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Simulation of nanofibrous filters produced by the electrospinning method: 1. Pressure drop and deposition of nanoparticles

机译:通过静电纺丝方法生产的纳米纤维滤膜的仿真:1.纳米颗粒的压降和沉积

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The peculiarities of the hydrodynamic flow field and diffusion deposition of nanoparticles in filtration layers of nanofibers obtained by spraying a polymer solution in an electric field are considered. The main attention is focused on the effect of doubled nanofibers or pairs of parallel fibers that result from longitudinal splitting of charged jets on the hydrodynamic characteristics. The calculations are performed for a periodical row of doubled parallel fibers oriented normal to the flow. The flow field and the rate of nanoparticle deposition in the row are investigated as dependences on the distances between the pairs of the fibers, interfiber distances in pairs, orientation of the pairs relative to the direction of a flow, and the relations between fiber diameters in the pairs. The equations for the flow of a viscous incompressible liquid are solved under the Stokes approximation employing the method of fundamental solutions, and the stream functions, fields of velocities, and drag forces acting upon the fibers are determined. For the found flow fields, the coefficients of diffusion capture are determined by the numerical solution of the convective diffusion equation. It is established that, when fibers are drawn together in pairs to their contact in a rarefied row, the drag force decreases twofold. This result agrees with experimental data and the analytical solution for the constrained flow around pairs of similar fibers in a rarefied row.
机译:考虑了流体动力流场的特性和纳米颗粒在通过在电场中喷射聚合物溶液而获得的纳米纤维的过滤层中的扩散沉积。主要的注意力集中在加倍的纳米纤维或成对的平行纤维对,这是由于带电射流的纵向分裂对流体动力学特性的影响。对周期性垂直于流定向的双倍平行纤维的定期行执行计算。研究了该行中的流场和纳米颗粒沉积速率,它取决于成对的纤维之间的距离,成对的纤维间距离,成对的相对于流动方向的方向以及成对的纤维直径之间的关系。对。使用基本解法在斯托克斯近似下求解粘性不可压缩液体的流动方程,并确定作用在纤维上的流函数,速度场和阻力。对于找到的流场,扩散捕获系数由对流扩散方程的数值解确定。可以确定的是,当将纤维成对地拉成一排以使其彼此接触时,阻力减小两倍。该结果与实验数据和稀疏行中成对相似纤维对的约束流动的解析解相符。

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