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Square-cylinder flow patterns modulated using an upstream control rod

机译:使用上游控制杆调制的方筒流型

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This investigation examines the flow patterns, vortex-shedding frequency and aerodynamic performance of a combination of an upstream control rod and a square cylinder. The flow behaviors were tested using various Reynolds numbers, rotation angles and spacing ratios. The smoke-wire scheme was utilized to visualize the flow structures. Particle image velocimetry (PIV) was applied to analyze the global velocity fields and streamline patterns. A hot-wire anemometer was used to probe the vortex-shedding frequency behind the control rod and the square cylinder. Moreover, a linear pressure scanner was employed to measure the surface pressure on the square cylinder. Accordingly, the aerodynamic parameters were determined using the surface-pressure profiles. Three characteristic flow modes — single, attached and bi-vortex-street — were categorized by varying the Reynolds number and space ratio. In the attached mode, the upstream control rod dominated the flow behaviors. Furthermore, in the attached mode, the experimental data indicate that the drag was 57% lower than that without the upstream control rod.
机译:该研究检查了上游控制杆和方圆柱组合的流动模式,涡旋脱落频率和空气动力学性能。使用各种雷诺数,旋转角度和间距比测试流动。烟丝方案用于可视化流动结构。粒子图像速度(PIV)被应用于分析全局速度场和流线图案。热线风速器用于探测控制杆和方形圆筒后面的涡流脱落频率。此外,采用线性压力扫描仪测量方形圆筒上的表面压力。因此,使用表面压力分布测定空气动力学参数。三种特征流动模式 - 单,附加和双涡流街 - 通过改变雷诺数和空间比进行分类。在附加模式中,上游控制杆主导了流动行为。此外,在附加的模式中,实验数据表明,在没有上游控制杆的情况下,阻力比其中低57%。

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