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Flow in out-of-plane double S-bendsAn experimental investigation of developing flows through a combination of out-of-plane S-bend ducts was conducted to gain insight into the redirection of flow in geometries similar to those encountered in practical aircraft wing-root intake ducts. The present double S-bend was fabricated by placing previously investigated S-ducts and S-diffusers in series and with perpendicular planes of symmetry. Laser-Doppler anemometry was employed to measure the three components of mean velocity, the corresponding rms quantities, and Reynolds stresses in the rectangular cross-section ducts. Due to limited optical access, only two mean and rms velocity components were resolved in the circular cross-section ducts. The velocity measurements were complemented by wall static pressure measurements. The data indicates that the flows at the exit are complex and asymmetric. Secondary flows generated by the pressure field in the first S-duct are complemented or counteracted by the secondary flows produced by the area expansion and the curvature of the S-diffuser. The results indicate the dominance of the inlet conditions and geometry upon the development of secondary flows and demonstrate that the flows are predominantly pressure-controlled. The pressure distribution caused by the duct geometry determines the direction and magnitude of the bulk flow while the turbulence dictates the mixing characteristics and profiles in the near wall region.
Document ID
19880051784
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Schmidt, M. C.
(Imperial Coll. of Science and Technology London, United Kingdom)
Whitelaw, J. H.
(Imperial College of Science and Technology London, United Kingdom)
Yianneskis, M.
(King's College London, United Kingdom)
Date Acquired
August 13, 2013
Publication Date
January 1, 1987
Subject Category
Aerodynamics
Accession Number
88A39011
Funding Number(s)
CONTRACT_GRANT: NAGW-747
Distribution Limits
Public
Copyright
Other

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