2020
DOI: 10.1177/0954410020964690
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Influence of tip clearance and cavity depth on heat transfer in a cutback squealer tip

Abstract: Numerical simulations are conducted to present the aerothermal performance of a turbine blade tip with cutback squealer rim. Two different tip clearance heights (0.5%, 1.0% of the blade span) and three different cavity depths (2.0%, 3.0%, and 6.0% of the blade span) are investigated. The results show that a high heat transfer coefficient (HTC) strip on the cavity floor appears near the suction side. It extends with the increase of tip clearance height and moves towards the suction side with the increase of cav… Show more

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References 33 publications
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