Collisionless kinetic theory of rolling molecules

Darryl D. Holm, V. Putkaradze, C. Tronci
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引用次数: 1

Abstract

We derive a collisionless kinetic theory for an ensemble of molecules undergoing nonholonomic rolling dynamics. We demonstrate that the existence of nonholonomic constraints leads to problems in generalizing the standard methods of statistical physics. In particular, we show that even though the energy of the system is conserved, and the system is closed in the thermodynamic sense, some fundamental features of statistical physics such as invariant measure do not hold for such nonholonomic systems. Nevertheless, we are able to construct a consistent kinetic theory using Hamilton's variational principle in Lagrangian variables, by regarding the kinetic solution as being concentrated on the constraint distribution. A cold fluid closure for the kinetic system is also presented, along with a particular class of exact solutions of the kinetic equations.
滚动分子的无碰撞运动理论
我们导出了一个非完整滚动动力学分子系综的无碰撞动力学理论。我们证明了非完整约束的存在导致了统计物理标准方法推广中的问题。特别是,我们表明,即使系统的能量是守恒的,并且系统在热力学意义上是封闭的,统计物理的一些基本特征,如不变测度,并不适用于这种非完整系统。然而,通过将动力学解集中于约束分布,我们可以利用拉格朗日变量中的汉密尔顿变分原理构建一个一致的运动论。本文还提出了动力学系统的冷流体闭包,以及一类特定的动力学方程的精确解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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