Difference between revisions of "UFR 4-18 References"

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<ref name=Ames1> F.E. Ames, L.A. Dvorak and M.J. Morrow. Turbulent Augmentation of Internal Convection Over Pins in Staggered Pin-Fin Arrays. ASME J. of Turbomachinery, Vol. 127, pp 183-190, 2005. </ref>
 
<ref name=Ames1> F.E. Ames, L.A. Dvorak and M.J. Morrow. Turbulent Augmentation of Internal Convection Over Pins in Staggered Pin-Fin Arrays. ASME J. of Turbomachinery, Vol. 127, pp 183-190, 2005. </ref>
  
 
<ref name=Ames2> F.E. Ames and L.A. Dvorak. Turbulent Transport in Pin-Fin Arrays: Experimental Data and Predictions. ASME J. of Turbomachinery, Vol. 128, pp 71-81, 2006. </ref>
 
<ref name=Ames2> F.E. Ames and L.A. Dvorak. Turbulent Transport in Pin-Fin Arrays: Experimental Data and Predictions. ASME J. of Turbomachinery, Vol. 128, pp 71-81, 2006. </ref>
  
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Revision as of 21:05, 19 January 2014

Flow and heat transfer in a pin-fin array

Front Page

Description

Test Case Studies

Evaluation

Best Practice Advice

References

Confined Flows

Underlying Flow Regime 4-18

References

List references describing in detail the relevant measurements, turbulence models, numerical methods, CFD results etc.

  • Reference 1
  • Reference 2 ...


[1]

[2]





Contributed by: Sofiane Benhamadouche — EDF

Front Page

Description

Test Case Studies

Evaluation

Best Practice Advice

References


© copyright ERCOFTAC 2021

  1. F.E. Ames, L.A. Dvorak and M.J. Morrow. Turbulent Augmentation of Internal Convection Over Pins in Staggered Pin-Fin Arrays. ASME J. of Turbomachinery, Vol. 127, pp 183-190, 2005.
  2. F.E. Ames and L.A. Dvorak. Turbulent Transport in Pin-Fin Arrays: Experimental Data and Predictions. ASME J. of Turbomachinery, Vol. 128, pp 71-81, 2006.