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Effect of buckling on the cooling performance of free-standing planar thermoelectric coolers

机译:屈曲对独立式平面热电冷却器冷却性能的影响

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This article investigates the effect of buckling on the cooling performance of planar thermoelectric (TE) coolers (TECs). The TEC is made up of n-type and p-type TE elements with large length-to-thickness ratio. Each TE element is modeled as a fixed-fixed thin plate. Theoretical model for the solutions of temperature and electric potential fields of the TE element after buckling is established. The corresponding coefficient of performance (COP) that indicates the cooling performance of TEC is also given. Influence of Seebeck coefficient, thermal conductivity, temperature difference, and the ratio of length-to-thickness on the cooling performance are discussed. It is found that buckling of TEC will reduce its cooling performance. A bigger Seebeck coefficient and smaller thermal conductivity can both improve the value of COP. It is also found that there is no maximum COP when the temperature difference across the TEC is zero. However, the effect of buckling on the cooling performance of TEC can be ignored if the TEC achieves the maximum COP. The peak value of COP is independent of the ratio of length-to-thickness of the TEC. An optimized value of the electric current corresponding to the maximum COP of the TEC is obtained.
机译:本文研究屈曲对平面热电(TE)冷却器(TEC)的冷却性能的影响。 TEC由长厚比大的n型和p型TE元件组成。每个TE元素均建模为固定固定的薄板。建立了屈曲后TE元件温度场和势场解的理论模型。还给出了指示TEC冷却性能的相应性能系数(COP)。讨论了塞贝克系数,导热系数,温度差以及长厚比对冷却性能的影响。发现TEC的屈曲会降低其冷却性能。更大的塞贝克系数和较小的导热率都可以提高COP值。还发现,当TEC上的温度差为零时,没有最大COP。但是,如果TEC达到最大COP,则屈曲对TEC冷却性能的影响可以忽略。 COP的峰值与TEC的长宽比无关。获得对应于TEC的最大COP的电流的最佳值。

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