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NASA NTRS · 19920023022

A numerical study of two-dimensional vortex shedding from rectangular cylinders

Abstract

An efficient time-marching, non-iterative calculation method is used to analyze time-dependent flows around rectangular cylinders. The turbulent flow in the wake region of a square section cylinder is analyzed using an anisotropic k-epsilon model. Initiation and subsequent development of the vortex shedding phenomenon is naturally captured once a perturbation is introduced in the flow. Transient calculations using standard eddy-viscosity and an anisotropic k-epsilon model averaged over an integral number of cycles to get the fluctuating energy (organized and turbulent) are compared with experimental data. It is shown that the anisotropic k-epsilon model resolves the anisotropy of the Reynolds stresses and gives mean energy distribution closer to the experiment than the standard k-epsilon model.

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Hadid, A. H., Sindir, Munir M., Issa, R. I.. 1992-07-01. A numerical study of two-dimensional vortex shedding from rectangular cylinders. https://ntrs.nasa.gov/citations/19920023022

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