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Another new process, the StokesFlow process, is mainly used for simulating the low-Reynolds-number [incompressible flow in fractures](https://www.opengeosys.org/docs/benchmarks/stokes-flow/parallel-plate-flow/). The Stokes equations are solved using the standard Taylor-Hood scheme. Additionally including the Darcy term in the momentum balance equations, the `StokesFlow` process module is capable of modeling the fluid flow in fractured porous media.
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Another new process, the StokesFlow process, is mainly used for simulating the low-Reynolds-number [incompressible flow in fractures](https://www.opengeosys.org/docs/benchmarks/stokes-flow/parallel-plate-flow/). The Stokes equations are solved using the standard Taylor-Hood scheme. Additionally including the Darcy term in the momentum balance equations, the `StokesFlow` process module is capable of modeling the fluid flow in fractured porous media.
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The local assembly on inclined elements, which can be used to simulate the fluid low in fracture, are implemented. As a first application, [LiquidFlow](https://gitlab.opengeosys.org/ogs/ogs/-/merge_requests/3632) is enabled to use such local assembly.
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Also work continued on new material models, e.g. the Günther Salzer model for transient and stationary rock salt creep, an improved HDF5-based output file handling which allows for [parallel postprocessing](https://gitlab.opengeosys.org/ogs/ogs/-/wikis/Working-with-HDF-data-(examples-h5py)) as well as the introduction of a first iteration of a [Jupyter Notebook based user workflow](https://www.opengeosys.org/docs/userguide/basics/jupyter-notebooks/). Stay tuned for more on interactive computing in future releases.
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Also work continued on new material models, e.g. the Günther Salzer model for transient and stationary rock salt creep, an improved HDF5-based output file handling which allows for [parallel postprocessing](https://gitlab.opengeosys.org/ogs/ogs/-/wikis/Working-with-HDF-data-(examples-h5py)) as well as the introduction of a first iteration of a [Jupyter Notebook based user workflow](https://www.opengeosys.org/docs/userguide/basics/jupyter-notebooks/). Stay tuned for more on interactive computing in future releases.
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# New processes
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# New processes
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