Difference between revisions of "Numerics"

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(Created page with "Small introduction Go back to [https://wiki.openfoam.com/Collection_by_topic Collection by topic]. =Numerics= Links to tutorial pages =Further reading=")
 
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=Numerics=
 
=Numerics=
  
Links to tutorial pages
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* This [https://wiki.openfoam.com/Discretization_by_Jozsef_Nagy tutorial] gives insight into discretization and the influence of different schemes on the simulation results. The pdf version can be found [https://wiki.openfoam.com/Discretization_by_Bahram_Haddadi here].
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* In this [https://wiki.openfoam.com/Finite_Volume_Discretization_by_Hrvoje_Jasak tutorial] you will find strategies on how to improve your simulation results by optimizing the utilized discretization settings.
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* [https://wiki.openfoam.com/Numerical_schemes_by_Tobias_Holzmann Here] you will see the influence of the mesh type, hexaeder and tetraeder, the orientation of the mesh and the mesh density on the accuracy of the solution and if the scheme produces physical or also non-physical values.
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* [https://wiki.openfoam.com/Theory_by_Joel_Guerrero Crash In these sildes ] you will find an in depth summary of the theory of CFD and also OpenFOAM.
  
 
=Further reading=
 
=Further reading=

Revision as of 07:23, 31 March 2017

Small introduction

Go back to Collection by topic.

Numerics

  • This tutorial gives insight into discretization and the influence of different schemes on the simulation results. The pdf version can be found here.
  • In this tutorial you will find strategies on how to improve your simulation results by optimizing the utilized discretization settings.
  • Here you will see the influence of the mesh type, hexaeder and tetraeder, the orientation of the mesh and the mesh density on the accuracy of the solution and if the scheme produces physical or also non-physical values.
  • Crash In these sildes you will find an in depth summary of the theory of CFD and also OpenFOAM.

Further reading