首页> 外文期刊>JSME International Journal. Series B, Fluids and Thermal Engineering >Effects of Leading Edge Separation Vortex of Flexible Structure Delta Wing on Its Aerodynamic Characteristics
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Effects of Leading Edge Separation Vortex of Flexible Structure Delta Wing on Its Aerodynamic Characteristics

机译:柔性结构三角翼前缘分离涡对其气动特性的影响

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The aerodynamic forces and moments of a flexible delta wing in pitching motion were experimentally studied in a low-speed wind tunnel. Three types of flexible delta wing were investigated, the flexible parts of which were 44, 70 and 99% of the delta wing. Aerodynamic characteristics were different among the three types of flexible and completely hard delta wing, and it was found that the winding-up of the leading edge of the delta wing is the key factor for determining the leading edge vortex on the upper side of the wing and the pressure distribution on the windward side. Lift, drag, and pitching moment formed a hysteresis loop with an angle of attack in pitching motion, particularly in a region with a large attack angle, accompanied by leading edge vortex breakdown. The flow visualization of leading edge vortices was also carried out to explain the dynamic characteristics of the delta wings.
机译:在低速风洞中通过实验研究了挠性三角翼在俯仰运动中的空气动力和力矩。研究了三种类型的柔性三角翼,其中柔性部分占三角翼的44、70和99%。三种柔性和完全坚硬的三角翼之间的空气动力学特性是不同的,并且发现三角翼前缘的缠绕是确定机翼上侧前缘涡旋的关键因素和迎风侧的压力分布。升力,阻力和俯仰力矩在俯仰运动中形成了具有迎角的磁滞回线,尤其是在迎角较大的区域,伴随着前缘涡旋破裂。前缘涡流的流动可视化也被用来解释三角翼的动态特性。

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