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Particle size analysis by transmission fluctuation Spectrometry with temporal correlation: Theory and Simulations on particle overlapping

机译:具有时间相关性的传输波动光谱法的粒度分析:粒子重叠的理论和模拟

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Transmission fluctuation spectrometry with temporal or spatial correlation is being developed as a new method of particle size analysis, in which the particle size distribution and particle concentration can be measured simultaneously. Based on the assumption of low particle concentrations, an analytical expression of the transmission fluctuation correlation spectrum can be obtained With a layer model. It is found that the measurement matches the theory very well as long as the particle concentration is low enough. However, as the particle concentration increases, the measured transmission fluctuation spectrum deviates gradually from the theory, which is a result from the high concentration effects. The high concentration effects include particle overlapping and the monolayer structure. In this work, the theory and simulations on the particle overlapping are studied. As a result, an empirical expression is found.
机译:正在开发具有时间或空间相关的传输波动光谱法作为粒度分析的新方法,其中可以同时测量粒度分布和颗粒浓度。基于低颗粒浓度的假设,可以用层模型获得透射波动相关谱的分析表达。结果发现,只要颗粒浓度足够低,测量非常好地与理论相匹配。然而,随着粒子浓度的增加,测量的透射波动光谱从理论逐渐偏离,这是来自高浓度效应的结果。高浓度效应包括颗粒重叠和单层结构。在这项工作中,研究了粒子重叠的理论和模拟。结果,发现了经验表达式。

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