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Efficiency Study of a Commercial Thermoelectric Power Generator (TEG) Under Thermal Cycling

机译:热循环条件下商用热电发电机的效率研究

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摘要

Thermoelectric generators (TEGs) make use of the Seebeck effect in semiconductors for the direct conversion of heat to electrical energy. The possible use of a device consisting of numerous TEG modules for waste heat recovery from an internal combustion (IC) engine could considerably help worldwide efforts towards energy saving. However, commercially available TEGs operate at temperatures much lower than the actual operating temperature range in the exhaust pipe of an automobile, which could cause structural failure of the thermoelectric elements. Furthermore, continuous thermal cycling could lead to reduced efficiency and lifetime of the TEG. In this work we investigate the long-term performance and stability of a commercially available TEG under temperature and power cycling. The module was subjected to sequential hot-side heating (at 200 deg C) and cooling for long times (3000 h) in order to measure changes in the TEG's performance. A reduction in Seebeck coefficient and an increase in resistivity were observed. Alternating-current (AC) impedance measurements and scanning electron microscope (SEM) observations were performed on the module, and results are presented and discussed.
机译:热电发生器(TEG)利用半导体中的塞贝克效应将热量直接转换为电能。可能使用由许多TEG模块组成的设备来从内燃机(IC)回收废热,这可能会极大地帮助全世界努力实现节能。但是,市售的TEG的工作温度远低于汽车排气管中的实际工作温度范围,这可能会导致热电元件的结构故障。此外,连续的热循环可能导致TEG的效率降低和寿命降低。在这项工作中,我们研究了市售TEG在温度和功率循环下的长期性能和稳定性。为了测量TEG性能的变化,对模块进行了连续的热侧加热(200℃)并冷却了很长时间(3000 h)。观察到塞贝克系数的减小和电阻率的增大。在模块上进行了交流(AC)阻抗测量和扫描电子显微镜(SEM)观察,并给出了结果并进行了讨论。

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