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Modeling photon transport in turbid media for measuring colloidal concentration in drops using the time-shift technique

机译:使用时移技术对浑浊介质中的光子传输进行建模以测量液滴中的胶体浓度

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Colloidal drops-suspensions, dispersions, emulsions-are widespread in the process industry but are difficult to characterize by size, velocity, and concentration of particulate matter in the drop. The present study investigates the use of the time-shift (TS) technique for such measurements. Numerically, a model based on ray tracing is developed, incorporating interactions with randomly placed monodispersed scattering centers within the spherical drop. The model creates a random walk propagation trajectory, known from radiative transfer problems. The model approximates Mie scattering from each internal particle with a Gaussian distribution. Experiments are performed using a conventional TS instrument, first with water as a reference and for validation, and then with different concentrations of a milk/water emulsion. Comparison of the modeled and received signals exhibits very good agreement, confirming the possibility of measuring the colloidal concentration in drops using the TS technique. (C) 2016 Optical Society of America
机译:胶体液滴-悬浮液,分散液,乳液-在过程工业中很普遍,但很难通过液滴的大小,速度和颗粒物浓度来表征。本研究调查了使用时移(TS)技术进行此类测量。在数值上,建立了一个基于射线追踪的模型,该模型结合了与球状液滴内随机放置的单分散散射中心的相互作用。该模型创建了一个随机的步行传播轨迹,这是从辐射传递问题中得知的。该模型使用高斯分布来估计每个内部粒子的Mie散射。实验是使用常规TS仪器进行的,首先以水为参考并进行验证,然后以不同浓度的牛奶/水乳液进行实验。建模信号和接收信号的比较显示出非常好的一致性,从而证实了使用TS技术测量液滴中胶体浓度的可能性。 (C)2016美国眼镜学会

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