JOURNAL OF CHEMICAL ENGINEERING OF JAPAN | |
Computations of the Breakup of a Jet into Drops in Non-Newtonian Liquid–Liquid Systems | |
Kozue Akimoto1  Jiro Koga1  Shiro Matsumoto1  Shunji Homma1  | |
[1] Division of Materials Science, Graduate School of Science and Engineering, Saitama University | |
关键词: Jet; Drop; Navier–Stokes Equations; Front Tracking; Non-Newtonian Fluid; Carreau–Yasuda Model; | |
DOI : 10.1252/jcej.06WE284 | |
来源: Maruzen Company Ltd | |
【 摘 要 】
References(27)Cited-By(3)The breakup of a laminar liquid jet into drops in non-Newtonian immiscible liquid systems has been studied using a two-dimensional cylindrical axisymmetric front-tracking/finite difference method with the Carreau–Yasuda model for non-Newtonian viscosities. For co-flow condition, where the continuous phase flows with the same velocity as the jet injection velocity, the lengths of the jet and the sizes of the drops are in good agreement between numerical simulations and experiments reported previously. Non-Newtonian effects are discussed by visualizing the distribution of viscosity. The breakup length of the jet becomes large when shear thinning occurs inside the jet, while the jet becomes short when shear thinning occurs in a continuous phase.
【 授权许可】
Unknown
【 预 览 】
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RO201912080695966ZK.pdf | 19KB | download |