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Influence of Surface Flow on Aerodynamic Loads of a Cantilever Wing

机译:表面流对悬臂翼气动载荷的影响

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摘要

The properties of the characteristic surface flow modes and their influence on the aerodynamic loads of a cantilever wing at low chord Reynolds numbers were experimentally studied. The chordwise variations of the separation and reattachment locations as well as the length and center position of the separation bubble in the domain of the chord Reynolds number/root angle of attack heavily depend on the characteristic surface flow modes. The aerodynamic loads, e.g., the lift, drag, and moment coefficients, are profoundly influenced by the characteristic behaviors of suction surface flow. The lift coefficient increases with the increase of root angle of attack in the regimes of laminar separation, separation bubble, and transition.
机译:实验研究了低弦雷诺数下表面特征流型的特性及其对悬臂翼气动载荷的影响。分离和重新连接位置的弦向变化以及分离气泡在弦雷诺数/根攻角范围内的长度和中心位置在很大程度上取决于特征性表面流动模式。空气动力学载荷,例如升力,阻力和力矩系数,受到吸力表面流的特征行为的深刻影响。在层流分离,分离气泡和过渡过程中,升力系数随着根部迎角的增加而增加。

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