首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Scaling of swim speed and stroke frequency in geometrically similar penguins: they swim optimally to minimize cost of transport
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Scaling of swim speed and stroke frequency in geometrically similar penguins: they swim optimally to minimize cost of transport

机译:缩放几何相似的企鹅中的游泳速度和中风频率:它们以最佳方式游泳以最大程度地降低运输成本

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It has been predicted that geometrically similar animals would swim at the same speed with stroke frequency scaling with mass21/3. In the present study, morphological and behavioural data obtained from free-ranging penguins (seven species) were compared. Morphological measurements support the geometrical similarity. However, cruising speeds of 1.8–2.3 m s21 were significantly related to mass0.08 and stroke frequencies were proportional to mass20.29. These scaling relationships do not agree with the previous predictions for geometrically similar animals. We propose a theoretical model, considering metabolic cost, work against mechanical forces (drag and buoyancy), pitch angle and dive depth. This new model predicts that: (i) the optimal swim speed, which minimizes the energy cost of transport, is proportional to (basal metabolic rate/drag)1/3 independent of buoyancy, pitch angle and dive depth; (ii) the optimal speed is related to mass0.05; and (iii) stroke frequency is proportional to mass20.28. The observed scaling relationships of penguins support these predictions, which suggest that breath-hold divers swam optimally to minimize the cost of transport, including mechanical and metabolic energy during dive.
机译:据预测,几何相似的动物会以质量21/3的中风频率缩放以相同的速度游泳。在本研究中,比较了从自由放养的企鹅(七个物种)获得的形态和行为数据。形态学测量结果支持几何相似性。但是,巡航速度1.8–2.3 m s21与mass0.08显着相关,冲程频率与mass20.29成比例。这些比例关系与先前对几何相似动物的预测不一致。我们提出一个理论模型,考虑代谢成本,抵抗机械力(阻力和浮力),俯仰角和潜水深度。这个新模型预测:(i)最佳游泳速度,使运输的能量成本最小,与(基础代谢率/阻力)1/3成正比,而与浮力,俯仰角和潜水深度无关。 (ii)最佳速度与质量0.05有关; (iii)冲程频率与质量20.28成正比。观察到的企鹅的比例关系支持了这些预测,这表明屏气潜水者会进行最佳游泳,以最大程度地降低运输成本,包括潜水期间的机械能和代谢能。

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