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Gravity driven deterministic lateral displacement for suspended particles in a 3D obstacle array

机译:重力驱动的3D障碍物阵列中悬浮颗粒的确定性横向位移

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We present a simple modification to enhance the separation ability of deterministic lateral displacement (DLD) systems by expanding the two-dimensional nature of these devices and driving the particles into size-dependent, fully three-dimensional trajectories. Specifically, we drive the particles through an array of long cylindrical posts, such that they not only move parallel to the basal plane of the posts as in traditional two-dimensional DLD systems (in-plane motion), but also along the axial direction of the solid posts (out-of-plane motion). We show that the (projected) in-plane motion of the particles is completely analogous to that observed in 2D-DLD systems. In fact, a theoretical model originally developed for force-driven, two-dimensional DLD systems accurately describes the experimental results. More importantly, we analyze the particles out-of-plane motion and observe, for certain orientations of the driving force, significant differences in the out-of-plane displacement depending on particle size. Therefore, taking advantage of both the in-plane and out-of-plane motion of the particles, it is possible to achieve the simultaneous fractionation of a polydisperse suspension into multiple streams.
机译:我们提出了一个简单的修改,通过扩展这些设备的二维特性并将粒子驱动到与尺寸有关的,完全三维的轨迹中,从而提高确定性横向位移(DLD)系统的分离能力。具体来说,我们将粒子驱动通过一排长圆柱体,这样它们不仅像传统的二维DLD系统(面内运动)那样平行于圆柱体的基平面移动,而且还沿着粒子的轴向移动实心柱(平面外运动)。我们表明,粒子的(投影)面内运动与2D-DLD系统中观察到的完全相似。实际上,最初为力驱动的二维DLD系统开发的理论模型准确地描述了实验结果。更重要的是,我们分析了粒子的平面外运动,并观察到驱动力的某些方向,根据粒子大小,平面外位移存在显着差异。因此,利用颗粒的平面内和平面外运动,可以实现将多分散悬浮液同时分馏成多个物流。

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