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The interactions of oil droplets with filter feeders: A fluid mechanics approach

机译:油滴与过滤器的相互作用:流体力学方法

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Filter feeding animals capture and lose oil droplets using cilia or ramified appendages. Here we demonstrate that copepod and barnacle appendages capture fish, canola and 1-decanol oil droplets up to 11 mu m without selectivity for size, chemistry, density, viscosity, or interfacial tension. Following capture, the droplets are ingested or lost via detachment. Capture and detachment did not differ between a barnacle appendage and stainless-steel wires of radii R-f = 50 and 250 mu m. Key parameters to detachment include the ratio of oil droplet radius to fiber radius, and the Weber number. Smaller oil droplet size to fiber size ratio r= R-o/R-f, required a higher We for detachment. These data plot as a curve that predicts whether a droplet will remain captured or detach and re-enter the fluid stream, based on the fluid, the droplet radius to fiber radius ratio, and the oil droplet properties. Significantly, this curve may be used to plan responses to oil spills in marine environments.
机译:过滤器喂养动物使用纤毛或含糊的阑尾捕获并丢失油滴。在这里,我们证明了桡足和晶片阑尾捕获鱼,油菜和1-癸醇油滴,其尺寸,化学,密度,粘度或界面张力的选择性。捕获后,通过脱离摄取或丢失液滴。捕获和脱离在半径R-F = 50和250 mu m之间的栏杆附属和不锈钢线之间没有区别。脱离的关键参数包括油液体半径与光纤半径的比率,以及韦伯号。较小的油滴尺寸为纤维尺寸比率r = r-o / r-f,所以需要较高我们进行脱离。这些数据图作为预测液滴是否将保持捕获或拆卸并重新进入流体流,并将液滴半径与纤维半径比和油滴性能重新进入流体流。显着地,该曲线可用于规划对海洋环境中的漏油的反应。

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