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Design and Off-Design Analysis of a MW Hybrid System Based on Rolls-Royce Integrated Planar Solid Oxide Fuel Cells

机译:基于劳斯莱斯集成平面固体氧化物燃料电池的MW混合动力系统的设计和非设计分析

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In this paper the design point definition of a pressurised hybrid system based on the Rolls-Royce Integrated Planar-Solid Oxide Fuel Cells (IP-SOFCs) is presented and discussed. The hybrid system size is about 2 MWe and the design point analysis has been carried out using two different IP-SOFC models developed by Thermochemical Power Group (TPG) at the University of Genoa: (ⅰ) a generic one, where the transport and balance equations of the mass, energy and electrical charges are solved in a lumped volume at constant temperature; (ⅱ) a detailed model where all the equations are solved in a finite difference approach inside the single cell. The first model has been used to define the hybrid system lay out and the characteristics of the main devices of the plant such as the recuperator, the compressor, the expander, etc. The second model has been used to verify the design point defined in the previous step, taking into account that the stack internal temperature behavior are now available and must be carefully considered. Apt modifications of the preliminary design point have been suggested using the detailed IP-SOFC system to obtain a feasible solution. In the second part of the paper some off-design performance of the Hybrid System carried out using detailed SOFC model are presented and discussed. In particular the influence of ambient conditions is shown, together with the possible part load operations at fixed and variable gas turbine speed. Some considerations on the compressor surge margin modification are reported.
机译:本文提出并讨论了基于劳斯莱斯集成平面固体氧化物燃料电池(IP-SOFC)的增压混合系统的设计点定义。混合系统的大小约为2 MWe,设计点分析是使用热那亚大学热化学动力集团(TPG)开发的两种不同的IP-SOFC模型进行的:(ⅰ)通用模型,其中运输和平衡质量,能量和电荷方程在恒定温度下的集中体积中求解; (ⅱ)一个详细的模型,其中所有方程式都通过一个有限差分法在单个单元格内求解。第一个模型已用于定义混合动力系统的布局,以及工厂主要设备(如换热器,压缩机,膨胀机等)的特性。第二个模型已用于验证设计中定义的设计点考虑到现在已经可以使用烟囱内部温度特性,因此必须仔细考虑。建议使用详细的IP-SOFC系统对初步设计点进行适当的修改,以获得可行的解决方案。在本文的第二部分中,介绍并讨论了使用详细的SOFC模型执行的混合系统的非设计性能。特别显示了环境条件的影响,以及在固定和可变燃气轮机转速下可能的部分负荷运行。报告了有关压缩机喘振裕度修改的一些注意事项。

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