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AMTEC powered residential furnace and auxiliary power

机译:AMTEC供电的住宅炉和辅助力量

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Residential gas furnaces normally rely on utility grid electric power to operate the fans and/or the pumps used to circulate conditioned air or water and they are thus vulnerable to interruptions of utility grid service. Experience has shown that such interruptions can occur during the heating season, and can lead to serious consequences. A gas furnace coupled to an AMTEC conversion system retains the potential to produce heat and electricity (gas lines are seldom interrupted during power outages), and can save approximately $47/heating season compared to a conventional gas furnace. The key to designing a power system is understanding, and predicting, the cell performance characteristics. The three main processes that must be understood and modeled to fully characterize an AMTEC cell are the electrochemical, sodium vapor flow, and heat transfer. This paper shows the results of an attempt to model the heat transfer in a multitube AMTEC cell and then discusses the conceptual design of a self-powered residential furnace.
机译:住宅燃气炉通常依赖于公用电网电力来操作风扇和/或用于循环条件空气或水的泵,因此它们容易受到公用电网服务的中断。经验表明,这种中断可能发生在加热季节,并导致严重后果。耦合到AMTEC转换系统的燃气炉保留了产生热量和电力(在停电期间很少中断气体管线),并且与传统的燃料炉相比,可以节省约47美元/加热季节。设计电力系统的关键是理解和预测,细胞性能特征。必须理解和建模以完全表征Amtec细胞的三个主要过程是电化学,钠蒸汽流和传热。本文展示了模拟多元型AMTEC电池中的传热,然后探讨自动住宅炉的概念设计的结果。

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