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BIO-INSPIRED COUPLING OF CAMBER AND SWEEP IN MORPHING WINGS

机译:变形翼中弯角和扫角的生物启发耦合

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This work aims to investigate how bio-inspired morphing wings built with state-of-the-art materials affect the aerodynamics and extend the range of flight conditions. In particular, this study investigates the aerodynamic effects of coupled airfoil and planform sweep morphing. The morphed geometries were chosen to resemble a current morphing design that uses Macro Fiber Composites (MFCs) and Shape Memory Alloy (SMA) wires. The primary mode of camber actuation is achieved using the MFCs which are supplemented using antagonistic SMA wires, forming a hinge ahead of the MFCs. The SMA hinge also allows for bi-directional actuation, resulting in a reflexed airfoil. Numerical simulations were conducted using a Reynolds-averaged-Navier-Stokes (RANS) turbulence model for low-Reynolds-number flow, in addition to wind tunnel experiments. Nine different wing configurations were considered consisting of combinations of 3 sweep angles and 3 airfoil profiles, including unactuated (baseline), monotonic camber actuation, and reflex actuation. These geometries were 3D printed on a high resolution printer. Tests were conducted in a 2 ft. × 2 ft. wind tunnel at the University of Michigan at a flow speed of 10 m/s, consistent with the flow regime expected for this scale of aircraft. The preliminary results suggest a definite improvement in flight performance associated with the proposed coupling.
机译:这项工作旨在研究用最先进的材料制成的具有生物启发性的变形机翼如何影响空气动力学并扩展飞行条件的范围。特别是,这项研究调查了翼型和平面扫掠变形耦合的空气动力效应。选择变形的几何形状,使其类似于使用宏纤维复合材料(MFCs)和形状记忆合金(SMA)线的当前变形设计。外倾角致动的主要模式是通过使用MFC来实现的,而MFC则使用了对抗性SMA线作为补充,从而在MFC之前形成了一个铰链。 SMA铰链还允许双向驱动,从而形成反射翼型。除了风洞实验外,还针对低雷诺数流,使用雷诺平均Navier-Stokes(RANS)湍流模型进行了数值模拟。九种不同的机翼构型被认为由3个后掠角和3个翼型廓线的组合组成,包括未驱动(基线),单调外倾驱动和反射驱动。这些几何形状在高分辨率打印机上进行了3D打印。测试是在密歇根大学的2英尺×2英尺风洞中进行的,流速为10 m / s,与这种飞机规模的预期流动状态一致。初步结果表明,与拟议的联轴器相关的飞行性能有了明显的改善。

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