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Modeling and Analysis of the Two-Dimensional Axisymmetric Acoustofluidic Fields in the Probe-Type and Substrate-Type Ultrasonic Micro/Nano Manipulation Systems

机译:探针型和基板式超声波微/纳米操纵系统中二维轴对称声磁场的建模与分析

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摘要

The probe-type and substrate-type ultrasonic micro/nano manipulation systems have proven to be two kinds of powerful tools for manipulating micro/nanoscale materials. Numerical simulations of acoustofluidic fields in these two kinds of systems can not only be used to explain and analyze the physical mechanisms of experimental phenomena, but also provide guidelines for optimization of device parameters and working conditions. However, in-depth quantitative study and analysis of acoustofluidic fields in the two ultrasonic micro/nano manipulation systems have scarcely been reported. In this paper, based on the finite element method (FEM), we numerically investigated the two-dimensional (2D) axisymmetric acoustofluidic fields in the probe-type and substrate-type ultrasonic micro/nano manipulation systems by the perturbation method (PM) and Reynolds stress method (RSM), respectively. Through comparing the simulation results computed by the two methods and the experimental verifications, the feasibility and reasonability of the two methods in simulating the acoustofluidic fields in these two ultrasonic micro/nano manipulation systems have been validated. Moreover, the effects of device parameters and working conditions on the acoustofluidic fields are clarified by the simulation results and qualitatively verified by the experiments.
机译:探针型和基材型超声波微/纳米操作系统已被证明是用于操纵微/纳米材料的两种强大的工具。这两种系统中的声毒流体领域的数值模拟不仅可以用于解释和分析实验现象的物理机制,而且还提供了用于优化器件参数和工作条件的指导。然而,两种超声波微/纳米操纵系统中的深入定量研究和分析杂散的流体田地几乎没有报道。本文基于有限元方法(FEM),通过扰动方法(PM)数量地研究了探针型和衬底式超声波微/纳米操作系统中的二维(2D)轴对称声磁场流体流体流体。雷诺斯应力法(RSM)分别。通过比较两种方法和实验验证所计算的模拟结果,验证了在模拟这些两个超声波微/纳米操纵系统中模拟声杂散场的两种方法的可行性和合理性。此外,通过模拟结果阐明了器件参数和工作条件对声杂散场的影响,并通过实验定性验证。

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