首页> 外文会议>ASME international conference on energy sustainability;ES2009 >PART-LOAD PERFORMANCE ANALYSIS OF PRESSURIZED MOLTEN CARBONATE FUEL CELL/MICRO-GAS TURBINE HYBRID SYSTEM USING A COMMERCIALLY AVAILABLE MICRO-GAS TURBINE
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PART-LOAD PERFORMANCE ANALYSIS OF PRESSURIZED MOLTEN CARBONATE FUEL CELL/MICRO-GAS TURBINE HYBRID SYSTEM USING A COMMERCIALLY AVAILABLE MICRO-GAS TURBINE

机译:利用商用微型燃气轮机分析加压熔融碳酸盐燃料电池/微型燃气轮机混合系统的部分负荷性能

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This paper presented the work on the design and part-load operation of a power generation system composed of a pressurized molten carbonate fuel cell and a micro-gas turbine (MCFC/MGT). The gas turbine was based on the commercially available one and the MCFC was assumed to be newly designed for the hybrid system. The effect of different control strategies on the performance of system during part-load operation has been analyzed. Performance of system and gas turbine was compared at the same part-load considering the different control strategies. The results show that the system efficiency is lower compared with the same systems analyzed by the other authors. The system has good performance when both the turbine inlet temperature and cell temperature are maintained close to the design-point condition, but it is difficult for gas turbine to obtain the original power.
机译:本文介绍了由加压熔融碳酸盐燃料电池和微型燃气轮机(MCFC / MGT)组成的发电系统的设计和部分负荷运行的工作。燃气轮机是基于市售的燃气轮机,而MCFC假定是为混合动力系统新设计的。分析了部分负载操作过程中不同控制策略对系统性能的影响。考虑了不同的控制策略,在相同的部分负载下比较了系统和燃气轮机的性能。结果表明,与其他作者分析的相同系统相比,该系统效率较低。当涡轮机入口温度和电池温度都保持接近设计点条件时,该系统具有良好的性能,但是燃气涡轮机很难获得原始功率。

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