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A Smooth Body, Large-Scale Flow Separation Experiment

机译:光滑的身体,大规模的流分离实验

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Experiments focused on providing archival data for improved modeling of smooth body flow separation are presented. The flow separation occurs on a fixed convex ramp geometry with the imposed adverse pressure gradient controlled by a fully adjustable flexible top wind tunnel ceiling. Two cases are considered: the first gives rise to large-scale flow separation with reattachment downstream of the convex ramp. The second case involves both separation and reattachment on the ramp surface. It is demonstrated that the flow physics is largely governed by an embedded shear layer associated with the outer mean velocity inflection point. Mean velocity similarity in both experiments is achieved by means of embedded shear layer scaling. However, the turbulence intensity is shown to depend critically on local wall curvature.
机译:提出了旨在提供档案数据以改进平滑体流分离模型的实验。气流分离发生在固定的凸面坡道几何形状上,施加的不利压力梯度由完全可调的柔性顶部风洞顶板控制。考虑了两种情况:第一种情况是在凸坡道的下游重新连接,从而引起大规模的流分离。第二种情况涉及在斜坡表面上的分离和重新连接。结果表明,流动物理学在很大程度上受与外部平均速度拐点相关的埋入剪切层的控制。在这两个实验中,平均速度相似性是通过嵌入的剪切层缩放来实现的。但是,湍流强度显示出严重依赖于局部壁曲率。

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