首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Data assimilation of mean velocity from 2D PIV measurements of flow over an idealized airfoil
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Data assimilation of mean velocity from 2D PIV measurements of flow over an idealized airfoil

机译:在理想化翼型上的2D PIV测量的平均速度的数据同化

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Data assimilation can be used to combine experimental and numerical realizations of the same flow to produce hybrid flow fields. These have the advantages of less noise contamination and higher resolution while simultaneously reproducing the main physical features of the measured flow. This study investigates data assimilation of the mean flow around an idealized airfoil (Re = 13,500) obtained from time-averaged two-dimensional particle image velocimetry (PIV) data. The experimental data, which constitute a low-dimensional representation of the full flow field due to resolution and field-of-view limitations, are incorporated into a simulation governed by the two-dimensional, incompressible Reynolds-averaged Navier-Stokes (RANS) equations with an unknown momentum forcing. This forcing, which corresponds to the divergence of the Reynolds stress tensor, is calculated from a direct-adjoint optimization procedure to match the experimental and numerical mean velocity fields. The simulation is projected onto the low-dimensional subspace of the experiment to calculate the discrepancy and a smoothing procedure is used to recover adjoint solutions on the higher dimensional subspace of the simulation. The study quantifies how well data assimilation can reconstruct the mean flow and the minimum experimental measurements needed by altering the resolution and domain size of the time-averaged PIV.
机译:数据同化可用于组合相同流动的实验性和数值实现以产生混合流动场。这些具有较少的噪声污染和更高分辨率的优点,同时再现测量流的主要物理特征。本研究研究了从时间平均二维粒子图像VELOCIMETRY(PIV)数据获得的理想化翼型(RE = 13,500)周围的平均流动的数据同化。构成由于分辨率和视野限制的全流场的低维表示的实验数据被纳入由二维不可压缩的雷诺平均天线(RAN)方程所控制的模拟中有一个未知的动量强迫。这种迫使对应于雷诺应力张量的分歧,从直接伴随优化过程计算以匹配实验和数值平均速度。将模拟投影到实验的低维子空间上,以计算差异,使用平滑过程用于在模拟的较高维子空间上恢复伴随解决方案。该研究量化了通过改变时间平均PIV的分辨率和域大小来重建数据同化可以重建平均流量和最小实验测量。

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