通过隔热板优化减少AMTEC电池的寄生热损失

C. Borkowski, R.C. Svedberg, T.J. Hendricks
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引用次数: 5

摘要

碱金属热电转换(AMTEC)电池的性能可以通过在AMTEC电池内部适当设计热辐射屏蔽来提高。这些隔热板基本上降低了细胞的热输入区和细胞的热排除区之间的辐射热传递。除了降低电池的热输入和热排出表面之间的辐射传热外,屏蔽层还通过提高β -氧化铝固体电解质(BASE)的温度来提高AMTEC电池的性能。基管温度的升高使蒸发器温度升高,而钠不会在基管内凝结。通过实验测试和理论分析,比较了两种候选热屏蔽封装的相对优点:1)v形和2)圆柱形热屏蔽。这两个隔热罩包相互比较,并与没有安装隔热罩的基准电池进行比较。对于两种隔热层,当热输入表面温度从700/spl℃、750/spl℃和800/spl℃变化,而散热表面温度保持在300/spl℃时,总传热减少17%至27%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Parasitic heat loss reduction in AMTEC cells by heat shield optimization
Alkali metal thermal to electric conversion (AMTEC) cell performance can be increased by the proper design of thermal radiative shielding internal to the AMTEC cell. These heat shields essentially lower the radiative heat transfer between the heat input zone of the cell and the heat rejection zone of the cell. In addition to lowering the radiative heat transfer between the heat input and heat rejection surfaces of the cell, the shields raise the AMTEC cell performance by increasing the temperature of the beta'' alumina solid electrolyte (BASE). This increase in temperature of the BASE tube allows the evaporator temperature to be increased without sodium condensing within the BASE tubes. Experimental testing and theoretical analysis have been performed to compare the relative merits of two candidate heat shield packages: 1) chevron, and 2) cylindrical heat shields. These two heat shield packages were compared to each other and a baseline cell which had no heat shields installed. For the two heat shield packages, the reduction in total heat transfer is between 17% to 27% for the heat input surface temperature varying from 700/spl deg/C, 750/spl deg/C, and 800/spl deg/C with the heat rejection surface temperature kept at 300/spl deg/C.
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