Connection between heat diffusion and heat conduction in one-dimensional systems

Shunda Chen, Yong Zhang, Jiao Wang, Hong Zhao
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引用次数: 11

Abstract

Heat and energy are conceptually different, but often are assumed to be the same without justification. An effective method for investigating diffusion properties in equilibrium systems is discussed. With this method, we demonstrate that for one-dimensional systems, using the indices of particles as the space variable, which has been accepted as a convention, may lead to misleading conclusions. We then show that though in one-dimensional systems there is no general connection between energy diffusion and heat conduction, however, a general connection between heat diffusion and heat conduction may exist. Relaxation behavior of local energy current fluctuations and that of local heat current fluctuations are also studied. We find that they are significantly different, though the global energy current equals the globe heat current.
一维系统中热扩散与热传导的关系
热能和能量在概念上是不同的,但常常被毫无根据地认为是相同的。讨论了一种研究平衡系统扩散特性的有效方法。通过这种方法,我们证明了对于一维系统,使用粒子的指标作为空间变量,这已经被接受为一种惯例,可能会导致误导性的结论。然后,我们表明,虽然在一维系统中,能量扩散和热传导之间没有一般的联系,但是,热扩散和热传导之间可能存在一般的联系。研究了局部能量电流波动和局部热电流波动的弛豫行为。虽然全球能量流等于全球热流,但我们发现它们有很大的不同。
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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