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Denoising of time-resolved PIV for accurate measurement of turbulence spectra and reduced error in derivatives

机译:对时间分辨的PIV进行去噪以精确测量湍流谱并减少导数中的误差

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The accuracy of time-resolved PIV (TRPIV) turbulence measurements is limited by white noise, which reduces the signal-to-noise ratio (SNR) of small-scale velocity fluctuations. This paper demonstrates a novel energy filter that extends the concept of spectral noise subtraction to the time domain. The filter is equivalent to the spectral subtraction of white noise energy, and therefore it can recover the true signal energy. Its effectiveness is evaluated by comparing two-component (2C) TRPIV and constant temperature anemometry (CTA) measurements performed in grid-generated turbulence (Re λ = 90). The denoised PIV measurements exhibit a SNR equivalent to those of a high-performance CTA system. The temporal spectra of velocity fluctuations and derivatives are accurately recovered, with an improvement in dynamic range by a factor of fancyscriptO(103)fancyscript{O}(10^3). The error in dissipation estimates derived from the frequency spectrum is reduced to approximately 2 %. The correlation coefficient between spatial gradients computed directly and those computed via Taylor’s hypothesis improves from 0.83 to 0.95. The mean-square error reduction is found to be equivalent in the frequency and wavenumber domains, although we observe that frequency domain filtering has a limited ability to improve the SNR of spatial spectra at high wavenumbers. The performance of the energy filter is shown to be sensitive to the convergence of the measured spectra; therefore, we provide sampling criteria to ensure optimal implementation in measurements of turbulent flows.
机译:时间分辨PIV(TRPIV)湍流测量的精度受到白噪声的限制,白噪声降低了小规模速度波动的信噪比(SNR)。本文演示了一种新颖的能量滤波器,它将频谱噪声减法的概念扩展到了时域。该滤波器等效于白噪声能量的频谱相减,因此它可以恢复真正的信号能量。通过比较在电网产生的湍流(Re λ = 90)中进行的两分量(2C)TRPIV和恒温风速(CTA)测量来评估其有效性。经去噪的PIV测量结果显示出与高性能CTA系统等效的SNR。准确地恢复了速度波动和导数的时间谱,并通过fancyscriptO(10 3 )fancyscript {O}(10 ^ 3)提高了动态范围。由频谱得出的耗散估计误差减少到大约2%。直接计算出的空间梯度与通过泰勒假设计算出的空间梯度之间的相关系数从0.83提高到0.95。尽管在频域和波数域中发现均方误差降低是等效的,但我们观察到频域滤波在提高高波数时改善空间频谱SNR的能力有限。能量滤波器的性能显示出对所测光谱的收敛敏感。因此,我们提供了采样标准,以确保在湍流测量中实现最佳实施。

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