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CONTROL AND IDENTIFICATION OF TURBULENT BOUNDARY LAYER SEPARATION

机译:湍流边界层分离的控制与识别

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Effective delay of turbulent boundary layer separation could be achieved via closed-loop control. Constructing such a system requires that sensor data be processed, real-time, and fed into the controller to determine the output. Current methods for detection of turbulent boundary layer separation are lacking the capability of localized, fast and reliable identification of the boundary layer state, A method is proposed for short-time FFT processing of time series, measured by hot-film sensors, with the purpose of identifying the alternation of the balance between small and large scales as the boundary layer separates, favoring the large scales. The method has been validated by comparison to other criteria of separation detection and over a range of baseline and controlled flow conditions on a "simplified" high-lift system, incorporating active flow control.
机译:通过闭环控制可以实现湍流边界层分离的有效延迟。构建此类系统要求传感器数据进行处理,实时,并将其馈送到控制器中以确定输出。目前用于检测湍流边界层分离的方法缺乏局部,快速可靠地识别边界层状态的能力,提出了一种用于时间序列的短时FFT处理的方法,由热膜传感器测量,目的在边界层分离时识别小尺度之间的平衡的交替,有利于大尺度。通过与“简化”高升程系统的其他基线和受控的基线和受控流动条件相比,通过比较验证了该方法。

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