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Vortex shedding characteristics of flow past two different diameters cylinders in tandem arrangement at low Reynolds number

机译:涡流流动的流动过去两种不同直径圆柱体在低雷诺数的串联排列中

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Flow vortex shedding from two circular cylinders of different diameters in tandem arrangement is investigated by means of numerical simulations. The two-dimensional Navier-Stokes equations are solved by a fractional step upstream finite element method at a relatively low Reynolds number Re = 100. The studied Reynolds number based on the diameter of the downstream main cylinder. The diameter of the downstream main cylinder was kept constant, and the diameter ratio between the upstream control cylinder and the downstream one was varied from 0.1 to 1.0. The gap between the control cylinder and the main cylinder ranged from 0.1 to 4.0 times the diameter of the main cylinder. It is concluded that the gap ratio and the diameter ratio between the two cylinders have important effects on vortex shedding characteristics from two cylinders of different diameters in a tandem arrangement.
机译:通过数值模拟研究了串联布置中的两个不同直径的两个圆柱体的流动涡流。二维Navier-Stokes方程通过在相对低的雷诺数Re = 100处通过分数步骤上游有限元方法来解决。基于下游主缸的直径的研究雷诺数。下游主缸的直径保持恒定,上游控制缸和下游之间的直径比在0.1至1.0之间变化。控制圆筒和主缸之间的间隙范围为主缸直径的0.1至4.0倍。结论是,两个气缸之间的间隙比和直径比对串联布置中不同直径的两个汽缸的涡旋脱落特性具有重要影响。

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