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README.rst
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README.rst
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anisotropy
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==========
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.. figure:: docs/source/static/simple.png
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:scale: 50%
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:align: center
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:alt:
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.. figure:: static/simple.png
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:scale: 50%
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:align: center
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:alt:
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anisotropy is a ``Python`` package that is the result of science-research work
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on the anisotropy of permeability in the periodic porous media.
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A project uses own wrappers around external applications
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for constructing a shapes and meshes (``Salome``) and computing a flow (``OpenFOAM``).
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.. figure:: docs/source/static/simple.png
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:align: center
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:alt:
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.. figure:: static/simple.png
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:align: center
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:alt:
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.. contents:: Table of contents
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Dependencies
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------------
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@ -33,7 +34,7 @@ Installation
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.. toctree::
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:maxdepth: 2
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INSTALL
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Installation guide <INSTALL.rst>
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Getting Started
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---------------
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@ -74,7 +75,7 @@ Example:
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.. attention::
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* You can't compute a flow without mesh (if you didn't it before succesfully).
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* ``type``, ``direction`` and ``theta`` is control parameters. If you aren't specifying it than default range of values will be used from ``anisotropy.toml``.
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* ``type``, ``direction`` and ``theta`` are control parameters. If you aren't specifying it than default range of values will be used from ``anisotropy.toml``.
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Post-processing
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~~~~~~~~~~~~~~~
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@ -1,22 +1,23 @@
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anisotropy
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==========
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.. figure:: docs/source/static/simple.png
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:scale: 50%
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:align: center
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:alt:
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.. figure:: static/simple.png
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:scale: 50%
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:align: center
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:alt:
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anisotropy is a ``Python`` package that is the result of science-research work
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on the anisotropy of permeability in the periodic porous media.
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A project uses own wrappers around external applications
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for constructing a shapes and meshes (``Salome``) and computing a flow (``OpenFOAM``).
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.. figure:: docs/source/static/simple.png
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:align: center
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:alt:
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.. figure:: static/simple.png
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:align: center
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:alt:
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.. contents:: Table of contents
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Dependencies
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------------
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@ -33,7 +34,7 @@ Installation
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.. toctree::
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:maxdepth: 2
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INSTALL
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Installation guide <INSTALL.rst>
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Getting Started
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---------------
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@ -74,7 +75,7 @@ Example:
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.. attention::
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* You can't compute a flow without mesh (if you didn't it before succesfully).
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* ``type``, ``direction`` and ``theta`` is control parameters. If you aren't specifying it than default range of values will be used from ``anisotropy.toml``.
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* ``type``, ``direction`` and ``theta`` are control parameters. If you aren't specifying it than default range of values will be used from ``anisotropy.toml``.
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Post-processing
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~~~~~~~~~~~~~~~
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