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Towards Novel Micromanipulations of Submillimeter-Scale Particles in a Laterally-Oscillated Rectangular Container

机译:朝向横向振荡矩形容器中的亚颌下级颗粒的新微小微小

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Our previous study discovered that small particles scattered at the bottom of a water-filled rectangular container align at specific positions when the particles are subject to standing wave induced by laterally oscillating the container at specific frequencies. Also, we identified a method to theoretically estimate the oscillation frequency for aligning the small particles and the positions where several particle lines appear. As the next step, we are currently developing novel micromanipulation methods with this unique phenomenon targeting submillimeter-scale particles. In the present study, this alignment phenomenon is further studied to reveal the potential, especially focusing on the distribution of lateral fluid velocity in vertical direction, the amplitude of lateral oscillation, and the liquid height which have never been discussed in our previous study. This paper examines their relationships with the alignment condition and discusses the applicability of these findings obtained in the present study to develop novel micromanipulation methods of small particles.
机译:我们以前的研究发现,当颗粒在特定频率横向振荡容器时,当颗粒受到常设波时,散射在充分的矩形容器底部的小颗粒。此外,我们鉴定了一种理论上估计振荡频率的方法,用于对准小颗粒和几个粒子线的位置。作为下一步,我们目前正在开发具有这种独特现象的新型微操矩方法,该方法靶向亚麻尺度级粒子。在本研究中,进一步研究了该对准现象以揭示潜在的潜在,特别是在垂直方向上的横向流体速度分布,横向振荡的幅度以及从未在我们以前的研究中讨论过的液体高度。本文研究了与对准条件的关系,并讨论了本研究中获得的这些发现的适用性,以开发小颗粒的新微操纵方法。

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