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Modeling of the Effects of Pleat Packing Density and Cartridge Geometry on the Performance of Pleated Membrane Filters

机译:褶皱密度和盒几何形状对褶皱膜滤波器性能的建模

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Pleated membrane filters are widely used to remove undesired impurities from a fluid in many applications. A filter membrane is sandwiched between porous support layers and then pleated and packed into an annular cylindrical cartridge with a central hollow duct for outflow. Although this arrangement offers a high surface filtration area to volume ratio, the filter performance is not as efficient as those of equivalent flat filters. In this paper, we use asymptotic methods to simplify the flow throughout the cartridge to systematically investigate how the number of pleats or pleat packing density affects the performance of the pleated membrane filters. The model is used to determine an optimal number of pleats in order to achieve a particular optimum filtration performance. Our findings show that only the “just right”—neither too few nor too many—number of pleats gives optimum performance in a pleated filter cartridge.
机译:褶皱膜过滤器广泛用于从许多应用中的流体中除去不希望的杂质。 过滤膜在多孔支撑层之间夹在多孔支撑层之间,然后用用于流出的中心中空管道褶皱并填充到环形圆柱筒中。 虽然这种布置提供高表面过滤区域到体积比,但过滤性能与等效的平面过滤器的滤波器性能不如效率。 在本文中,我们使用渐近方法来简化整个盒的流动,以系统地研究褶皱或褶皱填充密度的数量如何影响褶皱膜过滤器的性能。 该模型用于确定最佳的褶皱数,以实现特定的最佳过滤性能。 我们的研究结果表明,只有“恰到好处” - 没有太少的褶皱,也不是太多褶皱,在褶皱过滤器盒中提供了最佳性能。

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