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3-D transient electrophoretic motion of a spherical particle in a T-shaped rectangular microchannel

机译:T形矩形微通道中球形粒子的3-D瞬态电泳运动

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摘要

This paper considers the electrophoretic motion of a spherical particle in an aqueous electrolyte solution in a T-shaped rectangular microchannel,where the size of the channel is close to that of the particle.This is a complicated transient process where the electric field,the flow field,and the particle motion are coupled together.A theoretical model was developed to investigate the influences of the applied electric potentials,the zeta potentials of the channel and the particle,and the size of the particle on the particle motion.A direct numerical simulation method using the finite element method is employed.This method employs a generalized Galerkin finite element formulation that incorporates both equations of the fluid flow and equations of the particle motion into a single variational equation where the hydrodynamic interactions are eliminated.The ALE method is used to track the surface of the particle at each time step.The numerical results show that the electric field in the T-shaped microchannel is influenced by the presence of the particle,and that the particle motion is influenced by the applied electric potentials and the zeta potentials of the channel and the particle.The path of the particle motion is dominated by the local electric field and the ratio of the zeta potential of the channel to that of the particle.The particle's velocity is also dependent on its size in a small channel.
机译:本文考虑了球形颗粒在T形矩形微通道中的水溶液中的电泳运动,该通道的大小接近于颗粒的大小。这是一个复杂的瞬态过程,电场,流动建立了理论模型,研究了施加电势,通道和粒子的ζ电势以及粒子大小对粒子运动的影响。直接数值模拟采用有限元方法,该方法采用广义Galerkin有限元公式,该公式将流体流动方程和质点运动方程合并为单个变分方程,从而消除了流体动力相互作用.ALE方法用于跟踪每个时间步的粒子表面。数值结果表明,T-形状的微通道受粒子的存在影响,粒子的运动受通道和粒子的施加电势和ζ电位的影响。粒子运动的路径由局部电场和比例决定通道的zeta势与粒子的zeta势的关系。粒子的速度还取决于其在小通道中的大小。

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