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Ground-induced lift enhancement in a tandem of symmetric flapping wings: Lattice Boltzmann-immersed boundary simulations

机译:串联的对称襟翼中地面引起的升力增强:格子Boltzmann浸入式边界模拟

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摘要

The behavior of a tandem of symmetric flapping wings immersed in a quiescent viscous fluid is numerically dissected. The attention focuses on the effect on the flight performance of a solid surface which idealizes the presence of the ground. A wide numerical campaign is carried out. The author demonstrates that the presence of a solid surface can drastically modify the lift force, thus giving a remarkable advantage for the vertical take-off. Therefore, a proper governing parameter is proposed, which accounts for the ratio between the initial gap from the solid surface and the length of the wing. (C) 2015 Elsevier Ltd. All rights reserved.
机译:数值剖析了沉浸在静态粘性流体中的串联对称拍打翼的行为。注意力集中在对固体表面飞行性能的影响上,该表面理想化了地面的存在。开展了广泛的数字运动。作者证明,固体表面的存在可以极大地改变升力,从而为垂直起飞提供了显着的优势。因此,提出了一个适当的控制参数,该参数考虑了从固体表面开始的初始间隙与机翼长度之间的比率。 (C)2015 Elsevier Ltd.保留所有权利。

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