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Model for particle migration in bidisperse suspensions by use of effective temperature

机译:通过使用有效温度,BID分散悬浮液中粒子迁移模型

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A model for the particle migration in a bidisperse flowing suspension is proposed and compared to experimental data. A mixture formulation, describing the suspension velocity and pressure and the concentrations of two solid fractions is derived from a multi-fluid model. In the multi-fluid model the liquid phase and both dispersed phases are interpenetrating phases. The closure relations are based on a mean field approach extending closure relations of a monodisperse suspension. The model is used to predict segregation based on particle size in channel flow where the particles are subjected to Brownian motion and shear-induced migration. The comparison of the model results with experimental data shows that particle migration is predicted well by the given formulation.
机译:提出了一种粒子迁移在BIDISPERSE流悬架中的模型,并与实验数据进行比较。描述悬浮速度和压力和两个固体级分的浓度的混合物制剂源自多流体模型。在多流体模型中,液相和分散相是渗透相。关闭关系基于延伸单分散悬架的闭合关系的平均场方法。该模型用于预测基于沟道流动中的粒度的隔离,其中颗粒经受褐色运动和剪切诱导的迁移。使用实验数据的模型结果的比较表明,通过给定的制剂预测了颗粒迁移。

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