首页> 外文期刊>International journal of aerospace engineering >Prediction of Lift Coefficient for Tandem Wing Configuration or Multiple-Lifting-Surface System Using Prandtl's Lifting-Line Theory
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Prediction of Lift Coefficient for Tandem Wing Configuration or Multiple-Lifting-Surface System Using Prandtl's Lifting-Line Theory

机译:基于Prandtl的升力线理论预测串联机翼构型或多起升地面系统的升力系数

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摘要

In tandem airfoil configuration or multiple-lifting-surface layouts, due to the flow interaction among their lifting surfaces, the aerodynamic characteristics can be affected by each other. In accordance with Prandtl's classical lifting-line theory, a method to calculate the section lift coefficient for the tandem wing configuration or multiple-lifting-surface system is presented. In that method, the form of Fourier sine series is used to express the variation of the section circulation which changes continuously along the wingspan. The accuracy of the numerical solutions obtained by the method has been validated by the data obtained from computational fluid dynamics and tunnel experiment. By varying the design parameters, such as the gap, the stagger, the incidence angle, the wingspan, the taper ratio as well as the aspect ratio, a series of tandem wing configurations are tested to analyze the lift coefficient and the induced drag of each lifting surface. From the results, it can be seen that the bigger negative gap and stagger can produce better lift characteristic for tandem wing configuration. Besides, it will also be beneficial for the lift characteristic when the incidence angle and the wingspan of fore wing are appropriately declined or if the incidence angle and the wingspan of hind wing are appropriately increased.
机译:在串联翼型配置或多个升力面布局中,由于其升力面之间的流动相互作用,空气动力学特性可能会相互影响。根据Prandtl的经典升力线理论,提出了一种计算串联机翼构型或多升力面系统截面升力系数的方法。在该方法中,使用傅立叶正弦级数的形式来表示截面循环的变化,该变化沿翼展连续变化。通过计算流体动力学和隧道实验获得的数据验证了通过该方法获得的数值解的准确性。通过改变设计参数,例如间隙,交错,入射角,翼展,锥度比和长宽比,测试了一系列串联的机翼配置,以分析每种的升力系数和诱导阻力提升表面。从结果可以看出,较大的负间隙和交错可以为串联机翼构型产生更好的升力特性。此外,当适当减小前机翼的入射角和翼展或适当增大后机翼的入射角和翼展时,对于升力特性也将是有益的。

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