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Efficiency of Active Flow Control by a Synthetic Jet Around a Hump

机译:驼峰周围的合成射流进行主动流控制的效率

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The present contribution summarizes the efficiency of active flow control of the boundary layer of air around the hump. The synthetic jet generator with rectangular output part, i.e. slot, is actuated using a modulated signal. The modulated signal phase shift and its influence on the loss coefficient is investigated. The synthetic jet influences the character of the boundary layer and the size of the mixing area in a positive way. Decrease of the loss coefficient resulting from the change of the mixing size area (i.e. wake) is investigated. A velocity profile and a pressure profile were measured behind the hump by the CTA probe and the Kiel probe, respectively. Loss coefficients were obtained from total pressure measurements, each with a different measurement setup. These coefficients were compared with each other to show the benefits of the synthetic jet active flow control technique.
机译:本贡献总结了驼峰周围空气边界层主动流动控制的效率。具有矩形输出部分(即狭缝)的合成射流发生器使用调制信号致动。研究了调制信号的相移及其对损耗系数的影响。合成射流以积极的方式影响边界层的特性和混合区域的大小。研究了由混合尺寸区域(即尾流)的变化导致的损耗系数的降低。分别通过CTA探针和Kiel探针测量了驼峰后面的速度曲线和压力曲线。损耗系数从总压力测量中获得,每个压力测量都有不同的测量设置。将这些系数相互比较以显示合成射流主动流量控制技术的优势。

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