首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Simulations of flow-induced director structures in nematic liquid crystals through Leslie-Ericksen equations. I. Computational methodology in two dimensions
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Simulations of flow-induced director structures in nematic liquid crystals through Leslie-Ericksen equations. I. Computational methodology in two dimensions

机译:通过莱斯利-埃里克森方程模拟向列型液晶中流动诱导的指向矢结构。 I.二维计算方法

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摘要

A computational treatment of the constitutive equations of nematodynamics, based on the Leslie-Ericksen approach, is presented and discussed for a rotating planar nematic sample subjected to a constant magnetic field. The dynamics of the velocity v and director n fields is taken into account exactly. Coupled partial differential equations suitable to be solved numerically are worked out, in terms of derived functionals of v and n and of their spatial and time derivatives. Time-dependent patterns of the director are obtained using a finite-difference scheme in a spatial polar grid. Several experimental situations are analyzed, corresponding to common experimental setups: continuously rotating samples for different values of the rotational speed; 30 degrees and 90 degrees step-rotation experiments. A comparison is made to existing approximate treatments. Dependence upon the sample dimension is also discussed. [References: 52]
机译:提出并讨论了基于Leslie-Ericksen方法的线动力学本构方程方程的计算方法,该方法用于旋转平面向列样品承受恒定磁场的情况。精确考虑了速度v和指向矢n场的动力学。根据v和n的导出函数及其空间和时间导数,得出了适合于数值求解的耦合偏微分方程。在空间极坐标网格中,使用有限差分方案可以获得指向矢的时变模式。分析了几种与普通实验设置相对应的实验情况:连续旋转样品以获得不同的转速值; 30度和90度步进旋转实验。与现有的近似治疗方法进行比较。还讨论了对样本尺寸的依赖性。 [参考:52]

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