表面波对微塑料颗粒沉降和漂移的影响:实验室实验

I. A. Isachenko, I. M. Kraev, D. Sergeev
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引用次数: 0

摘要

研究了微塑料颗粒在波浪作用下在线性风浪通道中的运动轨迹、平均沉降速度和漂移速度。水面上方的造浪器和气流创造了各种水动力条件。使用了各种形状(等距、扁平、细长)的颗粒。本文简要概述了用于研究微塑料在表面波和水流作用下迁移的理论方法(尺寸分析)。在此基础上,给出了波浪机制和实验颗粒集的特征。颗粒在安静流体中的最终沉降速度为 1.0-3.8 厘米/秒。它们是通过实验获得的,可能具有独立的意义。获得并分析了 13 种粒子在 4 种波形下的沉降轨迹。根据韦尔奇 t 准则(p < 0.05),有波时颗粒的平均沉降速度与末端沉降速度略有不同,这与其他研究结果一致。结果表明,平均水平(漂移)速度与平均水流速度一致。由于漂流的诱导作用,风的存在增强了水平迁移,并大大增加了颗粒的分散。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Surface Waves on Settling and Drifting of Microplastic Particles: A Laboratory Experiment
Particle trajectories and average settling and drift velocities of microplastic particles under wave action were studied in a linear wind-wave channel. A wave-maker and an airflow above the water surface created various hydrodynamic conditions. Particles of various shapes (isometric, flat, elongated) were used. The paper provides a brief overview of the theoretical approaches (dimensional analysis) used to study the transport of microplastics in the presence of surface waves and currents. Based on this, a characteristic of wave regimes and sets of experimental particles is given. Terminal settling velocities of the particles in a quiet fluid are 1.0–3.8 cm/s. They were obtained experimentally and may be of independent interest. The settling trajectories of 13 types of particles in 4 wave regimes were obtained and analyzed. According to Welch’s t-criterion (p < 0.05), the average particle settling rate in the presence of waves differs slightly from the terminal settling velocity, which is consistent with other works. The results indicate that the average horizontal (drift) velocity follows the velocity of the mean current. The presence of wind enhances horizontal transport due to the induction of drift current and drastically increases particle dispersion.
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