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Aerodynamic flow vectoring of a wake using asymmetric synthetic jet actuation

机译:使用非对称合成射流驱动进行尾流的气动流矢量化

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This paper reports an experimental investigation on the wake of a blunt-based, flat plate subjected to aerodynamic flow vectoring using asymmetric synthetic jet actuation. Wake vectoring was achieved using a synthetic jet placed at the model base 2.5 mm from the upper corner. The wake Reynolds number based on the plate thickness was 7,200. The synthetic jet actuation frequency was selected to be about 75 % the vortex shedding frequency of the natural wake. At this actuation frequency, the synthetic jet delivered a periodic flow with a momentum coefficient, C μ, of up to 62 %. Simultaneous measurements of the streamwise and transverse components of the velocity were performed using particle image velocimetry (PIV) in the near wake. The results suggested that for significant wake vectoring, vortex shedding must be suppressed first. Under the flow conditions cited above, C μ values in the range of 10–20 % were required. The wake vectoring angle seemed to asymptote to a constant value of about 30° at downstream distances, x/h, larger than 4 for C μ values ranging between 24 and 64 %. The phase-averaged vorticity contours and the phase-averaged normal lift force showed that most of the wake vectoring is produced during the suction phase of the actuation, while the blowing phase was mostly responsible for vortex shedding suppression.
机译:本文报道了对基于钝头的平板进行尾流的实验研究,该平板受到使用非对称合成射流驱动的气动流矢量控制。使用放置在距模型模型基座距上角2.5 mm处的合成射流实现唤醒矢量化。基于板厚度的苏醒雷诺数为7,200。合成射流致动频率被选择为自然尾流的涡旋脱落频率的约75%。在此致动频率下,合成射流产生的周期性流的动量系数Cμsub高达62%。在近尾时使用粒子图像测速仪(PIV)对速度的横向和横向分量进行了同时测量。结果表明,对于显着的尾流矢量化,必须首先抑制涡旋脱落。在上述流动条件下,要求Cμ值在10–20%的范围内。尾流矢量角似乎在下游距离x / h处渐近于约30°的恒​​定值,对于Cμ值介于24%和64%之间的值,该值大于4。相平均涡度轮廓和相平均法向升力表明,大多数尾流矢量化是在促动的吸力阶段产生的,而吹气阶段则主要是抑制涡流的脱落。

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