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首页> 外文期刊>International Journal of Heat and Fluid Flow >Active flow control of laminar boundary layers for variable flow conditions
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Active flow control of laminar boundary layers for variable flow conditions

机译:可变流动条件下层流边界层的主动流动控制

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This work investigates the stability of a fxLMS controller for active wave cancelation of broad-band Tollmien-Schlichting disturbances in a flat plate boundary-layer with a single DBD plasma actuator. In particular the influence of a changing free stream velocity and the resulting off-design operation of the control algorithm is analyzed up to an unstable behavior. As the main reason for unstable controller operation in the off-design case the difference between actual and predicted phase angle of the disturbances at the position of the error sensor is identified. A method for an online adjustment of the secondary-path model to different free-stream velocities is presented. Finally a wall-bounded method based on the disturbances phase speed is developed that can cope with changes of the physical secondary path not only due to changes of the free-stream velocity but also due to changes of the pressure distribution. This method enables the extension of the stable operation range of the control system significantly. (C) 2015 Elsevier Inc. All rights reserved.
机译:这项工作研究了一个fxLMS控制器的稳定性,该控制器可通过单个DBD等离子体致动器在平板边界层中主动消除宽带Tollmien-Schlichting干扰。尤其是,分析了自由流速度变化的影响以及控制算法产生的非设计操作,直至达到不稳定状态。在非设计情况下,控制器运行不稳定的主要原因是确定了误差传感器位置处干扰的实际相位角和预测相位角之间的差异。提出了一种在线调整次级路径模型以适应不同自由流速度的方法。最后,开发了一种基于扰动相速度的无边界方法,该方法不仅可以应对由于自由流速度的变化而且可以由于压力分布的变化而引起的物理次级路径的变化。这种方法可以显着扩展控制系统的稳定运行范围。 (C)2015 Elsevier Inc.保留所有权利。

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