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Design Parametric Study of a Compound Wing-in-Ground Effect. I: Aerodynamics Performance

机译:复合接地翼效应的设计参数研究。一:空气动力学性能

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The configuration and service condition of a wing can influence the performance of wing-in-ground effect (WIG) craft. In this study, the aerodynamic performance of compound wings in ground effect was numerically investigated through a parametric design study. The compound wing is divided into three parts with one rectangular wing in the middle and two reverse taper wings with an anhedral angle at the sides. A NACA6409 airfoil was employed as a section of the wing. The design parameters included the span size, anhedral angle, and taper ratio plus two boundary conditions: ground clearance and Reynolds number. The three-dimensional, Reynolds-averaged Navier-Stokes (RANS) equations were solved numerically. A realizable k-epsilon turbulent model was used to compute the effects of the turbulent flow over the wing surface. The computational results of the basic wing were compared with the experimental data of other published works. Next, the aerodynamic performance of the compound wings was computed for various design parameters. Accordingly, all design parameters had effects on the lift-to-drag ratio of the compound wing, although their effects were not equal. The span size of the side wing, anhedral angle, and ground clearance have substantial effects on the lift-to-drag ratio of the compound wing. Two phenomena, namely the ram effect pressure and tip vortex could affect the lift-to-drag ratio of the compound wing in different configurations and conditions. (C) 2015 American Society of Civil Engineers.
机译:机翼的配置和使用条件可能会影响机翼地效(WIG)工艺的性能。在这项研究中,通过参数化设计研究对复合机翼在地面效应中的空气动力学性能进行了数值研究。复合机翼分为三部分,中间是一个矩形翼,两个侧面是反角的倒锥形翼。 NACA6409机翼被用作机翼的一部分。设计参数包括跨距大小,反角和锥度比以及两个边界条件:离地间隙和雷诺数。三维求解了雷诺平均的Navier-Stokes(RANS)方程。使用可实现的kε湍流模型来计算机翼表面湍流的影响。将基本机翼的计算结果与其他已发表作品的实验数据进行了比较。接下来,针对各种设计参数计算了复合机翼的空气动力学性能。因此,所有设计参数均对复式机翼的升阻比产生影响,尽管它们的影响并不相等。侧翼的跨度大小,反角和离地间隙对复合翼的升阻比有很大影响。冲压效应压力和叶尖涡流这两种现象可能在不同的构造和条件下影响复合机翼的升阻比。 (C)2015年美国土木工程师学会。

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