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Maxwell times in higher-order generalized hydrodynamics: Classical fluids, and carriers and phonons in semiconductors

机译:在高阶广义流体动力学中的麦克斯韦时报:古典液体和载体和半导体中的载体和声子

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摘要

A family of what can be so-called Maxwell times which arises in the context of higher-order generalized hydrodynamics (HOGH; also called mesoscopic hydrothermodynamics) is evidenced. This is done in the framework of a HOGH built within a statistical formalism in terms of a nonequilibrium statistical ensemble formalism. It consists in a description in terms of the densities of particles and energy and their fluxes of all orders, with the motion described by a set of coupled nonlinear integro-differential equations involving them. These Maxwell times have a fundamental role in determining the type of hydrodynamic motion that the system would display in the given conditions and constraints. They determine a Maxwell viscous force not present in the usual hydrodynamic equations, for example, in Navier-Stokes equation.
机译:可以证明,在高阶广义流体动力学(HogH;也称为介观水中动力学)的背景下出现的麦克斯韦的家族。 这是在统计形式主义内建立在统计形式的统计形式的框架内完成的。 它在粒子和能量的密度和它们的所有订单的助熔剂方面组成的描述,其中由涉及它们的一组耦合的非线性积分 - 微分方程描述的运动。 这些麦克斯韦时间在确定系统将在给定的条件和约束中显示的流体动力运动的类型具有基本作用。 它们确定了通常在通常的流体动力方程中不存在的麦克风粘性力,例如,在Navier-Stokes方程中。

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