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Numerical evaluation of droplet sizing based on the ratio of fluorescent and scattered light intensities (LIF/Mie technique)

机译:基于荧光强度和散射光强度之比的液滴尺寸的数值评估(LIF / Mie技术)

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摘要

The dependence of fluorescent and scattered light intensities from spherical droplets on droplet diameter was evaluated using Mie theory. The emphasis is on the evaluation of droplet sizing, based on the ratio of laser-induced fluorescence and scattered light intensities (LIF/Mie technique). A parametric study is presented, which includes the effects of scattering angle, the real part of the refractive index and the dye concentration in the liquid (determining the imaginary part of the refractive index). The assumption that the fluorescent and scattered light intensities are proportional to the volume and surface area of the droplets for accurate sizing measurements is not generally valid. More accurate sizing measurements can be performed with minimal dye concentration in the liquid and by collecting light at a scattering angle of 60 deg rather than the commonly used angle of 90 deg. Unfavorable to the sizing accuracy are oscillations of the scattered light intensity with droplet diameter that are profound at the sidescatter direction (90 deg) and for droplets with refractive indices around 1.4.
机译:使用米氏理论评估了球形液滴的荧光和散射光强度对液滴直径的依赖性。重点是根据激光诱导的荧光与散射光强度的比率(LIF / Mie技术)评估液滴的大小。提出了一个参数研究,其中包括散射角,折射率的实部和液体中的染料浓度(确定折射率的虚部)的影响。对于精确的尺寸测量而言,荧光强度和散射光强度与液滴的体积和表面积成正比的假设通常无效。可以使用最小的染料浓度在液体中并通过以60度的散射角而不是通常使用的90度的角度收集光来执行更精确的尺寸测量。不利于上浆精度的是在侧向散射方向(90度)处以及在折射率约为1.4的液滴中,具有液滴直径的散射光强度的振荡很深。

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