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湍流中微塑料弯曲纤维的完整刚体旋转速率测量

Complete solid-body rotation rate measurements of micro-plastic curved fibers in turbulence.

作者信息

Caridi Giuseppe C A, Giurgiu Vlad, De Paoli Marco, Soldati Alfredo

机构信息

Institute of Fluid Mechanics and Heat Transfer, TU Wien, 1060 Vienna, Austria.

Physics of Fluids Group, University of Twente, 7500AE Enschede, The Netherlands.

出版信息

Exp Fluids. 2025;66(5):102. doi: 10.1007/s00348-025-04021-0. Epub 2025 May 2.

Abstract

ABSTRACT

In this study we quantify the uncertainty relative to a novel Lagrangian tracking technique to measure the complete solid-body rotation rate of anisotropic micro-plastic fibers. By exploiting their geometry-specifically, their elongation and curvature for tumbling and spinning rate measurements, respectively-we address a gap in the literature regarding the tracking of fibers' unique orientation along their trajectories. The impact of fiber geometry and imaging parameters on the accuracy of the solid-body rotation rates measurements is investigated. The influence of spatial and temporal resolution on the measurement uncertainty is assessed on synthetic data. Experimental results obtained in a channel flow demonstrate the method's potential to accurately detect rotations of fibers with lengths approaching the Kolmogorov scale.

摘要

摘要

在本研究中,我们量化了与一种新型拉格朗日跟踪技术相关的不确定性,该技术用于测量各向异性微塑料纤维的完整刚体旋转速率。通过利用它们的几何形状——具体而言,分别利用它们的伸长率和曲率来测量翻滚和旋转速率——我们填补了文献中关于沿纤维轨迹跟踪其独特取向方面的空白。研究了纤维几何形状和成像参数对刚体旋转速率测量精度的影响。在合成数据上评估了空间和时间分辨率对测量不确定性的影响。在通道流中获得的实验结果证明了该方法准确检测长度接近柯尔莫哥洛夫尺度的纤维旋转的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6905/12048446/945cb2310e6e/348_2025_4021_Fig1_HTML.jpg

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