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首页> 外文期刊>Journal of the Royal Society Interface >The forces exerted by aquatic suction feeders on their prey
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The forces exerted by aquatic suction feeders on their prey

机译:在他们的猎物上施加水生吸料器的力

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Successful prey capture by aquatic suction feeders depends on the ability of the predator to generate a flow of water external to the mouth that overcomes any movements and forces that the prey uses to resist the suction flow.Elucidating the nature and magnitude of these forces is a key to understanding what limits suction feeding performance.We identify three potential forces produced by the suction flow field:drag,acceleration reaction and the fluid pressure gradient.Using a mathematical model parametrized with empirical data from feeding bluegill,Lepomis macrochirus,we explore the relative magnitude of these forces under three encounter scenarios with a 5 mm diameter,spherical prey:an immobile mid-water prey;a similar prey that executes an escape response;and a prey item that grips a substratum.Contrary to the almost exclusive emphasis on drag in the suction feeding literature,it made a minor contribution to the total forces in all three cases.In all three scenarios,the pressure gradient is the largest of the three forces.These results are important because previous researchers have emphasized drag and have not explicitly recognized a role for the pressure gradient force in suction feeding.The simulations suggest previously unrecognized mechanisms that suction feeders can use to enhance the forces that they exert,by increasing the steepness of the pressure gradient that the prey item is exposed to.This can be accomplished either by increasing the rate of increase in fluid velocity or by restricting the size of the mouth aperture,which creates a steeper spatial gradient in pressure.
机译:水生吸入器的成功猎物捕获取决于捕食者在口腔外部产生水流动的能力,这些水克服了猎物用途的任何运动和力,即猎物用来抵抗吸入流动。阐明这些力的性质和大小是a理解抽吸喂养性能的关键。我们识别吸入流场产生的三个潜在力量:阻力,加速反应和流体压力梯度。使用从喂养蓝鳃植物的经验数据的数学模型参数化,我们探讨了相对的在三个遭遇方案下的这些力量的大小,直径为5毫米,球形猎物:一个固定的中水猎物;一个类似的猎物,它执行逃生响应;以及一个掌握子地图的猎物项目。控制对拖动的几乎专用强调的猎物。在吸入喂养文献中,它对所有三种情况下的总力量进行了微小的贡献。在所有三种情况下,压力GRA DIEN是这三种力量中最大的。这些结果很重要,因为之前的研究人员强调拖累,并且没有明确地认识到抽吸喂料中的压力梯度力的作用。模拟表明吸入馈线可以用于增强力的未识别机制。通过增加猎物项目暴露的压力梯度的陡度来发挥。这可以通过增加流体速度的增加速度或通过限制嘴孔的尺寸来实现,这会产生陡峭的空间梯度压力。

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