Difference between revisions of "T-junction by Bahram Haddadi and colleagues"
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− | * '''author''': Bahram Haddadi | + | * '''author''': Bahram Haddadi and Christian Jordan |
* '''affiliation''': Forschungsgruppe Thermische Verfahrenstechnik & Fluiddynamische Simulation am Institut für Verfahrenstechnik der Technischen Universität Wien, Austria | * '''affiliation''': Forschungsgruppe Thermische Verfahrenstechnik & Fluiddynamische Simulation am Institut für Verfahrenstechnik der Technischen Universität Wien, Austria | ||
* '''contact''': bahram.haddadi.sisakht@tuwien.ac.at | * '''contact''': bahram.haddadi.sisakht@tuwien.ac.at |
Revision as of 13:52, 19 September 2016
- author: Bahram Haddadi and Christian Jordan
- affiliation: Forschungsgruppe Thermische Verfahrenstechnik & Fluiddynamische Simulation am Institut für Verfahrenstechnik der Technischen Universität Wien, Austria
- contact: bahram.haddadi.sisakht@tuwien.ac.at
- OpenFOAM version: 2.3.0
- Published under: CC BY-NC-SA license ([https:// creativecommons.org/licenses creative commons licenses])
Go back to Day 2.
[http:// cfd.at/downloads/2014_OFoam_Tut_Complete.pdf T-Junction]
On page 58 in this [http:// cfd.at/downloads/2014_OFoam_Tut_Complete.pdf pdf] you will find a simple simulation, where you can utilize your gained knowledge so far. You will learn about
- understanding RTD calculation using OpenFOAM
- using multiple solver for a simulation
- postprocessing by plotting the step response function and the RTD curve