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Performance of a triple power generation cycle combining gas/steam turbine combined cycle and solid oxide fuel cell and the influence of carbon capture

机译:燃气/蒸汽轮机联合循环与固体氧化物燃料电池组合的三重发电循环的性能以及碳捕获的影响

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摘要

This study simulated a triple combined cycle which combines a gas turbine combined cycle (GTCC) and a solid oxide fuel cell (SOFC) system, and the expected performance is presented. The impact of post-combustion carbon capture was also evaluated. Commercially available F-class and J-class gas turbines were considered, which represent the present technology standard and an emerging technology. A state-of-the-art post-combustion carbon capture technology was used. The analysis showed that the efficiency of the triple combined cycle is a weak function of the gas turbine class. The efficiency of the F-class-based system without carbon capture is slightly over 70%, and that of the J-class-based system is slightly lower. The efficiency penalty due to carbon capture is around 5 percentage points in the triple combined cycle. The power share of the gas and steam turbines increases with increasing turbine inlet temperature, reaching more than half in the J-class-based system. The degree of increase required for the turbine annulus area to operate the gas turbine safely without compressor surge problems was estimated. The relative efficiency reduction due to an increase in carbon capture rate is lower in the triple combined cycle compared to the GTCC.
机译:这项研究模拟了将燃气轮机联合循环(GTCC)和固体氧化物燃料电池(SOFC)系统相结合的三重联合循环,并给出了预期的性能。还评估了燃烧后碳捕获的影响。考虑了可商购的F级和J级燃气轮机,它们代表了当前的技术标准和一项新兴技术。使用了最新的燃烧后碳捕集技术。分析表明,三重联合循环的效率是燃气轮机等级的弱函数。没有碳捕集的F级系统的效率略高于70%,而J级系统的效率略低。在三联循环中,由于碳捕获而导致的效率损失约为5个百分点。燃气轮机和蒸汽轮机的功率份额随着涡轮机入口温度的升高而增加,在基于J级的系统中达到了一半以上。估计了涡轮环空区域安全运行燃气轮机而没有压缩机喘振问题所需的增加程度。与GTCC相比,在三次联合循环中,由于碳捕获率增加而导致的相对效率降低较低。

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