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A Simulation Study of Cell Separation in Microfluidic Channel Based on Hydrodynamic Principle

机译:基于流体动力学原理的微流体通道细胞分离的仿真研究

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Separation micro-particles based on physical characteristics is important in numerous applications such as diagnostics, biological analyses, food industries and chemical processing. Microfluidic devices have emerged as a multifunctional and powerful platform for separation ranging from nano-micro sized particles to biological cells. This paper presents a simulation study for microparticle separation in a microfluidic channel based on hydrodynamic technique. By exploiting the hydrodynamic properties of the fluid flow and physical characteristics of microparticles, effective size-based separation is demonstrated. The objectives of the simulations are to obtain the appropriate channels' angle to separate micro-particle. The analysis of effects of taper angle for microparticle separation was carried out using numerical solutions from the finite element ABAQUS-FEA software. The taper angles 20° and 25° are successfully separate the mixture of 1000 kgm-3 and 10000 kgm-3 density microparticle.
机译:基于物理特性的分离微粒在诸如诊断,生物分析,食品工业和化学加工等众多应用中是重要的。微流体装置已成为多功能和强大的平台,用于分离从纳米微小粒子到生物细胞的分离。本文介绍了基于流体动力学技术的微流体通道微粒分离的模拟研究。通过利用流体流动的流体动力学和微粒的物理特性,证明了有效的基于尺寸的分离。模拟的目标是获得适当的通道角度与单独的微粒。利用有限元ABAQUS-FEA软件的数值溶液进行微粒分离锥角对微粒分离的影响分析。锥形角20°和25°成功分离了1000kgm的混合物 -3 和10000 kgm. -3 密度微粒。

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