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Combined Depth and Cake Filtration Model Coupled with Flow Simulation for Flat and Pleated Filters

机译:结合深度和滤饼过滤模型与平坦和褶皱过滤器的流动模拟相结合

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摘要

Filtration processes characterized by initial depth filtration, followed by a stage during which the cake acts as both a depth and surface filtering medium are studied. Such phenomena can occur especially for polydisperse dust. Based on one-dimensional depth filtration modeling, a combined depth and cake filtration model is formulated and coupled with the fluid flow. The evolution of flow resistivity and filtration efficiencies is investigated in the case of relatively dilute suspensions and constant flow rates. Numerical simulations of single-pass experiments are performed for both flat and pleated filter media. The model presented here is able to predict a nonlinear pressure drop for incompressible filter cakes due to the reduction of pore volume by particle deposition in the cake region.
机译:过滤过程以初始深度过滤为特征,然后研究滤饼作为深度和表面滤波介质的阶段。 这种现象可以特别适用于多分散灰尘。 基于一维深度过滤建模,配制组合深度和滤饼过滤模型并与流体流耦合。 在相对稀释的悬浮液和恒定流速的情况下研究了流动电阻率和过滤效率的演变。 对平坦和褶皱过滤介质进行单通实验的数值模拟。 这里呈现的模型能够预测由于蛋糕区域中的颗粒沉积通过颗粒沉积来预测不可压缩过滤蛋糕的非线性压降。

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