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Flow structure and heat exchange analysis in internal cooling channel of gas turbine blade
Authors:Ryszard Szwaba  Piotr Kaczynski  Piotr Doerffer  Janusz Telega
Affiliation:Institute of Fluid-Flow Machinery, Polish Academy of Sciences(IMP PAN), Fiszera 14, 80-952 Gdansk, POLAND
Abstract:This paper presents the study of the flow structure and heat transfer, and also their correlations on the four walls of a radial cooling passage model of a gas turbine blade. The investigations focus on heat transfer and aerodynamic measurements in the channel, which is an accurate representation of the configuration used in aeroengines. Correlations for the heat transfer coefficient and the pressure drop used in the design of radial cooling passages are often developed from simplified models. It is important to note that real engine passages do not have perfect rectangular cross sections, but include corner fillet, ribs with fillet radii and special orientation. Therefore, this work provides detailed fluid flow and heat transfer data for a model of radial cooling geometry which possesses very realistic features.
Keywords:cooling  internal blade channels  heat exchange  transient liquid crystal method
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