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September 5, 2025Physics of Fluids0 citations

Theoretical analysis of the dynamic characteristics of a spatial three-bubble system

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RXRongsheng XieSLShi-Min LiJXJiandong Xing

Key Points

  • Dynamic behaviors of a spatial three-bubble system depend on arrangement shape and dimensionless distance.
  • For symmetrically positioned bubbles, fluid compressibility significantly influences the central bubble's energy dissipation.
  • A compressible bubble dynamics model was used to analyze phase transition and energy conversion processes.
  • Results highlight the importance of spatial configuration in energy distribution and dissipation characteristics.

Abstract

The coupling effects and energy transfer mechanisms in multi-bubble systems have been long-standing focal points in fluid dynamics research. In this study, we theoretically investigate the dynamics of a spatial three-bubble system using a compressible bubble dynamics model that incorporates phase transition and migration effects. The dynamic behaviors and energy conversion processes are analyzed for different spatial configurations. Validation is performed through a series of spark-generated bubble experiments. Energy distribution and dissipation characteristics are compared across three experimental cases: two non-collinear arrangements with different initial dimensionless distances, and a linear arrangement. The results show that for bubbles positioned symmetrically, the interaction is governed by both dimensionless distance and arrangement shape. Furthermore, using a dimensionless framework, the effects of spatial configuration and flow field compressibility on system dynamics are examined. In particular, when the three bubbles are symmetrically arranged, fluid compressibility dominates the central bubble's energy dissipation.

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Cite This Study

Xie et al. (2025) studied this question.

synapsesocial.com/papers/68bb5f586d6d5674bcd03954https://doi.org/10.1063/5.0281732
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