Difference between revisions of "Action car case by Gavin Tabor"

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(Created page with "* '''author''': Gavin Tabor * '''affiliation''': * '''contact''': G.R.Tabor@exeter.ac.uk * '''OpenFOAM version''': 3.0.1 * '''Published under''': CC BY-NC-SA license ([https:...")
 
 
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* '''author''': Gavin Tabor
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[[category:turbulence]]
* '''affiliation''':  
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[[category:RAS]]
* '''contact''': G.R.Tabor@exeter.ac.uk
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[[category:DES]]
* '''OpenFOAM version''': 3.0.1
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* '''contributor''': Gavin Tabor
* '''Published under''': CC BY-NC-SA license ([https:// creativecommons.org/licenses creative commons licenses])
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* '''affiliation''': College of Engineering, Mathematics and Physical Sciences, University of Exeter
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* '''contact''': <mail address='G.R.Tabor@exeter.ac.uk' description='author'>click here for email address</mail>
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* '''OpenFOAM version''': 7.0
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* '''Published under''': CC BY-NC-SA license ([https://creativecommons.org/licenses creative commons licenses])
  
=The DrivAer case=
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Go back to [https://wiki.openfoam.com/Collection_by_authors#Gavin_Tabor Collection by Authors].
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=[https://github.com/jnmlujnmlu/OpenFOAMTeaching/blob/master/GavinTabor/tutorial10.pdf Tesla car]=
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[https://github.com/jnmlujnmlu/OpenFOAMTeaching/blob/master/GavinTabor/tutorial10.pdf This tutorial] shows you how to set up a case for the external flow around a car from scratch. You will see a compact step-by-step guideline to follow through with a real-life example. Here the focus is on:
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* meshing
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** blockMesh
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** snappyHexMesh
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** mesh quality
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*turbulence modelling
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* boundary conditions
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The case files can be downloaded [https://github.com/jnmlujnmlu/OpenFOAMTeaching/blob/master/GavinTabor/tutorial10.pdf here].

Latest revision as of 08:13, 16 December 2020

Go back to Collection by Authors.

Tesla car

This tutorial shows you how to set up a case for the external flow around a car from scratch. You will see a compact step-by-step guideline to follow through with a real-life example. Here the focus is on:

  • meshing
    • blockMesh
    • snappyHexMesh
    • mesh quality
  • turbulence modelling
  • boundary conditions

The case files can be downloaded here.