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鲨鱼天然肋纹的三维形状:齿状形态与鲨鱼游泳速度的关系。

Three-dimensional shape of natural riblets in the white shark: relationship between the denticle morphology and swimming speed of sharks.

机构信息

School of Engineering, Tokyo Institute of Technology, 2-12-1 Ookayama, Meguro-ku , Tokyo 152-8550, Japan.

Shimadzu Corporation, 1 Kuwabara-cho, Nishinokyo, Nakagyo-ku , Kyoto 604-8511, Japan.

出版信息

J R Soc Interface. 2024 Aug;21(217):20240063. doi: 10.1098/rsif.2024.0063. Epub 2024 Aug 2.

Abstract

The ridges of the dermal denticles of migratory sharks have inspired riblets to reduce the frictional drag of a fluid. In particular, the dermal denticles of white sharks () are characterized by a high middle ridge and low side ridges. The detailed morphology of their denticles and their variation along the body, however, have never been investigated. Moreover, the hydrodynamic function of high-low combinations of ridges is unknown. In this article, the ridge spacings and heights of the white shark denticles were three-dimensionally quantified using microfocus X-ray computed tomography. Then, the swimming speed at which the ridges would reduce drag was hydrodynamically calculated with a flat plate body model and previous riblet data. High ridges with a large spacing were found to effectively reduce drag at a migration speed of 2.3 m s, while adjacent high and low ridges with a small spacing reduced drag at a burst hunting speed of 5.1 m s. Moreover, the above hydrodynamic calculation method was also applied to the shortfin mako shark and an extinct giant shark (called megalodon) with known ridge spacings, resulting in the estimated hunting speeds of 10.5 m sand 5.9 m s, respectively.

摘要

迁移性鲨鱼的真皮齿脊的脊线启发了肋纹以减少流体的摩擦阻力。特别是,白鲨的真皮齿()的特征在于高中央脊和低侧脊。然而,它们的齿的详细形态及其沿身体的变化从未被研究过。此外,高低脊线组合的水动力功能是未知的。在本文中,使用微焦点 X 射线计算机断层扫描技术对大白鲨齿的脊间距和高度进行了三维量化。然后,使用平板体模型和先前的肋纹数据计算了脊线可以减少阻力的游泳速度。发现大间距的高脊可以有效地降低以 2.3 m s 的迁移速度的阻力,而小间距的相邻高脊和低脊可以降低以 5.1 m s 的爆发狩猎速度的阻力。此外,还将上述水动力计算方法应用于短鳍灰鲭鲨和具有已知脊间距的已灭绝的巨齿鲨(称为巨齿鲨),分别得出估计的狩猎速度为 10.5 m s 和 5.9 m s。

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