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Numerical investigation of lift enhancement in flapping hover flight

机译:扑纸盘路升力的数值调查

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The focus of this work is the study of lift enhancement in flapping hover flight using numerical simulations. An idealized set of kinematics for a NACA0012 airfoil consisting of sequential translations and rotations is considered for this purpose, such that the C-l response can be demarcated into translational and rotational parts, which facilitates comparison of forces attributed to translation and rotation. Additionally, comparisons with pure translation and pure rotation are done to isolate the effect of wing-wake interactions. The investigation reveals that the majority of lift is produced in the translational phase. The wing-wake interactions affect the translational phase of the response more than the rotational phase. However, the rotation rate determines the extent of influence of wing-wake interactions on the translational lift response. The effect of different durations of overlap between the translational and rotational motions is also assessed based on the C-l time histories and mean C-l, and the study reveals that an optimum duration of overlap can maximize the lift. An immersed-boundary method with integrated surface-load reconstruction capabilities is used for the computations presented here. The reconstruction of the surface stresses and their integration are carried out with the framework of a parallel solver. The method is validated for a flow past a NACA0012 airfoil executing a non-periodic plunge motion and a non-periodic pitch/plunge motion and a flow around an elliptic airfoil executing a flapping motion.
机译:这项工作的重点是使用数值模拟拍打悬停飞行中的提升升高。为此目的考虑了由序列翻译和旋转组成的NaCA0012翼型的理想化的运动学集合,使得C-L响应可以划分为平移和旋转部件,这有利于归因于翻译和旋转的力的比较。此外,采用纯平移和纯旋转的比较来分离翼尾相互作用的效果。调查表明,大部分升力是在翻译阶段产生的。机翼唤醒相互作用影响比旋转阶段更大的响应的平移阶段。然而,旋转率决定了翼尾相互作用对平移升力响应的影响程度。还基于C-L时间历史和平均C-L评估平移和旋转运动之间的不同持续性重叠之间的效果,并且该研究表明,最佳的重叠持续时间可以最大化升力。具有集成表面负载重建能力的浸入式边界方法用于此处提供的计算。用平行求解器的框架进行表面应力的重建及其积分。该方法被验证用于经过一个流过NACA0012翼型的流动,其执行非周期性的暴跌运动和非周期性间距/插入运动和执行拍摄运动的椭圆翼型的流动。

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