Acoustic streaming induced by anti-symmetrical flexural modes near a wedge tip

W.-C. Wang, C. Yang, A. Yang
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引用次数: 3

Abstract

Acoustic streaming (AS) is a steady fluid flow driven by the absorption of high amplitude ultrasonic vibrations due to the nonlinear effect. With potential applications in micro-pumping, the AS-related behaviors remain as interesting topics to the acoustic community. Anti-symmetric flexural (ASF) modes are wedge waves with their particle motion anti-symmetric about the apex mid-plane. With the energy tightly confined near the wedge-tip, ASF mode has relatively high acoustic amplitude which suggest it's as a good candidate for the investigation of AS. In this study, the AS behaviors induced by ASF modes are investigated by computational fluid dynamics (CFD). The ASF induced three-dimensional AS flow field are presented through the CFD analysis.
楔尖附近非对称弯曲模态诱导的声流
声流是由于非线性效应而吸收高振幅超声振动驱动的稳定流体流动。由于在微泵中具有潜在的应用前景,as相关行为一直是声学学界关注的话题。反对称弯曲(ASF)模是一种质点运动在顶点中间面反对称的楔形波。由于能量被紧密地限制在楔形尖端附近,ASF模式具有较高的声振幅,这表明它是研究as的良好候选。本研究采用计算流体力学(CFD)方法研究了ASF模态诱导的AS行为。通过CFD分析,给出了ASF诱导的三维AS流场。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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