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Numerical Simulation of Particle Motion in a Phase Modulated Surface Acoustic Wave Microfluidic Device

机译:调相表面声波微流控装置中粒子运动的数值模拟

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Contactless sorting of particles and cells in microfluidic devices is beneficial for various industrial and scientific applications. Among such techniques, acoustic sorting methods are favored for their reconfigurability and label-free processing capabilities. A phase modulated sorting method is proposed in this article as an alternative to time-of-flight sorters. The method has been analyzed theoretically and experimentally validated by considering the primary acoustic radiation and viscous drag forces. However, in real devices, acoustic streaming that arises from the damping of acoustic waves within the fluid cavity can adversely affect sorting. This paper presents therefore a numerical study of the influences that the primary radiation force and acoustic streaming can have on the phase modulated sorting method. The article highlights the existence of a critical particle size, above which acoustic streaming effects governing the behavior of small size particles are dominated by the primary radiation force. The model is extended for trajectory simulation in phase-modulated fields and validated with experimental data.
机译:非接触式对微流体装置中的颗粒和细胞的分选是有益的各种工业和科学应用。在这些技术中,声学分选方法是有利于其可重新配置性和无标记处理能力。在本文中提出了一种相位调制的分选方法,作为飞行时间分选机的替代方案。通过考虑主要声辐射和粘性阻力,从理论上和实验验证的方法已经分析了该方法。然而,在真实的装置中,由流体腔内的声波阻尼的声学流来产生不利地影响分类。因此,本文呈现了主要辐射力和声流可以对相位调制分选方法具有的影响的数值研究。该文章突出了临界粒度的存在,高于该声谱效应用于小尺寸粒子的行为的声学流效应由初级辐射力支配。该模型扩展了相位调制字段中的轨迹仿真,并用实验数据验证。

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