Difference between revisions of "SnappyHexMesh – Single region by Bahram Haddadi and colleagues"
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* '''affiliation''': Institute of Chemical, Environmental and Bioscience Engineering, TU Wien, Austira | * '''affiliation''': Institute of Chemical, Environmental and Bioscience Engineering, TU Wien, Austira | ||
* '''contact''': <mail address='bahram.haddadi.sisakht@tuwien.ac.at' description='author'>click here for email address</mail> | * '''contact''': <mail address='bahram.haddadi.sisakht@tuwien.ac.at' description='author'>click here for email address</mail> | ||
− | * '''OpenFOAM version''': OpenFOAM | + | * '''OpenFOAM version''': OpenFOAM v10 |
* '''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]) | ||
* '''Editorial board''': Bahram Haddadi, Christian Jordan, Michael Harasek | * '''Editorial board''': Bahram Haddadi, Christian Jordan, Michael Harasek | ||
− | =[https://www. | + | =[https://www.fluiddynamics.at/downloads/openfoam-basic-training/_tutorials/Example_Twelve.pdf snappyHexMesh – Single region]= |
'''Explanation''': Mesh a flange geometry and simulate heat transfer in it using scalarTransportFoam. | '''Explanation''': Mesh a flange geometry and simulate heat transfer in it using scalarTransportFoam. | ||
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* Understanding the three basic steps of snappyHexMesh | * Understanding the three basic steps of snappyHexMesh | ||
− | Download pdf [https://www. | + | Download pdf [https://www.fluiddynamics.at/downloads/openfoam-basic-training/_tutorials/Example_Twelve.pdf here]. |
Picture: Bahram Haddadi, TU Wien | Picture: Bahram Haddadi, TU Wien |
Latest revision as of 13:21, 15 May 2023
- contributor: Philipp Schretter, Yitong Chen
- affiliation: Institute of Chemical, Environmental and Bioscience Engineering, TU Wien, Austira
- contact: click here for email address
- OpenFOAM version: OpenFOAM v10
- Published under: CC BY-NC-SA license (creative commons licenses)
- Editorial board: Bahram Haddadi, Christian Jordan, Michael Harasek
snappyHexMesh – Single region
Explanation: Mesh a flange geometry and simulate heat transfer in it using scalarTransportFoam.
Objectives:
- The aim of the tutorial is to give a basic introduction to single region meshing with the meshing tool snappyHexMesh
- Understanding the advantages of snappyHexMesh
- Understanding the three basic steps of snappyHexMesh
Download pdf here.
Picture: Bahram Haddadi, TU Wien