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Analysis of the design of a pressurized SOFC hybrid system using a fixed gas turbine design

机译:使用固定燃气轮机设计的加压SOFC混合系统设计分析

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摘要

Design characteristics and performance of a pressurized solid oxide fuel cell (SOFC) hybrid system using a fixed gas turbine (GT) design are analyzed. The gas turbine is assumed to exist prior to the hybrid system design and all the other components such as the SOFC module and auxiliary parts are assumed to be newly designed for the hybrid system. The off-design operation of the GT is modeled by the performance characteristics of the compressor and the turbine. In the SOFC module, internal reforming with anode gas recirculation is adopted. Variations of both the hybrid system performance and operating condition of the gas turbine with the design temperature of the SOFC were investigated. Special focus is directed on the shift of the gas turbine operating points from the original points. It is found that pressure loss at the fuel cell module and other components, located between the compressor and the turbine, shifts the operating point. This results in a decrease of the turbine inlet temperature at each compressor operating condition relative to the original temperature for the GT only system. Thus, it is difficult to obtain the original GT power. Two cell voltage cases and various degrees of temperature difference at the cell are considered and their influences on the system design characteristics and performance are comparatively analyzed.
机译:分析了使用固定燃气轮机(GT)设计的加压固体氧化物燃料电池(SOFC)混合系统的设计特性和性能。假定燃气轮机在混合动力系统设计之前就已存在,而所有其他组件(如SOFC模块和辅助部件)都假定是为混合动力系统新设计的。 GT的非设计运行通过压缩机和涡轮的性能特征进行建模。在SOFC模块中,采用带有阳极气体再循环的内部重整。研究了混合动力系统性能和燃气轮机运行状况随SOFC设计温度的变化。特别关注的是燃气轮机工作点与原始点之间的偏移。可以发现,位于压缩机和涡轮之间的燃料电池模块和其他组件的压力损失会改变工作点。相对于仅使用GT的系统,这会导致每个压缩机工况下的涡轮进口温度降低。因此,难以获得原始的GT功率。考虑了两种电池电压情况以及电池上不同程度的温差,并比较了它们对系统设计特性和性能的影响。

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