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Response of Euphausia pacifica to small-scale shear in turbulent flow over a sill in a fjord

机译:峡湾上的湍流中太平洋细小虾对小剪应力的响应

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摘要

Zooplankton in the ocean respond to visual and hydro-mechanical cues such as small-scale shear in turbulent flow. In addition, they form strong aggregations where currents intersect sloping bottoms. Strong and predictable tidal currents over a sill in Knight Inlet, Canada, make it an ideal location to investigate biological behaviour in turbulent cross-isobath flow. We examine acoustic data (38, 120 and 200 kHz) collected there during the daylight hours, when the dominant zooplankters, Euphausia pacifica have descended into low light levels at ∼90 m. As expected, these data reveal strong aggregations at the sill. However, they occur consistently 10–20 m below the preferred light depth of the animals. We have constructed a simple model of the flow to investigate this phenomenon. Tracks of individual animals are traced in the flow and a variety of zooplankton behaviours tested. Our results indicate that the euphausiids must actively swim downward when they encounter the bottom boundary layer (bbl) to reproduce the observed downward shift in aggregation patterns. We suggest that this behaviour is cued by the small-scale shear in the bbl. Furthermore, this behaviour is likely to enhance aggregations found in strong flows at sills and on continental shelves.
机译:海洋中的浮游动物对视觉和水力机械的信号做出反应,例如湍流中的小规模剪切。此外,它们形成强聚集体,电流与倾斜的底部相交。加拿大Knight Inlet的窗台上强大且可预测的潮流,使其成为研究湍流等渗流中生物行为的理想场所。我们检查了白天白天在那里收集的声学数据(38、120和200 kHz),当时主要的浮游动物太平洋大虾(Euphausia pacifica)在〜90 m处下降到低光照水平。不出所料,这些数据揭示了门槛处的强烈聚集。但是,它们始终比动物的首选光深低10–20 m。我们构建了一个简单的流程模型来研究此现象。在水流中追踪了单个动物的踪迹,并测试了各种浮游动物的行为。我们的研究结果表明,小孢子虫在遇到底部边界层(bbl)时必须积极向下游动,以再现观察到的聚集模式下移。我们建议,此行为是由bbl中的小规模剪切引起的。此外,这种行为可能会增强在门槛和大陆架上的强烈流动中发现的聚集。

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