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Thermo-Economic Operation Analysis of SOFC-GT Combined Hybrid System for Application in Power Generation Systems

机译:发电系统应用中的SOFC-GT组合混合系统的热经济运行分析

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This study investigated the combination of the direct and indirect hybrid systems in order to develop a combined hybrid system. In the proposed system, a direct solid oxide fuel cell (SOFC) and gas turbine (GT) hybrid system and an indirect fuel cell cycle were combined and exchanged the heat through a heat exchanger. Several electrochemical, thermal, and thermodynamic calculations were performed in order to achieve more accurate results; then, beside the parametric investigation of the abovementioned hybrid system, the obtained results were compared to the results of direct and indirect hybrid systems and simple GT cycle. Results indicate that the efficiency of the combined hybrid system was between those of the direct and indirect hybrid systems. The electrical efficiency and the overall efficiency of the combined hybrid system were 43% and 59%, respectively. The generation power in the combined hybrid system was higher than that of both other systems, which was the only advantage of using the combined hybrid system. The generation power in the combined hybrid system was higher than that of the direct hybrid system by 16%; accordingly, it is recommended to be used by the systems that are supposed to have high generation power.
机译:本研究调查了直接和间接混合系统的组合,以开发组合的混合动力系统。在所提出的系统中,将直接固体氧化物燃料电池(SOFC)和燃气轮机(GT)混合系统和间接燃料电池周期组合并通过热交换器交换。进行多种电化学,热和热力学计算,以实现更准确的结果;然后,除了上述杂交系统的参数研究之外,将得到的结果与直接和间接混合系统的结果进行比较,简单的GT循环。结果表明,合并的混合动力系统的效率在直接和间接混合系统的效率。合并杂合系统的电效率和总效率分别为43%和59%。组合混合动力系统中的发电功率高于两种系统,这是使用组合混合动力系统的唯一优点。合并的混合系统中的发电功率高于直接混合系统的速度为16%;因此,建议使用应该具有高发电功率的系统使用。

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