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Simulation of particle capture in a microfiltration membrane

机译:模拟微滤膜中的颗粒捕获

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The present study takes an interest in the description of the fouling mechanisms by a numerical approach at the microscopic scale. At first, an X-ray tomography has enabled the modelling of the membrane structure for the numerical simulations. Next, for different particle size, a same volume of particles has been sent in the modelled membrane and the final permeability has been computed. Thus, the influence of the particle size on the fouling has been seen. An observation of the particles penetration in the membrane has been realised to detail this influence. The Hermia relations were used in order to determinate the predominant fouling mechanism or the succession of predominant fouling mechanisms. But, without an accurate calculation of the first derivative, it is not possible to define cleanly the predominant fouling mechanism for a low filtered volume. Nevertheless, the perspectives of the local approach with the numerical simulation seem interesting.
机译:本研究对通过微观尺度上的数值方法对结垢机理的描述感兴趣。首先,X射线断层扫描可以对膜结构进行建模,以进行数值模拟。接下来,对于不同的粒度,已将相同体积的颗粒发送到建模的膜中,并计算了最终的渗透率。因此,已经看到粒径对结垢的影响。已经观察到颗粒在膜中的渗透以详细说明这种影响。使用埃尔米亚关系来确定主要的结垢机制或主要的结垢机制的继承。但是,如果不精确计算一阶导数,就不可能为低过滤量明确定义主要的结垢机理。尽管如此,带有数值模拟的局部方法的观点似乎很有趣。

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