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TitleDroplet dynamics: A phase-field model of mobile charges, polarization, and its leaky dielectric approximation
Creator
Date Issued2023-08-01
Source PublicationPhysics of Fluids
ISSN1070-6631
Volume35Issue:8
Abstract

This paper presents a Poisson-Nernst-Planck-Navier-Stokes-Cahn-Hillard (PNP-NS-CH) model for an electrically charged droplet suspended in a viscous fluid under an external electric field. Our model incorporates spatial variations in electric permittivity and diffusion constants, as well as interfacial capacitance. Based on a time scale analysis, we derive two approximations of the original model: a dynamic model for the net charge (assuming unchanged conductance) and a leaky-dielectric model (assuming unchanged conductance and net charge). For the leaky-dielectric model, we perform a detailed asymptotic analysis to demonstrate the convergence of the diffusive-interface leaky-dielectric model to the sharp interface model as the interface thickness approaches zero. Numerical computations are conducted to validate the asymptotic analysis and demonstrate the model's effectiveness in handling topology changes, such as electro-coalescence. Our numerical results from these two approximation models reveal that the polarization force, induced by the spatial variation in electric permittivity perpendicular to the external electric field, consistently dominates the Lorentz force arising from the net charge. The equilibrium shape of droplets is determined by the interplay between these two forces along the direction of the electric field. Moreover, in the presence of interfacial capacitance, a local variation in effective permittivity results in the accumulation of counter-ions near the interface, leading to a reduction in droplet deformation. Our numerical solutions also confirm that the leaky-dielectric model is a reasonable approximation of the original PNP-NS-CH model when the electric relaxation time is sufficiently short. Both the Lorentz force and droplet deformation decrease significantly when the diffusion of net charge increases.

DOI10.1063/5.0159956
URLView source
Indexed BySCIE
Language英语English
WOS Research AreaMechanics ; Physics
WOS SubjectMechanics ; Physics, Fluids & Plasmas
WOS IDWOS:001053093700002
Scopus ID2-s2.0-85169904214
Citation statistics
Cited Times:7[WOS]   [WOS Record]     [Related Records in WOS]
Document TypeJournal article
Identifierhttp://repository.uic.edu.cn/handle/39GCC9TT/10790
CollectionBeijing Normal-Hong Kong Baptist University
Corresponding AuthorXu, Shixin
Affiliation
1.Key Laboratory of Complex Systems and Data Science of Ministry of Education, School of Mathematical Sciences, Shanxi University, Taiyuan, 030006, China
2.Research Center for Mathematics, Beijing Normal University, Zhuhai, Guangdong, 519088, China
3.Guangdong Provincial Key Laboratory of Interdisciplinary Research and Application for Data Science, BNU-HKBU United International College, Zhuhai, Guangdong, 519088, China
4.Department of Mathematics and Statistics, York University, Toronto, M3J 1P3, Canada
5.Math and Statistics Department, Utah State University, Old Main Hill Logan, 84322, United States
6.Zu Chongzhi Center for Mathematics and Computational Sciences, Duke Kunshan University, Kunshan, 8 Duke Ave Jiangsu, China
Recommended Citation
GB/T 7714
Qin, Yuzhe,Huang, Huaxiong,Song, Zilonget al. Droplet dynamics: A phase-field model of mobile charges, polarization, and its leaky dielectric approximation[J]. Physics of Fluids, 2023, 35(8).
APA Qin, Yuzhe, Huang, Huaxiong, Song, Zilong, & Xu, Shixin. (2023). Droplet dynamics: A phase-field model of mobile charges, polarization, and its leaky dielectric approximation. Physics of Fluids, 35(8).
MLA Qin, Yuzhe,et al."Droplet dynamics: A phase-field model of mobile charges, polarization, and its leaky dielectric approximation". Physics of Fluids 35.8(2023).
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