湍流导致拍打飞行器的运动学和行为学调整。

IF 3.7 2区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES Journal of The Royal Society Interface Pub Date : 2024-03-01 Epub Date: 2024-03-20 DOI:10.1098/rsif.2023.0591
Emmanouil Lempidakis, Andrew N Ross, Michael Quetting, Krishnamoorthy Krishnan, Baptiste Garde, Martin Wikelski, Emily L C Shepard
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引用次数: 0

摘要

湍流是自然界的一种普遍现象,但其对拍打飞行的影响却鲜有研究。我们评估了自由流湍流如何影响归巢鸽子(Columba livia)的运动学、飞行努力和轨迹特性,并将飞行高度的细微变化作为湍流水平的替代物。随着湍流的增加,鸽子的振翅幅度略有增加(与实验室研究类似),但伴随着平均振翅频率的降低,鸽子的拍翅速度保持不变。因此,鸟类对湍流的平均运动反应可能使其在不降低推进效率的情况下增加稳定性。然而,鸟类对湍流最明显的反应是增加了拍翅频率和振幅的变化。这些运动学上的逐次变化为湍流提供了瞬时补偿。它们也会增加飞行成本。然而,鸽子只对飞行高度做了很小的调整,这可能导致鸽子在暴露于强对流湍流时几乎没有变化。因此,鸽子对湍流的反应与对风的反应是不同的,高湍流的代价是通过增加鸽子运动学和空速的变化而产生的。这凸显了研究自由生活动物飞行参数变化的价值。
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Turbulence causes kinematic and behavioural adjustments in a flapping flier.

Turbulence is a widespread phenomenon in the natural world, but its influence on flapping fliers remains little studied. We assessed how freestream turbulence affected the kinematics, flight effort and track properties of homing pigeons (Columba livia), using the fine-scale variations in flight height as a proxy for turbulence levels. Birds showed a small increase in their wingbeat amplitude with increasing turbulence (similar to laboratory studies), but this was accompanied by a reduction in mean wingbeat frequency, such that their flapping wing speed remained the same. Mean kinematic responses to turbulence may therefore enable birds to increase their stability without a reduction in propulsive efficiency. Nonetheless, the most marked response to turbulence was an increase in the variability of wingbeat frequency and amplitude. These stroke-to-stroke changes in kinematics provide instantaneous compensation for turbulence. They will also increase flight costs. Yet pigeons only made small adjustments to their flight altitude, likely resulting in little change in exposure to strong convective turbulence. Responses to turbulence were therefore distinct from responses to wind, with the costs of high turbulence being levied through an increase in the variability of their kinematics and airspeed. This highlights the value of investigating the variability in flight parameters in free-living animals.

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来源期刊
Journal of The Royal Society Interface
Journal of The Royal Society Interface 综合性期刊-综合性期刊
CiteScore
7.10
自引率
2.60%
发文量
234
审稿时长
2.5 months
期刊介绍: J. R. Soc. Interface welcomes articles of high quality research at the interface of the physical and life sciences. It provides a high-quality forum to publish rapidly and interact across this boundary in two main ways: J. R. Soc. Interface publishes research applying chemistry, engineering, materials science, mathematics and physics to the biological and medical sciences; it also highlights discoveries in the life sciences of relevance to the physical sciences. Both sides of the interface are considered equally and it is one of the only journals to cover this exciting new territory. J. R. Soc. Interface welcomes contributions on a diverse range of topics, including but not limited to; biocomplexity, bioengineering, bioinformatics, biomaterials, biomechanics, bionanoscience, biophysics, chemical biology, computer science (as applied to the life sciences), medical physics, synthetic biology, systems biology, theoretical biology and tissue engineering.
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