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Transition to turbulence in the rotating disk boundary layer of a rotor–stator cavity
2018
Journal of Fluid Mechanics
The transition to turbulence in the rotating disk boundary layer is investigated in a closed cylindrical rotor–stator cavity via direct numerical simulation (DNS) and linear stability analysis (LSA). The mean flow in the rotor boundary layer is qualitatively similar to the von Kármán self-similarity solution. The mean velocity profiles, however, slightly depart from theory as the rotor edge is approached. Shear and centrifugal effects lead to a locally more unstable mean flow than the
doi:10.1017/jfm.2018.239
fatcat:bxjra6iccvhcbf4ikt2abok5um