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The Development and Application of a Novel Optimisation Strategy for Solid Oxide Fuel Cell-Gas Turbine Hybrid Cycles

机译:新型固体氧化物燃料电池-燃气轮机混合循环优化策略的开发与应用

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摘要

A combined power system with solid oxide fuel cell (SOFC) and gas turbine (GT) is modelled and analysed thermodynamically in this paper. A novel optimisation strategy including the design of optimal parameters is proposed and applied to the hybrid system. Different sources of irreversible losses are specified, and entropy analyses are used to indicate the multi-irreversibilities existing, and to assess the work potentials of the system. Expressions of the power output and efficiency for both the subsystems and the SOFC-GT hybrid system are derived. The optimal performance characteristics are presented and discussed in detail through a parametric analysis. The developed model is expected to provide not only a convenient tool to determine the optimal system performance and component irreversibility, but also an appropriate basis to design similar complex hybrid power plants. This new approach can be further extended to other energy conversion settings and electrochemical systems. Decision makers should therefore find the methodology contained in this paper useful in the comparison and selection of advanced heat recovery systems.
机译:本文对具有固体氧化物燃料电池(SOFC)和燃气轮机(GT)的组合动力系统进行了建模和热力学分析。提出了一种包括优化参数设计的新型优化策略,并将其应用于混合系统。指定了不可逆损失的不同来源,并且使用熵分析来指示存在的多重不可逆性,并评估系统的工作潜力。推导了子系统和SOFC-GT混合系统的功率输出和效率表达式。通过参数分析详细介绍和讨论了最佳性能特征。预期开发的模型不仅将提供确定最佳系统性能和组件不可逆性的便捷工具,而且还将为设计类似的复杂混合动力电厂提供适当的基础。这种新方法可以进一步扩展到其他能量转换设置和电化学系统。因此,决策者应该发现本文中包含的方法可用于高级热回收系统的比较和选择。

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