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IMAGE PROCESSING FOR INTERFEROMETRIC MIE AND RAYLEIGH SCATTERING VELOCITY MEASUREMENTS

机译:干涉MIE和rayleigh散射速度测量的图像处理

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摘要

An image-processing method that is used in conjunction with a Fabry-Perot interferometer has been developed for time-resolved local velocity measurements in gas flows. The processing method is used to determine the Doppler sift in Mie or Rayleigh scattered light from the measurement volume. The method minimizes the adverse effects due to the drifting of laser frequency and interferometer alignment. The scattered light is mixed with unshifted light from the interrogation laser for reference before it is passed through the interferomenter. The concentric, double-ring pattern images(from both the signal and the reference light) formed at the output of the interferometer are captured by a charge-coupled device camera and analyzed for free spectral range and Doppler shift simultaneously using an autocorrelation technique. Measurements have been made in the near field of a Mach 1.6 supersonic jet to determine the structure fo the velocity field. Velocity data obtained using the present image analysis technique has been compared with those obtained using a direct analysis method in the same jet.
机译:已经开发了一种与Fabry-Perot干涉仪结合使用的图像处理方法,用于在气流中进行时间分辨的局部速度测量。该处理方法用于根据测量体积确定Mie或Rayleigh散射光的多普勒筛分。该方法将由于激光频率漂移和干涉仪对准而产生的不利影响降至最低。散射光与来自询问激光器的未移动光混合,以便在通过干涉仪之前作为参考。干涉仪输出处形成的同心双环图案图像(来自信号和参考光)由电荷耦合设备的摄像头捕获,并使用自相关技术同时分析其自由光谱范围和多普勒频移。已经在1.6马赫超声速射流的近场中进行了测量,以确定速度场的结构。使用本图像分析技术获得的速度数据已与使用同一喷气机中直接分析方法获得的速度数据进行了比较。

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