鸟逃生作战中的活跃翼投机械
Mohammad Nasirul Haque1, Bo Cheng2, Bret W Tobalske3
1Department of Mechanical Engineering, Vanderbilt University, Nashville, TN 37235, United States of America.
Bioinspiration & biomimetics
|August 11, 2023
概括
蜂鸟逃生动作涉及到积极的翅膀投,而不仅仅是被动的惯性效应. 增强的肌肉力量驱动了机翼旋转,以实现快速的空中逃逸.
科学领域:
- 生物力学 生物力学
- 动物飞行动物飞行
- 空气动力学 航空动力学
背景情况:
- 以前的研究表明,被动惯性效应驱动昆虫和蜂鸟的翅膀摆动.
- 机翼俯冲,即围绕机翼长轴的旋转,被认为是机翼减速和加速的被动后果.
研究的目的:
- 为了研究鸟逃生机动期间翅膀投的机制.
- 为了确定活跃的肌肉力量是否有助于在飞行快速变化期间的翅膀投.
主要方法:
- 从高速视频录像中重建蜂鸟翅膀动力学.
- 计算流体动力学 (CFD) 建模以分析空气动力学力和功率要求.
- 机翼动力学和动力需求的比较,在逃生机动和悬空期间.
主要成果:
- 鸟在逃跑过程中显著改变了翅膀跳动频率和飞行轨迹.
- 虽然惯性作用有助于机翼翻转,但在向下冲击时需要主动输入功率来增加机动力.
- 在上空时的机翼偏差需要比悬浮时要多得多的功率来促进逃生.
结论:
- 蜂鸟的逃生动作是由一个活跃的翅膀投机制促进的.
- 增强的肌肉招募对于驱动机翼投和逃跑过程中的偏差至关重要,使空气动力学力的快速重定向成为可能.
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