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Numerical Study of Pillar Shapes in Deterministic Lateral Displacement Microfluidic Arrays for Spherical Particle Separation

机译:确定性侧向位移微流控阵列中用于球形颗粒分离的立柱形状的数值研究

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摘要

Deterministic lateral displacement (DLD) arrays containing shaped pillars have been found to be more effective in biomedical sample separation. This study aims to numerically investigate the interplay between particles and microfluidic arrays, and to find out the key factors in determining the critical size of a DLD device with shaped pillars. A new formula is thus proposed to estimate the critical size for spherical particle separation in this kind of new DLD microfluidic arrays. The simulation results show that both rectangular and I-shaped arrays have considerably smaller critical sizes. The ratio of sub-channel widths is also found to play an important role in reducing the critical sizes. This paves a valuable way toward designing high-performance DLD microfluidic arrays.
机译:已经发现,包含成形柱的确定性横向位移(DLD)阵列在生物医学样品分离中更有效。这项研究的目的是对颗粒和微流体阵列之间的相互作用进行数值研究,并找出确定具有成形柱的DLD器件的临界尺寸的关键因素。因此,提出了一种新的公式来估计这种新型DLD微流体阵列中球形颗粒分离的临界尺寸。仿真结果表明,矩形和I形阵列的临界尺寸都小得多。还发现子通道宽度的比例在减小临界尺寸方面起着重要作用。这为设计高性能DLD微流体阵列铺平了一条宝贵的途径。

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