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  • 1
    Publication Date: 2019-07-13
    Description: A computational study has been performed to predict the distribution of convective heat transfer coefficient on a simulated blade tip with cooling holes. The purpose of the examination was to assess the ability of a three-dimensional Reynolds-averaged Navier-Stokes solver to predict the rate of tip heat transfer and the distribution of cooling effectiveness. To this end, the simulation of tip clearance flow with blowing of Kim and Metzger was used. The agreement of the computed effectiveness with the data was quite good. The agreement with the heat transfer coefficient was not as good but improved away from the cooling holes. Numerical flow visualization showed that the uniformity of wetting of the surface by the film cooling jet is helped by the reverse flow due to edge separation of the main flow.
    Keywords: Fluid Mechanics and Heat Transfer
    Type: NASA/CR-1999-209165 , NAS 1.26:209165 , E-11756 , Air Breathing Engines; Sep 05, 1999 - Sep 10, 1999; Florence; Italy
    Format: application/pdf
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