Dynamics and Flow Effects in the Beris-Edwards System Modeling Nematic Liquid Crystals

Author:

Wu Hao,Xu XiangORCID,Zarnescu Arghir

Funder

NNSFC

CNCS-UEFISCDI

MINECO: BCAM Severo Ochoa accreditation

Laverhulme grant RPG

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mathematics (miscellaneous),Analysis

Reference39 articles.

1. Abels, H.; Dolzmann, G.; Liu, Y.N.: Well-posedness of a fully coupled Navier-Stokes/Q-tensor system with inhomogeneous boundary data. SIAM J. Math. Anal. 46, 3050–3077 (2014)

2. Abels, H.; Dolzmann, G.; Liu, Y.N.: Strong solutions for the Beris-Edwards model for nematic liquid crystals with homogeneous Dirichlet boundary conditions. Adv. Differ. Equ. 21, 109–152 (2016)

3. Ball, J.: Differentiability properties of symmetric and isotropic functions. Duke Math. J. 51, 699–728 (1984)

4. Ball, J.: Mathematics of Liquid Crystals. Cambridge Centre for Analysis, Short Course Slides, 13–17, 2012

5. Ball, J.; Majumdar, A.: Nematic liquid crystals: from Maier-Saupe to a continuum theory. Mol. Cryst. Liq. Cryst. 525, 1–11 (2010)

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