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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Investigation of membrane fouling in cross flow microfiltration of non-alcoholic beer and modeling of tubular membrane flow
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Investigation of membrane fouling in cross flow microfiltration of non-alcoholic beer and modeling of tubular membrane flow

机译:非酒精啤酒错流微滤膜污染的研究及管式膜流模型

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摘要

In the present work, numerical simulation of cross flow microfiltration of non-alcoholic beer in a tubular membrane has been studied theoretically and verified experimentally. Finite element method was used as a powerful tool for simulation. The feed stream, which flows mainly tangentially to the porous membrane surface, is modeled by the Navier-Stokes equations whereas the porous wall conditions are described by the Darcy equation that relates the pressure gradient within a flow stream to the flow rate through the permeable wall. A new model that considers transient behavior of the membrane due to fouling was used to estimate the permeate flux reduction. A pilot-scale cross flow membrane filter was developed to verify the model results in which ceramic tubular membranes were used. The cross flow velocity of the feed solution was controlled in the laminar region. It was shown that the model results have good agreement with experimental observations and therefore the model developed in this work can be used for design or optimization of the microfiltration of non-alcoholic beer.
机译:在目前的工作中,对无酒精啤酒在管状膜中的错流微滤的数值模拟已进行了理论研究和实验验证。有限元方法被用作强大的仿真工具。主要切向流动到多孔膜表面的进料流由Navier-Stokes方程建模,而多孔壁条件由Darcy方程描述,该方程将流内的压力梯度与通过可渗透壁的流速相关。考虑污垢膜的瞬态行为的新模型用于估计渗透通量的减少。开发了中试横流膜过滤器,以验证使用陶瓷管状膜的模型结果。在层流区域中控制进料溶液的错流速度。结果表明,该模型结果与实验观察结果吻合良好,因此该模型开发的模型可用于非酒精啤酒微滤的设计或优化。

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