Deciphering the flapping frequency allometry: unveiling the role of sustained body attitude in the aerodynamic scaling of normal hovering animals.

IF 1.7 4区 生物学 Q3 BIOLOGY Biology Open Pub Date : 2025-03-15 Epub Date: 2025-03-14 DOI:10.1242/bio.061932
Jeremy Pohly, Chang-Kwon Kang, Hikaru Aono
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Abstract

Hovering flight helps facilitate feeding, pollination, and courtship. Observed only in smaller flying animals, hover kinematic characteristics are diverse except for the decreasing flapping frequency with the animal size. Although studies have shown that these wing patterns enable distinct unsteady aerodynamic mechanisms, the role of flapping frequency scaling remains a source of disagreement. Here we show that negative allometry of the flapping frequency is required to sustain body attitude during hovering, consistent with experimental data of hovering animals, from fruit flies to hummingbirds, reported in the literature. The derived scaling model reveals that the lift coefficient and reduced frequency remain invariant with mass, enabling leading-edge vortex formation and wake-capture for a wide range of fliers to hover.

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解析扑动频率异速:揭示持续身体姿态在正常悬停动物气动尺度中的作用。
盘旋飞行有助于觅食、授粉和求偶。仅对较小的飞行动物观察到,除了拍动频率随动物体型的增大而减小外,悬停运动特性是多种多样的。尽管研究表明这些翼型能够实现不同的非定常气动机制,但扑动频率比例的作用仍然是一个分歧的来源。本研究表明,在悬停过程中,需要扇动频率的负异速变化来维持身体姿态,这与文献中报道的从果蝇到蜂鸟等悬停动物的实验数据一致。推导出的比例模型表明,升力系数和降低的频率随质量保持不变,从而使前缘涡形成和尾迹捕获能够在大范围内实现悬停。
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来源期刊
Biology Open
Biology Open BIOLOGY-
CiteScore
3.90
自引率
0.00%
发文量
162
审稿时长
8 weeks
期刊介绍: Biology Open (BiO) is an online Open Access journal that publishes peer-reviewed original research across all aspects of the biological sciences. BiO aims to provide rapid publication for scientifically sound observations and valid conclusions, without a requirement for perceived impact.
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