Giurgiu Vlad, Caridi Giuseppe Carlo Alp, De Paoli Marco, Soldati Alfredo
Institute of Fluid Mechanics and Heat Transfer, <a href="https://ror.org/04d836q62">TU Wien</a>, 1060 Wien, Austria.
Physics of Fluids Group, <a href="https://ror.org/006hf6230">University of Twente</a>, 7500AE Enschede, Netherlands.
Phys Rev Lett. 2024 Aug 2;133(5):054101. doi: 10.1103/PhysRevLett.133.054101.
The motion, settling, and dispersion of microplastics in the ocean are determined by their rotational dynamics. We present experiments on elongated, large aspect ratio, and mildly curved plastic fibers slightly longer than the Kolmogorov length scale. Exploiting their uniquely identifiable three-dimensional orientation, we perform original optical Lagrangian investigations and provide a set of homogeneous data on their rotation rates around their longitudinal axis: spinning rate, and transversal axes: tumbling rates, which we explain in the context of the general features of turbulence.
海洋中微塑料的运动、沉降和扩散由其旋转动力学决定。我们对长度略长于柯尔莫哥洛夫长度尺度的细长、高纵横比且微弯曲的塑料纤维进行了实验。利用它们独特可识别的三维取向,我们开展了原创性光学拉格朗日研究,并提供了一组关于它们绕纵轴的旋转速率(自旋速率)以及横轴的旋转速率(翻滚速率)的均匀数据,我们在湍流的一般特征背景下对这些数据进行了解释。