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CFD-assisted design improvement of a bench-scale nanofiltration cell

机译:台式规模纳滤池的CFD辅助设计改进

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CFD simulation was carried out with the aim to improve the design of a bench-scale nanofiltration cell and to increase the filtration performances. The laminar fluid flow in the flat circular filtration cell was simulated. Design variables considered were feed chamber thickness, number and distribution of the inlet/outlet pipes, sequential mode inlets, addition of grooves on the top surface of the cell. With the simulated design modifications, the velocity and the wall shear stress could be sharply increased and the size of the recirculation areas could be lowered. Two sequential mode inlets permitted to obtain high velocity and wall shear stress fluctuations in the cell. So, one can expect a sweeping of the membrane surface which should greatly hinder the polarization layer development and membrane fouling. A sharp enhancement of the nanofiltration flux was observed experimentally with the new designed cell, built including the suggested modifications. The addition of grooves on the cell top was simulated and showed intense velocity and wall shear stress fluctuations. The 2D study demonstrated that the groove size and the groove interval play a significant role. So, for small bench-scale cells when the use of retentate spacers is not convenient, the alternative would be to add grooves opposite to the membrane side in order to create velocity fluctuations.
机译:进行CFD模拟的目的是改进台式规模纳滤池的设计并提高过滤性能。模拟了扁平圆形过滤池中的层流。所考虑的设计变量是进料室的厚度,入口/出口管的数量和分布,顺序模式的入口,在电解池顶面上增加的凹槽。通过模拟设计修改,可以显着提高速度和壁切应力,并可以减小回流区域的大小。两个顺序模式的入口允许在单元中获得高速和壁切应力波动。因此,可以预见膜表面的扫掠将大大阻碍偏振层的发展和膜的结垢。使用新设计的电池(包括建议的修改),实验观察到纳滤通量急剧增加。模拟了在电池顶部的凹槽,显示出剧烈的速度和壁面剪应力的波动。二维研究表明,沟槽尺寸和沟槽间隔起着重要作用。因此,对于小型台式电解池,当使用保留物间隔物不方便时,替代方法是在膜侧添加相对的凹槽,以产生速度波动。

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