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PIV Study of Conical Forebody Flow Control Using Plasma Actuators

机译:使用等离子作动器控制锥形前体流量的PIV研究

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Duty cycle modulation of the alternate blowing from two opposite facing plasma actuators on the leeward surface near the apex of a cone having semi-apex angle of 10° to control the mean lateral force, moment and the flow control mechanisms are presented. The pressure distributions over the cone forebody are measured using steady pressure-tappings. The flowfields are visualized by a two-dimensional particle image velocimetry (PIV). The experiments are performed at 5m/s wind speed with Reynolds number 40,000 based on the cone base diameter. The opposite bi-stable vortex patterns appear when the port or starboard actuator is activated while the other is kept off during the test. The phase-locked (locked to the plasma duty cycle) averaged vertex cores controlled by the duty-cycled plasma actuation are periodic and vary around the position of the ensemble averaged vertex cores.
机译:提出了来自两个相对的面对面等离子体致动器的交替吹气的占空比调制,该等离子体致动器在具有10°半顶角的圆锥体的顶点附近的背风表面上,以控制平均横向力,力矩和流量控制机构。锥前体上的压力分布是使用稳定的压力攻丝来测量的。通过二维粒子图像测速(PIV)可视化流场。实验是在5m / s的风速下进行的,雷诺数为40,000(基于圆锥底直径)。当左舷或右舷致动器被激活而另一个在测试过程中保持关闭状态时,出现相反的双稳态涡流模式。由占空比等离子体致动控制的锁相(锁定到等离子体占空比)平均顶点核心是周期性的,并且在整体平均顶点核心的位置周围变化。

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