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Morphology, velocity, and intermittent flight in birds

机译:鸟类的形态,速度和间歇飞行

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Body size, pectoralis composition, aspect ratio of the wing, and forward speed affect the use of intermittent flight in birds. During intermittent non-flapping phases, birds extend their wings and glide or flex their wings and bound. The pectoralis muscle is active during glides but not during bounds; activity in other primary flight muscles is variable. Mechanical power, altitude, and velocity vary among wingbeats in flapping phases; associated with this variation are Changes In neuromuscular recruitment, wingbeat frequency, amplitude, and gait. Species of intermediate body mass (35-158 g) tend to flap-glide at slower speeds and flap-bound at faster speeds, regardless of the aspect ratio of their wings. Such behavior may reduce mechanical power output relative to continuous flapping. Smaller species (<20 g) with wings of low aspect ratio may flap-bound at all speeds, yet existing models do not predict an aerodynamic advantage for the flight style at slow speeds. The behavior of these species appears to be due to wing shape rather than pectoralis physiology. As body size increases among species, percent time spent flapping increases, and birds much larger than 300 g do not flap-bound. This pattern may be explained by adverse scaling of mass-specific power or lift per unit power output available from Right muscles. The size limit for the ability to bound intermittently may be offset somewhat by the scaling of pectoralis composition. The percentage of time spent flapping during intermittent flight also varies according to flight speed.
机译:身体大小,胸大肌组成,机翼的长宽比和前进速度会影响鸟类间歇性飞行的使用。在间歇性非拍打阶段,鸟类会张开翅膀,滑行或弯曲翅膀并束缚。胸大肌在滑行时活跃,但在界限时不活跃;其他主要飞行肌肉的活动是可变的。在拍打阶段,机翼的机械功率,高度和速度会有所不同。与这种变化相关的是神经肌肉补充,翼拍频率,幅度和步态的变化。中等体重的物种(35-158 g)倾向于以较慢的速度拍打滑翔,而以较快的速度拍打皮瓣,而不论其翅膀的长宽比如何。相对于连续拍打,这种行为可能会降低机械动力输出。具有低长宽比的机翼的较小物种(<20 g)可能在所有速度下都受到襟翼约束,但是现有模型无法预测低速飞行样式的空气动力学优势。这些物种的行为似乎是由于翅膀的形状而不是胸大肌的生理。随着物种间体重的增加,拍打时间的百分比会增加,而大于300 g的鸟不会拍打。可以通过右肌肉的单位质量输出功率或提升的不利比例来解释这种模式。间歇结合能力的大小限制可能会因胸大肌成分的缩放而有所抵消。在间歇性飞行中花费的拍打时间百分比也根据飞行速度而变化。

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