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Flight dynamics of a pterosaur-inspired aircraft utilizing a variable-placement vertical tail

机译:采用可变位置垂直尾翼的翼龙飞行器的飞行动力学

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Mission performance for small aircraft is often dependent on the turn radius. Various biologically inspired concepts have demonstrated that performance can be improved by morphing the wings in a manner similar to birds and bats; however, the morphing of the vertical tail has received less attention since neither birds nor bats have an appreciable vertical tail. This paper investigates a design that incorporates the morphing of the vertical tail based on the cranial crest of a pterosaur. The aerodynamics demonstrate a reduction in the turn radius of 14% when placing the tail over the nose in comparison to a traditional aft-placed vertical tail. The flight dynamics associated with this configuration has unique characteristics such as a Dutch-roll mode with excessive roll motion and a skid divergence that replaces the roll convergence.
机译:小型飞机的任务性能通常取决于转弯半径。各种受生物启发的概念已经表明,可以通过以类似于鸟和蝙蝠的方式使机翼变形来提高性能。然而,垂直尾巴的变形受到的关注较少,因为鸟类和蝙蝠都没有明显的垂直尾巴。本文研究了一种基于翼龙颅顶融合垂直尾巴变形的设计。与传统的尾部垂直放置的尾翼相比,将尾巴放在鼻子上时,空气动力学性能证明其转弯半径降低了14%。与这种配置相关的飞行动力学具有独特的特性,例如具有过度侧倾运动的荷兰侧倾模式和取代侧倾收敛的滑移发散。

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