Hassan M. Nagib

Affiliations: 
Mechanical and Aerospace Engineering Illinois Institute of Technology, Chicago, IL, United States 
Area:
Aerospace Engineering, Mechanical Engineering, Computer Science
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"Hassan Nagib"
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Publications

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Vinuesa R, Duncan RD, Nagib HM. (2016) Alternative interpretation of the Superpipe data and motivation for CICLoPE: The effect of a decreasing viscous length scale European Journal of Mechanics, B/Fluids. 58: 109-116
Vinuesa R, Prus C, Schlatter P, et al. (2016) Convergence of numerical simulations of turbulent wall-bounded flows and mean cross-flow structure of rectangular ducts Meccanica. 51: 3025-3042
Vinuesa R, Schlatter P, Nagib HM. (2016) Flow features in three-dimensional turbulent duct flows with different aspect ratios Springer Proceedings in Physics. 165: 123-126
Vinuesa R, Bartrons E, Chiu D, et al. (2016) On minimum aspect ratio for experimental duct flow facilities Ercoftac Series. 23: 201-211
Vinuesa R, Schlatter P, Nagib HM. (2015) On minimum aspect ratio for duct flow facilities and the role of side walls in generating secondary flows Journal of Turbulence. 16: 588-606
Vinuesa R, Hites MH, Wark CE, et al. (2015) Documentation of the role of large-scale structures in the bursting process in turbulent boundary layers Physics of Fluids. 27
Monkewitz PA, Nagib HM. (2015) Large-Reynolds-number asymptotics of the streamwise normal stress in zero-pressure-gradient turbulent boundary layers Journal of Fluid Mechanics. 783: 474-503
Vinuesa R, Nagib HM. (2015) Enhancing the accuracy of measurement techniques in high Reynolds number turbulent boundary layers for more representative comparison to their canonical representations European Journal of Mechanics, B/Fluids
Vinuesa R, Rozier PH, Schlatter P, et al. (2014) Experiments and computations of localized pressure gradients with different history effects Aiaa Journal. 52: 368-384
Vinuesa R, Noorani A, Lozano-Durán A, et al. (2014) Aspect ratio effects in turbulent duct flows studied through direct numerical simulation Journal of Turbulence. 15: 677-706
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