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Evidence for ubiquitous preferential particle orientation in representative oceanic shear flows

机译:代表性海洋剪切流中普遍存在的优先颗粒取向的证据

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摘要

In situ measurements were undertaken to characterize particle fields in undisturbed oceanic environments. Simultaneous, co‐located depth profiles of particle fields and flow characteristics were recorded using a submersible holographic imaging system and an acoustic Doppler velocimeter, under different flow conditions and varying particle concentration loads, typical of those found in coastal oceans and lakes. Nearly one million particles with major axis lengths ranging from ∼14 μm to 11.6 mm, representing diverse shapes, sizes, and aspect ratios were characterized as part of this study. The particle field consisted of marine snow, detrital matter, and phytoplankton, including colonial diatoms, which sometimes formed “thin layers” of high particle abundance. Clear evidence of preferential alignment of particles was seen at all sampling stations, where the orientation probability density function (PDF) peaked at near horizontal angles and coincided with regions of low velocity shear and weak turbulent dissipation rates. Furthermore, PDF values increased with increasing particle aspect ratios, in excellent agreement with models of spheroidal particle motion in simple shear flows. To the best of our knowledge, although preferential particle orientation in the ocean has been reported in two prior cases, our findings represent the first comprehensive field study examining this phenomenon. Evidence of nonrandom particle alignment in aquatic systems has significant consequences to aquatic optics theory and remote sensing, where perfectly random particle orientation and thus isotropic symmetry in optical parameters is assumed. Ecologically, chain‐forming phytoplankton may have evolved to form large aspect ratio chains as a strategy to optimize light harvesting.
机译:进行了原位测量,以表征不受干扰的海洋环境中的粒子场。使用潜水式全息成像系统和声速多普勒测速仪,在不同的流动条件和变化的颗粒浓度负荷下(在沿海海洋和湖泊中通常会发现),同时记录颗粒场和流动特征的深度分布。作为这项研究的一部分,表征了近一百万个颗粒的长轴长度在〜14μm到11.6 mm之间,代表了不同的形状,大小和长宽比。颗粒场由海洋积雪,碎屑物质和浮游植物组成,包括殖民硅藻,有时形成高颗粒丰度的“薄层”。在所有采样站都可以看到颗粒优先排列的清晰证据,其中定向概率密度函数(PDF)在接近水平角处达到峰值,并且与低速剪切和弱湍流耗散率的区域一致。此外,PDF值随颗粒纵横比的增加而增加,这与简单剪切流中的球形颗粒运动模型极为吻合。据我们所知,尽管在先前的两个案例中已经报告了海洋中优先粒子定向的情况,但我们的发现代表了首次全面的实地研究,研究了这一现象。水生系统中非随机粒子排列的证据对水生光学理论和遥感产生了重大影响,其中假设了完全随机的粒子取向,因此假设了光学参数的各向同性对称。从生态上讲,形成链的浮游植物可能已经进化成形成长宽比大的链,作为优化采光的策略。

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