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Visualization Study on Cross-Flow Around a Varicose Cylinder

机译:静脉曲张圆柱体横流的可视化研究

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The near wake of a varicose cylinder has been experimentally investigated using Laser Induced Fluorescence (LIF) and digital Particle Imaging Velocimetry (DPIV). The work aims to provide understanding to the mechanism of the cross flow around varicose cylinder as well as to comprehend why the introduction of relatively small degrees of spanwise waviness can have a significant effect on drag reduction and suppression of the cylinder vibration. The evolution of the flow patterns and the corresponding vortex interactions are obtained. The experimental results indicated that the wake width and the formation length vary along the span of the varicose cylinder. A wider wake and a longer formation length were observed in the saddle plane. In addition, an interpretation of the three-dimensional wake structures is postulated and conceptually shown. The numerical simulation by 3-D finite volume method is successful in predicting the flow features found by the experiments.
机译:使用激光诱导的荧光(LiF)和数字粒子成像速度(DPIV)通过实验研究了静脉曲张的近似尾。 该工作旨在向静脉曲张圆柱周围的交叉流动的机制提供理解,以及理解为什么引入相对小的枝条波纹的引入可以对汽缸振动的阻力和抑制具有显着影响。 获得了流动模式的演变和相应的涡流相互作用。 实验结果表明,唤醒宽度和形成长度沿静脉曲张的跨度变化。 在马鞍平面中观察到更广泛的唤醒和更长的形成长度。 此外,假设和概念性地显示了对三维唤醒结构的解释。 通过3-D有限体积方法的数值模拟成功预测实验发现的流量特征。

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