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An improved visualization-based force-measurement technique for short-duration hypersonic facilities

机译:一种改进的基于可视化的短时高超音速设施测力技术

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This article is concerned with describing and exploring the limitations of an improved version of a recently proposed visualization-based technique for the measurement of forces and moments in short-duration hypersonic wind tunnels. The technique is based on tracking the motion of a free-flying body over a sequence of high-speed visualizations; while this idea is not new in itself, the use of high-speed digital cinematography combined with a highly accurate least-squares tracking algorithm allows improved results over what have been previously possible with such techniques. The technique precision is estimated through the analysis of artificially constructed and experimental test images, and the resulting error in acceleration measurements is characterized. For wind-tunnel scale models, position measurements to within a few microns are shown to be readily attainable. Image data from two previous experimental studies in the T5 hypervelocity shock tunnel are then reanalyzed with the improved technique: the uncertainty in the mean drag acceleration is shown to be reduced to the order of the flow unsteadiness, 2–3%, and time-resolved acceleration measurements are also shown to be possible. The response time of the technique for the configurations studied is estimated to be ∼0.5 ms. Comparisons with computations using the DLR TAU code also yield agreement to within the overall experimental uncertainty. Measurement of the pitching moment for blunt geometries still appears challenging, however.
机译:本文关注于描述和探索最近提出的基于可视化的技术的改进版本的局限性,该技术用于短时高超声速风洞中的力和力矩的测量。该技术基于在一系列高速可视化过程中跟踪自由飞行​​的物体的运动。尽管这种想法本身并不是什么新鲜事物,但结合使用高速数字电影摄影技术和高度精确的最小二乘跟踪算法,可以比以前通过这种技术获得的结果有所改善。通过分析人工构造和实验测试图像来估算技术精度,并表征加速度测量中所产生的误差。对于风洞规模模型,已证明可以轻松实现几微米范围内的位置测量。然后使用改进的技术重新分析来自T5超高速冲击隧道的先前两个实验研究的图像数据:平均阻力加速度的不确定性已显示减少到流动不稳定的程度,为2-3%,并且是时间分辨的加速度测量也被证明是可能的。该技术对所研究配置的响应时间估计约为0.5 ms。与使用DLR TAU代码进行的计算比较也得出在整个实验不确定性范围内的一致性。但是,测量钝角几何形状的俯仰力矩仍然具有挑战性。

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