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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Self-calibration performance in stereoscopic PIV acquired in a transonic wind tunnel
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Self-calibration performance in stereoscopic PIV acquired in a transonic wind tunnel

机译:跨音速风洞中获得的立体PIV的自校准性能

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摘要

Three stereoscopic PIV experiments have been examined to test the effectiveness of self-calibration under varied circumstances. Measurements taken in a streamwise plane yielded a robust self-calibration that returned common results regardless of the specific calibration procedure, but measurements in the crossplane exhibited substantial velocity bias errors whose nature was sensitive to the particulars of the self-calibration approach. Self-calibration is complicated by thick laser sheets and large stereoscopic camera angles and further exacerbated by small particle image diameters and high particle seeding density. Despite the different answers obtained by varied self-calibrations, each implementation locked onto an apparently valid solution with small residual disparity and converged adjustment of the calibration plane. Therefore, the convergence of self-calibration on a solution with small disparity is not sufficient to indicate negligible velocity error due to the stereo calibration.
机译:已检查了三个立体PIV实验,以测试在各种情况下自校准的有效性。在流向平面中进行的测量会产生鲁棒的自校准,无论使用哪种特定的校准程序,该校准都将返回通用结果,但是在横板上进行的测量却显示出明显的速度偏差,其本质对自校准方法的细节很敏感。厚的激光片和较大的立体摄像机角度会使自校准变得复杂,而较小的粒子图像直径和较高的粒子播种密度会进一步加剧自校准。尽管通过不同的自校准获得了不同的答案,但每种实现方式都锁定在一个看起来有效的解决方案上,该解决方案具有较小的残差和校准平面的收敛调整。因此,自校正在具有较小视差的解决方案上的收敛不足以表明由于立体校正而导致的速度误差可忽略不计。

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