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Drop size measurement techniques for sprays: Comparison of image analysis, phase Doppler particle analysis, and laser diffraction

机译:喷雾尺寸测量技术:图像分析,相多普勒颗粒分析和激光衍射的比较

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Four different methods for measuring droplet size distributions are evaluated: the Image Analysis VisiSizer technique, a stroboscopic imaging method developed in-house, phase Doppler particle analysis (PDPA), and laser diffraction (Malvern Spraytec). We find that the larger the droplets, the bigger the differences between the results obtained by the different methods. The Image Analysis VisiSizer technique yields results that are comparable with those of the stroboscopic imaging method, provided that the raw Visisizer data are used, as the VisiSizer software makes corrections that can skew the results. Our measurements confirm how the limitations of PDPA can influence its outcomes; the presence of air bubbles inside droplets will cause PDPA to mistake them for smaller droplets. The fact that PDPA reports no droplets larger than 1200 μ m might be caused by large drops often not being spherical. The results of the laser diffraction technique are influenced by its fitting method to obtain the droplet size distribution and by overestimation of the number of small droplets due to their low velocity and thus higher concentration in the sample volume. Our results emphasize the need for selecting the size measurement technique to fit the physical nature and expected range of droplet parameters.
机译:评估了四种不同的测量液滴尺寸分布方法:图像分析探测器技术,在内部开发的频闪成像方法,相位多普勒颗粒分析(PDPA)和激光衍射(Malvern Spraytec)。我们发现液滴越大,通过不同方法获得的结果之间的差异越大。图像分析探测器技术产生与频闪成像方法相当的结果,只要使用原始探测器数据,随着Visisizer软件可以歪斜结果的校正。我们的测量证实了PDPA的局限性如何影响其结果;液滴内的气泡的存在会导致PDPA将它们误以为较小的液滴。 PDPA报告没有大于1200μm的液滴可能是由大滴导致的,通常不是球形的。激光衍射技术的结果受其配合方法的影响,以获得液滴尺寸分布,并且由于它们的低速而不是估计小液滴的数量,因此在样品体积中较高浓度。我们的结果强调需要选择尺寸测量技术以适应物理性质和预期液滴参数范围。

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