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首页> 外文期刊>Journal of Fluid Mechanics >Frequency selection by feedback control in a turbulent shear flow
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Frequency selection by feedback control in a turbulent shear flow

机译:在湍流剪切流中通过反馈控制进行频率选择

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Many previous studies have shown that the turbulent mixing layer under periodic forcing tends to adopt a lock-on state, where the major portion of the fluctuations in the flow are synchronized at the forcing frequency. The goal of this experimental study is to apply closed-loop control in order to provoke the lock-on state, using information from the flow itself. We aim to determine the range of frequencies for which the closed-loop control can establish the lock-on, and what mechanisms are contributing to the selection of a feedback frequency. In order to expand the solution space for optimal closed-loop control laws, we use the genetic programming control (CPC) framework. The best closed-loop control laws obtained by CPC are analysed along with the associated physical mechanisms in the mixing layer flow. The resulting closed-loop control significantly outperforms open-loop forcing in terms of robustness to changes in the free-stream velocities. In addition, the selection of feedback frequencies is not locked to the most amplified local mode, but rather a range of frequencies around it.
机译:以前的许多研究表明,周期性强迫作用下的湍流混合层趋于采用一种锁定状态,在这种状态下,流量波动的主要部分在强迫频率下是同步的。这项实验研究的目的是应用闭环控制,以利用流本身的信息来激发锁定状态。我们旨在确定闭环控制可建立锁定的频率范围,以及哪些机制有助于选择反馈频率。为了扩大最优闭环控制律的求解空间,我们使用了遗传编程控制(CPC)框架。分析通过CPC获得的最佳闭环控制律以及混合层流中的相关物理机制。就自由流速度变化的鲁棒性而言,最终的闭环控制性能远胜于开环强迫。另外,反馈频率的选择并不锁定于放大最大的局部模式,而是锁定在其周围的频率范围。

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