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DNS analysis of incipient drop impact dynamics using an accurate level set method 被引量:2

DNS analysis of incipient drop impact dynamics using an accurate level set method
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摘要 A series of 2D direct numerical simulations were performed with an accurate level set method for single drop impacts.The adopted ACLS method was validated to be efficient with perfect mass conservation in both normal and oblique impacts.A square-root correction for neck bases was modified in accuracy as well as scope of applications.In addition,process of jet formation and evolution was studied to reveal internal dynamics in drop impacts.It's found that pressure gradient and vortex are coexisting and completive reasons for jet topology while the inclined angle has a significant effect on them.Mechanisms of jet formation and evolution are different in the front and back necks.With the help of PDF distribution and correction calculation,a compromise in the competition is observed.This work lays a solid foundation for further studies of dynamics in gas-liquid flows. A series of 2D direct numerical simulations were performed with an accurate level set method for single drop impacts.The adopted ACLS method was validated to be efficient with perfect mass conservation in both normal and oblique impacts.A square-root correction for neck bases was modified in accuracy as well as scope of applications.In addition,process of jet formation and evolution was studied to reveal internal dynamics in drop impacts.It's found that pressure gradient and vortex are coexisting and completive reasons for jet topology while the inclined angle has a significant effect on them.Mechanisms of jet formation and evolution are different in the front and back necks.With the help of PDF distribution and correction calculation,a compromise in the competition is observed.This work lays a solid foundation for further studies of dynamics in gas-liquid flows.
出处 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2017年第1期1-10,共10页 中国化学工程学报(英文版)
基金 Supported by the National Natural Science Foundation of China(91541202,51276163)
关键词 Numerical simulation Accurate level set Gas-liquid flow Interface Mechanism completion Compromise 冲击动力学 水平集方法 DNS 跌落 二维数值模拟 内部动力学 气液两相流 质量守恒
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