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Use of computational fluid dynamics to study forces exerted on prey by aquatic suction feeders

机译:利用计算流体动力学研究水生吸食者对猎物的作用力

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摘要

Suction feeding is the most commonly used mechanism of prey capture among aquatic vertebrates. Most previous models of the fluid flow caused by suction feeders involve making several untested assumptions. In this paper, a Chimera overset grids approach is used to solve the governing equations of fluid dynamics in order to investigate the assumptions that prey do not interact with the flow and that the flow can be modelled as a one-dimensional flow. Results show that, for small prey, both neglecting the prey and considering prey interaction give similar calculated forces exerted on the prey. However, as the prey item increases in size toward the size of the gape, its effect on the flow becomes more pronounced. This in turn affects both the magnitude of the hydrodynamic forces imparted to the prey and the time when maximum force is delivered. Maximum force is delivered most quickly to intermediate sized prey, about one-third of mouth diameter, and most slowly to prey less than 7 per cent or greater than 67 per cent of mouth diameter. This suggests that the effect of prey size on the timing of suction forces may have substantial consequences for the feeding ecology of suction feeders that are known to prefer prey between 25 and 50 per cent of mouth diameter. Moreover, for a 15 cm fish with a 15 mm gape, assuming a radial one-dimensional flow field can result in underestimating the maximum force exerted on a 5 mm diameter spherical prey 1 gape distance from the mouth by up to 28.7 per cent.
机译:吸食是水生脊椎动物捕获猎物的最常用机制。由吸料机引起的流体流动的大多数先前模型都涉及一些未经检验的假设。在本文中,使用奇美拉(Chimera)重叠网格方法来求解流体动力学的控制方程,以研究猎物不与流相互作用并且可以将流建模为一维流的假设。结果表明,对于小型猎物,忽略猎物并考虑猎物的相互作用都会给猎物施加相似的计算力。然而,随着猎物的大小朝着间隙的大小增加,它对流动的影响变得更加明显。这继而影响施加到猎物的流体动力的大小以及传递最大力的时间。最大的力以最快的速度传递到中等大小的猎物,大约占口径的三分之一,而最慢的猎物则传递到小于口径的7%或大于口径的67%的猎物。这表明,猎物大小对吸力时机的影响可能会对吸食者的喂养生态产生重大影响,众所周知,吸食者更喜欢在口径的25%至50%之间的猎物。此外,对于一条15厘米,间隙为15毫米的鱼,假设径向一维流场会导致低估作用于距嘴1间隙距离的直径为5毫米的球形猎物的最大力达28.7%。

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