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具有内部取向自由度的流体的边界条件:与分子排列相关的表观速度滑移。

Boundary conditions for fluids with internal orientational degrees of freedom: apparent velocity slip associated with the molecular alignment.

作者信息

Heidenreich Sebastian, Ilg Patrick, Hess Siegfried

机构信息

Institute for Theoretical Physics, Technische Universität of Berlin, Hardenbergstrasse 36, D-10623, Germany.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2007 Jun;75(6 Pt 2):066302. doi: 10.1103/PhysRevE.75.066302. Epub 2007 Jun 5.

DOI:10.1103/PhysRevE.75.066302
PMID:17677352
Abstract

Boundary effects are investigated for fluids with internal orientational degrees of freedom such as molecular liquids, thermotropic and lyotropic liquid crystals, and polymeric fluids. The orientational degrees of freedom are described by the second rank alignment tensor which is related to the birefringence. We use a standard model to describe the orientational dynamics in the presence of flow, the momentum balance equations, and a constitutive law for the pressure tensor to describe our system. In the spirit of irreversible thermodynamics, boundary conditions are formulated for the mechanical slip velocity and the flux of the alignment. They are set up such that the entropy production at the wall inferred from the entropy flux is positive definite. Even in the absence of a true mechanical slip, the coupling between orientation and flow leads to flow profiles with an apparent slip. This has consequences for the macroscopically measurable effective velocity. In analytical investigations, we consider the simplified case of an isotropic fluid in the Newtonian and stationary flow regime. For special geometries such as plane and cylindrical Couette flow, plane Poiseuille flow, and a flow down an inclined plane, we demonstrate explicitly how the boundary conditions lead to an apparent slip. Furthermore, we discuss the dependence of the effective viscosity and of the effective slip length on the model parameters.

摘要

研究了具有内部取向自由度的流体(如分子液体、热致液晶和溶致液晶以及聚合物流体)的边界效应。取向自由度由与双折射相关的二阶取向张量描述。我们使用一个标准模型来描述流动存在时的取向动力学、动量平衡方程以及压力张量的本构定律来描述我们的系统。本着不可逆热力学的精神,为机械滑移速度和取向通量制定了边界条件。它们的设置使得从熵通量推断出的壁面处的熵产生是正定的。即使在没有真正机械滑移的情况下,取向与流动之间的耦合也会导致具有表观滑移的流动剖面。这对宏观可测量的有效速度有影响。在分析研究中,我们考虑牛顿稳态流动 regime 中各向同性流体的简化情况。对于特殊几何形状,如平面和圆柱 Couette 流、平面 Poiseuille 流以及沿倾斜平面的流动,我们明确展示了边界条件如何导致表观滑移。此外,我们讨论了有效粘度和有效滑移长度对模型参数的依赖性。

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