Numerical investigation of the time-resolved bubble cluster dynamics by using the interface capturing method of multiphase flow approach

IF 3.4 3区 工程技术 Q1 MECHANICS
Ying Chen (陈瑛), Chuan-jing Lu (鲁传敬), Xin Chen (陈鑫), Jie Li (李杰), Zhao-xin Gong (宫兆新)
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引用次数: 4

Abstract

The present paper proposes a multiphase flow approach for capturing the time-resolved collapse course of bubble clusters in various geometrical configurations. The simulation method is first verified by computing the dynamic behavior of an isolated vapor bubble placed in a uniform ambient pressure. The comparison between the numerical result and the theoretical solution indicates that the method can accurately capture the bubble shape, the characteristic time and the extremely high pressure induced by the collapse. Then the simulation method is applied to investigate the behavior of two kinds of bubble clusters in hexagonal and cubic geometrical configurations. The predicted collapsing sequence and the shape characteristics of the bubbles are generally in agreement with the experimental results. The bubbles transform and break from the outer layer toward the inner layers. In each layer, the bubbles on the corner first change into a pea shape and cave before collapsing, then the bubbles on the sides begin to shrink. It is also found that, in comparison with the case of an isolated single bubble, the central bubble in the cluster always contracts more slowly at the early stage and collapses more violently at the final stage.

采用多相流方法的界面捕获方法对时间分辨气泡簇动力学进行数值研究
本文提出了一种多相流方法来捕捉不同几何形状的气泡团簇的时间分辨崩溃过程。首先通过计算均匀环境压力下孤立汽泡的动态特性来验证模拟方法。数值结果与理论解的比较表明,该方法能准确地捕捉到气泡的形状、特征时间和崩塌引起的极高压力。然后应用模拟方法研究了两种气泡团簇在六边形和立方几何构型下的行为。预测的气泡崩塌顺序和形状特征与实验结果基本一致。气泡从外层向内层转变并破裂。在每一层中,角落的气泡首先变成豌豆形状,然后塌陷,然后两侧的气泡开始收缩。我们还发现,与孤立的单个气泡相比,星系团的中心气泡总是在早期收缩得更慢,在最后阶段坍塌得更猛烈。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.90
自引率
0.00%
发文量
1240
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