在声波悬浮大跌的动态上
Eduardo Cancino-Jaque1, Josué Meneses-Diaz1, Y Vargas-Hernández1
1Laboratorio de Ultrasonidos, Departamento de Física, Facultad de Ciencia, Universidad de Santiago de Chile, 917-0124, Avenida Victor Jara 3493, Estación Central, Santiago, Chile.
Ultrasonics sonochemistry
|November 29, 2023
概括
研究人员实现了比以前可能更大的液滴的声学悬浮. 声波悬浮的这一突破是由一种新的声场形状所实现的,它允许在不经原子化的情况下进行更大的滴量.
科学领域:
- 物理 物理学 物理
- 流体动力学 流体动力学
- 声学 声学 在声学方面
背景情况:
- 声学悬浮通常需要高强度的声场来悬浮滴.
- 悬浮滴的最大大小受到高声压水平下原子化风险的限制.
研究的目的:
- 为了实验性地研究大液滴的声学悬浮.
- 探索悬浮液滴的可能性,其体积和直径明显超过当前文献限制.
主要方法:
- 使用定制设计的声学悬浮器,产生独特的声场形状.
- 进行试验测量和模拟声场和下降动态.
- 确定悬浮各种水滴大小的声压水平极限.
主要成果:
- 成功悬浮的滴量高达166±2μl,有效直径为6.82±0.03mm,比之前报告的数量更大.
- 观察到,定制系统中的辐射压力分布与典型的悬浮器不同,最大压力在滴水的顶部表面.
- 建立了用于悬浮这些较大的水滴的上下声压极限.
结论:
- 新的声场配置使得比以前可行的更大的水滴能够悬浮.
- 独特的压力分布,在顶部表面具有最大的力,防止了原子化,并允许更大的降落悬浮.
- 这项研究扩大了声波悬浮的功能,以处理更大的体积.
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