Difference between revisions of "Tips by Gerhard Holzinger"
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* '''contact''': gerhard.holzinger@k1-met.com | * '''contact''': gerhard.holzinger@k1-met.com | ||
* '''OpenFOAM version''': ??? | * '''OpenFOAM version''': ??? | ||
− | * '''Published under''': CC BY-NC-SA license ([https:// creativecommons.org/licenses creative commons licenses]) | + | * '''Published under''': CC BY-NC-SA license ([https://creativecommons.org/licenses creative commons licenses]) |
Go back to [https://wiki.openfoam.com/index.php?title=Day_5 Day 5]. | Go back to [https://wiki.openfoam.com/index.php?title=Day_5 Day 5]. | ||
− | =[https:// github.com/ParticulateFlow/OSCCAR-doc/blob/master/openFoamUserManual_PFM.pdf Tips]= | + | =[https://github.com/ParticulateFlow/OSCCAR-doc/blob/master/openFoamUserManual_PFM.pdf Tips]= |
− | In this [https:// github.com/ParticulateFlow/OSCCAR-doc/blob/master/openFoamUserManual_PFM.pdf pdf] you will find a wide collection of tips and tricks from a user's perspective as well as an excellent summary of the theory behind OpenFOAM. A brief summary of the topics covered are: | + | In this [https://github.com/ParticulateFlow/OSCCAR-doc/blob/master/openFoamUserManual_PFM.pdf pdf] you will find a wide collection of tips and tricks from a user's perspective as well as an excellent summary of the theory behind OpenFOAM. A brief summary of the topics covered are: |
* geometry and mesh creation | * geometry and mesh creation | ||
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* multiphase modeling (Eulerian and Lagrangian) | * multiphase modeling (Eulerian and Lagrangian) | ||
* solvers | * solvers | ||
− | * | + | * post processing |
* programming in OpenFOAM | * programming in OpenFOAM | ||
* and a lot more... | * and a lot more... |
Revision as of 09:45, 20 September 2016
- author: Gerhard Holzinger
- affiliation: K1-MET GmbH
- contact: gerhard.holzinger@k1-met.com
- OpenFOAM version: ???
- Published under: CC BY-NC-SA license (creative commons licenses)
Go back to Day 5.
Tips
In this pdf you will find a wide collection of tips and tricks from a user's perspective as well as an excellent summary of the theory behind OpenFOAM. A brief summary of the topics covered are:
- geometry and mesh creation
- case setup
- case control
- field initialization
- boundary conditions
- turbulence modeling
- multiphase modeling (Eulerian and Lagrangian)
- solvers
- post processing
- programming in OpenFOAM
- and a lot more...