A Finite Element Approximation for Nematic Liquid Crystal Flow with Stretching Effect Based on Nonincremental Pressure-Correction Method

Author:

Meng Zhaoxia,Liu Meng,Jia Hongen

Abstract

In this paper, a new decoupling method is proposed to solve a nematic liquid crystal flow with stretching effect. In the finite element discrete framework, the director vector is calculated by introducing a new auxiliary variable w, and the velocity vector and scalar pressure are decoupled by a nonincremental pressure-correction projection method. Then, the energy dissipation law and unconditional energy stability of the resulting system are given. Finally, some numerical examples are given to verify the effects of various parameters on the singularity annihilation, stability and accuracy in space and time.

Funder

2021 Shanxi Science and Technology Cooperation and Exchange special program

2022 Shanxi Water Conservancy Science and Technology Research and Promotion Project

Publisher

MDPI AG

Subject

General Physics and Astronomy

Reference22 articles.

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4. Nonparabolic dissipative systems modeling the flow of liquid crystals;Lin;Commun. Pure Appl. Math.,1995

5. A linear mixed finite element scheme for a nematic Ericksen–Leslie liquid crystal model;Esaim Math. Model. Numer. Anal.,2013

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