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强CO₂激光辐射下液滴的爆炸沸腾:数值实验

Explosive boiling of water droplets irradiated with intense CO(2)-laser radiation: numerical experiments.

作者信息

Geints Y E, Zemlyanov A A, Armstrong R L

出版信息

Appl Opt. 1994 Aug 20;33(24):5805-10. doi: 10.1364/AO.33.005805.

Abstract

The results of numerical calculations of water-droplet explosions initiated by intense CO(2)-laser radiation are presented. The theoretical model for this process is based on the solution of the value of the thermal-boundary problem in an inhomogeneously heated droplet, including the kinetic equation describingvapor generation in a superheated liquid. The main characteristics of droplet explosions (e.g., degree of explosive evaporation and time of explosion) are calculated. It is established that these characteristics depend on the heating rate of the droplet and on its radius. The results point to the fact that two droplet-heating regimes can be distinguished-slow heating and rapid heating-based on the behavior of the explosive boiling process. This division represents the competition of real physical processes in an irradiated droplet and makes it possible to separate the basic, specific features of the explosion process.

摘要

给出了由强CO(2)激光辐射引发的水滴爆炸的数值计算结果。该过程的理论模型基于非均匀加热液滴中热边界问题的求解,包括描述过热液体中蒸汽生成的动力学方程。计算了水滴爆炸的主要特征(如爆炸蒸发程度和爆炸时间)。结果表明,这些特征取决于液滴的加热速率及其半径。结果表明,根据爆炸沸腾过程的行为,可以区分两种液滴加热方式——缓慢加热和快速加热。这种划分体现了受辐照液滴中实际物理过程的竞争,使得分离爆炸过程的基本、特定特征成为可能。

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