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Aeroelastic mysteries in avian flight

机译:鸟类飞行中的气动弹性之谜

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Avian flight is one of the remarkable achievements of vertebrate evolution. Thereby, the birds encountered, in principle, the same flight-technical problems and challenges as the human aircraft designers. From an aeronautical point of view, and with the knowledge and experience of modern aircraft design, the present study demonstrates that concealed aeroelastic effects and phenomena are also of basic importance in avian flight. Structural wing asymmetries play a fundamental role. First, as basis for the aeroelastic investigations, significant flight relevant anatomical and structural characteristics of the complex biotechnical architecture of avian wings are exposed. The further considerations are then focussed on two conspicuous asymmetric structural particularities of the wing, which contribute essentially to active flight ability of birds-an asymmetric positioning of the shaft in the vane of the primary flight feathers, and just so the eccentric location of the bony skeleton in the wing profile close to the leading edge. Ornithologists consider the asymmetry of the flight feathers as a diagnostic tool for aerial capability. However, this thesis still remains a topic of controversial debates. The study shows evidently that the magic structural wing asymmetries are imperative aeroelastic requirements for efficient flight, in particular to ensure structural strength and stability of the wing, as well as aerodynamic integrity. But these asymmetries are also fundamental to active aerodynamic generation of lift and thrust in wing flapping.
机译:鸟类飞行是脊椎动物进化的显著成就之一。因此,鸟类在原则上遇到了与人类飞机设计者相同的飞行技术问题和挑战。从航空学的角度,并结合现代飞机设计的知识和经验,本研究表明,隐蔽的航空弹性效应和现象在禽类飞行中也很重要。机翼的结构不对称起着基本作用。首先,作为气动弹性研究的基础,揭示了重要的与飞行相关的解剖学和结构特征,涉及鸟类翅膀复杂的生物技术结构。然后,将进一步的考虑集中在机翼的两个明显的不对称结构特性上,这些特性主要有助于鸟类的主动飞行能力-轴在主要飞行羽毛的叶片中的不对称定位,正好是骨的偏心位置机翼轮廓中的骨架靠近前缘。鸟类学家认为飞行羽毛的不对称性是提高飞行能力的诊断工具。但是,本论文仍然是有争议的话题。研究显然表明,魔术结构机翼的不对称性是有效飞行的必要气动弹性要求,特别是要确保机翼的结构强度和稳定性以及空气动力学完整性。但是,这些不对称性也是主动风动力产生机翼襟翼升力和推力的基础。

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