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Analysis of the internal heat losses in a thermoelectric generator

机译:热电发电机内部热量损失分析

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摘要

A 3D thermoelectric numerical model is used to investigate different internal heat loss mechanisms for a thermoelectric generator with bismuth telluride p- and n-legs. The model considers all thermoelectric effects, temperature dependent material parameters and simultaneous convective, conductive and radiative heat losses, including surface to surface radiation. For radiative heat losses it is shown that for the temperatures considered here, surface to ambient radiation is a good approximation of the heat loss. For conductive heat transfer the module efficiency is shown to be comparable to the case of radiative losses. Finally, heat losses due to internal natural convection in the module is shown to be negligible for the millimetre sized modules considered here. The combined case of radiative and conductive heat transfer resulted in the lowest efficiency. The optimized load resistance is found to decrease for increased heat loss. The leg dimensions are varied for all heat losses cases and it is shown that the ideal way to construct a TEG module with minimal heat losses and maximum efficiency is to either use a good insulating material between the legs or evacuate the module completely, and use small and wide legs closely spaced.
机译:使用3D热电数值模型来研究具有碲化铋p腿和n腿的热电发电机的不同内部热损失机理。该模型考虑了所有热电效应,温度相关的材料参数以及同时的对流,传导和辐射热损失,包括表面到表面辐射。对于辐射热损失,表明对于此处考虑的温度,表面到环境的辐射是热损失的良好近似值。对于传导热传递,模块效率显示出与辐射损耗的情况相当。最后,对于此处考虑的毫米大小的模块,由于模块内部的自然对流而产生的热量损失可以忽略不计。辐射和传导热传递的组合情况导致最低的效率。发现优化的负载电阻会降低,以增加热损失。对于所有热损失情况,支脚尺寸都不同,这表明构造具有最小热损失和最大效率的TEG模块的理想方法是在支脚之间使用良好的绝缘材料或完全排空模块,并使用较小的宽腿紧紧地隔开。

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