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Aerodynamics of an aerofoil in transonic ground effect: Methods for blowdown wind-tunnel scale testing

机译:跨音速地面效应中的翼型的空气动力学:排污风洞规模测试方法

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摘要

Experimental aerodynamic testing of objects in close ground proximity at high subsonic Mach numbers is difficult due to the construction of a transonic moving ground being largely unfeasible. Two simple, passive methods have been evaluated for their suitability for such testing in a small blowdown wind tunnel: an elevated ground plane, and a symmetry (or mirror-image) approach. The methods were examined using an unswept wing of RAE2822 section, with experiments and Reynolds-Averaged Navicr Stokes CFD used synergistically to determine the relative merits of the techniques. The symmetry method was found to be a superior approximation of a moving ground in all cases, with mild discrepancies observed only at the lowest ground clearance. The elevated ground plane was generally found to influence the oncoming flow and distort the flowfield between the wing and ground, such that the method provided a less-satisfactory match to moving ground simulations compared to the symmetry technique.
机译:由于跨音速运动地面的建造在很大程度上是不可行的,因此难以在高亚音速马赫数下对靠近地面的物体进行空气动力学试验。已评估了两种简单的被动方法在小型排污风洞中进行此类测试的适用性:升高的接地平面和对称(或镜像)方法。使用未扫过的RAE2822机翼对方法进行了检查,并进行了实验,并协同使用了雷诺平均Navicr Stokes CFD来确定技术的相对优势。发现在所有情况下,对称方法都可以很好地近似于运动的地面,只有在最低的地面间隙处才能观察到轻微的差异。通常发现高架的地平面会影响迎面而来的气流并使机翼和地面之间的流场变形,因此与对称技术相比,该方法对移动地面模拟的匹配效果较差。

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  • 来源
    《The Aeronautical Journal》 |2012年第1180期|p.599-620|共22页
  • 作者单位

    School of Mechanical and Manufacturing Engineering The University of New South Wales Sydney, Australia;

    School of Mechanical and Manufacturing Engineering The University of New South Wales Sydney, Australia;

    School of Aerospace, Civil and Mechanical Engineering The University of New South Wales at the Australian Defence Force Academy Canberra, Australia;

    Aerospace Engineering Department The United States Naval Academy Maryland, USA;

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