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Longitudinal dynamics of a perching aircraft concept

机译:栖息飞机概念的纵向动力学

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This paper introduces a morphing aircraft concept whose purpose is to demonstrate a new bio-inspired flight capability: perching. Perching is a maneuver that utilizes primarily aerodynamics - as opposed to thrust generation - to achieve a vertical or short landing. The flight vehicle that will accomplish this is described herein with particular emphasis on its addition levels of actuation beyond the traditional aircraft control surfaces. A computer model of the aircraft is developed in order to predict the changes in applied aerodynamic loads as it morphs and transitions through different flight regimes. The analysis of this model is outlined, including a lifting-line-based analytical technique and a trim and stability analysis. These analytical methods - compared to panel or computational fluid dynamics (CFD) methods - are considered desirable for the analysis of a large number of vehicle configurations and flight conditions. The longitudinal dynamics of this aircraft are studied, and several interesting results are presented. Of special interest are the changes in vehicle dynamics as the aircraft morphs from a cruise configuration to initiate the perching maneuver. Changes in trim conditions and stability are examined as functions of vehicle geometry. The time response to changes in vehicle configuration is also presented.
机译:本文介绍了一种变形飞机概念,其目的是演示一种新的生物启发的飞行能力:栖息。栖息是一种操纵,主要利用空气动力学(而不是产生推力)来实现垂直或短距离着陆。本文将描述将要完成此任务的飞行器,特别强调其在传统飞机控制面之外的附加致动水平。飞机的计算机模型被开发出来,以预测飞机在不同飞行状态下变形和过渡时施加的空气动力载荷的变化。概述了该模型的分析,包括基于举升线的分析技术以及修整和稳定性分析。与面板或计算流体动力学(CFD)方法相比,这些分析方法被认为是分析大量车辆配置和飞行条件的理想方法。研究了这架飞机的纵向动力学,并给出了一些有趣的结果。特别有趣的是,随着飞机从巡航配置变形以启动栖息机动,车辆动力的变化。根据车辆几何形状检查装饰条件和稳定性的变化。还显示了对车辆配置变化的时间响应。

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