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Impact of fuel composition transients on SOFC performance in gas turbine hybrid systems

机译:燃料成分瞬变对燃气轮机混合系统中SOFC性能的影响

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This paper presents a dynamic study of fuel cell gas turbine (SOFC/GT) hybrid systems, focusing on the response to a drastic transient in anode fuel composition for constant turbine speed operations. This work is motivated by the potential of fuel cells for fuel flexibility, which could extend the opportunities for sustainability and profitability in energy conversion systems. A combination of hardware and numerical models in a hybrid simulator is used to investigate the transient trajectories of fuel cell process variables as well as the consequent impacts of fuel cell thermal effluent on the integrated gas turbine engine. The conversion of thermal energy stored in the fuel cell stack to chemical energy during the reforming at the beginning of the cell resulted in a 17% increase in thermal effluent from the fuel cell to the turbine in the first few seconds of the transient. Fuel cell solid temperature gradients increased by 39% at 250 s from the initiation of the transient. The distributed dynamic performance of the fuel cell in terms of the fuel composition gradient, thermal, and electrochemical performance across the fuel cell length was carefully characterized, considering their interactions and their impacts on the total system performance. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文介绍了燃料电池燃气轮机(SOFC / GT)混合动力系统的动态研究,重点是对恒定涡轮速度运行下阳极燃料成分中剧烈瞬变的响应。这项工作的动机是燃料电池具有燃料灵活性的潜力,这可能会扩展能量转换系统的可持续性和盈利能力。混合模拟器中硬件和数值模型的组合用于研究燃料电池过程变量的瞬态轨迹以及燃料电池热废气对集成燃气轮机发动机的影响。在电池组重整期间,存储在燃料电池堆中的热能转换为化学能,从而在瞬态的前几秒钟内,从燃料电池到涡轮的热流出量增加了17%。从瞬变开始,燃料电池固体温度梯度在250 s时增加了39%。考虑了燃料电池各部分之间的相互作用及其对整个系统性能的影响,仔细分析了燃料电池在整个燃料电池长度上的分布动态性能,包括燃料成分梯度,热和电化学性能。 (C)2015 Elsevier Ltd.保留所有权利。

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