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Aerosol focusing in micro-capillaries: Theory and experiment

机译:聚焦于微毛细管的气溶胶:理论与实验

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摘要

A combined theoretical and experimental study is presented where we illustrate the focusing influence of Saffman force upon the fluid dynamics of aerosol flows through micro-capillaries. It is shown that under proper conditions, the Saffman force acting on aerosol particles in gas flowing through a micro-capillary causes migration of particles toward the center line of the capillary. This approach is in stark contrast to the classical aerodynamic focusing methodologies where only particle inertia and the Stokes force of gas-particle interaction are typically considered. A new mathematical model for aerosol flow through a micro-capillary accounting for complicated interactions between particles and carrier gas is presented and this model describes the experimental observables obtained via imaging microscopy of a beam of aerosol particles (d ~ 1 μm). In general, this study affords a method for controlling and optimizing focused aerosol beams by appropriate modification of process variables such as the micro-capillary geometry, the carrier gas composition and the nature of the aerosol particles.
机译:提出了理论和实验相结合的研究,其中我们说明了萨夫曼力对通过微毛细管的气溶胶流动的流体动力学的聚焦影响。结果表明,在适当条件下,作用在流过微毛细管的气体中的气溶胶颗粒的萨夫曼力会导致颗粒向毛细管中心线迁移。这种方法与经典的空气动力学聚焦方法形成了鲜明的对比,在传统的空气动力学聚焦方法中,通常仅考虑粒子惯性和气体-粒子相互作用的斯托克斯力。提出了一种新的气溶胶流经微毛细管的数学模型,该模型解释了颗粒与载气之间的复杂相互作用,并且该模型描述了通过成像显微镜观察的一束气溶胶颗粒(d〜1μm)的实验观测值。通常,这项研究提供了一种通过适当修改过程变量(例如微毛细管几何形状,载气成分和气溶胶颗粒的性质)来控制和优化聚焦气溶胶束的方法。

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