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Resolvent-based design and experimental testing of porous materials for passive turbulence control

机译:基于解决的无源湍流控制多孔材料的设计与实验测试

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An extended version of the resolvent formulation is used to evaluate the use of anisotropic porous materials as passive flow control devices for turbulent channel flow. The effect of these porous substrates is introduced into the governing equations via a generalized version of Darcy's law. Model predictions show that materials with high streamwise permeability and low wall-normal permeability (phi(xy) = k(xx)/k(yy) 1) can suppress resolvent modes resembling the energetic near-wall cycle. Based on these predictions, two anisotropic porous substrates with phi(xy) 1 and phi(xy) 1 were designed and fabricated for experiments in a benchtop water channel experiment. Particle Image Velocimetry (PIV) measurements were used to compute mean turbulence statistics and to educe coherent structure via snapshot Proper Orthogonal Decomposition (POD). Friction velocity estimates based on the Reynolds shear stress profiles do not show evidence of discernible friction reduction (or increase) over the streamwise-preferential substrate with phi(xy) 1 relative to a smooth wall flow at identical bulk Reynolds number. A significant increase in friction is observed over the substrate with phi(xy) 1. This increase in friction is linked to the emergence of spanwise rollers resembling Kelvin-Helmholtz vortices. Coherent structures extracted via POD analysis show qualitative agreement with model predictions.
机译:解析制剂的扩展版本用于评估各向异性多孔材料作为湍流通道流动的被动流量控制装置。通过达西法则的广义形式将这些多孔基板的效果引入控制方程。模型预测表明,具有高流动性渗透性和低壁正常渗透性的材料(PHI(XY)= K(XX)/ K(YY) 1)可以抑制类似于能量近壁循环的分辨模式。基于这些预测,设计并制造了两种具有PHI(XY)> 1和PHI(XY)<1的各向异性多孔衬底,用于在台式水通道实验中进行实验。粒子图像VELOCIMETRY(PIV)测量用于计算平均湍流统计数据并通过快照适当的正交分解(POD)发射相干结构。基于Reynolds剪切应力分布的摩擦速度估计没有显示在相对于相同散装雷诺数处的平滑壁流量的PHI(XY)> 1上具有PHI(XY)> 1的可辨证摩擦减少(或增加)的证据。在具有PHI(XY)<1的基材上观察到摩擦的显着增加<1。这种摩擦的增加与类似于Kelvin-Helmholtz涡流的枝条辊的出现相关联。通过POD分析提取的相干结构显示与模型预测的定性协议。

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