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Aerodynamic investigation on tiltable endplate for WIG craft

机译:WIG工艺可倾斜端板的空气动力学研究

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Purpose - The purpose of this paper is to investigate the aerodynamics of wing in ground effect with tiltable endplates for a new type wing-in-ground effect (WIG) craft. Design/methodology/approach - The concept of tiltable endplates was implemented into the design of a WIG craft. Numerical investigation on aerodynamics of the tiltable endplate was carried out. The endplate effect on aerodynamics was deeply investigated with a rectangular wing at given angle of attack and flight height. The size of endplate relative to whole wing was then studied based on given endplate deflection angle and flight height. Finally, aerodynamics and flow of tiltable endplate in various flight heights and endplate deflection angles were analyzed. Aerodynamics, pressure and wingtip vortex were recorded in the study. Findings - Endplate influences development of wingtip vortex and improves aerodynamics. Tiltable endplate can enable WIG craft to yield improved aerodynamic performance and worthwhile economy improvements on long-distance flights in and out of ground effect (OGE). Research limitations/implications - The results are entirely based on computational fluid dynamics (CFD). The gap between "numerical world" and "real world" depends on development and appropriate application of CFD. The current work shows further understanding of ground effect and aerodynamics of wing in ground effect. Practical implications - The aerodynamics and aerodynamic optimization of wing in ground effect are of the great importance for WIG craft. The work improves the design and research on aerodynamics of WIG craft. Originality/value - The concept of tiltable endplate for a new type wing in ground effect allows WIG craft to achieve good aerodynamic performance not only in ground effect but also in OGE. This was studied and proved in the current work.
机译:目的-本文的目的是研究一种新型的地上机翼(WIG)工艺中带有可倾斜端板的机翼在地面效应中的空气动力学特性。设计/方法/方法-可倾斜端板的概念已应用于WIG工艺的设计中。对可倾斜端板的空气动力学进行了数值研究。在给定的迎角和飞行高度下,采用矩形机翼对端板对空气动力学的影响进行了深入研究。然后根据给定的端板偏转角和飞行高度研究端板相对于整个机翼的尺寸。最后,分析了在不同的飞行高度和端板偏转角下可倾斜端板的空气动力学和流量。在研究中记录了空气动力学,压力和翼尖涡旋。研究结果-终板影响翼尖涡旋的发展并改善空气动力学。可倾斜的端板可以使WIG飞机在进出地面效应(OGE)的长途飞行中产生更高的空气动力学性能,并值得提高经济效益。研究局限性/含义-结果完全基于流体动力学(CFD)。 “数字世界”与“现实世界”之间的差距取决于CFD的发展和适当应用。当前的工作显示了对地面效应和机翼在地面效应中的空气动力学的进一步理解。实际意义-机翼在地面效应的空气动力学和空气动力学优化对WIG工艺至关重要。这项工作改进了WIG飞行器的空气动力学设计和研究。独创性/价值-新型机翼在地面效应中可倾斜端板的概念使WIG飞机不仅在地面效应中而且在OGE中均具有良好的空气动力学性能。在当前工作中对此进行了研究和证明。

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