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Two-Dimensional Aerodynamic Models of Insect Flight for Robotic Flapping Wing Mechanisms of Maximum Efficiency

机译:机器人拍打翼机构最大效率的昆虫飞行二维气动模型

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In the "modified quasi-steady" approach, two-dimensional (2D) aerodynamic models of flapping wing motions are analyzed with focus on different types of wing rotation and different positions of rotation axis to explain the force peak at the end of each half stroke. In this model, an additional velocity of the mid chord position due to rotation is superimposed on the translational relative velocity of air with respect to the wing. This modification produces augmented forces around the end of eachstroke. For each case of the flapping wing motions with various combination of controlled translational and rotational velocities of the wing along inclined stroke planes with thin figure-of-eight trajectory, discussions focus on lift-drag evolution during one stroke cycle and efficiency of types of wing rotation. This "modified quasi-steady" approach provides a systematic analysis of various parameters and their effects on efficiency of flapping wing mechanism. Flapping mechanism with delayed rotation around quarter-chord axis is an efficient one and can be made simple by a passive rotation mechanism so that it can be useful for robotic application.
机译:在“改进的准稳态”方法中,对襟翼运动的二维(2D)空气动力学模型进行了分析,重点研究了不同类型的机翼旋转和旋转轴的不同位置,以解释每个半冲程结束时的力峰值。在该模型中,由于旋转而导致的中弦位置的附加速度叠加在空气相对于机翼的平移相对速度上。这种修改会在每次冲程结束时产生增大的力。对于襟翼运动的每种情况,机翼沿着倾斜的冲程平面具有受控的平移和旋转速度,并以八角形的轨迹进行各种组合,讨论的重点是一个冲程周期内的升力-阻力演变以及机翼类型的效率回转。这种“改进的准稳态”方法对各种参数及其对襟翼机构效率的影响进行了系统分析。绕四分之一弦轴延迟旋转的拍打机构是一种高效的拍板机构,可通过被动旋转机构使其变得简单,因此可用于机器人应用。

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