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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Cell-encapsulating droplet formation in a flow-focusing configuration

机译:APS-流体动力学APS分部第70届年会-事件-流动聚焦配置中的细胞包裹液滴形成

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Cell encapsulation in a flow-focusing microchannel is computationally studied using a three- phase front-tracking method. A series of cells with predefined size and frequency are encapsulated by the disperse phase forming compound droplets suspended in an outer fluid. Compound droplet formations are examined for a wide range of parameters including cell size, viscosity ratio ($eta =mu_{mathrm{out}}$/$mu_{mathrm{in}})$ and capillary number of the continuous (Ca$_{mathrm{out}})$ and disperse (Ca$_{mathrm{in}})$ phases. An extensive simulation on Ca$_{mathrm{outhinspace }}$and Ca$_{mathrm{in}}$ for different viscosity ratios ($eta =$0.5,1,2 and 4) reveals a region in which a uniform compound droplet production is most likely to occur. Depending on the fluid and flow parameters, compound droplets can consist of one or multiple cells, while for some cases no cells are found in a compound droplet. For a fixed Ca$_{mathrm{outhinspace }}$and Ca$_{mathrm{in}}$ in the favorable region, effects of viscosity ratio and cell size are studied to control cell encapsulation dynamics. It is found that decreasing viscosity of the outer phase results in higher rate of cell encapsulation, while decreasing cell size adversely impacts compound droplet generation.
机译:使用三相前向跟踪方法对流动集中微通道中的细胞封装进行了计算研究。一系列具有预定大小和频率的细胞被分散相包裹,形成悬浮在外部流体中的化合物液滴。检查化合物液滴形成的各种参数,包括泡孔大小,粘度比($ eta = mu_ {mathrm {out}} $ / $ mu_ {mathrm {in}})$和连续的(Ca $ _ {mathrm {out}})$和分散(Ca $ _ {mathrm {in}})$阶段。对Ca $ _ {mathrm {outhinspace}} $和Ca $ _ {mathrm {in}} $$在不同的粘度比($ eta = $ 0.5、1,2和4)上进行的广泛模拟,揭示了一个区域,其中均匀的复合液滴生产最有可能发生。根据流体和流量参数,复合液滴可以由一个或多个单元组成,而在某些情况下,在复合液滴中找不到任何单元。对于在有利区域中固定的Ca $ _ {mathrm {outhinspace}} $和Ca $ _ {mathrm {in}} $$,研究了粘度比和泡孔尺寸的影响,以控制泡孔封装动力学。发现降低外相的粘度导致更高的细胞包封率,而减小细胞尺寸不利地影响化合物液滴的产生。

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