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Modelling for part-load operation of solid oxide fuel cell-gas turbine hybrid power plant

机译:固体氧化物燃料电池-燃气轮机混合动力装置的部分负荷运行建模

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This paper presents the work on part-load operation of a power generation system composed of a solid oxide fuel cell and a gas turbine (SOFC-GT) which operate on natural gas. The system consists of an internal reforming SOFC (IRSOFC) stack, an external combustor, two turbines, two compressors, two recuperators and one heat-recovery steam generator (HRSG). Based on experience in different levels of modelling of the fuel cell, fuel cell stack and integrated system and the inherent characteristics of a IRSOFC-GT hybrid power plant, a practical approach for simplifying part-load operation of the system is proposed. Simulation results show that an IRSOFC-GT hybrid system could achieve a net electrical efficiency and system efficiency (including waste heat recovery for steam generation) of greater than 60 and 80%, respectively, under full-load operation. Due to the complexity of the interaction of the components and safety requirements, the part-load performance of a IRSOFC-GT hybrid power plant is poorer than that under full-load operation.
机译:本文介绍了由固体氧化物燃料电池和以天然气为燃料的燃气轮机(SOFC-GT)组成的发电系统的部分负荷运行工作。该系统由一个内部重整SOFC(IRSOFC)烟囱,一个外部燃烧器,两个涡轮,两个压缩机,两个同流换热器和一个热回收蒸汽发生器(HRSG)组成。基于在燃料电池,燃料电池堆和集成系统的不同建模水平上的经验以及IRSOFC-GT混合动力装置的固有特性,提出了一种简化系统部分负荷运行的实用方法。仿真结果表明,在满负荷运行时,IRSOFC-GT混合系统可以实现分别大于60%和80%的净电气效率和系统效率(包括用于蒸汽产生的废热回收)。由于组件之间相互作用的复杂性和安全要求,IRSOFC-GT混合动力装置的部分负荷性能要比满负荷运行时差。

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