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Comparison of stereo-PIV and plenoptic-PIV measurements on the wake of a cylinder in NASA ground test facilities

机译:NASA地面测试设施中的圆柱尾流后进行立体PIV和全光PIV测量的比较

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A series of comparison experiments have been performed using a single-camera plenop-tic PIV measurement system to ascertain the systems performance capabilities in terms of suitability for use in NASA ground test facilities. A proof-of-concept demonstration was performed in the Langley Advanced Measurements and Data Systems Branch 13-inch (33-cm) Subsonic Tunnel to examine the wake of a series of cylinders at a Reynolds number of 2500. Accompanying the plenoptic-PIV measurements were an ensemble of complementary stereo-PIV measurements. The stereo-PIV measurements were used as a truth measurement to assess the ability of the plenoptic-PIV system to capture relevant 3D/3C flow field features in the cylinder wake. Six individual tests were conducted as part of the test campaign using three different cylinder diameters mounted in two orientations in the tunnel test section. This work presents a comparison of measurements with the cylinders mounted horizontally (generating a 2D flow field in the x-y plane). Results show that in general the plenoptic-PIV measurements match those produced by the stereo-PIV system. However, discrepancies were observed in extracted profiles of the fluctuating velocity components. It is speculated that spatial smoothing of the vector fields in the stereo-PIV system could account for the observed differences. Nevertheless, the plenoptic-PIV system performed extremely well at capturing the flow field features of interest and can be considered a viable alternative to traditional PIV systems in smaller NASA ground test facilities with limited optical access.
机译:已经使用单摄像机全视野PIV测量系统进行了一系列比较实验,以确定系统性能能力是否适合在NASA地面测试设施中使用。在Langley Advanced Measurements and Data Systems Branch 13英寸(33厘米)亚音速隧道中进行了概念验证演示,以检查雷诺数为2500的一系列圆柱体的尾迹。是互补立体声PIV测量的集合。立体声PIV测量值用作真值测量值,以评估全光PIV系统捕获圆柱尾流中相关3D / 3C流场特征的能力。作为测试活动的一部分,使用六个不同直径的圆柱体以两个方向安装在隧道测试部分中,进行了六次单独测试。这项工作对水平安装的圆柱体(在x-y平面中生成2D流场)的测量结果进行了比较。结果表明,一般而言,全光PIV测量值与立体PIV系统产生的测量值相匹配。但是,在波动速度分量的提取轮廓中观察到差异。据推测,在立体PIV系统中矢量场的空间平滑可以解释观察到的差异。尽管如此,全光PIV系统在捕获感兴趣的流场特征方面表现非常出色,在较小的光学访问受限的NASA地面测试设施中,可以认为是传统PIV系统的可行替代方案。

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