The accuracy of modern eddy-viscosity type turbulence models in predicting turbulent flows and heat transfer in complex passages is investigated. The particular geometries of interest here are those related to turbine blade cooling systems. This paper presents numerical data from the calculation of
Periodically developed flow and heat transfer in a ribbed duct
โ Scribed by S. Acharya; S. Dutta; T.A. Myrum; R.S. Baker
- Publisher
- Elsevier Science
- Year
- 1993
- Tongue
- English
- Weight
- 927 KB
- Volume
- 36
- Category
- Article
- ISSN
- 0017-9310
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โฆ Synopsis
Periodic
fully developed flow and heat transfer results for a ribbed duct were obtained experimentally and numerically, using the nonlinear and standard k-c turbulence models. Predicted recirculation lengths and maximum Nusselt number locations agreed well with the measured values. Both models performed poorly in the separated region just behind the ribs, where the Reynolds stresses were grossly underpredicted, the flow temperatures were overpredicted, and the mean velocity magnitudes were generally underpredicted. The local Nusselt numbers were underpredicted by both models. The nonlinear model predicted more realistic Reynolds stresses in the core flow region immediately above the ribs than the standard k--E model.
๐ SIMILAR VOLUMES
The local heat transfer and pressure drop characteristics of developing turbulent ยฏows of air in three stationary ribbed square ducts have been investigated experimentally. These are: ribbed square duct with constant cross-section (straight duct), ribbed divergent square duct and ribbed convergent s