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不同外部源引发气泡的标度律:理论与实验研究

Scaling law for bubbles induced by different external sources: theoretical and experimental study.

作者信息

Gong S W, Ohl S W, Klaseboer E, Khoo B C

机构信息

Institute of High Performance Computing, 1 Fusionopolis Way, No. #16-16, Connexis, Singapore 138632, Singapore.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2010 May;81(5 Pt 2):056317. doi: 10.1103/PhysRevE.81.056317. Epub 2010 May 20.

Abstract

The scaling relations for bubbles induced by different external sources are investigated based on a modified Rayleigh model and experimental observations. The equations derived from the modified Rayleigh model are presented to describe the collapse of bubbles induced by the different external sources such as electrical spark, laser, and underwater explosion. A scaling law is then formulated to establish the scaling relations between the different types of bubbles. The scaling law reveals the fact that the characteristic length scale factor differs from the characteristic time scale factor for the different types of bubbles. It is then validated by our experimental observations of the spark- and laser-generated bubbles as well as the bubbles induced by underwater explosions from previous published reports. With the present scaling law, studies on spark- or laser-generated bubbles as well as their applications (for example, in industrial or biomedical related applications) can benefit from the experiences and information built up over the years in underwater explosion bubbles. Conversely, it is possible to substitute a spark- or laser-generated bubble for an underwater explosion bubble in the study of a large-scale and complex physical problem.

摘要

基于修正的瑞利模型和实验观测结果,研究了由不同外部源引发的气泡的标度关系。给出了从修正瑞利模型推导得出的方程,以描述由诸如电火花、激光和水下爆炸等不同外部源引发的气泡的坍塌。然后制定了一个标度律,以建立不同类型气泡之间的标度关系。该标度律揭示了这样一个事实,即不同类型气泡的特征长度尺度因子与特征时间尺度因子不同。随后,通过我们对电火花和激光产生的气泡以及先前已发表报告中水下爆炸产生的气泡的实验观测结果对其进行了验证。借助当前的标度律,对电火花或激光产生的气泡及其应用(例如,在工业或生物医学相关应用中)的研究可以受益于多年来在水下爆炸气泡方面积累的经验和信息。反之,在研究大规模复杂物理问题时,用激光或电火花产生的气泡替代水下爆炸气泡也是可行的。

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