a-pml-external-medium">
<h2>3D elastic bar of square cross-section buried into a PML external medium<a class="headerlink" href="#d-elastic-bar-of-square-cross-section-buried-into-a-pml-external-medium" title="Permalink to this heading"></a></h2>
<h2>2. 3D elastic bar of square cross-section buried into a PML external medium<a class="headerlink" href="#d-elastic-bar-of-square-cross-section-buried-into-a-pml-external-medium" title="Permalink to this heading"></a></h2>
<p>3D (visco-)elastic waveguide example.
The cross-section is a 2D square buried into a PML external elastic medium.
Material: viscoelastic steel into cement grout.
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</div>
</section>
<section id="d-elastic-bar-of-square-cross-section-buried-into-a-pml-external-medium-using-gmsh">
<h2>3D elastic bar of square cross-section buried into a PML external medium using gmsh<a class="headerlink" href="#d-elastic-bar-of-square-cross-section-buried-into-a-pml-external-medium-using-gmsh" title="Permalink to this heading"></a></h2>
<h2>3. 3D elastic bar of square cross-section buried into a PML external medium using gmsh<a class="headerlink" href="#d-elastic-bar-of-square-cross-section-buried-into-a-pml-external-medium-using-gmsh" title="Permalink to this heading"></a></h2>
<p>3D (visco-)elastic waveguide example.
The cross-section is a 2D square buried into a PML external elastic medium.
Material: viscoelastic steel into cement grout.
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</div>
</section>
<section id="excitation-of-a-3d-elastic-bar-of-circular-cross-section">
<h2>Excitation of a 3D elastic bar of circular cross-section<a class="headerlink" href="#excitation-of-a-3d-elastic-bar-of-circular-cross-section" title="Permalink to this heading"></a></h2>
<h2>4. Excitation of a 3D elastic bar of circular cross-section<a class="headerlink" href="#excitation-of-a-3d-elastic-bar-of-circular-cross-section" title="Permalink to this heading"></a></h2>
<p>3D elastic waveguide example.
The cross-section is a 2D circle with free boundary conditions on its 1D boundaries, material: elastic steel.
The eigenproblem is solved with the varying parameter as the frequency (eigenvalues are then wavenumbers).
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</div>
</section>
<section id="excitation-of-a-3d-elastic-bar-of-circular-cross-section-with-parallelization">
<h2>Excitation of a 3D elastic bar of circular cross-section with parallelization<a class="headerlink" href="#excitation-of-a-3d-elastic-bar-of-circular-cross-section-with-parallelization" title="Permalink to this heading"></a></h2>
<h2>5. Excitation of a 3D elastic bar of circular cross-section with parallelization<a class="headerlink" href="#excitation-of-a-3d-elastic-bar-of-circular-cross-section-with-parallelization" title="Permalink to this heading"></a></h2>
<p>3D elastic waveguide example.
The cross-section is a 2D circle with free boundary conditions on its 1D boundaries, material: elastic steel.
The eigenproblem is solved with the varying parameter as the frequency (eigenvalues are then wavenumbers).
Expand Down Expand Up @@ -1407,7 +1407,7 @@ <h2>Excitation of a 3D elastic bar of circular cross-section with parallelizatio
</div>
</section>
<section id="time-response-of-a-plate-excited-near-its-first-zgv-resonance">
<h2>Time response of a plate excited near its first ZGV resonance<a class="headerlink" href="#time-response-of-a-plate-excited-near-its-first-zgv-resonance" title="Permalink to this heading"></a></h2>
<h2>6. Time response of a plate excited near its first ZGV resonance<a class="headerlink" href="#time-response-of-a-plate-excited-near-its-first-zgv-resonance" title="Permalink to this heading"></a></h2>
<p>2D (visco-)elastic waveguide example (Lamb modes in a plate excited near 1st ZGV resonance).
The cross-section is a 1D line with free boundary conditions on its boundaries.
Material: viscoelastic steel.
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</div>
</section>
<section id="dispersion-curves-of-a-rail">
<h2>Dispersion curves of a rail<a class="headerlink" href="#dispersion-curves-of-a-rail" title="Permalink to this heading"></a></h2>
<h2>7. Dispersion curves of a rail<a class="headerlink" href="#dispersion-curves-of-a-rail" title="Permalink to this heading"></a></h2>
<p>3D elastic waveguide example.
The cross-section is a 2D rail profile (60E1, 60.21kg/m) with free boundary conditions on its 1D boundaries, material: elastic steel.
This eigenproblem is solved with the varying parameter as the frequency (eigenvalues are then wavenumbers).
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32 changes: 16 additions & 16 deletions docsrc/tutorials.rst
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=========


3D elastic bar of square cross-section
--------------------------------------
0. 3D elastic bar of square cross-section
-----------------------------------------

3D (visco-)elastic waveguide example.
The cross-section is a 2D square with free boundary conditions on its boundaries.
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.. literalinclude:: ../examples/Elastic_Waveguide_SquareBar3D.py


3D elastic bar of square cross-section with parallelization
-----------------------------------------------------------
1. 3D elastic bar of square cross-section with parallelization
--------------------------------------------------------------

3D (visco-)elastic waveguide example.
The cross-section is a 2D square with free boundary conditions on its 1D boundaries.
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.. literalinclude:: ../examples/Elastic_Waveguide_SquareBar3D_ParallelizedLoop.py


3D elastic bar of square cross-section buried into a PML external medium
------------------------------------------------------------------------
2. 3D elastic bar of square cross-section buried into a PML external medium
---------------------------------------------------------------------------

3D (visco-)elastic waveguide example.
The cross-section is a 2D square buried into a PML external elastic medium.
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.. literalinclude:: ../examples/Elastic_Waveguide_SquareBar3D_PML.py


3D elastic bar of square cross-section buried into a PML external medium using gmsh
-------------------------------------------------------------------------------------
3. 3D elastic bar of square cross-section buried into a PML external medium using gmsh
--------------------------------------------------------------------------------------

3D (visco-)elastic waveguide example.
The cross-section is a 2D square buried into a PML external elastic medium.
Expand All @@ -57,8 +57,8 @@ Results are to be compared with Fig. 8 of paper: Treyssede, Journal of Computati
.. literalinclude:: ../examples/Elastic_Waveguide_SquareBar3D_PML_Gmsh.py


Excitation of a 3D elastic bar of circular cross-section
--------------------------------------------------------
4. Excitation of a 3D elastic bar of circular cross-section
-----------------------------------------------------------

3D elastic waveguide example.
The cross-section is a 2D circle with free boundary conditions on its 1D boundaries, material: elastic steel.
Expand All @@ -69,8 +69,8 @@ Results are to be compared with Figs. 5, 6 and 7 of paper: Treyssede, Wave Motio
.. literalinclude:: ../examples/Elastic_Waveguide_CircularBar3D_ForcedResponse_Gmsh.py


Excitation of a 3D elastic bar of circular cross-section with parallelization
-----------------------------------------------------------------------------
5. Excitation of a 3D elastic bar of circular cross-section with parallelization
--------------------------------------------------------------------------------

3D elastic waveguide example.
The cross-section is a 2D circle with free boundary conditions on its 1D boundaries, material: elastic steel.
Expand All @@ -85,8 +85,8 @@ In this example:
.. literalinclude:: ../examples/Elastic_Waveguide_CircularBar3D_ForcedResponse_Gmsh_ParallelizedLoop.py


Time response of a plate excited near its first ZGV resonance
-------------------------------------------------------------
6. Time response of a plate excited near its first ZGV resonance
----------------------------------------------------------------

2D (visco-)elastic waveguide example (Lamb modes in a plate excited near 1st ZGV resonance).
The cross-section is a 1D line with free boundary conditions on its boundaries.
Expand All @@ -99,8 +99,8 @@ Note: the depth direction is x, the axis of propagation is z.
.. literalinclude:: ../examples/Elastic_Waveguide_Plate2D_TransientResponse.py


Dispersion curves of a rail
---------------------------
7. Dispersion curves of a rail
------------------------------

3D elastic waveguide example.
The cross-section is a 2D rail profile (60E1, 60.21kg/m) with free boundary conditions on its 1D boundaries, material: elastic steel.
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