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半刚性聚合物在微流道中的构象、分布和迁移。

Semiflexible polymer conformation, distribution and migration in microcapillary flows.

机构信息

Institut für Festkörperforschung, Forschungszentrum Jülich, 52425 Jülich, Germany.

出版信息

J Phys Condens Matter. 2011 May 11;23(18):184117. doi: 10.1088/0953-8984/23/18/184117. Epub 2011 Apr 20.

Abstract

The flow behavior of a semiflexible polymer in microchannels is studied using multiparticle collision dynamics, a particle-based hydrodynamic simulation technique. Conformations, distributions, and radial cross-streamline migration are investigated for various bending rigidities, with persistence lengths L(p) in the range 0.5 ≤ L(p)/L(r) ≤ 30. The flow behavior is governed by the competition between a hydrodynamic lift force and steric repulsion from the wall, which lead to migration away from the wall, and a locally varying flow induced orientation, which drives the polymer away from the channel center and towards the wall. The different dependences of these effects on the polymer bending rigidity and the flow velocity results in a complex dynamical behavior. However, a generic effect is the appearance of a maximum in the monomer and the center-of-mass distributions, which occurs at the channel center for small flow velocities, but moves off-center at higher velocities.

摘要

使用基于粒子的流体动力学模拟技术——多粒子碰撞动力学,研究了微通道中半柔性聚合物的流动行为。针对不同的弯曲刚度,研究了各种构象、分布和径向流线迁移,其中持久长度 L(p) 的范围为 0.5 ≤ L(p)/L(r) ≤ 30。流动行为受水动力升力和壁面产生的空间排斥的竞争控制,这导致了从壁面的迁移,以及局部变化的流动诱导取向,使聚合物远离通道中心并靠近壁面。这些效应对聚合物弯曲刚度和流速的不同依赖性导致了复杂的动力学行为。然而,一个普遍的影响是单体和质心分布出现最大值,对于较小的流速,最大值出现在通道中心,但在较高的流速下,最大值会偏离中心。

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