Abstract
A novel application of a spectral element method with a Fourier expansion in the third dimension is used to compute the flow past a cylinder with hemispherical ends. This cylinder is useful as it is a sphere at the small length ratio is increased. Measurements of the Strouhal frequency and mean drag are presented, and results of a grid independence study show that 128 Fourier planes were required to resolve the flow to an accuracy better than 1%. With 64 planes, forces were predicted by approximately 8%. The measured Strouhal frequencies provide useful benchmark data for future low Reynolds number studies of the flow past short cylinders. © Austral. Mathematical Soc. 2005.
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CITATION STYLE
Sheard, G. J., Thompson, M. C., & Hourigan, K. (2005). Computing the flow past a cylinder with hemispherical ends. ANZIAM Journal, 46, 1296. https://doi.org/10.21914/anziamj.v46i0.1021
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