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Dissipative particle dynamics simulation of multiphase fluid flow in microchannels and microchannel networks

机译:微通道和微通道网络中多相流体流动的耗散粒子动力学模拟

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Multiphase fluid motion in microchannels and microchannel networks involves complicated fluid dynamics and is fundamentally important to diverse practical engineering applications such as ink-jet printing, DNA and protein micro-ano-arraying, and fabrication of particles and capsules for controlled release of medicines. This paper presented the simulations of multiphase fluid motion in microchannels and microchannel networks using a modified dissipative particle dynamics method that employs a new conservative particle-particle interaction combining short-range repulsive and long-range attractive interactions to simulate multiphase systems. This new conservative particle-particle interaction allows the behavior of multiphase systems consisting of gases, liquids, and solids to be simulated. Three numerical examples that are closely related to engineering applications were simulated. These examples involve multiple fluid motions in (i) a simple microchannel within two parallel plates; (ii) an inverted Y-shaped microchannel junction consisting of a vertical channel that divides into two branch channels with the same aperture; and (iii) a microchannel network. The numerical results obtained by using DPD agreed well with those from other sources, and clearly demonstrated the potential value of this DPD method for modeling and analyzing multiphase flow in microchannels and microchannel networks. (c) 2007 American Institute of Physics.
机译:微通道和微通道网络中的多相流体运动涉及复杂的流体动力学,对于多种实际工程应用(例如喷墨打印,DNA和蛋白质微/纳米阵列以及用于控制药物释放的颗粒和胶囊的制造)至关重要。本文介绍了使用改进的耗散粒子动力学方法对微通道和微通道网络中的多相流体运动进行的仿真,该方法采用了一种新的保守粒子-粒子相互作用,结合了短程排斥和长程吸引力相互作用,来模拟多相系统。这种新的保守粒子-粒子相互作用使得可以模拟由气体,液体和固体组成的多相系统的行为。模拟了三个与工程应用密切相关的数值示例。这些示例涉及(i)两个平行板内的简单微通道中的多种流体运动; (ii)由垂直通道组成的倒Y形微通道结,该垂直通道分为两个具有相同孔径的分支通道; (iii)微通道网络。使用DPD获得的数值结果与其他来源的结果吻合得很好,并清楚地证明了该DPD方法对微通道和微通道网络中的多相流建模和分析的潜在价值。 (c)2007年美国物理研究所。

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