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Controlled generation of periodic vortical gusts by the rotational oscillation of a circular cylinder and attached plate

机译:通过圆筒和附着板的旋转振荡来控制一代周期涡旋阵风

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摘要

Understanding the interaction of vortical gusts and unsteady wing kinematics is crucial to the operation of small aircraft in urban or turbulent environments. Studies investigating this interaction require adequate control of a vortical gust generator to consistently produce the desired vortical gusts for study. Previous studies have focused on the pitching or heaving of airfoils to generate vortical gusts. The current study focuses on the characterization of the vortex shedding process for a rotationally oscillating circular cylinder with an attached one-diameter long plate. When this vortical gust generator is actuated in relatively small sinusoidal motions, von Karman vortices can be generated in a controllable and repeatable fashion over a large range of oscillation frequencies that are significantly different than the natural shedding frequency of the static cylinder, and without the generation of any additional unwanted vorticity. Fine tuning of the actuation parameters allows for the control of the vortex strength, frequency, and transverse location.Graphic abstract
机译:了解涡旋阵风和非寿命的互动对于城市或湍流环境中小飞机的运行至关重要。研究调查该相互作用需要足够的控制涡旋阵风发生器,以始终生产所需的学习血管阵风。以前的研究专注于翼型的俯仰或起伏以产生涡旋阵风。目前的研究侧重于具有附着的一致长板的旋转振荡圆柱体的涡旋脱落过程的表征。当该涡流发生器在相对较小的正弦运动中致动时,Von Karman涡流可以通过比静电气缸的自然脱落频率显着不同,以可控和可重复的方式产生可控和可重复的方式,并且没有生成任何额外的不需要的涡旋。致动参数的微调允许控制涡流强度,频率和横向位置。图形摘要

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