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Feedback control of a circular cylinder wake

机译:圆柱尾流的反馈控制

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Feedback flow control of a three-dimensional wake behind a circular cylinder at a Reynolds number of Re =100 was investigated. A combination of numerical simulations, experiments, and control theory was used to understand the flow field and to develop a sensor configuration, a flow state estimator, and a controller. The flow field was analysed by using proper orthogonal decomposition (POD) in two dimensions, and two-dimensional and three-dimensional sensor placements were investigated. The controller input was computed from the POD time coefficients, and actuation was performed by using rigid cylinder motion normal to the free stream. In the two-dimensional computations, feedback was shown to effectively reduce the drag and the fluctuating lift force. When feedback forcing was applied in the three-dimensional wake, both simulations and experiments showed that the vortex shedding could be controlled initially and the amplitude of the fluctuations decreased. However, spanwise phase variations eventually appeared and rendered the controller ineffective.
机译:研究了在Re = 100的雷诺数下圆柱后面的三维尾流的反馈流控制。数值模拟,实验和控制理论的组合被用来理解流场并开发传感器配置,流态估计器和控制器。在二维中使用适当的正交分解(POD)分析了流场,并研究了二维和三维传感器位置。根据POD时间系数计算出控制器输入,并通过使用垂直于自由流的刚性气缸运动来执行致动。在二维计算中,反馈被显示为有效地减少了阻力和波动的升力。当在三维尾流中施加反馈强迫时,仿真和实验均表明,旋涡脱落可以得到初始控制,并且波动幅度减小。但是,翼展方向的相位变化最终会出现并使控制器失效。

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