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Modeling and dynamics of an autothermal JP5 fuel reformer for marine fuel cell applications

机译:用于船用燃料电池应用的自热JP5燃料重整器的建模和动力学

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In this work, a dynamic model of an integrated autothermal reformer (ATR) and proton exchange membrane fuel cell (PEM FC) system and model-based evaluation of its dynamic characteristics are presented. The ATR reforms JP5 fuel into a hydrogen rich flow. The hydrogen is extracted from the reformate flow by a separator membrane (SEP), then supplied to the PEM FC for power generation. A catalytic burner (CB) and a turbine are also incorporated to recuperate energy from the remaining SEP flow that would otherwise be wasted. A dynamic model of this system, based on the ideal gas law and energy balance principles, is developed and used to explore the effects of the operating setpoint selection of the SEP on the overall system efficiency. The analysis reveals that a trade-off exists between the SEP efficiency and the overall system efficiency. Finally the open loop system simulation results are presented and conclusions are drawn on the SEP operation.
机译:在这项工作中,提出了集成的自动热重整器(ATR)和质子交换膜燃料电池(PEM FC)系统的动力学模型,以及基于模型的动力学特性评估。 ATR将JP5燃料重整为富氢流。氢通过分离膜(SEP)从重整产品流中提取,然后提供给PEM FC进行发电。还集成了催化燃烧器(CB)和涡轮机,以从剩余的SEP流中回收能量,否则这些SEP流将被浪费掉。根据理想气体定律和能量平衡原理,开发了该系统的动态模型,并将其用于探索SEP的运行设定点选择对整个系统效率的影响。分析表明,在SEP效率和整个系统效率之间存在折衷。最后给出了开环系统的仿真结果,并得出了关于SEP操作的结论。

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