In this paper we consider a model describing the evolution of a nematic liquid crystal flow with delay external forces. We analyze the evolution of the velocity field u which is ruled by the 3D incompressible Navier-Stokes system containing a delay term and with a stress tensor expressing the coupling between the transport and the induced terms. The dynamics of the director field d is described by a modified Allen-Cahn equation with a suitable penalization of the physical constraint vertical bar d vertical bar = 1. We prove the existence of global in time weak solutions under appropriate assumptions, which in some cases requires the delay term to be small with respect to the viscosity parameter.
A 3D isothermal model for nematic liquid crystals with delay terms / T. Caraballo, C. Cavaterra. - In: DISCRETE AND CONTINUOUS DYNAMICAL SYSTEMS. SERIES S. - ISSN 1937-1632. - 15:8(2022 Aug), pp. 2117-2133. [10.3934/dcdss.2022097]
A 3D isothermal model for nematic liquid crystals with delay terms
C. CavaterraUltimo
2022
Abstract
In this paper we consider a model describing the evolution of a nematic liquid crystal flow with delay external forces. We analyze the evolution of the velocity field u which is ruled by the 3D incompressible Navier-Stokes system containing a delay term and with a stress tensor expressing the coupling between the transport and the induced terms. The dynamics of the director field d is described by a modified Allen-Cahn equation with a suitable penalization of the physical constraint vertical bar d vertical bar = 1. We prove the existence of global in time weak solutions under appropriate assumptions, which in some cases requires the delay term to be small with respect to the viscosity parameter.File | Dimensione | Formato | |
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