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Transient response of a thermoelectric generator subjected to spatially non-uniform heating: Implications for heat and IR sensing applications

机译:受空间不均匀加热的热电发电机的瞬态响应:对热和红外传感应用的影响

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We present a combined experimental and computational investigation of the transient behavior of a thermoelectric generator (TEG) subjected to temperature gradients of less than 0.5 K across its thickness. Such conditions can exist when TEGs are used as heat sensors or IR detectors. Spatially non-uniform heating was initiated by allowing light to strike the central portion of one side of the TEG or by placing a small heated probe in contact with that surface. The time-dependent, open circuit voltage output of the TEG was predicted using temperature results from a three dimensional transient heat conduction finite element model. It is shown that the transient voltage output is influenced by the configuration of the mounting hardware, by the thermal properties of the TEG's materials of construction, and by convection. Three-dimensional heat conduction in the TEG determines the nature of the transient voltage output, which, in some cases, exhibits an overshoot. (C) 2015 Elsevier Ltd. All rights reserved.
机译:我们目前对热电发电机(TEG)的瞬态行为进行组合的实验和计算研究,该瞬态行为在其整个厚度上经受小于0.5 K的温度梯度。当TEG用作热传感器或IR检测器时,可能会存在这种情况。通过允许光线照射到TEG一侧的中央部分或通过将一个小的加热探针与该表面接触而引发空间上不均匀的加热。利用三维瞬态热传导有限元模型的温度结果,预测了TEG随时间变化的开路电压输出。结果表明,瞬态电压输出受安装硬件配置,TEG结构材料的热性能和对流影响。 TEG中的三维热传导决定了瞬态电压输出的性质,在某些情况下,该性质表现出过冲。 (C)2015 Elsevier Ltd.保留所有权利。

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