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通过固-固结的热传输:作为一个自主热力学系统的界面

Heat transport through a solid-solid junction: the interface as an autonomous thermodynamic system.

作者信息

Rurali Riccardo, Colombo Luciano, Cartoixà Xavier, Wilhelmsen Øivind, Trinh Thuat T, Bedeaux Dick, Kjelstrup Signe

机构信息

Institut de Ciència de Materials de Barcelona (ICMAB-CSIC) Campus de Bellaterra, 08193 Bellaterra, Barcelona, Spain.

Departament d'Enginyeria Electrònica, Universitat Autònoma de Barcelona, 08193 Bellaterra, Barcelona, Spain.

出版信息

Phys Chem Chem Phys. 2016 May 18;18(20):13741-5. doi: 10.1039/c6cp01872f.

Abstract

We perform computational experiments using nonequilibrium molecular dynamics simulations, showing that the interface between two solid materials can be described as an autonomous thermodynamic system. We verify the local equilibrium and give support to the Gibbs description of the interface also away from the global equilibrium. In doing so, we reconcile the common formulation of the thermal boundary resistance as the ratio between the temperature discontinuity at the interface and the heat flux with a more rigorous derivation from nonequilibrium thermodynamics. We also show that thermal boundary resistance of a junction between two pure solid materials can be regarded as an interface property, depending solely on the interface temperature, as implicitly assumed in some widely used continuum models, such as the acoustic mismatch model. Thermal rectification can be understood on the basis of different interface temperatures for the two flow directions.

摘要

我们使用非平衡分子动力学模拟进行了计算实验,结果表明两种固体材料之间的界面可被描述为一个自主的热力学系统。我们验证了局部平衡,并支持吉布斯对界面的描述,即使是在远离全局平衡的情况下。在此过程中,我们将热边界电阻的常用公式(即界面处的温度不连续性与热通量之比)与非平衡热力学中更严格的推导相协调。我们还表明,两种纯固体材料之间连接的热边界电阻可被视为一种界面性质,仅取决于界面温度,这正如一些广泛使用的连续介质模型(如声学失配模型)中隐含假设的那样。热整流可以基于两个流动方向的不同界面温度来理解。

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