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Maximum-entropy closure of hydrodynamic moment hierarchies including correlations

机译:包括相关性的流体动量矩层次的最大熵闭合

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摘要

Generalized hydrodynamic moment hierarchies are derived which explicitly include nonequilibrium two-particle and higher-order correlations. The approach is adapted to strongly correlated media and nonequilibrium processes on short time scales which necessitate an explicit treatment of time-evolving correlations. Closure conditions for the extended moment hierarchies are formulated by a maximum-entropy approach, generalizing related closure procedures for kinetic equations. A self-consistent set of nonperturbative dynamical equations are thus obtained for a chosen set of single-particle and two-particle (and possibly higher-order) moments. Analytical results are derived for generalized Gaussian closures including the dynamic pair distribution function and a two-particle correction to the current density. The maximum-entropy closure conditions are found to involve the Kirkwood superposition approximation.
机译:推导了广义流体动量矩层次结构,该层次结构明确包括非平衡两粒子和高阶相关性。该方法适用于短时间尺度上的高度相关的媒体和非平衡过程,这需要对时间演化相关性进行显式处理。扩展矩层次的闭合条件是通过最大熵方法来制定的,该方程概括了动力学方程式的相关闭合过程。因此,对于一组选定的单粒子和两粒子(以及可能更高阶)的矩,获得了一组自洽的非摄动动力学方程。得出了广义高斯闭合的分析结果,包括动态对分布函数和对电流密度的两粒子校正。发现最大熵闭合条件涉及柯克伍德叠加近似。

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