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Superimposed noninterfering probes to extend the capabilities of phase Doppler anemometry

机译:叠加式无干扰探头,扩展了相位多普勒风速仪的功能

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We propose using multiple superimposed noninterfering probes (SNIPs) of the same wavelength but different beam angles to extend the capabilities of phase Doppler anemometry. When a particle is moving in a SNIP the Doppler signals that are produced exhibit multiple Doppler frequencies and phase shifts. The resolution of the measurements of particle size (i.e., by fringe spacing and Doppler frequency) increases with beam angle. Then, with the solution proposed, even with only two detectors several measurements of size can be obtained for the same particle with increasing resolution if we consider higher frequencies in the signal, Several optical solutions to produce SNIPs as well as a signal-processing algorithm to treat the multiple-frequency Doppler signals are proposed. Experimental validations of the sizing of spherical and cylindrical particles demonstrate the applicability of this technique for particle measurement. We believe that this new technique can be of great interest when high resolution of size, velocity, and even refractive index is required. (C) 2002 Optical Society of America. [References: 21]
机译:我们建议使用相同波长但光束角度不同的多个叠加无干扰探头(SNIP),以扩展相位多普勒风速仪的功能。当粒子在SNIP中移动时,产生的多普勒信号表现出多个多普勒频率和相移。粒度测量的分辨率(即,通过条纹间隔和多普勒频率)随着束角而增加。然后,通过提出的解决方案,即使考虑到信号中的更高频率,即使只有两个检测器,对于分辨率提高的同一个粒子,也可以获得数个尺寸的测量结果;产生SNIP的几种光学解决方案以及一种信号处理算法提出了处理多频多普勒信号的方法。球形和圆柱形颗粒尺寸的实验验证证明了该技术在颗粒测量中的适用性。我们认为,当需要高分辨率的尺寸,速度甚至折射率的高分辨率时,这项新技术将引起极大的兴趣。 (C)2002年美国眼镜学会。 [参考:21]

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