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首页> 外文期刊>The Journal of Experimental Biology >How do cormorants counter buoyancy during submerged swimming?
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How do cormorants counter buoyancy during submerged swimming?

机译:sub在水下游泳时如何抵抗浮力?

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摘要

Buoyancy is a de-stabilizing force for diving cormorants that forage at shallow depths. Having to counter this force increases the cost of transport underwater. Cormorants are known to be less buoyant than most water birds but are still highly buoyant (rho=similar to0.8 kg m(-3)) due to their adaptations for aerial flight. Nevertheless, cormorants are known to dive at a wide range of depths, including shallow dives where buoyancy is maximal. We analyzed the kinematics of underwater swimming of the great cormorant (Phalacrocorax carbo sinensis) in a shallow pool to discover and evaluate the mechanisms countering buoyancy while swimming horizontally. The birds maintained a very uniform cyclic paddling pattern. Throughout this cycle, synchronized tilting of the body, controlled by the tail, resulted in only slight vertical drifts of the center of mass around the average swimming path. We suggest that this tilting behavior serves two purposes: (1) the elongated bodies and the long tails of cormorants, tilted at a negative angle of attack relative to the swimming direction, generate downward directed hydrodynamic lift to resist buoyancy and (2) during the propulsive phase, the motion of the feet has a significant vertical component, generating a vertical component of thrust downward, which further helps to offset buoyancy. The added cost (if the drag resulting from this tilting behavior may be reduced by the fact that the birds use a burst-and-glide pattern while swimming.
机译:浮力是潜水浅深度觅食的cor的不稳定因素。必须抵抗这种力量增加了水下运输的成本。 known的浮力比大多数水禽要小,但由于它们适合空中飞行,因此浮力仍然很高(rho =约0.8 kg m(-3))。尽管如此,known的潜水深度还是很广的,包括浮力最大的浅层潜水。我们分析了great在浅水池中水下游泳的运动学,以发现和评估水平游泳时对抗浮力的机制。鸟类保持非常均匀的周期性划水模式。在整个循环过程中,由尾巴控制的身体同步倾斜导致质心在平均游泳路径周围的垂直漂移很小。我们建议这种倾斜行为有两个目的:(1)bodies的细长体和长尾,相对于游泳方向以负攻角倾斜,产生向下的流体动力,以抵抗浮力;(2)在推进阶段,脚的运动具有明显的垂直分量,从而产生向下推力的垂直分量,这进一步有助于抵消浮力。额外的费用(如果因倾斜行为而产生的阻力可通过鸟类在游泳时使用连发滑行模式的事实而减少)。

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