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Performance Assessment and Optimization of a Thermophotovoltaic Converter-Thermoelectric Generator Combined System

机译:热电转换器-热电发电机组合系统的性能评估与优化

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摘要

To evaluate the feasibility of the performance enhancement of a thermophotovoltaic (TPV) converter by using a thermoelectric generator (TEG), a new model of a combined system is established, where the TEG is attached on the backside of the TPV converter to harvest the heat produced in the TPV converter. The effects of the voltage output of the TPV converter, band gap energy of the TPV converter, dimensionless current of the TEG, and emitter temperature on the performance of the combined system are examined numerically. It is found that the performance of the TPV converter can be enhanced by using the TEG. The percentage increment of the maximum power output density is larger than that of the maximum efficiency. There are optimally working regions of the converter voltage, dimensionless current, and band gap energy. The elevated emitter temperature results in the increase of the power output density of the combined system. However, there is an optimal emitter temperature that yields the maximum efficiency of the combined system. Moreover, the TEG is not suitable to harvest the heat produced in the TPV converter when the emitter temperature is sufficiently high.
机译:为了评估通过使用热电发电机(TEG)来提高热电(TPV)转换器性能的可行性,建立了一种组合系统的新模型,该系统将TEG附着在TPV转换器的背面以收集热量由TPV转换器生产。通过数值研究了TPV转换器的电压输出,TPV转换器的带隙能量,TEG的无量纲电流和发射极温度对组合系统性能的影响。发现通过使用TEG可以提高TPV转换器的性能。最大功率输出密度的百分比增量大于最大效率的百分比增量。存在转换器电压,无量纲电流和带隙能量的最佳工作区域。发射极温度升高导致组合系统的功率输出密度增加。但是,有一个最佳的发射器温度可产生组合系统的最大效率。此外,当发射极温度足够高时,TEG不适合收集TPV转换器产生的热量。

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