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Investigation into the Effect of Acoustic Radiation Force and Acoustic Streaming on Particle Patterning in Acoustic Standing Wave Fields

机译:声驻波场中声辐射力和声流对粒子图案影响的研究

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摘要

Acoustic standing waves have been widely used in trapping, patterning, and manipulating particles, whereas one barrier remains: the lack of understanding of force conditions on particles which mainly include acoustic radiation force (ARF) and acoustic streaming (AS). In this paper, force conditions on micrometer size polystyrene microspheres in acoustic standing wave fields were investigated. The COMSOL® Mutiphysics particle tracing module was used to numerically simulate force conditions on various particles as a function of time. The velocity of particle movement was experimentally measured using particle imaging velocimetry (PIV). Through experimental and numerical simulation, the functions of ARF and AS in trapping and patterning were analyzed. It is shown that ARF is dominant in trapping and patterning large particles while the impact of AS increases rapidly with decreasing particle size. The combination of using both ARF and AS for medium size particles can obtain different patterns with only using ARF. Findings of the present study will aid the design of acoustic-driven microfluidic devices to increase the diversity of particle patterning.
机译:声驻波已被广泛用于捕获,构图和操纵粒子,但是仍然存在一个障碍:对粒子的力状态缺乏了解,主要包括声辐射力(ARF)和声流(AS)。本文研究了声驻波场中微米级聚苯乙烯微球的受力情况。 COMSOL®Mutiphysics粒子追踪模块用于数值模拟随时间变化的各种粒子的受力状况。使用粒子成像测速仪(PIV)通过实验测量了粒子运动的速度。通过实验和数值模拟,分析了ARF和AS在捕获和构图中的功能。结果表明,ARF在捕集和构图大颗粒中占主导地位,而AS的影响随着颗粒尺寸的减小而迅速增加。仅使用ARF,将ARF和AS用于中等大小的颗粒的组合可以获得不同的图案。本研究的发现将有助于声驱动微流体装置的设计,以增加颗粒图案的多样性。

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