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Determination and validation of water droplet size distributions probed by cavity enhanced Raman scattering

机译:腔增强拉曼散射探测的水滴尺寸分布的确定和验证

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Cavity enhanced Raman scattering (CERS) fingerprints are obtained on a single particle basis, providing a spectroscopic signature of the water droplet sizes generated by a vibrating orifice aerosol generator (VOAG). By sampling the aerosol train generated by the VOAG over a period of seconds, the size distribution of water droplets can be accumulated. The objective of this paper is to validate the size distribution measurements made and to quantify the accuracy of the sizes measured, along with providing an examination of the dependence of the CERS fingerprint on illumination geometry and laser pulse energy. The size distribution measurements are verified by elastic light scattering data, confirming both the sizes measured by CERS and the evolving droplet sizes produced by the VOAG during an operating time of 5 min. The experimental limitations imposed on the accuracy of the sizes measured by CERS are discussed and estimated. The estimated uncertainty in the droplet radius increases from 4 nm for a 10 mum radius droplet to 22 nm for a 50 mum radius droplet. [References: 43]
机译:腔增强拉曼散射(CERS)指纹是在单个粒子的基础上获得的,从而提供了由振动孔口气溶胶发生器(VOAG)产生的水滴尺寸的光谱特征。通过在几秒钟的时间内采样VOAG生成的气溶胶序列,可以累积水滴的尺寸分布。本文的目的是验证所进行的尺寸分布测量并量化所测量尺寸的准确性,并提供对CERS指纹对照明几何形状和激光脉冲能量的依赖性的检查。通过弹性光散射数据验证了尺寸分布的测量结果,从而确认了由CERS测量的尺寸和由VOAG在5分钟的工作时间内产生的不断发展的液滴尺寸。讨论并估算了对CERS测量尺寸准确性施加的实验限制。液滴半径的估计不确定性从半径10微米的液滴的4 nm增加到半径50微米的液滴的22 nm。 [参考:43]

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