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PROPERTIES OF THE FLOW AROUND TWO ROTATING CIRCULAR CYLINDERS IN SIDE-BY-SIDE ARRANGEMENT WITH DIFFERENT ROTATION TYPES

机译:不同旋转类型的并排布置中两个旋转圆柱的绕流特性

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摘要

The field characteristics of two side-by-side rotating circular cylinders in a cross-flow is investigated under different rotation types, at T/D = 1.11,1.6, and 3, respectively (T is the center spacing between the cylinders, and D is the cylinder diameter). A similar flow pattern which is the most efficient to narrow the lowpressure area is identified for rotation type A, independent of T/D ratio, and two typical flow patterns are found under different spacings for rotation type B and type C, respectively. It is confirmed that there is an optimal rotational speed of 1.7-2, under rotation type A to attenuate the vortices, velocity drop, and turbulence intensity tremendously. As rotational speed increases to the optimal value, both the velocity drop and turbulence intensity decrease and their distributions are smooth. The results indicate that the shear layers which are accelerated following the free-stream direction would have significant influence on the flow modification, and different rotation types actually arrange these shear layers in diverse ways to change the flow pattern. Pitch ratio is capable to transform the gap flow, which is usually including the shear layers referred, thus this parameter can modify the wake of the two cylinders at different rotation types.
机译:研究了在不同旋转类型下两个并排旋转圆柱体在T / D = 1.11,1.6和3时的场特性(T是圆柱体之间的中心间距,D是D是圆柱直径)。对于旋转类型A,已确定了一种最有效的缩小低压区域的相似流型,而与T / D比率无关,并且对于旋转类型B和类型C,分别在不同的间距下发现了两种典型的流型。可以确定的是,在旋转类型A下,最佳旋转速度为1.7-2,可以极大地减弱涡旋,速度下降和湍流强度。随着转速增加到最佳值,速度下降和湍流强度都减小,并且它们的分布是平滑的。结果表明,沿自由流方向加速的剪切层将对流动变化产生重大影响,并且不同的旋转类型实际上以各种方式排列这些剪切层以改变流型。螺距比能够转换间隙流,该间隙流通常包括所涉及的剪切层,因此此参数可以在不同旋转类型下修改两个圆柱的尾流。

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