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Lattice-Boltzmann flow simulation of an oil-in-water emulsion through a coalescing filter: Effects of filter structure

机译:通过聚结过滤器的水包油乳液模拟晶格 - 玻璃液流模拟:过滤器结构的影响

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摘要

The permeation of an oil-in-water (O/W) emulsion through a coalescing filter was numerically studied using the lattice Boltzmann method (LBM). A numerical simulation model for the coalescing phenomena was developed based on the free-energy LBM. We investigated the effects of the wettability of fibers, filter porosity, and fiber diameter on the coalescing behaviors by performing two-dimensional permeation simulations for the O/W emulsions through modeled fibrous filters. We mainly focused on hydrophilic filters because they did not generate small secondary droplets during oil droplet detachment from the filter, and this is preferred for precise separation of oil and water. Our simulations demonstrated that filters with larger pore spacings enable formation of larger droplets but allow more droplets to pass without coalescing. To solve this problem, we designed bi-layered filters composed of a small-pore filter to accurately catch the droplets and a large-pore filter to enlarge the droplets; we demonstrated the effectiveness of the bilayer structure for membrane coalescence. (C) 2017 Elsevier Ltd. All rights reserved.
机译:使用聚合螺栓玻璃法(LBM)进行数值研究通过聚结过滤器渗透水溶液(O / W)乳液。基于自由能LBM开发了合并现象的数值模拟模型。我们通过模拟纤维过滤器对O / W乳液进行二维渗透模拟来研究纤维,过滤孔隙率和纤维直径对聚结行为的影响。我们主要专注于亲水过滤器,因为它们在油液滴从过滤器脱落期间没有产生小次级液滴,这对于精确分离油和水是优选的。我们的模拟表明,具有较大孔隙间距的过滤器能够形成较大的液滴,但允许更多的液滴通过而无需合并而通过。为了解决这个问题,我们设计了由小孔隙过滤器组成的双层过滤器,以精确地捕获液滴和大孔过滤器以扩大液滴;我们证明了双层结构对膜聚结的有效性。 (c)2017 Elsevier Ltd.保留所有权利。

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