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Benchmarking Particle Image Velocimetry with Laser Doppler Velocimetry for Rotor Wake Measurements

机译:激光多普勒测速的基准粒子图像测速技术用于转子苏醒测量

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摘要

An experiment was conducted to identify and measure the sources of uncertainty that are associated with the application of particle image velocimetry to the measurement of the vortical wakes trailing from helicopter rotor blades. Phase-resolved, three-component particle image velocimetry measurements were performed in the wake of a subscale rotor operating in hover, and were compared with high-resolution three-component laser Doppler velocimetry measurements obtained with the same rotor under identical operating conditions. This helped formulate the essential experimental conditions that need to be satisfied for particle image velocimetry to accurately resolve the high-velocity gradient, high streamline curvature flows that are present inside the rotor wake and in the blade tip vortices. Uncertainties associated with the calibration, acquisition, and processing of the particle image velocimetry images were analyzed in detail. It was shown that the optimization of laser pulse separation time is fundamental to reduce the errors associated with acceleration and curvature effects. Similarly, the interrogation window size was shown to play a critical role in determining the velocity gradient bias errors. The correlation between the laser Doppler velocimetry and particle image velocimetry measurements of the tip vortex characteristics, such as core radius and peak swirl velocity, were found to be excellent.
机译:进行了一项实验,以识别和测量与将粒子图像测速技术应用于直升机旋翼桨叶尾迹的测量有关的不确定性来源。相位分辨的三分量粒子图像测速仪测量是在悬停运行的小规模转子之后进行的,并将其与在相同工作条件下使用同一转子获得的高分辨率三分量激光多普勒测速仪测量结果进行比较。这有助于制定基本的实验条件,这些条件必须满足粒子图像测速法的要求,以准确解决转子尾流内部和叶片尖端涡流中出现的高速梯度,高流线曲率流。详细分析了与粒子图像测速图像的校准,采集和处理相关的不确定性。结果表明,优化激光脉冲分离时间对于减少与加速度和曲率效应相关的误差至关重要。同样,询问窗口的大小在确定速度梯度偏差误差中起着至关重要的作用。激光多普勒测速仪和粒子图像测速仪测量的尖端涡旋特性(例如核心半径和峰值旋流速度)之间的相关性非常好。

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