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A combined thermophotovoltaic-thermoelectric energy converter

机译:组合式热电热电转换器

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The performance of a combined thermoelectric (TE) and thermophotovoltaic (TPV) energy converter was theoretically modeled. The thermal input power to the system is determined by the TPV input high temperature. However, TE converters operate at lower input temperatures. Therefore, a thermal conduction block must be used to reduce the high input temperature to the lower TE operating temperature. The TE portion of the system was analyzed using a one dimensional conduction model. A radiation transfer model was used for the TPV portion of the system. There are two significant results. First, the combined system has a larger efficiency than TE or TPV alone in a narrow temperature range. This temperature range lies between typical TE operating temperatures (K) and TPV operating temperatures (approximate to 1200 K). Second, the electrical power output in this temperature range is significantly greater than TE or TPV alone.
机译:理论上模拟了组合的热电(TE)和热光伏(TPV)能量转换器的性能。系统的热输入功率由TPV输入高温决定。但是,TE转换器在较低的输入温度下工作。因此,必须使用导热块将高输入温度降低到较低的TE工作温度。使用一维传导模型分析了系统的TE部分。辐射传输模型用于系统的TPV部分。有两个重要结果。首先,在狭窄的温度范围内,组合系统比单独的TE或TPV具有更高的效率。该温度范围介于典型的TE工作温度(K)和TPV工作温度(大约1200 K)之间。其次,在此温度范围内的电功率输出明显大于单独的TE或TPV。

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