分手
流体体积法
机械
喷射(流体)
分手
大涡模拟
材料科学
边界层
流量(数学)
化学
热力学
湍流
物理
作者
Jing Zhang,Yifeng Liu,Bin Gong,Xiang Li,Yaxia Li,Jian Wu
标识
DOI:10.1002/ceat.202100533
摘要
Abstract Liquid‐liquid swirling flow is directly affected by the dynamic behavior of discrete droplets. Large eddy simulation combined with the volume‐of‐fluid model (LES‐VOF) was adopted to simulate the dynamic behavior of a CCl 4 single droplet under water in a concave‐wall jet. There were three modes of droplets: non‐breakup, binary‐breakup, and multiple‐breakup droplets. The binary‐breakup droplet was sheared by the layer between the jet and the main flow, and the multiple‐breakup droplet was sheared by the boundary layer of the wall. Deformation and breakup were the processes of balancing the internal and external droplet vorticity. The largest pressure difference between the internal and external side of the liquid film was the primary reason for droplet breakup.
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