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Reynolds number effects on the vortical-flow structure generated by a double-delta wing

机译:雷诺数对双三角翼产生的涡流结构的影响

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An experimental investigation of the high-incidence vortical flowfield over a 76/40 degrees double-delta wing model with sharp leading edges was conducted in the Naval Postgraduate School water tunnel facility at three nominal flow Reynolds numbers of 15000, 45000, and 75000 (based on centerline chord). Extensive flow visualization studies were performed with the dye-injection technique, followed by laser Doppler velocity measurements. The primary objective of this investigation was the determination of the influence of Reynolds number on vortex interactions/trajectories, and breakdown. It was found that there is a significant influence of Reynolds number. Specifically, with the increase of flow Reynolds number the strake and wing vortex trajectories tend to move outboards and closer to the model surface, and the vortex breakdown location moves forwards toward the apex of the model. The intertwining or coiling-up feature of the vortex interaction phenomenon becomes less dominant and disappears altogether at high Reynolds numbers. These trends in the vortex interaction and bursting data are found to be in good agreement with previous wind tunnel data. [References: 25]
机译:在海军研究生院水隧道设施中,在三个标称流量雷诺数分别为15000、45000和75000的基础上,对具有尖锐前缘的76/40度双三角翼模型上的高入射涡流场进行了实验研究在中心线和弦上)。使用染料注入技术进行了广泛的流动可视化研究,然后进行了激光多普勒速度测量。这项研究的主要目的是确定雷诺数对涡旋相互作用/轨迹和破裂的影响。发现雷诺数有重大影响。具体而言,随着流量雷诺数的增加,ake流和机翼涡旋轨迹倾向于向外侧移动并更靠近模型表面,并且涡流分解位置朝着模型的顶点向前移动。在高雷诺数下,涡旋相互作用现象的交织或盘绕特征变得不那么占优势,并完全消失。发现涡旋相互作用和爆发数据中的这些趋势与以前的风洞数据非常吻合。 [参考:25]

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