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Experimental and numerical studieson the three-dimensional flow around singleand two tandem circular cylinders in a duct

PHYSICS OF FLUIDS(2022)

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摘要
Experimental and numerical investigations are conducted in order to understand the flow around identical tandem circular cylinders confined in a duct (blockage ratiob=0.1 and aspect ratioa=5). In this work, the Reynolds number Reranges from 40 to 200 and the spacing ratio (distance between two centers of tandem circular cylinders to diameter,L/d) from 0 to 8. When fluid flows around a single cylinder placed symmetrically in the duct (L/d=0), it is found that the Strouhal numbers St and mean drag coefficients (C) over bar(d) increase with the increase in Re, although the separation angle hs decreases. For the flows around two tandem circular cylinders, the research is focused on examining the coupling effect of Re and L/do n St, flow structures, h(s), (C) over bar(d) and reverse region length Lr. Based on numerical results, the mathematical descriptions are established, (C) over bar(d) Re-1 h(s) Re-1/2, and St similar to Re-1. The dependence of flow structures, drag forces,h(s) and Lr, on L/dis described in detail with the help of approaching velocity profiles, pressure coefficient C-p, and vorticity omega*(z) distribution on a cylinder's surface. Through numerical simulations, the detailed mechanisms about influences of these factors on the flow properties are revealed. The experimental results evidence the occurrence of three flow modes, i.e., no vortex shedding mode, single body mode, and reattachment mode, which are determined practically by the Reynolds number and space ratio. Both the measured St based on the dominate frequencies of vortex shedding and the visual flow field match well with numerical simulations.Published under an exclusive license by AIP Publishing.
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关键词
circular cylinders,numerical studies,three-dimensional
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