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Hydrodynamic role of longitudinal dorsal ridges in a leatherback turtle swimming

机译:纵向棱脊在棱皮龟游泳中的水动力作用

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摘要

Leatherback sea turtles (Dermochelys coriacea) are known to have a superior diving ability and be highly adapted to pelagic swimming. They have five longitudinal ridges on their carapace. Although it was conjectured that these ridges might be an adaptation for flow control, no rigorous study has been performed to understand their hydrodynamic roles. Here we show that these ridges are slightly misaligned to the streamlines around the body to generate streamwise vortices, and suppress or delay flow separation on the carapace, resulting in enhanced hydrodynamic performances during different modes of swimming. Our results suggest that shapes of some morphological features of living creatures, like the longitudinal ridges of the leatherback turtles, need not be streamlined for excellent hydro- or aerodynamic performances, contrary to our common physical intuition.
机译:棱皮海龟(Dermochelys coriacea)已知具有出色的潜水能力,并且非常适合远洋游泳。他们的甲壳上有五个纵脊。尽管推测这些山脊可能是流量控制的一种改编,但尚未进行严格的研究以了解它们的水动力作用。在这里,我们显示出这些脊线与身体周围的流线略有偏离,从而产生沿流方向的涡流,并抑制或延迟了甲壳上的水流分离,从而在不同的游泳方式下增强了水动力性能。我们的研究结果表明,与我们常见的物理直觉相反,无需精简活体动物某些形态特征的形状,例如棱皮龟的纵向脊,即可获得出色的水力或空气动力学性能。

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