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首页> 外文期刊>Applied optics >HIGH-RESOLUTION SIZE MEASUREMENT OF SINGLE SPHERICAL PARTICLES WITH A FAST FOURIER TRANSFORM OF THE ANGULAR SCATTERING INTENSITY
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HIGH-RESOLUTION SIZE MEASUREMENT OF SINGLE SPHERICAL PARTICLES WITH A FAST FOURIER TRANSFORM OF THE ANGULAR SCATTERING INTENSITY

机译:角散射强度快速傅里叶变换的单球颗粒高分辨尺寸测量

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摘要

A technique is described and demonstrated to measure the size of spherical particles of known index of refraction by laser light scattering with an accuracy of better than 1%. This technique entails imaging the angular scattering intensity onto a photodiode array and applying a fast Fourier transform to the array output to obtain a frequency and phase corresponding to the number and angular position of the scattering lobes. Errors associated with particle trajectory effects and changes in the index of refraction are also considered. Results are not affected by the former, whereas variations of the refractive index by 2%, as may be typical, for example, of the transient heat up of a liquid hydrocarbon droplet, cause a deterioration of sizing accuracy to approximately 3%. The technique can in principle be applied in real time at data rates as high as 20-30 kHz with a modest equipment investment. Therefore, the measurement of droplet evaporation rates in dilute sprays with unprecedented accuracy appears to be feasible. (C) 1996 Optical Society of America [References: 18]
机译:描述并证明了一种技术,该技术通过激光散射以优于1%的精度测量已知折射率的球形颗粒的大小。该技术需要将角散射强度成像到光电二极管阵列上,并对阵列输出进行快速傅立叶变换,以获得与散射波瓣的数量和角位置相对应的频率和相位。还考虑了与粒子轨迹效应相关的误差以及折射率的变化。结果不受前者的影响,而折射率的变化(例如典型的液态烃液滴瞬态加热的2%的变化)会使上浆精度下降到大约3%。原则上,该技术可以以适度的设备投资以高达20-30 kHz的数据速率实时应用。因此,在稀喷雾中以前所未有的精度测量液滴蒸发速率似乎是可行的。 (C)1996年美国眼镜学会[参考文献:18]

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