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Updated: Jan 18, 2026

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通过尾巴动作减少阻力对稳定性的影响,以滑翔的谷仓猫头 (Tyto alba) 为模型
Changyao Chen1, Jorn A Cheney2, James R Usherwood3
1School of Mechanical Engineering, Dongguan University of Technology, Dongguan, People's Republic of China.
Journal of the Royal Society, Interface
|January 15, 2026
概括
鸟的尾巴姿势显著影响飞行空气动力学. 这项研究揭示了尾巴变形 (扩张和投) 如何影响起重,阻力和稳定性,改善滑翔过程中的控制.
科学领域:
- 航空空气动力学航空空气动力学
- 生物启发的工程是生物启发的.
- 动物生物力学动物生物力学
背景情况:
- 鸟的尾巴姿势对于飞行控制至关重要,影响起重,拖动,修剪和稳定性.
- 在稳定滑翔过程中,尾部扩展,投和空气动力学力之间的复杂相互作用仍然不完全理解.
研究的目的:
- 为了研究鸟类尾巴变形的空气动力学后果.
- 探索重量支,阻力,纵向修剪和滑翔过程中的稳定性之间的相互作用.
- 分析尾巴姿势如何随着速度的变化而改变,以及它对飞行稳定性的影响.
主要方法:
- 计算流体动力学 (CFD) 模拟.
- 使用高保真度,摄像度学衍生的几何学自由滑翔的谷仓猫头.
- 在各种速度范围内分析了空气动力学力和时刻.
主要成果:
- 尾巴的扩展和投应针对速度进行优化,以最大限度地减少阻力.
- 尾巴的变形会影响尾巴支的重量比例,并且需要重心调整以修剪.
- 空气动力学不稳定性存在于所有速度,但尾部变形改善了在更高速度的控制挑战.
结论:
- 尾巴变形在滑翔鸟的空气动力学稳定性和控制中起着至关重要的作用.
- 优化尾部姿势可以减轻在更高速度保持稳定的飞行所面临的挑战.
- 了解尾巴变形为生物灵感飞行控制系统提供了洞察力.
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