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首页> 外文期刊>Journal of Fluid Mechanics >Generalized phase average with applications to sensor-based flow estimation of the wall-mounted square cylinder wake
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Generalized phase average with applications to sensor-based flow estimation of the wall-mounted square cylinder wake

机译:广义相位平均法在壁挂式方筒尾流的基于传感器的流量估算中的应用

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摘要

We experimentally investigate the three-dimensional wake behind a finite wall-mounted square cylinder at Re = 12000 and aspect ratio of 4. Focus is placed on the base flow and oscillatory fluctuation. Time-resolved three-dimensional velocity fields are constructed from high-frame-rate particle image velocimetry (PIV) and simultaneously recorded surface pressure measurements. All three velocity components are resolved in a rectangular near-wake region by two orthogonal dense arrays of parallel PIV planes. A key enabler is a generalized phase average incorporating a slowly varying base flow, a variable oscillation amplitude and higher harmonics. These generalizations reduce the instantaneous residual 30% below those of a traditional phase average. Moreover, the resolved variations reveal analytical constraints of the mean flow and oscillation levels, such as the mean-field paraboloid. The proposed methodology for generalized phase averaging and for construction of three-dimensional velocity fields from two-dimensional PIV data is applicable to a large class of turbulent flows with oscillatory dynamics.
机译:我们通过实验研究了Re = 12000且纵横比为4的有限壁挂式方形圆柱后面的三维尾流。重点放在基本流和振荡波动上。时间分辨的三维速度场是由高帧率粒子图像测速仪(PIV)和同时记录的表面压力测量值构成的。通过平行PIV平面的两个正交密集阵列,在矩形近尾区域解析所有三个速度分量。一个关键的因素是广义的相位平均值,它包含一个缓慢变化的基本流量,一个可变的振荡幅度和较高的谐波。这些概括将瞬时残差降低了传统相均值的30%。此外,解析的变化揭示了平均流量和振荡水平的分析约束,例如平均场抛物面。提出的用于广义相位平均和从二维PIV数据构造三维速度场的方法适用于一类具有振荡动力学的湍流。

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