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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Exploring the aerodynamic characteristics of a blown annular wing for vertical/short take-off and landing applications
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Exploring the aerodynamic characteristics of a blown annular wing for vertical/short take-off and landing applications

机译:探索用于垂直/短距起飞和着陆的吹制环形机翼的空气动力学特性

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摘要

This article explores, theoretically and experimentally, a new wingform, based on an annular wing wrapped around a radial flow generator, potentially creating a vehicle with no external moving parts, reduced vehicle aerodynamic losses compared to previous vertical/short take-off and landing technologies, and substantially eliminating induced drag. Concentrating on hovering and slow flight, it is shown that such a wing works best with a thick aerofoil section and appears to offer greatest potential at a micro-aerial vehicle scale. Experimental methods are described along with results, and this work shows that wing efficiency can be substantially improved by the use of upper surface blowing technology and the Coanda effect. The main causes of efficiency loss are annular flow expansion and problems with achieving acceptable slot heights. Experimental efficiency remains below theoretical efficiency, partly due to flow asymmetry but possibly also other factors. This work is also very early in the development of this technology, and so recommendations are made for future work.
机译:本文在理论上和实验上探索了一种新的机翼,该机翼基于环绕径向流发生器的环形机翼,与以前的垂直/短距起飞和着陆技术相比,有可能创造出没有外部运动部件的车辆,并减少了车辆的空气动力损失,并基本消除了感应阻力。专注于悬停和缓慢飞行,表明这种机翼在较厚的机翼截面上效果最好,并且似乎在微型航空器规模上具有最大的潜力。描述了实验方法和结果,这项工作表明,使用上表面吹气技术和柯恩达效应可以大大提高机翼效率。效率损失的主要原因是环形流膨胀和达到可接受的槽高度的问题。实验效率仍然低于理论效率,部分是由于流量不对称,也可能是其他因素所致。这项工作还处于该技术发展的早期,因此对以后的工作提出了建议。

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