Annenkova Elena A, Sapozhnikov Oleg A, Kreider Wayne, Simon Julianna C
Department of Acoustics, Physics Faculty, Moscow State University, Moscow, Russia.
CIMU, Applied Physics Laboratory, University of Washington, Seattle, WA, USA.
IEEE Int Ultrason Symp. 2016 Sep;2016. doi: 10.1109/ultsym.2016.7728535. Epub 2016 Nov 3.
Ultrasonic atomization has been used in air humidifiers and is also involved in therapeutic applications of intense ultrasound such as boiling histotripsy. An as-yet unexplained phenomenon occurs when a focused ultrasound beam in water creates an acoustic fountain in the form of a drop chain, which explodes in less than a millisecond. In the present paper, we seek to develop a nonlinear theory to explain this phenomenon. We hypothesize that standing wave harmonics are generated inside the water drops due to acoustic nonlinearities, which, along with localized heat deposition in the drop center, may generate a superheated vapor bubble that causes the explosion.
超声雾化已应用于空气加湿器中,并且也涉及到高强度超声的治疗应用,如沸腾组织粉碎术。当水中的聚焦超声束形成液滴链形式的声喷泉时,会出现一种尚未得到解释的现象,该声喷泉会在不到一毫秒的时间内爆炸。在本文中,我们试图建立一种非线性理论来解释这一现象。我们假设由于声学非线性,在水滴内部会产生驻波谐波,这些谐波与水滴中心的局部热沉积一起,可能会产生一个过热的蒸汽泡,从而导致爆炸。