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Novel high performance small-scale thermoelectric power generation employing regenerative combustion systems

机译:采用再生燃烧系统的新型高性能小型热电发电

摘要

Hydrocarbon fuels have specific energy contents some two orders of magnitude greater than any electrical storage device. They therefore proffer an ideal source in the universal quest for compact, lightweight, long-lasting alternatives for batteries to power the ever-proliferating electronic devices. The motivation lies in the need to power, for example, equipment for infantry troops, for weather stations and buoys in polar regions which need to signal their readings intermittently to passing satellites, unattended over long periods, and many others. Fuel cells, converters based on miniaturized gas turbines, and other systems under intensive study, give rise to diverse practical difficulties. Thermoelectric devices are robust, durable and have no moving parts, but tend to be exceedingly inefficient. We propose regenerative combustion systems which mitigate this impediment and are likely to make high performance small-scale thermoelectric power generation applicable in practice. The efficiency of a thermoelectric generating system using preheat when operated between ambient and 1200 K is calculated to exceed the efficiency of the best present day thermoelectric conversion system by more than 20%.
机译:碳氢化合物燃料的比能含量比任何蓄电装置高约两个数量级。因此,它们为普遍寻求一种紧凑,轻便,持久的电池替代品以为不断增长的电子设备供电提供了理想的电源。其动机在于需要为例如步兵部队,极地地区的气象站和浮标等设备供电,这些设备需要间歇性地向经过的卫星发出读数,长时间无人值守,等等。燃料电池,基于小型燃气轮机的转换器以及正在深入研究中的其他系统引起了各种实际困难。热电装置坚固,耐用且没有活动部件,但效率极低。我们提出了一种再生燃烧系统,该系统可减轻这一障碍,并有可能使高性能小型热电发电在实践中得到应用。经计算,在环境温度和1200 K之间运行时使用预热的热电发电系统的效率比当今最好的热电转换系统的效率高出20%以上。

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