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Investigation of micro-jet active control of a precessing jet using PIV

机译:使用PIV对进动射流进行微射流主动控制的研究

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A circular jet entering an open-ended concentric circular chamber can rotate or precess about the jet axis for certain flow conditions and chamber configurations. Active flow control of a precessing jet provides the ability to influence the flow field inside the chamber and the resulting flow after the chamber exit. Twelve micro-jets surrounding the jet at the chamber inlet are used as actuation. At the chamber exit, four pressure probes and three-component velocity measurement using stereo particle image velocimetry (stereo-PIV) is used to monitor the flow. A phase plane method using signals from the pressure sensors is developed to monitor the location of the jet high-velocity region in real-time. Phase-locked stereo-PIV, triggered by the micro-jet actuation signal, is used to investigate the flow field and validate the pressure phase plane results. The effectiveness of the micro-jet actuation and the validation of the pressure phase plane measurements demonstrate actuation and the sensing needed for future closed-loop control of the precessing jet.
机译:对于某些流动条件和腔室配置,进入端部开放的同心圆形腔室的圆形喷嘴可以绕喷嘴轴线旋转或进动。进动射流的主动流量控制提供了影响腔室内流场以及腔室退出后所产生的流量的能力。围绕腔室入口处的射流的十二个微射流用作致动。在腔室出口处,使用四个压力探头和使用立体粒子图像测速仪(stereo-PIV)进行的三分量速度测量来监视流量。开发了一种使用来自压力传感器的信号的相平面方法来实时监视射流高速区域的位置。由微喷驱动信号触发的锁相立体声PIV用于研究流场并验证压力相平面结果。微型射流致动的有效性和压力相平面测量的验证证明了对进动射流进行未来闭环控制所需的致动和传感。

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