Discrete vortex simulation of the separated flow around a rotating circular cylinder at high Reynolds number (Q5917621)

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scientific article; zbMATH DE number 760220
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Discrete vortex simulation of the separated flow around a rotating circular cylinder at high Reynolds number
scientific article; zbMATH DE number 760220

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    Discrete vortex simulation of the separated flow around a rotating circular cylinder at high Reynolds number (English)
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    1 June 1995
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    The separated flow around a rotating circular cylinder is investigated by the discrete vortex method combined with the boundary layer theory. The Keller box method is used to solve the laminar boundary layer in order to determine the separation points on the upper and the lower sides of the rotating circular cylinder. The nascent vortices are then introduced near the separation points. A discrete circular vortex blob model, which has uniform vorticity distribution, is adopted to simulate the unsteady wake. Numerical experiments are conducted, and the velocity and the pressure distribution on the cylinder surface are found to agree well with the published experimental data.
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    velocity and pressure distribution
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    Keller box method
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    laminar boundary layer
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    separation points
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    discrete circular vortex blob model
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    unsteady wake
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