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Turbulence modeling

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# [[Turbulence]]  
# [[Turbulence]]  
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# [[Introduction to turbulence modeling]]
 
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## [[Turbulence intensity]]
 
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## [[Turbulent lenght-scale]]
 
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## [[Turbulence boundary conditions]]
 
# [[Zero equation models]]
# [[Zero equation models]]
##[[Cebeci-Smith model]]
##[[Cebeci-Smith model]]
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# [[Direct numerical simulation (DNS) ]]
# [[Direct numerical simulation (DNS) ]]
# [[Wall modeling]]
# [[Wall modeling]]
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# [[Turbulence boundary conditions]]
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## [[Turbulence intensity]]
 +
## [[Turbulent lenght-scale]]

Revision as of 15:37, 23 March 2006

  1. Turbulence
  2. Zero equation models
    1. Cebeci-Smith model
    2. Baldwin-Lomax model
  3. Half equation models
    1. Johnson-King model
  4. One equation models
    1. Prandtl's one-equation model
    2. Baldwin-Barth model
    3. Spalart-Allmaras model
  5. Two equation models
    1. k-epsilon models
      1. Standard k-epsilon model
      2. Realisable k-epsilon model
      3. RNG k-epsilon model
      4. Near wall treatment for k-epsilon models
    2. k-omega models
      1. Wilcox's k-omega model
      2. Wilcox's modified k-omega model
      3. SST k-omega model
      4. Near wall treatment for k-omega models
    3. Two equation turbulence model constraints and limiters
      1. Kato-Launder modification
  6. v2-f models
  7. Reynolds stress model (RSM)
  8. Large eddy simulation (LES)
    1. Smagorinsky-Lilly model
    2. Dynamic subgrid-scale model
    3. RNG-LES model
    4. Wall-adapting local eddy-viscosity (WALE) model
    5. Kinetic energy subgrid-scale model
    6. Near wall treatment for LES models
  9. Detached eddy simulation (DES)
  10. Direct numerical simulation (DNS)
  11. Wall modeling
  12. Turbulence boundary conditions
    1. Turbulence intensity
    2. Turbulent lenght-scale
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