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首页> 外文期刊>International Journal of Heat and Fluid Flow >Linear control of coherent structures in wall-bounded turbulence at Re_τ = 2000
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Linear control of coherent structures in wall-bounded turbulence at Re_τ = 2000

机译:Re_τ= 2000的壁限湍流中相干结构的线性控制

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摘要

We consider linear feedback flow control of the largest scales in an incompressible turbulent channel flow at a friction Reynolds number of Re-tau = 2000. A linear model is formed by linearizing the Navier-Stokes equations about the turbulent mean and augmenting it with an eddy viscosity. Velocity perturbations are then generated by stochastically forcing the linear operator. The objective is to reduce the kinetic energy of these velocity perturbations at the largest scales using body forces. It is shown that a control set-up with a well-placed array of sensors and actuators performs comparably to either measuring the flow everywhere (while limiting actuators to a single wall height) or actuating the flow everywhere (while limiting sensors to a single wall height). In this way, we gain insight (at low computational cost) into how the very large scales of turbulence are most effectively estimated and controlled.
机译:我们考虑在Re-Tau = 2000的摩擦雷诺数的不可压缩湍流通道流中最大尺度的线性反馈流量控制。线性模型是通过线性化湍流平均值并用涡流增强它的湍流方程来形成线性模型粘度。然后通过随机迫使线性操作员产生速度扰动。目标是使用体力在最大尺度上降低这些速度扰动的动能。结果表明,用井放置的传感器和致动器阵列进行控制设置,可相当地执行,以便测量各处的流量(同时将致动器限制为单壁高度)或致动到处的流动(在限制传感器到单个墙壁上高度)。通过这种方式,我们将洞察力(以低计算成本)进入最大的湍流尺度最有效地估计和控制。

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