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A wave theory of heat transport with applications to Kapitsa resistance and thermal rectification

机译:传热波理论及其在Kapitsa电阻和热精馏中的应用

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摘要

We develop a theory of thermal transport in nanoscale-layered structures based on wave processes. The theory incorporates two fundamental principles, first, that the spectra of thermally excited waves are determined by the temperature differential and the heat flux, and second, that the wave fields in the heat exchanging domains are coupled. The developed method includes classical theories as special cases that are valid in larger scales, and it naturally explains such phenomena as interface thermal resistance (Kapitsa resistance) and thermal rectification (asymmetry of thermal transport). Numerical examples demonstrate the feasibility of the approach, and they show good agreement with measurements of Kapitsa resistance reported in the literature.
机译:我们开发基于波过程的纳米层结构中的热传输理论。该理论包含两个基本原理,首先,由温度差和热通量确定热激发波的频谱,其次,将热交换域中的波场耦合。所开发的方法包括作为特殊情况的经典理论,这些理论在较大范围内都是有效的,并且自然地解释了诸如界面热阻(Kapitsa电阻)和热整流(热传递不对称)之类的现象。数值例子证明了该方法的可行性,并且与文献报道的Kapitsa抗性的测量结果显示出良好的一致性。

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