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Acoustofluidics 9: Modelling and applications of planar resonant devices for acoustic particle manipulation

机译:声流体9:用于声粒子操纵的平面谐振装置的建模和应用

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摘要

This article introduces the design, construction and applications of planar resonant devices for particle and cell manipulation. These systems rely on the pistonic action of a piezoelectric layer to generate a one dimensional axial variation in acoustic pressure through a system of acoustically tuned layers. The resulting acoustic standing wave is dominated by planar variations in pressure causing particles to migrate to planar pressure nodes (or antinodes depending on particle and fluid properties). The consequences of lateral variations in the fields are discussed, and rules for designing resonators with high energy density within the appropriate layer for a given drive voltage presented.
机译:本文介绍了用于颗粒和细胞操纵的平面谐振装置的设计,构造和应用。这些系统依靠压电层的活塞作用通过声调谐层系统产生声压的一维轴向变化。最终的声驻波主要受压力平面变化的影响,导致颗粒迁移到平面压力节点(或取决于颗粒和流体特性的波腹)。讨论了场中横向变化的后果,并给出了针对给定驱动电压在适当层内设计具有高能量密度的谐振器的规则。

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