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Active Control of Passive and Active Particle Distribution at the Outlet of Double Y-Microchannel Using Pulsatile Flow

机译:使用脉动流动的双y微型通道出口的无源粒子分布的主动控制

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While a variety of active and passive techniques have been proposed for steady flows, pulsatile flow has received much less attention. Pulsation makes more control parameters available for passive methods and enables them to separate particles. The purpose of this work is to determine the effects of the phase shift between two entering flows (only one includes the particles) on particle separation inside a double Y-microchannel. Numerical simulations were carried out for both steady and pulsating flow conditions. The results showed that when the velocity amplitude ratio (beta) is less than 2, the separation index increases with the phase shift (phi) and the highest efficiency occurs at phi =180deg. A similar trend can be observed for higher values of beta only if the pulsation period is short enough. A series of experiments qualitatively validated the numerical results.
机译:虽然已经提出了各种主动和被动技术的稳定流动,但脉动流量受到更少的关注。 脉动为被动方法提供了更多的控制参数,使它们能够分开粒子。 本作作品的目的是确定两个进入流(仅一个包括颗粒)之间的相移的效果在双Y-microchannel内的颗粒分离上。 对稳态和脉动的流动条件进行了数值模拟。 结果表明,当速度幅度比(β)小于2时,分离指数随相移(PHI)增加,并且在PHI = 180deg时发生最高效率。 只有在脉动时段足够短的情况下,才能观察到类似的曲线值。 一系列实验定性验证了数值结果。

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