Journal of Siberian Federal University. Mathematics & Physics / Investigation of the Orientational Thermoelasticity Effect Using a Simplified Model of Nematic Liquid Crystal in the Acoustic Approximation

Full text (.pdf)
Issue
Journal of Siberian Federal University. Mathematics & Physics. Prepublication
Authors
Smolekho, Irina V.
Contact information
Smolekho, Irina V. : Institute of Computational Modelling SB RAS Krasnoyarsk, Russian Federation; OCRID: 0000-0002-9852-9310
Keywords
liquid crystal; thermal conductivity; dynamics; CUDA technology
Abstract

Analysis of the orientational thermoelasticity effect using a two-dimensional simplified dy- namic model of liquid crystal in the acoustic approximation is presented in the paper. It is assumed that effect occurs when one of the boundaries of a rectangular liquid crystal layer is heated. To solve the system of model equations, the method of two-cycle splitting with respect to spatial variables is used in combination with the finite-difference Godunov scheme for the acoustic equations and the Ivanov scheme with controlled energy dissipation for the heat conduction equation. This combination of finite-difference methods allows one to calculate related thermomechanical processes using the same time and space steps that satisfy the Courant-Friedrichs-Levy criterion. The numerical algorithm was implemented as a par- allel program written in C++. Parallelization of computations was performed with NVIDIA graphic accelerators using CUDA technology. Simulations demonstrate that it is impossible to observe the effect of reorientation of liquid crystal molecules under the influence of temperature for the presented simplified model in the acoustic approximation. It was concluded that when surface tension forces are taken into account this effect will be observed for the model used in this work

Pages
337–346
EDN
FDPGQX
Paper at repository of SibFU
https://elib.sfu-kras.ru/handle/2311/155088