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Spatially correlated precision error in digital particle image velocimetry measurements of turbulent flows

机译:湍流数字粒子图像测速测量中的空间相关精度误差

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The purpose of the current paper is to describe an experimental study of the spatially correlated precision errors associated with particle image velocimetry (PIV) measurements made in turbulent flows. A free jet was used as the base flow for the study. The precision error of time-averaged statistics of the mean and turbulent flowfield is governed by the probability distribution function of the various quantities and the finite sample size of the data sets. Spatial measurements that are separated by a distance that is shorter than the size of the large turbulent scales will not be independent, resulting in a correlated precision error. The characteristics of the precision error for various statistics will be described. It is found that mean vorticity has a correlated precision error that is limited to a much smaller length scale. The results demonstrate the importance of understanding the role of error correlation in the interpretation of PIV data.
机译:本文的目的是描述与湍流中进行的粒子图像测速(PIV)测量相关的空间相关精度误差的实验研究。使用自由射流作为研究的基本流量。均值和湍流场时间平均统计的精度误差由各种数量的概率分布函数和数据集的有限样本大小决定。相距小于大湍流标度尺寸的距离的空间测量将不会独立,从而导致相关的精度误差。将描述各种统计的精度误差的特征。发现平均涡度具有相关的精度误差,该误差被限制在小得多的长度尺度上。结果证明了理解误差相关在解释PIV数据中的作用的重要性。

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