Difference between revisions of "BasicCaseStudies by Stefan Radl"

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[[category:basic tutorial]]
 
* '''contributor''': Stefan Radl
 
* '''contributor''': Stefan Radl
 
* '''affiliation''': Technische Universität Graz, Austria
 
* '''affiliation''': Technische Universität Graz, Austria
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* [http://nbviewer.jupyter.org/github/sfo-project/2D-flow-over-flat-plate-laminar/blob/master/Open_Foam/README.ipynb 2D flow over a flat plate (laminar)]. The OpenFOAM case setup can be found on the corresponding [https://github.com/sfo-project/2D-flow-over-flat-plate-laminar/tree/master/Open_Foam GitHub page].
 
* [http://nbviewer.jupyter.org/github/sfo-project/2D-flow-over-flat-plate-laminar/blob/master/Open_Foam/README.ipynb 2D flow over a flat plate (laminar)]. The OpenFOAM case setup can be found on the corresponding [https://github.com/sfo-project/2D-flow-over-flat-plate-laminar/tree/master/Open_Foam GitHub page].
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* [http://nbviewer.jupyter.org/github/sfo-project/2D-flow-over-rotating-cylinder-laminar/blob/master/Open_Foam/README.ipynb 2D flow over a rotating cylinder (laminar)]. The OpenFOAM case setup can be found on the corresponding [https://github.com/sfo-project/2D-flow-over-rotating-cylinder-laminar/tree/master/Open_Foam GitHub page].

Latest revision as of 05:55, 12 October 2017

Go back to Day 12.

These Jupyter notebook files below are part of the SFO Project. It will guide you throught the whole process of getting the simulation done.

2D Flow In a Backward Facing Step

The OpenFOAM case setup can be found on the corresponding GitHub page.

Flows In Pipes

Flow over Obstacles