Metadata-Version: 2.1
Name: ogs5py
Version: 1.0.2
Summary: ogs5py: a python API for OpenGeoSys5
Home-page: https://github.com/GeoStat-Framework/ogs5py
Author: Sebastian Mueller, Falk Hesse
Author-email: info@geostat-framework.org
Maintainer: Sebastian Mueller
Maintainer-email: sebastian.mueller@ufz.de
License: MIT
Description: # Welcome to ogs5py
        
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        <p align="center">
        <img src="https://raw.githubusercontent.com/GeoStat-Framework/ogs5py/master/docs/source/pics/OGS.png" alt="ogs5py-LOGO" width="251px"/>
        </p>
        
        ## Purpose
        
        ogs5py is A python-API for the [OpenGeoSys 5][ogs5_link] scientific modeling package.
        
        
        ## Installation
        
        You can install the latest version with the following command:
        
            pip install ogs5py
        
        
        ## Documentation for ogs5py
        
        You can find the documentation under [geostat-framework.readthedocs.io][doc_link].
        
        
        ### Further Information
        
        - General homepage: https://www.opengeosys.org/ogs-5
        - OGS5 Repository: https://github.com/ufz/ogs5
        - Keyword documentation: https://ogs5-keywords.netlify.com
        - OGS5 Benchmarks: https://github.com/ufz/ogs5-benchmarks
        - ogs5py Benchmarks: https://github.com/GeoStat-Framework/ogs5py_benchmarks
        
        
        ### Tutorials and Examples
        
        In the following a simple transient pumping test is simulated on a radial symmetric mesh.
        The point output at the observation well is plotted afterwards.
        
        ```python
        from ogs5py import OGS
        from matplotlib import pyplot as plt
        
        model = OGS(task_root="pump_test", task_id="model")
        
        # generate a radial mesh
        model.msh.generate("radial", dim=2, rad=range(51))
        # generate a radial outer boundary
        model.gli.generate("radial", dim=2, rad_out=50.)
        model.gli.add_points([0., 0., 0.], "pwell")
        model.gli.add_points([1., 0., 0.], "owell")
        model.bc.add_block(  # boundary condition
            PCS_TYPE='GROUNDWATER_FLOW',
            PRIMARY_VARIABLE='HEAD',
            GEO_TYPE=['POLYLINE', "boundary"],
            DIS_TYPE=['CONSTANT', 0.0],
        )
        model.st.add_block(  # source term
            PCS_TYPE='GROUNDWATER_FLOW',
            PRIMARY_VARIABLE='HEAD',
            GEO_TYPE=['POINT', "pwell"],
            DIS_TYPE=['CONSTANT_NEUMANN', -1.0e-04],
        )
        model.ic.add_block(  # initial condition
            PCS_TYPE='GROUNDWATER_FLOW',
            PRIMARY_VARIABLE='HEAD',
            GEO_TYPE='DOMAIN',
            DIS_TYPE=['CONSTANT', 0.0],
        )
        model.mmp.add_block(  # medium properties
            GEOMETRY_DIMENSION=2,
            STORAGE=[1, 1.0e-04],
            PERMEABILITY_TENSOR=['ISOTROPIC', 1.0e-4],
        )
        model.num.add_block(  # numerical solver
            PCS_TYPE='GROUNDWATER_FLOW',
            LINEAR_SOLVER=[2, 5, 1.0e-14, 1000, 1.0, 100, 4],
        )
        model.out.add_block(  # point observation
            PCS_TYPE='GROUNDWATER_FLOW',
            NOD_VALUES='HEAD',
            GEO_TYPE=['POINT', "owell"],
            DAT_TYPE='TECPLOT',
            TIM_TYPE=['STEPS', 1],
        )
        model.pcs.add_block(  # set the process type
            PCS_TYPE='GROUNDWATER_FLOW', NUM_TYPE='NEW'
        )
        model.tim.add_block(  # set the timesteps
            PCS_TYPE='GROUNDWATER_FLOW',
            TIME_START=0,
            TIME_END=600,
            TIME_STEPS=[[10, 30], [5, 60]],
        )
        model.write_input()
        success = model.run_model()
        
        point = model.readtec_point(pcs='GROUNDWATER_FLOW')
        time = point['owell']["TIME"]
        head = point['owell']["HEAD"]
        
        plt.plot(time, head)
        plt.show()
        ```
        
        <p align="center">
        <img src="https://raw.githubusercontent.com/GeoStat-Framework/ogs5py/master/docs/source/pics/01_pump_test_drawdown.png" alt="Drawdown" width="600px"/>
        </p>
        
        
        ### OGS5 executable
        
        To obtain an OGS5 executable, ``ogs5py`` brings a download routine:
        
        ```python
        from ogs5py import download_ogs
        download_ogs()
        ```
        
        Then a executable is stored in the ogs5py config path and will be called
        when a model is run.
        
        You can pass a ``version`` statement to the ``download_ogs`` routine, to
        obtain a specific version (5.7, 5.7.1 (win only) and 5.8).
        Also "latest" and "stable" are possible.
        For OGS 5.7 there are executables for Windows/Linux and MacOS.
        For "5.8", "latest" and "stable" there are no MacOS pre-builds.
        Have a look at the documentation for all options.
        
        If you have compiled your own OGS5 version, you can add your executable
        to the ogs5py config path with:
        
        ```python
        from ogs5py import add_exe
        add_exe("path/to/your/ogs/exe")
        ```
        
        Otherwise you need to specify the path to the executable within the run command:
        
        ```python
        model.run_model(ogs_exe="path/to/ogs")
        ```
        
        
        ## Requirements:
        
        - [NumPy >= 1.13.0](https://www.numpy.org)
        - [Pandas >= 0.23.0](https://pandas.pydata.org/)
        - [whichcraft](https://github.com/pydanny/whichcraft)
        - [meshio](https://github.com/nschloe/meshio)
        - [lxml](https://github.com/lxml/lxml)
        - [vtk](https://vtk.org/)
        - [pexpect](https://github.com/pexpect/pexpect)
        
        ## Contact
        
        You can contact us via <info@geostat-framework.org>.
        
        
        ## License
        
        [MIT][gpl_link] © 2018-2019 (inspired by Falk Hesse and Miao Jing)
        
        This project is based on [OGSPY][ogspy_link].
        
        [ogspy_link]: https://github.com/fhesze/OGSPY
        [gpl_link]: https://github.com/GeoStat-Framework/ogs5py/blob/master/LICENSE
        [ogs5_link]: https://www.opengeosys.org/ogs-5/
        [doc_link]: https://geostat-framework.readthedocs.io/projects/ogs5py/en/latest/
        
Platform: Windows
Platform: Linux
Platform: Solaris
Platform: Mac OS-X
Platform: Unix
Classifier: Development Status :: 5 - Production/Stable
Classifier: Intended Audience :: Developers
Classifier: Intended Audience :: End Users/Desktop
Classifier: Intended Audience :: Science/Research
Classifier: License :: OSI Approved :: MIT License
Classifier: Natural Language :: English
Classifier: Operating System :: MacOS
Classifier: Operating System :: MacOS :: MacOS X
Classifier: Operating System :: Microsoft
Classifier: Operating System :: Microsoft :: Windows
Classifier: Operating System :: POSIX
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Classifier: Programming Language :: Python
Classifier: Programming Language :: Python :: 2
Classifier: Programming Language :: Python :: 3
Classifier: Topic :: Scientific/Engineering
Classifier: Topic :: Software Development
Classifier: Topic :: Utilities
Description-Content-Type: text/markdown
Provides-Extra: all
Provides-Extra: gmsh
Provides-Extra: show
