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Demonstration of an in situ morphing hyperelliptical cambered span wing mechanism

机译:演示原位变形超椭圆弧形翼展翼机构

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Research on efficient shore bird morphology inspired the hyperelliptical cambered span (HECS) wing, a crescent-shaped, aft-swept wing with vertically oriented wingtips. The wing reduces vorticity-induced circulation loss and outperforms an elliptical baseline when planar. Designed initially as a rigid wing, the HECS wing makes use of morphing to transition from a planar to a furled configuration, similar to that of a continuously curved winglet, in flight. A morphing wing concept mechanism is presented, employing shape memory alloy actuators to create a discretized curvature approximation. The aerodynamics for continuous wing shapes is validated quasi-statically through wind tunnel testing, showing enhanced planar HECS wing lift-to-drag performance over an elliptical wing, with the furled HECS wing showing minimal enhancements beyond this point. Wind tunnel tests of the active morphing wing prove the mechanism capable of overcoming realistic loading, while further testing may be required to establish aerodynamic merits of the HECS wing morphing maneuver.
机译:有效的滨鸟形态学研究激发了超椭圆弧度跨度(HECS)机翼,这是一种新月形,后掠式机翼,具有垂直定向的翼尖。机翼减少了涡流引起的循环损失,并且在平面时性能优于椭圆基线。 HECS机翼最初设计为刚性机翼,在飞行中类似于连续弯曲的小翼,利用变形从平面构型过渡到卷毛构型。提出了一种变形机翼概念机构,该机构采用形状记忆合金致动器来创建离散曲率近似值。通过风洞测试,对连续机翼形状的空气动力学进行了准静态验证,显示了椭圆形机翼上增强的平面HECS机翼升起阻力性能,而平整的HECS机翼在此点上显示出最小的增强。主动变形机翼的风洞测试证明了该机制能够克服实际载荷,同时可能需要进一步测试以建立HECS机翼变形机动的空气动力学性能。

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