Convective heat transfer predictions in an axisymmetric jet impinging onto a flat plate using an improved \(k\)-\(\omega \) model (Q984973)
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scientific article; zbMATH DE number 5758098
| Language | Label | Description | Also known as |
|---|---|---|---|
| English | Convective heat transfer predictions in an axisymmetric jet impinging onto a flat plate using an improved \(k\)-\(\omega \) model |
scientific article; zbMATH DE number 5758098 |
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Convective heat transfer predictions in an axisymmetric jet impinging onto a flat plate using an improved \(k\)-\(\omega \) model (English)
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20 July 2010
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The paper discusses the convective heat transfer prediction in turbulent jet flows. Improved stagnation point heat transfer predictions are obtained for the simulation of the axisymmetric jets impinging onto a flat plate, by using a modified k-\(\omega\) model based on an impingement detector and on a length scale correction. Verification of the added modifications has been demonstrated for free shear flow and the flow over a backward facing step. The analysis showed that only the impingement detector based on the invariant of Manceau can be considered as a more general formulation in order to improve heat transfer predictions in stagnation flow regions, so this modification is recommended. As an alternative, a modification based on the von Karman length scale is also discussed. Since results of reference turbulence flows are changed, it is not recommended.
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turbulence modelling
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impinging jet
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convective heat transfer
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k-\(\omega\) model
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