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The compatibility approach in the classical theory of thermoelectricity seen from the perspective of variational calculus

机译:从变分学的角度看经典热电理论中的相容性方法

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摘要

The compatibility approach introduced by Snyder and Ursell opens a new pathway for the improvement of thermoelectric (TE) device performance. It has been shown that sufficient compatibility is - besides an increase of the averaged figure of merit Z - essential for efficient operation of a TE device, and that compatibility will facilitate rational materials selection, device design, and the engineering of functionally graded materials (FGMs). In this paper, the authors give an overview of the fundamental results and present a new approach from the perspective of variational calculus. A particular focus is on the role of ideal self-compatibility, i.e., adjusting compatibility locally at any position along a TE leg.
机译:Snyder和Ursell引入的兼容性方法为改善热电(TE)设备性能开辟了一条新途径。已经表明,除了平均品质因数Z的增加以外,充分的兼容性对于TE设备的有效运行至关重要,并且兼容性将有助于合理的材料选择,设备设计以及功能梯度材料(FGM)的工程设计。 )。在本文中,作者概述了基本结果,并从变分演算的角度提出了一种新方法。特别关注的是理想的自我兼容性的作用,即在TE支路的任何位置局部调整兼容性。

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