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Effective Thermal Properties of Multilayered Systems with Interface Thermal Resistance in a Hyperbolic Heat Transfer Model

机译:双曲传热模型中带界面热阻的多层系统的有效热特性

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One-dimensional thermal wave transport in multilayered systems with an interface thermal resistance is studied under the framework of the Cattaneo-Vernotte hyperbolic heat conduction model, considering modulated heat excitation under Dirichlet and Neumann boundary conditions. For a single semi-infinite layer, analytical formulas useful in the measurement of its thermal relaxation time as well as additional thermal properties are presented. For a composite-layered system, in the thermally thin regime, with the Dirichlet boundary condition, the well known effective thermal resistance formula is obtained, while for the Neumann problem, only the heat capacity identity is found. In contrast, in the thermally thick case, an analytical expression for both Dirichlet and Neumann conditions is obtained for the effective thermal diffusivity of the whole system in terms of the thermal properties of the individual layers and their interface thermal resistance. The limits of applicability of this equation, in the thermally thick regime, are shown to provide useful and simple results in the characterization of layered systems and that they can be reduced to the results obtained using the Fourier approach. The role of the thermal relaxation time, the interface thermal resistance, and the implications of these results in the possibility of enhancement in heat transport are discussed.
机译:在Cattaneo-Vernotte双曲热传导模型的框架下,考虑了在Dirichlet和Neumann边界条件下的调制热激发,研究了具有界面热阻的多层系统中的一维热波传输。对于单个半无限层,提出了可用于测量其热弛豫时间以及其他热性能的分析公式。对于具有Dirichlet边界条件的热薄状态下的复合层系统,获得了众所周知的有效热阻公式,而对于Neumann问题,仅找到了热容特性。相反,在热较厚的情况下,就整个系统的有效热扩散率而言,就单个层的热性质及其界面热阻而言,可以获得狄利克雷特条件和诺伊曼条件的解析表达式。该方程在热厚条件下的适用范围已证明可为层状系统的表征提供有用且简单的结果,并且可以将其简化为使用傅立叶方法获得的结果。讨论了热弛豫时间的作用,界面热阻以及这些结果对提高热传输可能性的影响。

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