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首页> 外文期刊>Royal Society Open Science >Forward flight of birds revisited. Part 1: aerodynamics and performance
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Forward flight of birds revisited. Part 1: aerodynamics and performance

机译:重新审视鸟类的前飞。第1部分:空气动力学和性能

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This paper is the first part of the two-part exposition, addressing performance and dynamic stability of birds. The aerodynamic model underlying the entire study is presented in this part. It exploits the simplicity of the lifting line approximation to furnish the forces and moments acting on a single wing in closed analytical forms. The accuracy of the model is corroborated by comparison with numerical simulations based on the vortex lattice method. Performance is studied both in tethered (as on a sting in a wind tunnel) and in free flights. Wing twist is identified as the main parameter affecting the flight performance—at high speeds, it improves efficiency, the rate of climb and the maximal level speed; at low speeds, it allows flying slower. It is demonstrated that, under most circumstances, the difference in performance between tethered and free flights is small.
机译:本文是由两部分组成的博览会的第一部分,涉及鸟类的性能和动态稳定性。整个研究的基础是空气动力学模型。它利用了升力线近似的简单性,以封闭的分析形式提供作用在单个机翼上的力和力矩。通过与基于涡流格子法的数值模拟进行比较,证实了模型的准确性。在系留系统(如在风洞中的刺痛)和自由飞行中都对性能进行了研究。机翼扭曲被认为是影响飞行性能的主要参数-在高速时,它可以提高效率,爬升率和最大水平飞行速度;在低速时,它可以让飞行速度更慢。事实证明,在大多数情况下,系留飞行和自由飞行之间的性能差异很小。

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