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Hydrodynamic Theories for Flows of Active Liquid Crystals and the Generalized Onsager Principle

机译:活性液晶流动的流体力学理论和广义Onsager原理

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We articulate and apply the generalized Onsager principle to derive transport equations for active liquid crystals in a fixed domain as well as in a free surface domain adjacent to a passive fluid matrix. The Onsager principle ensures fundamental variational structure of the models as well as dissipative properties of the passive component in the models, irrespective of the choice of scale (kinetic to continuum) and of the physical potentials. Many popular models for passive and active liquid crystals in a fixed domain subject to consistent boundary conditions at solid walls, as well as active liquid crystals in a free surface domain with consistent transport equations along the free boundaries, can be systematically derived from the generalized Onsager principle. The dynamical boundary conditions are shown to reduce to the static boundary conditions for passive liquid crystals used previously.
机译:我们阐明并应用广义的Onsager原理来导出有源液晶在固定域以及与被动流体矩阵相邻的自由表面域中的传输方程。昂萨格(Onsager)原理可确保模型的基本变化结构以及模型中无源组件的耗散特性,而与比例尺(动力学到连续谱)的选择和物理电位的选择无关。可以从广义的Onsager系统地得出许多流行的固定域中的无源和有源液晶模型,这些模型在固体壁上受到一致的边界条件,以及在自由表面域中的有源液晶具有沿自由边界的一致的传输方程。原理。动态边界条件显示为减少到先前使用的无源液晶的静态边界条件。

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