Modeling and simulation of multi-component immiscible flows based on a modified Cahn-Hilliard equation

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28

초록

In this study, an efficient method will be developed for the phase-field model of multi-component immiscible phases. The formulation of surface tension requires the interfaces to satisfy the hyperbolic tangent property. However, the interfacial transitions between different phases are not hyperbolic tangent profiles. The enclosed area is not preserved although the total mass is conserved by the original Cahn-Hilliard equation. This study is an extended research based on our previous study (Li et al., 2016). This work aims to apply the modified Cahn-Hilliard model into the multi-phase system. The interface is forced to be hyperbolic tangent by the modified Cahn-Hilliard system. The computational accuracy of the surface tension is improved under our multiphase framework. The mass loss of each phase can be reduced and the enclosed area can be preserved by the proposed method. We show various numerical results to demonstrate the robustness of the proposed modified model. (c) 2022 Elsevier Masson SAS. All rights reserved.

키워드

Multi-component flow; Navier-Stokes equation; Cahn-Hilliard model; Hyperbolic tangent property; TENSION FORCE FORMULATION; IMMERSED BOUNDARY METHOD; ENERGY STABLE SCHEMES; LEVEL SET APPROACH; PHASE-FIELD MODEL; FLUID; COMPUTATIONS; 2ND-ORDER; DYNAMICS; VOLUME
제목
Modeling and simulation of multi-component immiscible flows based on a modified Cahn-Hilliard equation
저자
Xia, Qing; Kim, Junseok; Li, Yibao
DOI
10.1016/j.euromechflu.2022.04.013
발행일
2022-09
유형
Article
저널명
European Journal of Mechanics, B/Fluids
권
95
페이지
194 ~ 204