高雷诺数和低雷诺数下滤料器对原油滴的捕集。

Francis Letendre, C. Cameron
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引用次数: 2

摘要

甲壳类滤食性动物用它们分叉的附属物捕捉油滴。根据系统的雷诺数,这些附属物表现为桨或筛子。本文采用高速摄像、扫描电镜和流体力学等方法,研究了两种藤壶(Balanus glandula和Balanus crenatus)和淡水枝海水蚤(Daphnia magna)对原油液滴的捕获机理和过滤附属物的润湿性。研究结果表明,在低雷诺数条件下,藤壶附属物具有桨状运动,并能捕获附属物边界层中的液滴。在高雷诺数时,液滴最可能通过直接拦截被捕获。在一个中间雷诺数范围内,两种机制可以同时捕获液滴。大水蚤在第三对和第四对胸肢的边界层中通过附属物的异位运动捕获液滴。所有被研究的表面都显示出高度疏脂性,表明捕获的油滴具有高接触角。我们还讨论了这种捕获机制和润湿性对滤食动物潜在摄入原油的影响。这些结果进一步加深了我们对滤食性动物捕获原油的理解,揭示了海洋食物网中石油的主要入口。
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The capture of crude oil droplets by filter feeders at high and low Reynolds numbers.
Crustacean filter feeders capture oil droplets with the use of their ramified appendages. These appendages behave as paddles or sieves, based on the system's Reynolds number. Here we used high-speed videography, scanning electron microscopy and fluid mechanics to study the capturing mechanisms of crude oil droplets and the filtering appendage's wettability by two species of barnacles (Balanus glandula and Balanus crenatus) and of the freshwater cladoceran Daphnia magna. Our results show that barnacles appendages will behave as paddles and capture droplets in their boundary layers at low Reynolds number. At high Reynolds number, droplets are most likely to be captured via direct interception. There is an intermediate range of Reynolds number where droplets can be captured by both mechanisms at the same time. Daphnia magna captures droplets in the boundary layers of the third and fourth pair of thoracic legs with a metachronal motion of the appendages. All studied surfaces were revealed to be highly lipophobic, demonstrating captured oil droplets with high contact angles. We also discuss implications of such capture mechanisms and wettability on potential ingestion of crude oil by filter feeders. These results further our understanding of the capture of crude oil by filter feeders, shedding light onto the main entry point of oil in the marine food webs.
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