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Droplet ejection from an interface between two immiscible liquids under pulsed ultrasound

机译:从脉冲超声波下的两个不混溶液体之间的界面喷射

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摘要

The emphasis of this study is on the ejection of single droplets of a certain size under pulsed ultrasound. Droplet ejection from an interface of two immiscible liquids in this mode, which differs from the well-known ultrasonic fountain (where liquid droplets arise spontaneously), has been experimentally implemented and investigated. The spatial and time evolution of the interface deformation and violation of interface integrity, caused by pulsed acoustic radiation pressure, has been recorded with a high-speed video camera. It is shown that, depending on the ultrasound intensity, three characteristic modes of interface response can be distinguished. In the first (low-intensity)mode, the interface undergoes forced oscillations, without violation of its integrity. In the second (intermediate-intensity) mode, which is in the focus of our study, the interface integrity is violated due to the ejection of a single droplet of a certain size; the latter continuously changes its shape when moving in the second liquid. In the third (high-intensity) mode, the predictable ejection of droplets of a predictable size turns into stochastic ejection of multiple droplets with unpredictable sizes. The dependence of the sizes of single droplets on the parameters of focused ultrasound beam have been measured in the second (stable) mode of ultrasound ejection. Based on these measurements, the range of ultrasound parameters providing controlled generation of single droplets of a specified size is estimated. Differences in the dynamics of interface motion and specific features of droplet generation for the liquid/liquid interface in comparison with the liquid/gas interface are indicated. Possible applications of the observed effects are discussed.
机译:本研究的重点是在脉冲超声波下喷射单次尺寸的单滴漏。在这种模式下,从两个不混溶的液体的界面中滴注的液滴从众所周知的超声波喷泉(自发地出现的液滴)不同,已经通过实验实施和研究。脉冲声辐射压力引起的界面变形和违反界面完整性的空间和时间演化已经用高速摄像机记录。结果表明,取决于超声强度,可以区分三种特征互补的界面响应模式。在第一(低强度)模式下,界面经历强制振荡,而不会违反其完整性。在焦点我们研究的焦点中的第二(中间强度)模式下,由于一定尺寸的单个液滴喷射,界面完整性被侵犯;当在第二液体中移动时,后者连续改变其形状。在第三(高强度)模式中,可预测大小的可预测喷射可预测的大小的液滴使得具有不可预测的尺寸的多个液滴的随机喷射。在超声喷射的第二(稳定的)模式下,测量了单液滴尺寸对聚焦超声波梁参数的依赖性。基于这些测量,估计提供了提供指定大小的单液滴的受控生成的超声参数范围。表示与液/气界面相比液/液界面的液体运动的界面运动动力学和液滴产生的特定特征的差异。讨论了观察到的效果的可能应用。

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  • 来源
    《Physics of wave phenomena》 |2016年第3期|共7页
  • 作者单位

    Russian Acad Sci Prokhorov Gen Phys Inst Wave Res Ctr Ul Vavilova 38 Moscow 119991 Russia;

    Univ Lille CNRS Inst Elect Microelect &

    Nanotechnol Centrale Lille UMR 8520 F-59000 Lille France;

    Univ Lille CNRS Inst Elect Microelect &

    Nanotechnol Centrale Lille UMR 8520 F-59000 Lille France;

    Russian Acad Sci Prokhorov Gen Phys Inst Wave Res Ctr Ul Vavilova 38 Moscow 119991 Russia;

    Russian Acad Sci Prokhorov Gen Phys Inst Wave Res Ctr Ul Vavilova 38 Moscow 119991 Russia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;
  • 关键词

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