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Reynolds number influence on the formation of vortical structures on a pitching flat plate

机译:雷诺数对俯仰平板上旋涡结构形成的影响

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摘要

The impact of chord-based Reynolds number on the formation of leading-edge vortices (LEVs) on unsteady pitching flat plates is investigated. The influence of secondary flow structures on the shear layer feeding the LEV and the subsequent topological change at the leading edge as the result of viscous processes are demonstrated. Time-resolved velocity fields are measured using particle image velocimetry simultaneously in two fields of view to correlate local and global flow phenomena in order to identify unsteady boundary-layer separation and the subsequent flow structures. Finally, the Reynolds number is identified as a parameter that is responsible for the transition in mechanisms leading to LEV detachment from an aerofoil, as it determines the viscous response of the boundary layer in the vortex–wall interaction.
机译:研究了基于弦的雷诺数对非恒定俯仰平板上前沿涡旋(LEV)形成的影响。证明了次级流动结构对剪切层的影响,该剪切层供给了LEV以及由于粘性过程而导致的前缘随后的拓扑变化。在两个视场中同时使用粒子图像测速仪测量时间分辨的速度场,以关联局部和全局流动现象,以识别不稳定的边界层分离和后续的流动结构。最后,雷诺数被确定为导致LEV从机翼脱离的机理转变的参数,因为它确定了涡旋壁相互作用中边界层的粘性响应。

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