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Thermodynamic analysis of SOFC (solid oxide fuel cell)-Stirling hybrid plants using alternative fuels

机译:使用替代燃料的SOFC(固体氧化物燃料电池)-斯特林混合动力工厂的热力学分析

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摘要

A novel hybrid power system (~ 10 kW) for an average family home is proposed. The system investigated contains a solid oxide fuel cell (SOFC) on top of a Stirling engine. The off-gases produced in the SOFC cycle are fed to a bottoming Stirling engine, at which additional power is generated. Simulations of the proposed system were conducted using different fuels, which should facilitate the use of a variety of fuels depending on availability. Here, the results for natural gas (NG), ammonia, di-methyl ether (DME), methanol and ethanol are presented and analyzed. The system behavior is further investigated by comparing the effects of key factors, such as the utilization factor and the operating conditions under which these fuels are used. Moreover, the effect of using a methanator on the plant efficiency is also studied. The combined system improves the overall electrical efficiency relative to that of a stand-alone Stirling engine or SOFC plant. For the combined SOFC and Stirling configuration, the overall power production was increased by approximately 10% compared to that of a stand-alone SOFC plant. System efficiencies of approximately 60% are achieved, which is remarkable for such small plant sizes. Additionally, heat is also produced to heat the family home when necessary.
机译:提出了一种适用于普通家庭的新型混合动力系统(〜10 kW)。所研究的系统在斯特林发动机的顶部包含一个固体氧化物燃料电池(SOFC)。 SOFC循环中产生的废气被送入斯特林发动机,并在此产生额外的动力。拟议系统的仿真是使用不同的燃料进行的,这应根据可用性方便使用各种燃料。在此,介绍并分析了天然气(NG),氨,二甲基醚(DME),甲醇和乙醇的结果。通过比较关键因素(例如利用率和使用这些燃料的运行条件)的影响,可以进一步研究系统性能。此外,还研究了使用甲烷化器对工厂效率的影响。相对于独立的斯特林发动机或SOFC装置,该组合系统提高了整体电气效率。对于SOFC和Stirling组合配置,与独立的SOFC工厂相比,整体发电量增加了约10%。系统效率达到约60%,对于如此小的工厂而言,这是非凡的。此外,必要时还会产生热量来加热家庭。

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