Effect of Reynolds Number, Turbulence Level and Periodic Wake Flow on Heat Transfer on Low Pressure Turbine Blades

: The development of effective cooling methods is of major importance for the design of new gas turbines blades. The conception of optimal cooling schemes requires a detailed knowledge of the heat transfer processes on the blade's surfaces. The thermal load of turbine blades is predominantly de...

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Veröffentlicht in:Annals of the New York Academy of Sciences 2001-05, Vol.934 (1), p.249-256
Hauptverfasser: SUSLOV, DMITRY, SCHULZ, ACHMED, WITTIG, SIGMAR
Format: Artikel
Sprache:eng
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Zusammenfassung:: The development of effective cooling methods is of major importance for the design of new gas turbines blades. The conception of optimal cooling schemes requires a detailed knowledge of the heat transfer processes on the blade's surfaces. The thermal load of turbine blades is predominantly determined by convective heat transfer which is described by the local heat transfer coefficient. Heat transfer is closely related to the boundary layer development along the blade surface and hence depends on various flow conditions and geometrical parameters. Particularly Reynolds number, pressures gradient and turbulence level have great impact on the boundary layer development and the according heat transfer. Therefore, in the present study, the influence of Reynolds number, turbulence intensity, and periodic unsteady inflow on the local heat transfer of a typical low pressure turbine airfoil is experimentally examined in a plane cascade.
ISSN:0077-8923
1749-6632
DOI:10.1111/j.1749-6632.2001.tb05857.x