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- W3023865403 abstract "The experiment using three-dimensional laser Doppler velocimetery (LDV) measurements and the computation using the Reynolds stress model of the commercial code, FLUENT, were conducted to give a clear understanding on the structure of tip leakage flow in a forward-swept axial-flow fan operating at the maximum efficiency condition. The tip leakage vortex was generated near the position of the minimum wall static pressure, which was located at approximately 12% chord downstream from the leading edge of blade suction side, and developed along the centerline of the pressure trough within the blade passages. A reverse flow between the blade tip region and the casing, induced by tip leakage vortex, acted as a blockage on the through-flow. As a result, high momentum flux was observed below the tip leakage vortex. As the tip leakage vortex proceeded to the aft part of the blade passage, the strength of tip leakage vortex decreased due to the strong interaction with the through-flow and casing boundary layer, and the diffusion of tip leakage vortex caused by high turbulence. In comparison with LDV measurement data, the computed results predicted the complex viscous flow patterns inside the tip region, including the locus of tip leakage vortex center, in a reliable level.br/" @default.
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- W3023865403 date "2003-07-01" @default.
- W3023865403 modified "2023-09-27" @default.
- W3023865403 title "Structure of Tip Leakage Flow in a Forward-Swept Axial-Flow Fan" @default.
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- W3023865403 doi "https://doi.org/10.3795/ksme-b.2003.27.7.883" @default.
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