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Unitized Regenerative Fuel Cell System Gas Dryer/Humidifier Analytical Model Development

机译:单元式蓄热式燃料电池系统气体干燥器/加湿器分析模型开发

摘要

A lightweight Unitized Regenerative Fuel Cell (URFC) Energy Storage System concept is being developed at the NASA Glenn Research Center (GRC). This Unitized Regenerative Fuel Cell System (URFCS) is unique in that it uses Regenerative Gas Dryers/Humidifiers (RGD/H) that are mounted on the surface of the gas storage tanks that act as the radiators for thermal control of the Unitized Regenerative Fuel Cell System (URFCS). As the gas storage tanks cool down during URFCS charging the RGD/H dry the hydrogen and oxygen gases produced by electrolysis. As the gas storage tanks heat up during URFCS discharging, the RGD/H humidify the hydrogen and oxygen gases used by the fuel cell. An analytical model was developed to simulate the URFCS RGD/H. The model is in the form of a Microsoft (registered trademark of Microsoft Corporation) Excel worksheet that allows the investigation of the RGD/H performance. Finite Element Analysis (FEA) modeling of the RGD/H and the gas storage tank wall was also done to analyze spatial temperature distribution within the RGD/H and the localized tank wall. Test results obtained from the testing of the RGD/H in a thermal vacuum environment were used to corroborate the analyses.
机译:NASA格伦研究中心(GRC)正在开发一种轻型的组合式再生燃料电池(URFC)能量存储系统概念。该组合式可再生燃料电池系统(URFCS)的独特之处在于,它使用安装在储气罐表面的可再生气体干燥器/加湿器(RGD / H),这些气体用作散热器以控制组合式可再生燃料电池系统(URFCS)。在URFCS充电期间,随着储气罐的冷却,RGD / H会干燥电解产生的氢气和氧气。在URFCS排放期间,随着储气罐的升温,RGD / H加湿了燃料电池使用的氢气和氧气。开发了一个分析模型来模拟URFCS RGD / H。该模型采用Microsoft(Microsoft Corporation的注册商标)Excel工作表的形式,该文件可以调查RGD / H性能。还对RGD / H和储气罐壁进行了有限元分析(FEA)建模,以分析RGD / H和局部储罐壁内的空间温度分布。通过在热真空环境中对RGD / H进行测试而获得的测试结果被用于证实分析结果。

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