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Numerical Simulation of Wake Deflection Control around NACA0012 Airfoil Using Active Morphing Flaps

机译:NACA0012翼型尾脉冲控制的数值模拟使用活性变形襟翼

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This study demonstrates an active flow control for deflecting a direction of wake vortex structures behind a NACA0012 airfoil using an active morphing flap. Two-dimensional direct numerical simulations are performed for flows at the chord Reynolds number of 10,000, and the vortex pattern in the controlled and noncontrolled wakes as well as the effect of an actuation frequency on the control ability are rigorously investigated. It is found that there is an optimum actuation-frequency regime at around F ~(+) = 2.00 which is normalized by the chord length and freestream velocity. The wake vortex pattern of the well-controlled case is classified as the 2P wake pattern according to the Williamson’s categorization [ 1 ] [ 2 ], where the forced oscillation frequency corresponds to the natural vortex shedding frequency without control. The present classification of wake vortex patterns and finding of the optimum frequency regime in the wake deflection control can lead to a more robust design suitable for vortex-induced-vibration (VIV) related engineering systems.
机译:该研究表明了一种有源流量控制,用于使用活跃的变形皮瓣偏转NaCA0012翼型后面的唤醒涡旋结构的方向。对河卷Reynolds数10,000的流程进行二维直接数值模拟,并且控制和非控制唤醒中的涡流模式以及致动频率对控制能力的影响进行了严格研究。结果发现,围绕F〜(+)= 2.00的最佳致动频率调节器,其被弦长和自由流速度归一化。根据Williamson的分类[1] [2],良好控制案例的唤醒涡流模式被归类为2P唤醒模式,其中强制振荡频率对应于无控制的天然涡旋换频。唤醒涡旋模式的本分类和唤醒偏转控制中的最佳频率制度的分类可以导致适用于涡流诱导振动(VIV)相关工程系统的更强大的设计。

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