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Bryanston-Cross, P.J.1
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Particle image velocimetry of vane-rotor interaction in a turbine stage
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Particle image velocimetry measurements in a low-speed research turbine
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Particle image velocimetry characterization of a chordwise bending cascade flowfield
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Wake region measurements of a highly three-dimensional nozzle guide vane tested at DRA pyestock using particle image velocimetry
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Funes-Gallanzi, M., Bryanston-Cross, P. J., and Chana, K. S., 1994, "Wake Region Measurements of a Highly Three-Dimensional Nozzle Guide Vane Tested at DRA Pyestock using Particle Image Velocimetry," ASME Paper 94-GT-349.
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An inviscid blade-to-blade prediction of a wake-generated unsteady flow
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7
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Poensgen, C., and Gallus, H. E., 1990, "Three-Dimensional Wake Decay Inside of a Compressor Cascade and its Influence on the Downstream Unsteady Flow Field Part I: Wake Decay Characteristics in the Flow Passage," ASME Paper No. 90-GT-21.
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Two- color particle-imaging velocimetry in a turbine cascade
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Wake dispersion in turbomachines
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Smith, L. H., Jr., 1966, "Wake Dispersion in Turbomachines," ASME Journal of Basic Engineering, September, pp. 688-690.
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11
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Rotor blade-to-blade measurements using particle image velocimetry
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Control of the unsteady flow in a stator blade row interacting with upstream moving wakes
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13
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Wake recovery performance benefit in a high-speed axial compressor
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Van Zante, D. E., Adamczyk, J. J., Strazisar, A. J., and Okiishi, T. H., 1997, "Wake Recovery Performance Benefit in a High-Speed Axial Compressor," ASME Paper No. 97-GT-535.
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Van Zante, D.E.1
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