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- W1968204037 abstract "As Navier-Stokes computations are carried out for high-angle-of-attack flows, the various numerical and physical factors affecting the accuracy of the flow predictions must be determined. In an effort to further this understanding, numerical predictions of the complex three-dimensional separated flow about bodies of revolution in supersonic and subsonic flows have been performed. Predictions have been made for the supersonic flow over a secant ogive cylinder at relatively low angles of attack using a thin-layer Navier-Stokes code, showing good agreement with experimental pressure measurements as well as boundary-layer velocity profiles. The predictions are also compared with parabolized Navier-Stokes computations from a previous work. Subsonic predictions at high angles of attack were made for a tangent ogive cylinder and were found to be in good agreement with available experimental data. The accuracy of the predictions are shown to depend on using grids that are sufficiently fine to resolve the details of both the viscous boundary layer and the off-surface separated flow structures and, for turbulent flow cases, the use of a turbulence model that accounts for the leeward vortical flow structures. An example of high-incidence flow computed about a more complex geometry, the F-18 fighter fuselage forebody and leading-edge extension, is also presented." @default.
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- W1968204037 date "1991-11-01" @default.
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- W1968204037 title "Computation of three-dimensional turbulent vortical flows on bodies at high incidence" @default.
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- W1968204037 doi "https://doi.org/10.2514/3.46084" @default.
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