Difference between revisions of "Theory of compressible"

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* '''affiliation''': Universita degli Studi di Genova, Wolf Dynamics
 
* '''affiliation''': Universita degli Studi di Genova, Wolf Dynamics
 
* '''contact''': <mail address='joel.guerrero@unige.it' description='author'>click here for email address</mail>
 
* '''contact''': <mail address='joel.guerrero@unige.it' description='author'>click here for email address</mail>
* '''OpenFOAM version''': 6
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* '''OpenFOAM version''': 7
 
* '''published under''': CC BY-SA license ([https://creativecommons.org/licenses creative commons licenses])
 
* '''published under''': CC BY-SA license ([https://creativecommons.org/licenses creative commons licenses])
  
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=[http://www.wolfdynamics.com/wiki/advanced_compressible1.pdf Compressible flows modeling]=
 
=[http://www.wolfdynamics.com/wiki/advanced_compressible1.pdf Compressible flows modeling]=
  
[[File:Joegi_comp1.png|450px|right|Compressible flows applications]]
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[[File:Joegi_comp1.png|600px|right|Compressible flows applications]]
  
 
In these [http://www.wolfdynamics.com/wiki/advanced_compressible1.pdf slides], you will find a general introduction to compressible flows. You will learn about,
 
In these [http://www.wolfdynamics.com/wiki/advanced_compressible1.pdf slides], you will find a general introduction to compressible flows. You will learn about,

Latest revision as of 10:01, 6 January 2020

Go back to Day 9.

Compressible flows modeling

Compressible flows applications

In these slides, you will find a general introduction to compressible flows. You will learn about,

  • Overview of compressible flows
  • Governing equations
  • Viscous and thermal boundary layer
  • Compressible solvers in OpenFOAM
  • How to select thermophysical properties
  • How to select transport properties for solvers using the Boussinesq approaximation
  • Guidelines and tips


Go back to the contributions page.