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Gap-flow patterns behind twin-cylinders at low Reynolds number
Shun Chang Yen* and Chien Ting Liu
The Journal of Mechanical Science and Technology, vol. 25, no. 11, pp.2795-2803, 2011
Abstract : The flow structures, drag coefficients (Cd) and vortex shedding characteristics around a single square cylinder and twin side-by-side
square cylinders were experimentally investigated with various Reynolds numbers (Re) and gap ratios (g*) in a vertical water tunnel. The
Reynolds number (Re) and gap ratio (g*) were 178 < Re < 892 and 0 ¡Â g* ¡Â 2.5, respectively. The flow patterns and vortex shedding
frequency were determined using the particle tracking flow visualization (PTFV). The flow structures, velocity properties, and drag coefficients
were calculated using the particle image velocimetry (PIV). The topological flow patterns of vortex evolution processes were
plotted and analyzed based on critical point theory. Furthermore, the flow structures behind twin side-by-side square cylinders were classified
into three modes — single vortex-street mode, gap-flow mode and couple vortex-streets mode. The maximum Cd occurred in the
single vortex-street mode, and the minimum Cd occurred in the gap-flow mode. The highest Strouhal number (St) occurred in the single
vortex-street mode, and the lowest St occurred in the gap-flow mode.
Keyword : Twin-cylinders; PTFV; PIV; Gap flow |
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