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Numerical study on aerodynamics of banked wing in ground effect

机译:地面作用下机翼空气动力学的数值研究

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Unlike conventional airplane, a WIG craft experiences righting moment and adverse yaw moment in banked turning in ground effect. Numerical simulations are carried out to study the aerodynamics of banked wing in ground effect. Configurations of rectangular wing and delta wing are considered, and performance of endplates and ailerons during banking are also studied. The study shows that righting moment increase nonlinearly with heeling angle, and endplates enhance the righting. The asymmetric aerodynamic distribution along span of wing with heeling angle introduces adverse yaw moment. Heeling in ground effect with small ground clearance increases the vertical aerodynamic force and makes WIG craft climb. Deflections of ailerons introduce lift decrease and a light pitching motion. Delta wing shows advantage in banked turning for smaller righting moment and adverse yaw moment during banking.
机译:与传统飞机不同,WIG飞行器在倾斜转弯地面效应中会遇到直立力矩和不利偏航力矩。进行了数值模拟,以研究倾斜翼在地面效应中的空气动力学特性。考虑了矩形机翼和三角翼的构型,并研究了倾斜期间终板和副翼的性能。研究表明,扶正力矩随横倾角呈非线性增加,并且端板增强了扶正。沿机翼跨度的不对称空气动力分布具有后倾角会产生不利的偏航力矩。具有小的离地间隙的高跟效应会增加垂直空气动力,并使WIG飞行器爬升。副翼的偏转导致升力降低和俯仰运动。三角翼在倾斜时表现出优势,在倾斜时较小的扶正力矩和不利的偏航力矩。

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