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Extended Hydrodynamics from Enskog’s Equation for a Two-Dimensional System General Formalism

机译:从恩斯科格方程扩展为二维系统一般形式主义的流体力学

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摘要

Balance equations are derived from Enskog’s kinetic equation for a two-dimensional system of hard disks using Grad’s moment expansion method. This set of equations constitute an extended hydrodynamics for moderately dense bi-dimensional fluids. The set of independent hydrodynamic fields in the present formulations are: density, velocity, temperature and also—following Grad’s original idea—the symmetric and traceless pressure tensor p ij and the heat flux vector q k . An approximation scheme similar in spirit to one made by Grad in his original work is made. Once the hydrodynamics is derived it is used to discuss the nature of a simple one-dimensional heat conduction problem. It is shown that, not too far from equilibrium, the nonequilibrium pressure in this case only depends on the density, temperature and heat flux vector.
机译:平衡方程式是从恩斯克格(Enskog)的动力学方程式导出的,它使用Grad的矩展开法来计算二维硬盘系统。这组方程组构成了中等密度的二维流体的扩展流体力学。在当前公式中,一组独立的流体动力学场为:密度,速度,温度,以及(按照Grad的最初想法)对称且无痕的压力张量p ij 和热通量矢量q k 。提出了一种近似的方案,其精神类似于Grad在其原始作品中提出的方案。一旦得出了流体动力学,就可以用来讨论一个简单的一维热传导问题的性质。结果表明,在这种情况下,不平衡压力仅取决于密度,温度和热通量矢量,而并非离平衡太远。

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