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Hydrodynamics of prey capture in sharks: effects of substrate

机译:捕获鲨鱼的水动力:底物的影响

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摘要

In suction feeding, a volume of water is drawn into the mouth of a predator. Previous studies of suction feeding in fishes have shown that significant fluid velocities are confined to a region within one mouth width from the mouth. Therefore, the predator must be relatively close to the prey to ensure capture success. Here, theoretical modelling is combined with empirical data to unravel the mechanism behind feeding on a substrate. First, we approached the problem theoretically by combining the stream functions of two sinks. Computational fluid dynamics modelling is then applied to make quantitative predictions regarding the effects of substrate proximity on the feeding hydrodynamics of a benthic shark. An oblique circular cylinder and a shark head model were used. To test the models, we used digital particle image velocimetry to record fluid flow around the mouth of white-spotted bamboo sharks, Chiloscyllium plagiosum, during suction feeding on the substrate and in the water column. Empirical results confirmed the modelling predictions: the length of the flow field can be doubled due to passive substrate effects during prey capture. Feeding near a substrate extends the distance over which suction is effective and a predator strike can be effective further from the prey.
机译:在吸食中,一定量的水被吸入食肉动物的嘴中。以前对鱼进行吸食喂养的研究表明,显着的流体速度被限制在距嘴一个嘴宽的区域内。因此,捕食者必须相对接近猎物以确保捕获成功。在这里,理论建模与经验数据相结合,以揭示进给底材的机理。首先,我们在理论上通过组合两个汇流函数来解决该问题。然后应用计算流体动力学模型对底物接近度对底栖鲨的进水流体动力学的影响进行定量预测。使用斜圆柱和鲨鱼头模型。为了测试模型,我们使用数字粒子图像测速仪记录了在基质和水柱中吸水进料过程中,白斑竹鲨(Chiloscyllium plagiosum)嘴周围的流体流动。经验结果证实了建模预测:由于捕获猎物期间的被动底物效应,流场的长度可以加倍。在底物附近进食延长了有效抽吸的距离,并且掠食者的击打距离猎物更远。

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