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Drag-Based ‘Hovering’ in Ducks: The Hydrodynamics and Energetic Cost of Bottom Feeding

机译:鸭子的基于拖曳的悬停:底部进料的水动力和能量成本

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摘要

Diving ducks use their webbed feet to provide the propulsive force that moves them underwater. To hold position near the bottom while feeding, ducks paddle constantly to resist the buoyant force of the body. Using video sequences from two orthogonal cameras we reconstructed the 3-dimensional motion of the feet through water and estimated the forces involved with a quasi-steady blade-element model. We found that during station holding, near the bottom, ducks use drag based propulsion with the webbed area of the foot moving perpendicular to the trajectory of the foot. The body was pitched at 76±3.47° below the horizon and the propulsive force was directed 26±1.9° ventral to the body so that 98% of the propulsive force in the sagittal plane of the duck worked to oppose buoyancy. The mechanical work done by moving both feet through a paddling cycle was 1.1±0.2 J which was equivalent to an energy expenditure of 3.7±0.5 W to hold position while feeding at 1.5 m depth. We conclude that in shallow water the high energetic cost of feeding in ducks is due to the need to paddle constantly against buoyancy even after reaching the bottom. The mechanical energy spent on holding position near the bottom, while feeding, is approximately 2 fold higher than previous estimates that were made for similar bottom depths but based on the presumed motion of the body instead of motion of the feet.
机译:潜水鸭利用蹼状脚提供推动力,将其移动到水下。为了在喂食时将姿势保持在底部附近,鸭子会不断地划桨以抵抗身体的浮力。使用来自两个正交摄像机的视频序列,我们重建了脚在水中的3维运动,并估计了准稳定叶片元素模型所涉及的力。我们发现,在驻地保持过程中,靠近底部的鸭子会使用基于阻力的推进力,使脚的蹼状区域垂直于脚的轨迹移动。身体俯仰到地平线以下76±3.47°,推进力指向身体腹侧26±1.9°,因此鸭矢状平面中98%的推进力可抵抗浮力。通过在划桨周期中移动双脚而完成的机械功为1.1±0.2 J,这相当于在以1.5 m深度进食时保持位置所需的能量消耗为3.7±0.5W。我们得出的结论是,在浅水中,以鸭为食的高能量成本是由于即使到达底部后仍需要不断划桨以防止浮力。在进食时,花费在保持靠近底部的位置上的机械能比以前对类似底部深度的估计要高出大约2倍,而先前的估计是基于身体的运动而非脚的运动。

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