辐照液滴的扩散和对流蒸发

R. Armstrong, A. Zardecki
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引用次数: 18

摘要

基于喷射蒸汽和周围气体组成的系统的流体力学描述,研究了球对称液滴在高辐照激光通量作用下的蒸发现象。对于低辐照度光束,弥漫性质量输运和导电性能量输运是液滴与环境的主要相互作用在这种等压情况下,环境介质的状态变化很小。对于高通量光束,对流质量输运变得显著,液滴汽化伴随着周围气体中强激波的产生。根据Knight,液滴边界处的2个跳跃条件有助于我们求解水动力边值问题。对Knight的分析进行扩展,使其包括扩散和对流质量通量,从而可以研究低通量等压情况和高通量激波主导情况之间的过渡状态。给出了所选液滴束结构下液滴汽化和环境-介质流体动力效应的数值解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Diffusive and convective evaporation of irradiated droplets
The evaporation of a spherically symmetric liquid droplet subject to a high-irradiance laser flux is investigated on the basis of a hydrodynamic description of the system composed of the ejected vapor and ambient gas. For low irradiance beams, diffusive mass transport and conductive energy transport are the dominant interactions between the droplet and its environment.1 In this isobaric case, changes in the state of the ambient medium are small. For higher-flux beams, convective mass transport becomes significant, and droplet vaporization is accompanied by the production of strong shock waves in the surrounding gas. Following Knight,2jump conditions at the droplet boundary aid us in solving the hydrodynamic boundary value problem. An extension of Knight’s analysis to include both diffusive and convective mass flux allows the transition regime between the low-flux isobaric case and the high-flux shock-wave dominated case to be investigated. Numerical solutions illustrating droplet vaporization and ambient-medium hydrodynamic effects are presented for selected droplet-beam configurations.
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