气泡
粒子(生态学)
多相流
离散化
水平集方法
跟踪(教育)
计算机科学
机械
流量(数学)
解算器
网格生成
计算科学
拓扑(电路)
物理
数学
有限元法
人工智能
热力学
海洋学
分割
图像分割
程序设计语言
地质学
心理学
数学分析
教育学
组合数学
作者
Hui Wang,Zhi Wei Wang,Shulin Hong,Xubo Yang,Bo Zhu
标识
DOI:10.1109/tvcg.2024.3404151
摘要
We present a novel particle-grid scheme for simulating bubble and foam flow. At the core of our approach lies a particle representation that combines the computational nature of moving least-squares particles and particle level-set methods. Specifically, we assign a dedicated particle system to each individual bubble, enabling accurate tracking of its interface evolution and topological changes in a foaming fluid system. The particles within each bubble's particle system serve dual purposes. Firstly, they function as a surface discretization, allowing for the solution of surfactant flow physics on the bubble's membrane. Additionally, these particles act as interface trackers, facilitating the evolution of the bubble's shape and topology within the multiphase fluid domain. The combination of particle systems from all bubbles contributes to the generation of an unsigned level-set field, further enhancing the simulation of coupled multiphase flow dynamics. By seamlessly integrating our particle representation into a multiphase, volumetric flow solver, our method enables the simulation of a broad range of intricate bubble and foam phenomena. These phenomena exhibit highly dynamic and complex structural evolution, as well as interfacial flow details
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