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Dynamic modeling of solid oxide fuel cell and engine hybrid system for distributed power generation

机译:固体氧化物燃料电池与发动机混合动力系统分布式发电的动态建模

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Novel hybrid system composed of solid oxide fuel cell (SOFC) and engine has been presented by our previous study. The fuel contents remained in the anode tail gas from the SOFC is reutilized in the engine to improve the system electrical efficiency. Our previous research has confirmed the electrical efficiency of the SOFC-engine hybrid system can be enhanced by about 7.8% compared to the SOFC stand-alone system. Although the hybrid system has higher electrical efficiency than the stand-alone system, higher elaboration for the system operation should be necessary due to higher degree of system complication. The objective of the present study is to develop the dynamic modeling of the SOFC-engine hybrid system. The component dynamic modeling of SOFC, engine, external reformer, air blower, and heat exchanger are developed and integrated into a system using Matlab-Simulinle (R). Component models of SOFC, external reformer, and engine have been verified by comparison with the experimental data. The dynamic behavior of the hybrid system during transients is investigated. Since the time scale for the engine operation is much shorter than that of the SOFC stack, the power generated by the engine is mainly dependent on the characteristics variation of the anode tail gas. Consequently, the overshoot behavior is appeared in the engine power generation during increase of the demand SOFC power. This model is useful to develop the optimal control strategy for the SOFC-engine hybrid system. (C) 2017 Published by Elsevier Ltd.
机译:我们先前的研究提出了由固体氧化物燃料电池(SOFC)和发动机组成的新型混合动力系统。 SOFC残留在阳极尾气中的燃料含量在发动机中得到重新利用,以提高系统的电效率。我们之前的研究已经证实,与SOFC单独系统相比,SOFC发动机混合动力系统的电气效率可以提高约7.8%。尽管混合系统比独立系统具有更高的电气效率,但由于系统复杂程度较高,因此必须对系统操作进行更高的阐述。本研究的目的是开发SOFC发动机混合动力系统的动态建模。使用Matlab-Simulinle(R)开发了SOFC,发动机,外部重整器,鼓风机和热交换器的组件动态模型,并将其集成到系统中。通过与实验数据进行比较,对SOFC,外部重整器和发动机的组件模型进行了验证。研究了混合系统在瞬态过程中的动态行为。由于发动机运行的时间尺度比SOFC堆的时间尺度短得多,因此发动机产生的功率主要取决于阳极尾气的特性变化。因此,在需求SOFC功率增加期间,发动机发电中会出现过冲现象。该模型对于开发SOFC发动机混合动力系统的最优控制策略很有用。 (C)2017由Elsevier Ltd.发布

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