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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Analysis of Operational Strategies of a SOFC/Micro Gas Turbine Hybrid Power Plant
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Analysis of Operational Strategies of a SOFC/Micro Gas Turbine Hybrid Power Plant

机译:SOFC /微型燃气轮机混合电站的运行策略分析

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摘要

The present work deals with the analysis of operational concepts for a solid oxide fuel cell/micro gas turbine (SOFC/MGT) hybrid power plant based on a test rig at the DLR, Institute of Combustion Technology. Here, a Turbec T100 MGT and a fuel cell emulator are used. The emulator is composed of two pressure vessels. The first represents the cathode volume of the fuel cell to simulate the residence time and pressure loss. The second is equipped with a natural gas combustor to emulate the varying heat input of the fuel cell. The MGT and the SOFC are connected via different piping paths. The procedures start-up, load change, and shutdown are analyzed in matters of temperature gradients, pressure gradients, and fluctuations, as well as the air mass, flow provided at the interconnections to the coupling elements. To achieve the required inlet conditions of the SOFC, transient operations, using the different piping paths, are investigated. Concepts for heating up and cooling the SOFC using hot air from the recuperator and relatively cold air from the compressor outlet are experimentally tested and characterized. Selected critical situations and their effect on the SOFC are investigated. An emergency operation and its impact on both subsystems and limitations are shown. Further operational limits of the MGT control system and power electronic were observed and analyzed. Based on the experimental results, the applicability of the used MGT procedures in a hybrid power plant was reconsidered. Finally, adaptions and strategies for the operational concept are derived and discussed.
机译:本工作基于燃烧技术研究所DLR的试验台,对固体氧化物燃料电池/微型燃气轮机(SOFC / MGT)混合动力装置的运行概念进行了分析。在这里,使用了Turbec T100 MGT和燃料电池仿真器。仿真器由两个压力容器组成。第一个代表燃料电池的阴极体积,以模拟停留时间和压力损失。第二台装备有天然气燃烧器,以模拟燃料电池变化的热量输入。 MGT和SOFC通过不同的管道路径连接。分析了程序启动,负载变化和关闭的过程,包括温度梯度,压力梯度,波动以及空气质量,在互连处提供给耦合元件的流量。为了达到SOFC所需的入口条件,研究了使用不同管道路径的瞬态运行。使用来自同流换热器的热空气和来自压缩机出口的相对冷的空气来加热和冷却SOFC的概念已经过实验测试和表征。研究了选定的紧急情况及其对SOFC的影响。显示了紧急操作及其对子系统和限制的影响。观察并分析了MGT控制系统和电力电子设备的其他操作限制。根据实验结果,重新考虑了所使用的MGT程序在混合动力电厂中的适用性。最后,得出并讨论了适用于运营概念的策略。

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