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How Archer Fish Achieve a Powerful Impact: Hydrodynamic Instability of a Pulsed Jet in Toxotes jaculatrix

机译:射水鱼如何实现强大的冲击力:水动力不稳定的一个脉冲射流的Toxotes jaculatrix

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摘要

Archer fish knock down insects anchored to vegetation by hitting them with a precisely aimed jet of water. The striking force of the jet at the impact is such to overcome the strong anchoring forces of insects. The origin of the effectiveness of such hunting mechanism has been long searched for inside of the fish, in the unsuccessful attempt to identify internal structures dedicated to the amplification of muscular power. Here we perform a kinematic analysis of the jet emitted by two specimens of Toxotes jaculatrix. We estimate that at the impact the jet conveys a typical specific power of about 3000 W/kg, which is well above the maximum specific power of the order of 500 W/kg deliverable by a vertebrate muscle. Unexpectedly, we find that the amplification of muscular power occurs outside of the fish, and is due to a hydrodynamic instability of the jet akin to those occurring in Drop-on-Demand inkjet printing. The investigated fish are found to modulate the velocity of the jet at the orifice to favor the formation of a single, large, water drop that hits the prey abruptly with a large momentum. The observed mechanism represents a remarkable example of use of an external hydrodynamic lever that does possibly not entail the high evolutionary cost needed for the development of highly specialized internal structures dedicated to the storing of mechanical energy.
机译:弓箭手鱼用精确对准的水射流击中固定在植物上的昆虫,从而击倒它们。射流在撞击时的打击力足以克服昆虫的强大锚固力。长期以来,人们一直在寻找这种捕捞机制的有效性的根源,而没有成功地尝试鉴定出专门用于增强肌肉力量的内部结构。在这里,我们对两个Toxotes jaculatrix标本发出的射流进行了运动学分析。我们估计,在撞击时,射流的典型比功率约为3000 W / kg,远高于脊椎动物肌肉可传递的500 W / kg的最大比功率。出乎意料的是,我们发现肌肉力量的放大发生在鱼的外部,这是由于喷射的流体动力学不稳定性所致,类似于按需喷墨印刷中出现的那些。发现受调查的鱼可调节孔口射流的速度,从而有利于形成单个大水滴,并以大动量突然撞击猎物。观察到的机制代表了使用外部流体动力杆的杰出示例,该外部流体动力杆可能不会带来开发专用于存储机械能的高度专业化内部结构所需的高进化成本。

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